Antibody Isotyping Search Results


94
Bio X Cell recombimab igg4
Recombimab Igg4, supplied by Bio X Cell, used in various techniques. Bioz Stars score: 94/100, based on 1 PubMed citations. ZERO BIAS - scores, article reviews, protocol conditions and more
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recombimab igg4 - by Bioz Stars, 2026-08
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97
Bio X Cell anti keyhole limpet hemocyanin bioxcell be0090
Anti Keyhole Limpet Hemocyanin Bioxcell Be0090, supplied by Bio X Cell, used in various techniques. Bioz Stars score: 97/100, based on 1 PubMed citations. ZERO BIAS - scores, article reviews, protocol conditions and more
https://www.bioz.com/product/Antibody+Isotyping/pmc09341188__jitc___2022___004935supp006-0-166-169?v=Bio+X+Cell
Average 97 stars, based on 1 article reviews
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93
Bio X Cell anti mouse igg2a isotype control
Anti-IL-9 antibody treatment decreased mast cell infiltration of the CNS. Purified cells (mainly composed of mast cells) were harvested from the CNS on days 0, and 5, 15, and 20 after EAE immunization. CD45 + CD117 + mast cells were detected by flow cytometry. CNS mast cells maintained a high level throughout the disease course in EAE group. However, mast cells were significantly reduced from day 5, and remained low in anti-IL-9 Abs group, compared with <t>IgG</t> group. Data are shown as mean ± SE. * P < 0.01, anti-IL-9 Abs group versus IgG group. CNS: Central nervous system; EAE: Experimental autoimmune encephalomyelitis; SE: Standard error; IL: Interleukin.
Anti Mouse Igg2a Isotype Control, supplied by Bio X Cell, used in various techniques. Bioz Stars score: 93/100, based on 1 PubMed citations. ZERO BIAS - scores, article reviews, protocol conditions and more
https://www.bioz.com/product/Antibody+Isotyping/pmc05407044-61-20-25?v=Bio+X+Cell
Average 93 stars, based on 1 article reviews
anti mouse igg2a isotype control - by Bioz Stars, 2026-08
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96
Proteintech ip 30000 0 ap proteintech
Anti-IL-9 antibody treatment decreased mast cell infiltration of the CNS. Purified cells (mainly composed of mast cells) were harvested from the CNS on days 0, and 5, 15, and 20 after EAE immunization. CD45 + CD117 + mast cells were detected by flow cytometry. CNS mast cells maintained a high level throughout the disease course in EAE group. However, mast cells were significantly reduced from day 5, and remained low in anti-IL-9 Abs group, compared with <t>IgG</t> group. Data are shown as mean ± SE. * P < 0.01, anti-IL-9 Abs group versus IgG group. CNS: Central nervous system; EAE: Experimental autoimmune encephalomyelitis; SE: Standard error; IL: Interleukin.
Ip 30000 0 Ap Proteintech, supplied by Proteintech, used in various techniques. Bioz Stars score: 96/100, based on 1 PubMed citations. ZERO BIAS - scores, article reviews, protocol conditions and more
https://www.bioz.com/product/Antibody+Isotyping/pmc11671999__ard___83___12___s011-0-150-152?v=Proteintech
Average 96 stars, based on 1 article reviews
ip 30000 0 ap proteintech - by Bioz Stars, 2026-08
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91
Revvity mouse igg2b
a Left, immunostaining of PD-L1 (green) and TOM20-labeled mitochondria (red) in BT549 human TNBC cells with or without ATAD3A-knockdown (shATAD3A#1 and shATAD3A#2). Scale bars, 20 μm and 2 μm (inset). Right, the percentage of PD-L1 co-localized with TOM20 ( n = 5 fields, t -test). b Immunoblot of PD-L1 in the cytoplasm and mitochondria of control and ATAD3A-knockdown BT549 cells. TOM20 and Tubulin were used as mitochondria and cytoplasm protein controls, respectively. Cyto, cytoplasm; mito, mitochondria. c Flow cytometry (left) and quantification (right) of surface PD-L1 in control and ATAD3A-knockdown BT549 cells ( n = 3, one-way ANOVA). d Venn diagram depicting overlapped genes for the interaction protein of ATAD3A set (BioGRID, RP5-832C2.1), the protein localization to mitochondrion set (GOBP 0070585) and the intrinsic component of mitochondrial membrane (GOCC 0098573). e Immunoblot of PINK1 in control and ATAD3A-knockdown BT549 cells. f Immunoblot of PD-L1 and PINK1 in HEK293T cells overexpressing PD-L1 (OE-PD-L1) and control cells (OE-Control), assessed after immunoprecipitation with <t>immunoglobulin</t> <t>G</t> <t>(IgG)</t> or antibody to PINK1. g Protein direct interaction analysis of the intracellular domain of PD-L1 (ICD) and PINK1 in vitro. Purified Flag-labeled full-length PINK1 was incubated with Biotin-labeled PD-L1 ICD domain, followed by streptavidin pull-down and immunoblot. h Schematic diagram of Flag-labeled full-length (FL) and truncated mutants with indicated domains (amino acids 1–155, amino acids 156–320, amino acids 321–509, amino acids 510–581) of PINK1. MTS, mitochondrial targeting sequence; N-lobe, kinase domain N; C-lobe, kinase domain C; CTD, C-terminal domain. i Protein direct interaction analysis of the intracellular domain of PD-L1 (ICD) and truncated PINK1 mutants in vitro. Purified Flag-labeled full-length and truncated PINK1 were incubated with Biotin-labeled PD-L1 ICD domain, followed by streptavidin pull-down and immunoblot. The estimated size of PINK1-4 (amino acids 510–581) which did not express in HEK293T cells was labeled with asterisk. j Immunoblot of PD-L1 in the cytoplasm and mitochondria of MDA-MB-231 cells with or without PINK1-knockdown (shPINK1#1 and shPINK1#2). TOM20 and Tubulin were used as mitochondria and cytoplasm protein controls. Cyto, cytoplasm; mito, mitochondria. k Left, co-localization of PD-L1 (green) and TOM20 (red) in control, ATAD3A knockdown, PINK1 knockdown or ATAD3A and PINK1 double knockdown BT549 cells. Scale bars, 20 μm and 2 μm (inset). Right, the percentage of PD-L1 co-localized with TOM20 ( n = 5 fields, one-way ANOVA). l Immunoblot of PD-L1 in the cytoplasm and mitochondria of control, ATAD3A-knockdown, PINK1-knockdown or ATAD3A and PINK1 double knockdown BT549 cells. m Immunoblot of indicated proteins in PD-L1-transfected HEK293T cells with or without PINK1 overexpression. n Immunoblot of PD-L1 in control and PINK1-knockdown (shPINK1#1 and shPINK1#2) BT549 cells. o Immunoblot of PD-L1 in BT549 cells transfected with control shRNA or shATAD3A (shATAD3A#1 and shATAD3A#2). p Immunoblot of total PD-L1 in control, ATAD3A-knockdown, PINK1-knockdown or ATAD3A and PINK1 double knockdown BT549 cells. q Immunoblot of PD-L1 in control and ATAD3A-knockdown BT549 cells treated with 20 μM CHX for indicated times. h, hours. r Quantification of PD-L1 intensity in immunoblot in control and ATAD3A-knockdown BT549 cells. s Immunoblot of PD-L1 in control and ATAD3A-knockdown MDA-MB-231 cells incubated with 20 nM BafA1 for indicated times. h, hours. Data are representative of at least two independent experiments and are shown as means ± SD. See also Supplementary information, Figs. and .
Mouse Igg2b, supplied by Revvity, used in various techniques. Bioz Stars score: 91/100, based on 1 PubMed citations. ZERO BIAS - scores, article reviews, protocol conditions and more
https://www.bioz.com/product/Antibody+Isotyping/pmc09977947-278-0-5?v=Revvity
Average 91 stars, based on 1 article reviews
mouse igg2b - by Bioz Stars, 2026-08
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96
Bio X Cell anti cd8α
a Left, immunostaining of PD-L1 (green) and TOM20-labeled mitochondria (red) in BT549 human TNBC cells with or without ATAD3A-knockdown (shATAD3A#1 and shATAD3A#2). Scale bars, 20 μm and 2 μm (inset). Right, the percentage of PD-L1 co-localized with TOM20 ( n = 5 fields, t -test). b Immunoblot of PD-L1 in the cytoplasm and mitochondria of control and ATAD3A-knockdown BT549 cells. TOM20 and Tubulin were used as mitochondria and cytoplasm protein controls, respectively. Cyto, cytoplasm; mito, mitochondria. c Flow cytometry (left) and quantification (right) of surface PD-L1 in control and ATAD3A-knockdown BT549 cells ( n = 3, one-way ANOVA). d Venn diagram depicting overlapped genes for the interaction protein of ATAD3A set (BioGRID, RP5-832C2.1), the protein localization to mitochondrion set (GOBP 0070585) and the intrinsic component of mitochondrial membrane (GOCC 0098573). e Immunoblot of PINK1 in control and ATAD3A-knockdown BT549 cells. f Immunoblot of PD-L1 and PINK1 in HEK293T cells overexpressing PD-L1 (OE-PD-L1) and control cells (OE-Control), assessed after immunoprecipitation with <t>immunoglobulin</t> <t>G</t> <t>(IgG)</t> or antibody to PINK1. g Protein direct interaction analysis of the intracellular domain of PD-L1 (ICD) and PINK1 in vitro. Purified Flag-labeled full-length PINK1 was incubated with Biotin-labeled PD-L1 ICD domain, followed by streptavidin pull-down and immunoblot. h Schematic diagram of Flag-labeled full-length (FL) and truncated mutants with indicated domains (amino acids 1–155, amino acids 156–320, amino acids 321–509, amino acids 510–581) of PINK1. MTS, mitochondrial targeting sequence; N-lobe, kinase domain N; C-lobe, kinase domain C; CTD, C-terminal domain. i Protein direct interaction analysis of the intracellular domain of PD-L1 (ICD) and truncated PINK1 mutants in vitro. Purified Flag-labeled full-length and truncated PINK1 were incubated with Biotin-labeled PD-L1 ICD domain, followed by streptavidin pull-down and immunoblot. The estimated size of PINK1-4 (amino acids 510–581) which did not express in HEK293T cells was labeled with asterisk. j Immunoblot of PD-L1 in the cytoplasm and mitochondria of MDA-MB-231 cells with or without PINK1-knockdown (shPINK1#1 and shPINK1#2). TOM20 and Tubulin were used as mitochondria and cytoplasm protein controls. Cyto, cytoplasm; mito, mitochondria. k Left, co-localization of PD-L1 (green) and TOM20 (red) in control, ATAD3A knockdown, PINK1 knockdown or ATAD3A and PINK1 double knockdown BT549 cells. Scale bars, 20 μm and 2 μm (inset). Right, the percentage of PD-L1 co-localized with TOM20 ( n = 5 fields, one-way ANOVA). l Immunoblot of PD-L1 in the cytoplasm and mitochondria of control, ATAD3A-knockdown, PINK1-knockdown or ATAD3A and PINK1 double knockdown BT549 cells. m Immunoblot of indicated proteins in PD-L1-transfected HEK293T cells with or without PINK1 overexpression. n Immunoblot of PD-L1 in control and PINK1-knockdown (shPINK1#1 and shPINK1#2) BT549 cells. o Immunoblot of PD-L1 in BT549 cells transfected with control shRNA or shATAD3A (shATAD3A#1 and shATAD3A#2). p Immunoblot of total PD-L1 in control, ATAD3A-knockdown, PINK1-knockdown or ATAD3A and PINK1 double knockdown BT549 cells. q Immunoblot of PD-L1 in control and ATAD3A-knockdown BT549 cells treated with 20 μM CHX for indicated times. h, hours. r Quantification of PD-L1 intensity in immunoblot in control and ATAD3A-knockdown BT549 cells. s Immunoblot of PD-L1 in control and ATAD3A-knockdown MDA-MB-231 cells incubated with 20 nM BafA1 for indicated times. h, hours. Data are representative of at least two independent experiments and are shown as means ± SD. See also Supplementary information, Figs. and .
Anti Cd8α, supplied by Bio X Cell, used in various techniques. Bioz Stars score: 96/100, based on 1 PubMed citations. ZERO BIAS - scores, article reviews, protocol conditions and more
https://www.bioz.com/product/Antibody+Isotyping/10__1080_slash_2162402x__2020__1800162-136-20-23?v=Bio+X+Cell
Average 96 stars, based on 1 article reviews
anti cd8α - by Bioz Stars, 2026-08
96/100 stars
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96
Bio X Cell isotype control
a Left, immunostaining of PD-L1 (green) and TOM20-labeled mitochondria (red) in BT549 human TNBC cells with or without ATAD3A-knockdown (shATAD3A#1 and shATAD3A#2). Scale bars, 20 μm and 2 μm (inset). Right, the percentage of PD-L1 co-localized with TOM20 ( n = 5 fields, t -test). b Immunoblot of PD-L1 in the cytoplasm and mitochondria of control and ATAD3A-knockdown BT549 cells. TOM20 and Tubulin were used as mitochondria and cytoplasm protein controls, respectively. Cyto, cytoplasm; mito, mitochondria. c Flow cytometry (left) and quantification (right) of surface PD-L1 in control and ATAD3A-knockdown BT549 cells ( n = 3, one-way ANOVA). d Venn diagram depicting overlapped genes for the interaction protein of ATAD3A set (BioGRID, RP5-832C2.1), the protein localization to mitochondrion set (GOBP 0070585) and the intrinsic component of mitochondrial membrane (GOCC 0098573). e Immunoblot of PINK1 in control and ATAD3A-knockdown BT549 cells. f Immunoblot of PD-L1 and PINK1 in HEK293T cells overexpressing PD-L1 (OE-PD-L1) and control cells (OE-Control), assessed after immunoprecipitation with <t>immunoglobulin</t> <t>G</t> <t>(IgG)</t> or antibody to PINK1. g Protein direct interaction analysis of the intracellular domain of PD-L1 (ICD) and PINK1 in vitro. Purified Flag-labeled full-length PINK1 was incubated with Biotin-labeled PD-L1 ICD domain, followed by streptavidin pull-down and immunoblot. h Schematic diagram of Flag-labeled full-length (FL) and truncated mutants with indicated domains (amino acids 1–155, amino acids 156–320, amino acids 321–509, amino acids 510–581) of PINK1. MTS, mitochondrial targeting sequence; N-lobe, kinase domain N; C-lobe, kinase domain C; CTD, C-terminal domain. i Protein direct interaction analysis of the intracellular domain of PD-L1 (ICD) and truncated PINK1 mutants in vitro. Purified Flag-labeled full-length and truncated PINK1 were incubated with Biotin-labeled PD-L1 ICD domain, followed by streptavidin pull-down and immunoblot. The estimated size of PINK1-4 (amino acids 510–581) which did not express in HEK293T cells was labeled with asterisk. j Immunoblot of PD-L1 in the cytoplasm and mitochondria of MDA-MB-231 cells with or without PINK1-knockdown (shPINK1#1 and shPINK1#2). TOM20 and Tubulin were used as mitochondria and cytoplasm protein controls. Cyto, cytoplasm; mito, mitochondria. k Left, co-localization of PD-L1 (green) and TOM20 (red) in control, ATAD3A knockdown, PINK1 knockdown or ATAD3A and PINK1 double knockdown BT549 cells. Scale bars, 20 μm and 2 μm (inset). Right, the percentage of PD-L1 co-localized with TOM20 ( n = 5 fields, one-way ANOVA). l Immunoblot of PD-L1 in the cytoplasm and mitochondria of control, ATAD3A-knockdown, PINK1-knockdown or ATAD3A and PINK1 double knockdown BT549 cells. m Immunoblot of indicated proteins in PD-L1-transfected HEK293T cells with or without PINK1 overexpression. n Immunoblot of PD-L1 in control and PINK1-knockdown (shPINK1#1 and shPINK1#2) BT549 cells. o Immunoblot of PD-L1 in BT549 cells transfected with control shRNA or shATAD3A (shATAD3A#1 and shATAD3A#2). p Immunoblot of total PD-L1 in control, ATAD3A-knockdown, PINK1-knockdown or ATAD3A and PINK1 double knockdown BT549 cells. q Immunoblot of PD-L1 in control and ATAD3A-knockdown BT549 cells treated with 20 μM CHX for indicated times. h, hours. r Quantification of PD-L1 intensity in immunoblot in control and ATAD3A-knockdown BT549 cells. s Immunoblot of PD-L1 in control and ATAD3A-knockdown MDA-MB-231 cells incubated with 20 nM BafA1 for indicated times. h, hours. Data are representative of at least two independent experiments and are shown as means ± SD. See also Supplementary information, Figs. and .
Isotype Control, supplied by Bio X Cell, used in various techniques. Bioz Stars score: 96/100, based on 1 PubMed citations. ZERO BIAS - scores, article reviews, protocol conditions and more
https://www.bioz.com/product/Antibody+Isotyping/10__1080_slash_2162402x__2022__2118210-60-50-57?v=Bio+X+Cell
Average 96 stars, based on 1 article reviews
isotype control - by Bioz Stars, 2026-08
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96
Bio X Cell rat igg2a isotype control
(a) Representative whole-mount images of E13.5 ovaries from C57BL/6J embryos exposed at E6.5 to either control rat <t>IgG2a</t> antibody or anti-CSF1R blocking antibody to deplete YS-derived macrophages. For F4/80, PECAM1, and FOXL2 staining, n =5 control and n =6 anti-CSF1R-treated independent gonads; for CD11b and CD45 staining, n =3 control and n =3 anti-CSF1R-treated independent gonads. Insets show higher-magnification views of boxed regions; dashed lines mark the gonad-mesonephros boundary. (b) qRT-PCR analysis of macrophage-associated genes ( Adgre1, Cx3cr1, Csf1r, Mrc1 ) and endothelial marker Cdh5 , showing fold change in gene expression in E13.5 anti-CSF1R-treated ovaries versus controls. (c) Representative E14.5 sections stained for SYCP3 and TRA98 showing increased meiotic germ cells in anti-CSF1R-treated ovaries ( n =4) compared with control ovaries ( n =4). (d) qRT-PCR analysis of germ cell and meiotic genes ( Kit, Pou5f1, Ddx4, Stra8, Sycp1, Sycp3, Syce1, Smc1b ), showing fold change in gene expression in E14.5 anti-CSF1R-treated ovaries versus controls. (e) Representative E18.5 sections stained for F4/80 and CD45, and for SYCP3 and FOXL2, showing recovery of F4/80⁺ macrophages and advanced meiotic progression in anti-CSF1R-treated ovaries compared with control ovaries. For F4/80 and CD45 staining, n =4 control and n =4 anti-CSF1R-treated independent gonads; for SYCP3 and FOXL2 staining, n =3 control and n =3 anti-CSF1R-treated independent gonads. Arrows indicate SYCP3⁺ dictyate-stage oocytes. (f) Percentage of SYCP3⁺ germ cells at the dictyate stage among total SYCP3⁺ cells at E18.5. Data are shown as mean +/− SD. * P <0.05, ** P <0.01, *** P <0.001 (two-tailed Student’s t -tests). Scale bars, 100 μm (overview) and 50 μm (higher magnification/insets).
Rat Igg2a Isotype Control, supplied by Bio X Cell, used in various techniques. Bioz Stars score: 96/100, based on 1 PubMed citations. ZERO BIAS - scores, article reviews, protocol conditions and more
https://www.bioz.com/product/Antibody+Isotyping/bio_rxiv__64898__2026__02__28__708733-171-29-33?v=Bio+X+Cell
Average 96 stars, based on 1 article reviews
rat igg2a isotype control - by Bioz Stars, 2026-08
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Image Search Results


Anti-IL-9 antibody treatment decreased mast cell infiltration of the CNS. Purified cells (mainly composed of mast cells) were harvested from the CNS on days 0, and 5, 15, and 20 after EAE immunization. CD45 + CD117 + mast cells were detected by flow cytometry. CNS mast cells maintained a high level throughout the disease course in EAE group. However, mast cells were significantly reduced from day 5, and remained low in anti-IL-9 Abs group, compared with IgG group. Data are shown as mean ± SE. * P < 0.01, anti-IL-9 Abs group versus IgG group. CNS: Central nervous system; EAE: Experimental autoimmune encephalomyelitis; SE: Standard error; IL: Interleukin.

Journal: Chinese Medical Journal

Article Title: Neutralization of Interleukin-9 Decreasing Mast Cells Infiltration in Experimental Autoimmune Encephalomyelitis

doi: 10.4103/0366-6999.204110

Figure Lengend Snippet: Anti-IL-9 antibody treatment decreased mast cell infiltration of the CNS. Purified cells (mainly composed of mast cells) were harvested from the CNS on days 0, and 5, 15, and 20 after EAE immunization. CD45 + CD117 + mast cells were detected by flow cytometry. CNS mast cells maintained a high level throughout the disease course in EAE group. However, mast cells were significantly reduced from day 5, and remained low in anti-IL-9 Abs group, compared with IgG group. Data are shown as mean ± SE. * P < 0.01, anti-IL-9 Abs group versus IgG group. CNS: Central nervous system; EAE: Experimental autoimmune encephalomyelitis; SE: Standard error; IL: Interleukin.

Article Snippet: The following antibodies were used in this study: FITC-anti-mouse CD45 (eBioscience, USA), PE-Cyanine5-anti-mouse CD117 (eBioscience), anti-mouse IL-9 (BE0181; BioXCell, USA), anti-mouse IgG2a isotype control (BE0085; BioXCell), anti-mouse IL-9 receptor (IL-9R) (SC699; Santa Cruz, USA), anti-mouse IL-2Rγ (SC668; Santa Cruz), anti-mouse IgG isotype control (GTX35009; Santa Cruz), and donkey pAb to Rb IgG Alexa Flour 555 (Ab150074; Abcam, USA).

Techniques: Purification, Flow Cytometry

IL-9 blockade reduced production of chemokine recruiting mast cells in the CNS. Five days after immunization, mRNA expressions of Pecam1, SCF, Vcam-1, CCL2, and CCL5 in CNS tissue of EAE mice were detected by RT-PCR. After IL-9 neutralization, mRNA expressions of CCL5 and Vcam-1 were significantly decreased in anti-IL-9 Abs group, compared with IgG group. * P < 0.01. Pecam1: Platelet and endothelial cell adhesion molecule 1; SCF: Supercoiling factor; Vcam-1: Vascular cell adhesion molecule 1; CCL2: C-C motif chemokine ligand 2; CCL5: C-C motif chemokine ligand 5; CNS: Central nervous system; EAE: Experimental autoimmune encephalomyelitis; IL: Interleukin; RT-PCR: Reverse transcription-polymerase chain reaction; mRNA: Messenger RNA.

Journal: Chinese Medical Journal

Article Title: Neutralization of Interleukin-9 Decreasing Mast Cells Infiltration in Experimental Autoimmune Encephalomyelitis

doi: 10.4103/0366-6999.204110

Figure Lengend Snippet: IL-9 blockade reduced production of chemokine recruiting mast cells in the CNS. Five days after immunization, mRNA expressions of Pecam1, SCF, Vcam-1, CCL2, and CCL5 in CNS tissue of EAE mice were detected by RT-PCR. After IL-9 neutralization, mRNA expressions of CCL5 and Vcam-1 were significantly decreased in anti-IL-9 Abs group, compared with IgG group. * P < 0.01. Pecam1: Platelet and endothelial cell adhesion molecule 1; SCF: Supercoiling factor; Vcam-1: Vascular cell adhesion molecule 1; CCL2: C-C motif chemokine ligand 2; CCL5: C-C motif chemokine ligand 5; CNS: Central nervous system; EAE: Experimental autoimmune encephalomyelitis; IL: Interleukin; RT-PCR: Reverse transcription-polymerase chain reaction; mRNA: Messenger RNA.

Article Snippet: The following antibodies were used in this study: FITC-anti-mouse CD45 (eBioscience, USA), PE-Cyanine5-anti-mouse CD117 (eBioscience), anti-mouse IL-9 (BE0181; BioXCell, USA), anti-mouse IgG2a isotype control (BE0085; BioXCell), anti-mouse IL-9 receptor (IL-9R) (SC699; Santa Cruz, USA), anti-mouse IL-2Rγ (SC668; Santa Cruz), anti-mouse IgG isotype control (GTX35009; Santa Cruz), and donkey pAb to Rb IgG Alexa Flour 555 (Ab150074; Abcam, USA).

Techniques: Reverse Transcription Polymerase Chain Reaction, Neutralization

In vitro , the effect of anti-IL-9 antibody on splenic mast cells. Splenocytes were harvested from experimental autoimmune encephalomyelitis mice 5 days after MOG immunization. After co-culture with anti-IL-9 antibody or anti-mouse IgG for 7 h, mast cell number was counted by flow cytometry. Splenic mast cells cultured with anti-IL-9 antibody showed significantly lower levels in a dose-dependent manner. This trend was particularly evident with anti-IL-9 antibody concentrations up to 20 μg/ml. * P < 0.05; † P < 0.01. IL: Interleukin; MOG: Myelin oligodendrocyte glycoprotein.

Journal: Chinese Medical Journal

Article Title: Neutralization of Interleukin-9 Decreasing Mast Cells Infiltration in Experimental Autoimmune Encephalomyelitis

doi: 10.4103/0366-6999.204110

Figure Lengend Snippet: In vitro , the effect of anti-IL-9 antibody on splenic mast cells. Splenocytes were harvested from experimental autoimmune encephalomyelitis mice 5 days after MOG immunization. After co-culture with anti-IL-9 antibody or anti-mouse IgG for 7 h, mast cell number was counted by flow cytometry. Splenic mast cells cultured with anti-IL-9 antibody showed significantly lower levels in a dose-dependent manner. This trend was particularly evident with anti-IL-9 antibody concentrations up to 20 μg/ml. * P < 0.05; † P < 0.01. IL: Interleukin; MOG: Myelin oligodendrocyte glycoprotein.

Article Snippet: The following antibodies were used in this study: FITC-anti-mouse CD45 (eBioscience, USA), PE-Cyanine5-anti-mouse CD117 (eBioscience), anti-mouse IL-9 (BE0181; BioXCell, USA), anti-mouse IgG2a isotype control (BE0085; BioXCell), anti-mouse IL-9 receptor (IL-9R) (SC699; Santa Cruz, USA), anti-mouse IL-2Rγ (SC668; Santa Cruz), anti-mouse IgG isotype control (GTX35009; Santa Cruz), and donkey pAb to Rb IgG Alexa Flour 555 (Ab150074; Abcam, USA).

Techniques: In Vitro, Co-Culture Assay, Flow Cytometry, Cell Culture

a Left, immunostaining of PD-L1 (green) and TOM20-labeled mitochondria (red) in BT549 human TNBC cells with or without ATAD3A-knockdown (shATAD3A#1 and shATAD3A#2). Scale bars, 20 μm and 2 μm (inset). Right, the percentage of PD-L1 co-localized with TOM20 ( n = 5 fields, t -test). b Immunoblot of PD-L1 in the cytoplasm and mitochondria of control and ATAD3A-knockdown BT549 cells. TOM20 and Tubulin were used as mitochondria and cytoplasm protein controls, respectively. Cyto, cytoplasm; mito, mitochondria. c Flow cytometry (left) and quantification (right) of surface PD-L1 in control and ATAD3A-knockdown BT549 cells ( n = 3, one-way ANOVA). d Venn diagram depicting overlapped genes for the interaction protein of ATAD3A set (BioGRID, RP5-832C2.1), the protein localization to mitochondrion set (GOBP 0070585) and the intrinsic component of mitochondrial membrane (GOCC 0098573). e Immunoblot of PINK1 in control and ATAD3A-knockdown BT549 cells. f Immunoblot of PD-L1 and PINK1 in HEK293T cells overexpressing PD-L1 (OE-PD-L1) and control cells (OE-Control), assessed after immunoprecipitation with immunoglobulin G (IgG) or antibody to PINK1. g Protein direct interaction analysis of the intracellular domain of PD-L1 (ICD) and PINK1 in vitro. Purified Flag-labeled full-length PINK1 was incubated with Biotin-labeled PD-L1 ICD domain, followed by streptavidin pull-down and immunoblot. h Schematic diagram of Flag-labeled full-length (FL) and truncated mutants with indicated domains (amino acids 1–155, amino acids 156–320, amino acids 321–509, amino acids 510–581) of PINK1. MTS, mitochondrial targeting sequence; N-lobe, kinase domain N; C-lobe, kinase domain C; CTD, C-terminal domain. i Protein direct interaction analysis of the intracellular domain of PD-L1 (ICD) and truncated PINK1 mutants in vitro. Purified Flag-labeled full-length and truncated PINK1 were incubated with Biotin-labeled PD-L1 ICD domain, followed by streptavidin pull-down and immunoblot. The estimated size of PINK1-4 (amino acids 510–581) which did not express in HEK293T cells was labeled with asterisk. j Immunoblot of PD-L1 in the cytoplasm and mitochondria of MDA-MB-231 cells with or without PINK1-knockdown (shPINK1#1 and shPINK1#2). TOM20 and Tubulin were used as mitochondria and cytoplasm protein controls. Cyto, cytoplasm; mito, mitochondria. k Left, co-localization of PD-L1 (green) and TOM20 (red) in control, ATAD3A knockdown, PINK1 knockdown or ATAD3A and PINK1 double knockdown BT549 cells. Scale bars, 20 μm and 2 μm (inset). Right, the percentage of PD-L1 co-localized with TOM20 ( n = 5 fields, one-way ANOVA). l Immunoblot of PD-L1 in the cytoplasm and mitochondria of control, ATAD3A-knockdown, PINK1-knockdown or ATAD3A and PINK1 double knockdown BT549 cells. m Immunoblot of indicated proteins in PD-L1-transfected HEK293T cells with or without PINK1 overexpression. n Immunoblot of PD-L1 in control and PINK1-knockdown (shPINK1#1 and shPINK1#2) BT549 cells. o Immunoblot of PD-L1 in BT549 cells transfected with control shRNA or shATAD3A (shATAD3A#1 and shATAD3A#2). p Immunoblot of total PD-L1 in control, ATAD3A-knockdown, PINK1-knockdown or ATAD3A and PINK1 double knockdown BT549 cells. q Immunoblot of PD-L1 in control and ATAD3A-knockdown BT549 cells treated with 20 μM CHX for indicated times. h, hours. r Quantification of PD-L1 intensity in immunoblot in control and ATAD3A-knockdown BT549 cells. s Immunoblot of PD-L1 in control and ATAD3A-knockdown MDA-MB-231 cells incubated with 20 nM BafA1 for indicated times. h, hours. Data are representative of at least two independent experiments and are shown as means ± SD. See also Supplementary information, Figs. and .

Journal: Cell Research

Article Title: Targeting ATAD3A-PINK1-mitophagy axis overcomes chemoimmunotherapy resistance by redirecting PD-L1 to mitochondria

doi: 10.1038/s41422-022-00766-z

Figure Lengend Snippet: a Left, immunostaining of PD-L1 (green) and TOM20-labeled mitochondria (red) in BT549 human TNBC cells with or without ATAD3A-knockdown (shATAD3A#1 and shATAD3A#2). Scale bars, 20 μm and 2 μm (inset). Right, the percentage of PD-L1 co-localized with TOM20 ( n = 5 fields, t -test). b Immunoblot of PD-L1 in the cytoplasm and mitochondria of control and ATAD3A-knockdown BT549 cells. TOM20 and Tubulin were used as mitochondria and cytoplasm protein controls, respectively. Cyto, cytoplasm; mito, mitochondria. c Flow cytometry (left) and quantification (right) of surface PD-L1 in control and ATAD3A-knockdown BT549 cells ( n = 3, one-way ANOVA). d Venn diagram depicting overlapped genes for the interaction protein of ATAD3A set (BioGRID, RP5-832C2.1), the protein localization to mitochondrion set (GOBP 0070585) and the intrinsic component of mitochondrial membrane (GOCC 0098573). e Immunoblot of PINK1 in control and ATAD3A-knockdown BT549 cells. f Immunoblot of PD-L1 and PINK1 in HEK293T cells overexpressing PD-L1 (OE-PD-L1) and control cells (OE-Control), assessed after immunoprecipitation with immunoglobulin G (IgG) or antibody to PINK1. g Protein direct interaction analysis of the intracellular domain of PD-L1 (ICD) and PINK1 in vitro. Purified Flag-labeled full-length PINK1 was incubated with Biotin-labeled PD-L1 ICD domain, followed by streptavidin pull-down and immunoblot. h Schematic diagram of Flag-labeled full-length (FL) and truncated mutants with indicated domains (amino acids 1–155, amino acids 156–320, amino acids 321–509, amino acids 510–581) of PINK1. MTS, mitochondrial targeting sequence; N-lobe, kinase domain N; C-lobe, kinase domain C; CTD, C-terminal domain. i Protein direct interaction analysis of the intracellular domain of PD-L1 (ICD) and truncated PINK1 mutants in vitro. Purified Flag-labeled full-length and truncated PINK1 were incubated with Biotin-labeled PD-L1 ICD domain, followed by streptavidin pull-down and immunoblot. The estimated size of PINK1-4 (amino acids 510–581) which did not express in HEK293T cells was labeled with asterisk. j Immunoblot of PD-L1 in the cytoplasm and mitochondria of MDA-MB-231 cells with or without PINK1-knockdown (shPINK1#1 and shPINK1#2). TOM20 and Tubulin were used as mitochondria and cytoplasm protein controls. Cyto, cytoplasm; mito, mitochondria. k Left, co-localization of PD-L1 (green) and TOM20 (red) in control, ATAD3A knockdown, PINK1 knockdown or ATAD3A and PINK1 double knockdown BT549 cells. Scale bars, 20 μm and 2 μm (inset). Right, the percentage of PD-L1 co-localized with TOM20 ( n = 5 fields, one-way ANOVA). l Immunoblot of PD-L1 in the cytoplasm and mitochondria of control, ATAD3A-knockdown, PINK1-knockdown or ATAD3A and PINK1 double knockdown BT549 cells. m Immunoblot of indicated proteins in PD-L1-transfected HEK293T cells with or without PINK1 overexpression. n Immunoblot of PD-L1 in control and PINK1-knockdown (shPINK1#1 and shPINK1#2) BT549 cells. o Immunoblot of PD-L1 in BT549 cells transfected with control shRNA or shATAD3A (shATAD3A#1 and shATAD3A#2). p Immunoblot of total PD-L1 in control, ATAD3A-knockdown, PINK1-knockdown or ATAD3A and PINK1 double knockdown BT549 cells. q Immunoblot of PD-L1 in control and ATAD3A-knockdown BT549 cells treated with 20 μM CHX for indicated times. h, hours. r Quantification of PD-L1 intensity in immunoblot in control and ATAD3A-knockdown BT549 cells. s Immunoblot of PD-L1 in control and ATAD3A-knockdown MDA-MB-231 cells incubated with 20 nM BafA1 for indicated times. h, hours. Data are representative of at least two independent experiments and are shown as means ± SD. See also Supplementary information, Figs. and .

Article Snippet: Mouse IgG2b (APC, clone MPC-11, BioLegend) and rat IgG2b (APC, clone RTK4530, BioLegend) were used as controls respectively.

Techniques: Immunostaining, Labeling, Knockdown, Western Blot, Control, Flow Cytometry, Membrane, Immunoprecipitation, In Vitro, Purification, Incubation, Sequencing, Transfection, Over Expression, shRNA

a – h BALB/c mice were inoculated orthotopically with 5 × 10 4 4T1 cells transfected with control shRNA (shControl) or shRNA for Atad3a (shAtad3a#1 and shAtad3a#2). a , b The endpoint tumor images ( a ) and volume ( b ) of tumors formed by control and Atad3a-knockdown cells in BALB/c mice ( n = 6, one-way ANOVA). c Left, IHC staining of Atad3a and PD-L1 on serial sections of tumors formed by control and Atad3a-knockdown cells. Scale bars, 50 μm. Right, IHC score of Atad3a in control and Atad3a-knockdown tumors ( n = 6 fields, t -test). d IHC score of PD-L1 in control and Atad3a-knockdown tumors ( n = 6 fields, t -test). e Quantification of the percentage of tumor-infiltrating CD8 + T cells in tumors formed by control and Atad3a-knockdown cells by flow cytometry ( n = 5, t -test). f Quantification of the percentages of tumor-infiltrating IFNγ + CD8 + T cells and IFNγ + CD4 + T cells by flow cytometry ( n = 5, t -test). g Ratio of CD8 + cytotoxic T lymphocytes to CD4 + CD25 + Foxp3 + T reg cells ( n = 5, t -test). h Quantification of the percentages of PD-1 + TIM-3 + CD8 + T cells (left) and PD-1 + TIM-3 + CD4 + T cells (right) by flow cytometry ( n = 5, t -test). i – m BALB/c mice were inoculated orthotopically with 5 × 10 4 4T1 cells transfected with control shRNA (shControl) or shRNA specific for Atad3a (shAtad3a), Pink1 (shPink1) or both (shAtad3a + shPink1). i , Left, the endpoint images of tumors formed by control, Atad3a-knockdown, Pink1-knockdown or Atad3a and Pink1 double knockdown 4T1 cells in BALB/c mice. Right, immunoblot of Atad3a and Pink1 in these 4T1 cells. j The volume of tumors mentioned above ( n = 6, one-way ANOVA). k Quantification of the percentage of tumor-infiltrating CD8 + T cells by flow cytometry ( n = 5, one-way ANOVA). l Quantification of the percentage of tumor-infiltrating IFNγ + CD8 + T cells by flow cytometry ( n = 5, one-way ANOVA). m Quantification of the percentage of PD-1 + TIM-3 + CD8 + T cells by flow cytometry ( n = 5, one-way ANOVA). n – s 4T1 tumors formed by control and Atad3a-knockdown cells were established orthotopically in BALB/c mice and received vehicle, anti-PD-L1 antibody (PD-L1 mAb), paclitaxel (PTX) or combined anti-PD-L1 antibody with paclitaxel treatment (PD-L1 mAb + PTX). IgG2b and saline were used as controls. n Experimental protocol. o , p The endpoint tumor images ( o ) and the volume ( p ) of tumors ( n = 6, one-way ANOVA). q – s Quantification of the percentages of tumor-infiltrating CD8 + T cells ( q ), IFNγ + CD8 + T cells ( r ) and PD-1 + TIM-3 + CD8 + T cells ( s ) in 4T1 tumors formed by control and Atad3a-knockdown cells received treatments as described above, determined by flow cytometry ( n = 5, one-way ANOVA). t Schematic model. Patients with PD-L1-positive TNBC could be divided into two groups based on ATAD3A expression. Patients with ATAD3A-high tumors might respond more poorly to ICIs plus paclitaxel therapy, and inhibition of ATAD3A is required to improve clinical outcome. Patients with ATAD3A-low tumors might benefit significantly from ICIs plus paclitaxel combination therapy. See also Supplementary information, Figs. – .

Journal: Cell Research

Article Title: Targeting ATAD3A-PINK1-mitophagy axis overcomes chemoimmunotherapy resistance by redirecting PD-L1 to mitochondria

doi: 10.1038/s41422-022-00766-z

Figure Lengend Snippet: a – h BALB/c mice were inoculated orthotopically with 5 × 10 4 4T1 cells transfected with control shRNA (shControl) or shRNA for Atad3a (shAtad3a#1 and shAtad3a#2). a , b The endpoint tumor images ( a ) and volume ( b ) of tumors formed by control and Atad3a-knockdown cells in BALB/c mice ( n = 6, one-way ANOVA). c Left, IHC staining of Atad3a and PD-L1 on serial sections of tumors formed by control and Atad3a-knockdown cells. Scale bars, 50 μm. Right, IHC score of Atad3a in control and Atad3a-knockdown tumors ( n = 6 fields, t -test). d IHC score of PD-L1 in control and Atad3a-knockdown tumors ( n = 6 fields, t -test). e Quantification of the percentage of tumor-infiltrating CD8 + T cells in tumors formed by control and Atad3a-knockdown cells by flow cytometry ( n = 5, t -test). f Quantification of the percentages of tumor-infiltrating IFNγ + CD8 + T cells and IFNγ + CD4 + T cells by flow cytometry ( n = 5, t -test). g Ratio of CD8 + cytotoxic T lymphocytes to CD4 + CD25 + Foxp3 + T reg cells ( n = 5, t -test). h Quantification of the percentages of PD-1 + TIM-3 + CD8 + T cells (left) and PD-1 + TIM-3 + CD4 + T cells (right) by flow cytometry ( n = 5, t -test). i – m BALB/c mice were inoculated orthotopically with 5 × 10 4 4T1 cells transfected with control shRNA (shControl) or shRNA specific for Atad3a (shAtad3a), Pink1 (shPink1) or both (shAtad3a + shPink1). i , Left, the endpoint images of tumors formed by control, Atad3a-knockdown, Pink1-knockdown or Atad3a and Pink1 double knockdown 4T1 cells in BALB/c mice. Right, immunoblot of Atad3a and Pink1 in these 4T1 cells. j The volume of tumors mentioned above ( n = 6, one-way ANOVA). k Quantification of the percentage of tumor-infiltrating CD8 + T cells by flow cytometry ( n = 5, one-way ANOVA). l Quantification of the percentage of tumor-infiltrating IFNγ + CD8 + T cells by flow cytometry ( n = 5, one-way ANOVA). m Quantification of the percentage of PD-1 + TIM-3 + CD8 + T cells by flow cytometry ( n = 5, one-way ANOVA). n – s 4T1 tumors formed by control and Atad3a-knockdown cells were established orthotopically in BALB/c mice and received vehicle, anti-PD-L1 antibody (PD-L1 mAb), paclitaxel (PTX) or combined anti-PD-L1 antibody with paclitaxel treatment (PD-L1 mAb + PTX). IgG2b and saline were used as controls. n Experimental protocol. o , p The endpoint tumor images ( o ) and the volume ( p ) of tumors ( n = 6, one-way ANOVA). q – s Quantification of the percentages of tumor-infiltrating CD8 + T cells ( q ), IFNγ + CD8 + T cells ( r ) and PD-1 + TIM-3 + CD8 + T cells ( s ) in 4T1 tumors formed by control and Atad3a-knockdown cells received treatments as described above, determined by flow cytometry ( n = 5, one-way ANOVA). t Schematic model. Patients with PD-L1-positive TNBC could be divided into two groups based on ATAD3A expression. Patients with ATAD3A-high tumors might respond more poorly to ICIs plus paclitaxel therapy, and inhibition of ATAD3A is required to improve clinical outcome. Patients with ATAD3A-low tumors might benefit significantly from ICIs plus paclitaxel combination therapy. See also Supplementary information, Figs. – .

Article Snippet: Mouse IgG2b (APC, clone MPC-11, BioLegend) and rat IgG2b (APC, clone RTK4530, BioLegend) were used as controls respectively.

Techniques: Transfection, Control, shRNA, Knockdown, Immunohistochemistry, Flow Cytometry, Western Blot, Saline, Expressing, Inhibition

(a) Representative whole-mount images of E13.5 ovaries from C57BL/6J embryos exposed at E6.5 to either control rat IgG2a antibody or anti-CSF1R blocking antibody to deplete YS-derived macrophages. For F4/80, PECAM1, and FOXL2 staining, n =5 control and n =6 anti-CSF1R-treated independent gonads; for CD11b and CD45 staining, n =3 control and n =3 anti-CSF1R-treated independent gonads. Insets show higher-magnification views of boxed regions; dashed lines mark the gonad-mesonephros boundary. (b) qRT-PCR analysis of macrophage-associated genes ( Adgre1, Cx3cr1, Csf1r, Mrc1 ) and endothelial marker Cdh5 , showing fold change in gene expression in E13.5 anti-CSF1R-treated ovaries versus controls. (c) Representative E14.5 sections stained for SYCP3 and TRA98 showing increased meiotic germ cells in anti-CSF1R-treated ovaries ( n =4) compared with control ovaries ( n =4). (d) qRT-PCR analysis of germ cell and meiotic genes ( Kit, Pou5f1, Ddx4, Stra8, Sycp1, Sycp3, Syce1, Smc1b ), showing fold change in gene expression in E14.5 anti-CSF1R-treated ovaries versus controls. (e) Representative E18.5 sections stained for F4/80 and CD45, and for SYCP3 and FOXL2, showing recovery of F4/80⁺ macrophages and advanced meiotic progression in anti-CSF1R-treated ovaries compared with control ovaries. For F4/80 and CD45 staining, n =4 control and n =4 anti-CSF1R-treated independent gonads; for SYCP3 and FOXL2 staining, n =3 control and n =3 anti-CSF1R-treated independent gonads. Arrows indicate SYCP3⁺ dictyate-stage oocytes. (f) Percentage of SYCP3⁺ germ cells at the dictyate stage among total SYCP3⁺ cells at E18.5. Data are shown as mean +/− SD. * P <0.05, ** P <0.01, *** P <0.001 (two-tailed Student’s t -tests). Scale bars, 100 μm (overview) and 50 μm (higher magnification/insets).

Journal: bioRxiv

Article Title: Macrophages regulate meiotic initiation and germ cell clearance in the developing ovary

doi: 10.64898/2026.02.28.708733

Figure Lengend Snippet: (a) Representative whole-mount images of E13.5 ovaries from C57BL/6J embryos exposed at E6.5 to either control rat IgG2a antibody or anti-CSF1R blocking antibody to deplete YS-derived macrophages. For F4/80, PECAM1, and FOXL2 staining, n =5 control and n =6 anti-CSF1R-treated independent gonads; for CD11b and CD45 staining, n =3 control and n =3 anti-CSF1R-treated independent gonads. Insets show higher-magnification views of boxed regions; dashed lines mark the gonad-mesonephros boundary. (b) qRT-PCR analysis of macrophage-associated genes ( Adgre1, Cx3cr1, Csf1r, Mrc1 ) and endothelial marker Cdh5 , showing fold change in gene expression in E13.5 anti-CSF1R-treated ovaries versus controls. (c) Representative E14.5 sections stained for SYCP3 and TRA98 showing increased meiotic germ cells in anti-CSF1R-treated ovaries ( n =4) compared with control ovaries ( n =4). (d) qRT-PCR analysis of germ cell and meiotic genes ( Kit, Pou5f1, Ddx4, Stra8, Sycp1, Sycp3, Syce1, Smc1b ), showing fold change in gene expression in E14.5 anti-CSF1R-treated ovaries versus controls. (e) Representative E18.5 sections stained for F4/80 and CD45, and for SYCP3 and FOXL2, showing recovery of F4/80⁺ macrophages and advanced meiotic progression in anti-CSF1R-treated ovaries compared with control ovaries. For F4/80 and CD45 staining, n =4 control and n =4 anti-CSF1R-treated independent gonads; for SYCP3 and FOXL2 staining, n =3 control and n =3 anti-CSF1R-treated independent gonads. Arrows indicate SYCP3⁺ dictyate-stage oocytes. (f) Percentage of SYCP3⁺ germ cells at the dictyate stage among total SYCP3⁺ cells at E18.5. Data are shown as mean +/− SD. * P <0.05, ** P <0.01, *** P <0.001 (two-tailed Student’s t -tests). Scale bars, 100 μm (overview) and 50 μm (higher magnification/insets).

Article Snippet: To transiently deplete yolk-sac-derived and fetal CSF1R + macrophages, pregnant C57BL/6J females were injected intraperitoneally with 3 mg anti-CSF1R monoclonal antibody (mAb; clone AFS98, Bio X Cell #BP0213) or rat IgG2a isotype control (Bio X Cell #BP0089).

Techniques: Control, Blocking Assay, Derivative Assay, Staining, Quantitative RT-PCR, Marker, Gene Expression, Two Tailed Test

(a) Representative images of E18.5, P3, and P10 ovaries from C57BL/6J embryos exposed at E6.5 and E14.5 to either control rat IgG2a antibody or anti-CSF1R blocking antibody to deplete fetal ovarian macrophages. For E18.5, n =4 control and n =4 anti-CSF1R-treated independent gonads; for P3, n =6 control and n =6 anti-CSF1R-treated independent gonads; for P10, n =4 control and n =4 anti-CSF1R-treated independent gonads. Insets show higher-magnification views of boxed regions; red and green dashed outlines demarcate the ovary. (b) Representative sections stained for DDX4, showing developmental germ cell attrition at E18.5, P3, and P10 in control and anti-CSF1R-treated ovaries. For each time point, n =4 control and n =4 anti-CSF1R-treated independent gonads. (c) Quantification of CD45⁺IBA1 + macrophages per 0.1 mm² ovarian area at E18.5, P3, and P10. (d) Quantification of CD45⁺IBA1 − monocyte-like cells per 0.1 mm² ovarian area at the indicated stages. (e) Quantification of DDX4⁺ germ cell number per 0.1 mm² ovarian area at E18.5, P3, and P10, showing reduced physiological germ cell loss after macrophage depletion. Data are shown as mean +/− SD. * P <0.05, ** P <0.01, *** P <0.001 (two-tailed Student’s t -tests). Scale bars, 100 μm (overview) and 50 μm (higher magnification/insets).

Journal: bioRxiv

Article Title: Macrophages regulate meiotic initiation and germ cell clearance in the developing ovary

doi: 10.64898/2026.02.28.708733

Figure Lengend Snippet: (a) Representative images of E18.5, P3, and P10 ovaries from C57BL/6J embryos exposed at E6.5 and E14.5 to either control rat IgG2a antibody or anti-CSF1R blocking antibody to deplete fetal ovarian macrophages. For E18.5, n =4 control and n =4 anti-CSF1R-treated independent gonads; for P3, n =6 control and n =6 anti-CSF1R-treated independent gonads; for P10, n =4 control and n =4 anti-CSF1R-treated independent gonads. Insets show higher-magnification views of boxed regions; red and green dashed outlines demarcate the ovary. (b) Representative sections stained for DDX4, showing developmental germ cell attrition at E18.5, P3, and P10 in control and anti-CSF1R-treated ovaries. For each time point, n =4 control and n =4 anti-CSF1R-treated independent gonads. (c) Quantification of CD45⁺IBA1 + macrophages per 0.1 mm² ovarian area at E18.5, P3, and P10. (d) Quantification of CD45⁺IBA1 − monocyte-like cells per 0.1 mm² ovarian area at the indicated stages. (e) Quantification of DDX4⁺ germ cell number per 0.1 mm² ovarian area at E18.5, P3, and P10, showing reduced physiological germ cell loss after macrophage depletion. Data are shown as mean +/− SD. * P <0.05, ** P <0.01, *** P <0.001 (two-tailed Student’s t -tests). Scale bars, 100 μm (overview) and 50 μm (higher magnification/insets).

Article Snippet: To transiently deplete yolk-sac-derived and fetal CSF1R + macrophages, pregnant C57BL/6J females were injected intraperitoneally with 3 mg anti-CSF1R monoclonal antibody (mAb; clone AFS98, Bio X Cell #BP0213) or rat IgG2a isotype control (Bio X Cell #BP0089).

Techniques: Control, Blocking Assay, Staining, Two Tailed Test

Mice were treated with the anti-CD20 mAb 5D2 beginning 2 days prior to a low-dose (100 CFU) aerogenic challenge with M . tuberculosis Erdman, as described in

Journal: PLOS Pathogens

Article Title: B cells promote granulomatous inflammation during chronic Mycobacterium tuberculosis infection in mice

doi: 10.1371/journal.ppat.1011187

Figure Lengend Snippet: Mice were treated with the anti-CD20 mAb 5D2 beginning 2 days prior to a low-dose (100 CFU) aerogenic challenge with M . tuberculosis Erdman, as described in "Materials and Methods". B cell depletion was maintained throughout the duration of the experiment. The control mouse group (WT) received non-specific rat IgG. The lung tissues were examined at 5 months post-infection. The levels of granulomatous inflammation response were analyzed histologically by light microscopy on H&E-stained lung sections (A) and enumeration of total number of lung cells (B). The level of lung CD4 + T cell response was assessed by in vivo BrdU labeling to examine the proliferation capacity of this T cell subset (C), as well as by enumeration of IFN-γ-producing CD4 + T cells (D). Ex vivo evaluation of lung cells for the level of IL-10 production (E) was conducted as described in . Four to 5 mice per group were evaluated per group. Data depicted in B, C, D, and E are presented as means ± SEM. The data shown are representative of two experiments. The results demonstrated that the inflammation, Th1 response, and IL-10 phenotypes observed in the μMT mice are recapitulated in mice depleted for B cells.

Article Snippet: At day 90 post infection, 1 mg of anti-mouse IL-10 receptor (IL-10R; clone 1B1.3A; BioXcell) or isotype control Rat IgG1 antibody (BioXcell) was administered intraperitoneally (i.p.) per mouse.

Techniques: Control, Infection, Light Microscopy, Staining, In Vivo, Labeling, Ex Vivo

C57BL/6 mice were depleted for B cells via administration of 5D2 beginning 2 days prior to infection with a low dose (100 CFU) of M . tuberculosis Erdman delivered by aerosol. B cell depletion was maintained for the duration of the experiment. At 3 months after the infection, IL-10R blockade was initiated using the anti-mouse IL-10R antibody clone 1B1.3A. The control group received non-specific rat IgG. The IL-10R blockade was continued for two months. At five months post-infection (2 months after initiation of IL-10R blockade), mice were sacrificed and analyzed for the levels of inflammation in the lungs, as assessed by histological examination (A) and enumeration of total lung cells (B), CD4 + T cells proliferation via BrdU labeling (C), and Th1 response (D). Data shown are representation of two experiments. Three to four mice were analyzed per group. Data depicted in (B), (C), and (D) denote mean ± SEM.

Journal: PLOS Pathogens

Article Title: B cells promote granulomatous inflammation during chronic Mycobacterium tuberculosis infection in mice

doi: 10.1371/journal.ppat.1011187

Figure Lengend Snippet: C57BL/6 mice were depleted for B cells via administration of 5D2 beginning 2 days prior to infection with a low dose (100 CFU) of M . tuberculosis Erdman delivered by aerosol. B cell depletion was maintained for the duration of the experiment. At 3 months after the infection, IL-10R blockade was initiated using the anti-mouse IL-10R antibody clone 1B1.3A. The control group received non-specific rat IgG. The IL-10R blockade was continued for two months. At five months post-infection (2 months after initiation of IL-10R blockade), mice were sacrificed and analyzed for the levels of inflammation in the lungs, as assessed by histological examination (A) and enumeration of total lung cells (B), CD4 + T cells proliferation via BrdU labeling (C), and Th1 response (D). Data shown are representation of two experiments. Three to four mice were analyzed per group. Data depicted in (B), (C), and (D) denote mean ± SEM.

Article Snippet: At day 90 post infection, 1 mg of anti-mouse IL-10 receptor (IL-10R; clone 1B1.3A; BioXcell) or isotype control Rat IgG1 antibody (BioXcell) was administered intraperitoneally (i.p.) per mouse.

Techniques: Infection, Aerosol, Control, Labeling