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igf2  (R&D Systems)


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    Structured Review

    R&D Systems igf2
    Igf2, supplied by R&D Systems, used in various techniques. Bioz Stars score: 93/100, based on 66 PubMed citations. ZERO BIAS - scores, article reviews, protocol conditions and more
    https://www.bioz.com/product/human+igf+ii/Recombinant+Human+IGF-II%2FIGF2+Protein%2C+CF/us12606639-1424-14-15
    Average 93 stars, based on 66 article reviews
    igf2 - by Bioz Stars, 2026-09
    93/100 stars

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    Related Articles

    Recombinant:

    Article Title: Insulin-Like Growth Factor II Is Involved in the Proliferation Control of Medulloblastoma and Its Cerebellar Precursor Cells
    Article Snippet: .. Treatments were performed with 0.625 μg/ml of recombinant human Shh-N (R&D Systems, Wiesbaden, Germany) and/or 200 ng/ml of recombinant human IGF-II (R&D Systems). .. The murine monoclonal IGF-I receptor antibody α-IR-3 (Calbiochem, Schwalbad, Germany) and the murine monoclonal insulin receptor antibody AB-3 (Neomarkers, Fremont, CA) were used in a final concentration of 1 μg/ml.

    Article Title: Insulin-like growth factor II activates phosphatidylinositol 3-kinase-protooncogenic protein kinase 1 and mitogen-activated protein kinase cell Signaling pathways, and stimulates migration of ovine trophectoderm cells.
    Article Snippet: .. Cells were serum and insulin starved for 24 h, and then treated with recombinant human IGF-II (50 ng/ml; R&D Systems, Inc., Minneapolis, MN) for 0, 15, 30, 60, and 90 The Endocrine Society. ..

    Article Title: Insulin-Like Growth Factor-II Is Increased in Systemic Sclerosis-Associated Pulmonary Fibrosis and Contributes to the Fibrotic Process via Jun N-Terminal Kinase- and Phosphatidylinositol-3 Kinase-Dependent Pathways
    Article Snippet: .. Fibroblasts were stimulated with recombinant human IGF-II (R&D Systems, Minneapolis, MN). .. Kinase inhibitors LY294002 (Cell Signaling Technology, Danvers, MA), U0126 (Cell Signaling Technology), and Jnk II inhibitor (Calbiochem, San Diego, CA) were added to media of cells 1 hour before IGF-II stimulation.

    Article Title: Targeting of Bone-Derived Insulin-Like Growth Factor-II by a Human Neutralizing Antibody Suppresses the Growth of Prostate Cancer Cells in a Human Bone Environment
    Article Snippet: .. After changing the medium to serum-free F12K medium (Invitrogen), the cells were treated for 48 h with serum-free medium alone, with recombinant human IGF-II (1, 10, or 100 ng/mL; R&D Systems), with the control antibody (10 μg/mL) plus www.aacrjournals.org Researc on Marchclincancerres.aacrjournals.org Downloaded from IGF-II (100 ng/mL), with m610 (0.1, 1, or 10 μg/mL) plus IGF-II (100 ng/mL), or with m610 (10 μg/mL) in the absence of IGF-II. .. The cells were dislodged by trypsinization and the number of viable cells was counted using the trypan blue (Invitrogen) exclusion assay.

    Control:

    Article Title: Targeting of Bone-Derived Insulin-Like Growth Factor-II by a Human Neutralizing Antibody Suppresses the Growth of Prostate Cancer Cells in a Human Bone Environment
    Article Snippet: .. After changing the medium to serum-free F12K medium (Invitrogen), the cells were treated for 48 h with serum-free medium alone, with recombinant human IGF-II (1, 10, or 100 ng/mL; R&D Systems), with the control antibody (10 μg/mL) plus www.aacrjournals.org Researc on Marchclincancerres.aacrjournals.org Downloaded from IGF-II (100 ng/mL), with m610 (0.1, 1, or 10 μg/mL) plus IGF-II (100 ng/mL), or with m610 (10 μg/mL) in the absence of IGF-II. .. The cells were dislodged by trypsinization and the number of viable cells was counted using the trypan blue (Invitrogen) exclusion assay.

    Centrifugation:

    Article Title: Rapid and efficient in vitro generation of pancreatic islet progenitor cells from nonendocrine epithelial cells in the adult human pancreas.
    Article Snippet: The absence of efficient and directed methods for the differentiation of adult pancreatic progenitor cell populations to pancreatic islet cells has raised doubts concerning the regeneration potential inherent in the adult pancreas.. Relatively low levels of islet cell differentiation have been reported using adult pancreatic cells in vivo and in vitro.. In the present study, we initially enriched for a nonendocrine epithelial component of the adult human pancreas and defined conditions that are permissive to islet cell differentiation in vitro.

    Activity Assay:

    Article Title: Ligand-Specific Antibodies to Insulin-Like Growth Factors Suppress Intestinal Polyp Formation in Apc+/− Mice
    Article Snippet: .. To measure the neutralizing activity of KM3168, HT-29 cells were starved in serum-free medium (DMEM/F12, phenol red free; Invitrogen) supplemented with 10 μg/mL human transferrin (Life Technologies Laboratories) and 200 μg/mL bovine serum albumin fraction V (Invitrogen) for 24 h. Cells were harvested; 5 × 103 cells were seeded in a 96- well tissue culture plate; and various concentrations of mouse IGF-I (40 ng/mL), mouse IGF-II (40 ng/mL), human IGF-I (10 ng/mL), human IGF-II (10 ng/mL; R&D Systems), or insulin (40 ng/mL; Wako) were added with various concentrations of KM3168 (up to 10 μg/mL). .. After 5 d of incubation, viable cells were detected by addition of the proliferation reagent WST-1 (Roche), and the cells were incubated at 37°C for a further 1 to 3 h. After incubation, the plates were shaken thoroughly and the color was quantified by measuring the absorption at 450 nm on an Emax microplate reader (Molecular Devices).



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    Igf2, supplied by R&D Systems, used in various techniques. Bioz Stars score: 93/100, based on 1 PubMed citations. ZERO BIAS - scores, article reviews, protocol conditions and more
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    PTN regulates endometrial stromal cell decidualization through <t>the</t> <t>IGF-2</t> signaling axis. (A) PPI network of PTN, IGF-2, IGFBP1, LIF, PRL, and other decidualization-related genes. (B) The expression levels of PTN and its interacting partners (IGF-2, WNT4, PRL, IGFBP1, and LIF) in the RIF (left) and RPL (right) datasets. (C) Expressions of decidualization-related genes (including IGFBP1 , LIF , PRL , and WNT4 ) in NC or si PTN hESCs after treatment with control vehicle, cAMP, and IGF-2 via RT-qPCR (n = 9). (D) Immunoblotting for PTN, IGFBP1, and PRL expression levels with control vehicle, cAMP, and IGF-2. (E) ELISA for IGF-2 levels with control vehicle, cAMP, and IGF-2. (F) Schematic diagram of the experiments performed using the different treatments of hESCs. Data are presented as mean ± SEM and analyzed using t-test or one-way ANOVA test. * compared with NC treated with control vehicle, # compared with si PTN treated with control vehicle, $ compared with si PTN treated with control cAMP (NS, no significant difference; *p < 0.05, **p < 0.01, ***p < 0.001, ****p < 0.0001, ####p < 0.0001, $p < 0.05, $$p < 0.01, $$$p < 0.001, $$$$p< 0.0001). PPI, protein–protein interaction; RIF, recurrent implantation failure; RPL, recurrent pregnancy loss; hESCs, human endometrial stromal cells; cAMP, cyclic adenosine monophosphate.
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    PTN regulates endometrial stromal cell decidualization through <t>the</t> <t>IGF-2</t> signaling axis. (A) PPI network of PTN, IGF-2, IGFBP1, LIF, PRL, and other decidualization-related genes. (B) The expression levels of PTN and its interacting partners (IGF-2, WNT4, PRL, IGFBP1, and LIF) in the RIF (left) and RPL (right) datasets. (C) Expressions of decidualization-related genes (including IGFBP1 , LIF , PRL , and WNT4 ) in NC or si PTN hESCs after treatment with control vehicle, cAMP, and IGF-2 via RT-qPCR (n = 9). (D) Immunoblotting for PTN, IGFBP1, and PRL expression levels with control vehicle, cAMP, and IGF-2. (E) ELISA for IGF-2 levels with control vehicle, cAMP, and IGF-2. (F) Schematic diagram of the experiments performed using the different treatments of hESCs. Data are presented as mean ± SEM and analyzed using t-test or one-way ANOVA test. * compared with NC treated with control vehicle, # compared with si PTN treated with control vehicle, $ compared with si PTN treated with control cAMP (NS, no significant difference; *p < 0.05, **p < 0.01, ***p < 0.001, ****p < 0.0001, ####p < 0.0001, $p < 0.05, $$p < 0.01, $$$p < 0.001, $$$$p< 0.0001). PPI, protein–protein interaction; RIF, recurrent implantation failure; RPL, recurrent pregnancy loss; hESCs, human endometrial stromal cells; cAMP, cyclic adenosine monophosphate.
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    PTN regulates endometrial stromal cell decidualization through <t>the</t> <t>IGF-2</t> signaling axis. (A) PPI network of PTN, IGF-2, IGFBP1, LIF, PRL, and other decidualization-related genes. (B) The expression levels of PTN and its interacting partners (IGF-2, WNT4, PRL, IGFBP1, and LIF) in the RIF (left) and RPL (right) datasets. (C) Expressions of decidualization-related genes (including IGFBP1 , LIF , PRL , and WNT4 ) in NC or si PTN hESCs after treatment with control vehicle, cAMP, and IGF-2 via RT-qPCR (n = 9). (D) Immunoblotting for PTN, IGFBP1, and PRL expression levels with control vehicle, cAMP, and IGF-2. (E) ELISA for IGF-2 levels with control vehicle, cAMP, and IGF-2. (F) Schematic diagram of the experiments performed using the different treatments of hESCs. Data are presented as mean ± SEM and analyzed using t-test or one-way ANOVA test. * compared with NC treated with control vehicle, # compared with si PTN treated with control vehicle, $ compared with si PTN treated with control cAMP (NS, no significant difference; *p < 0.05, **p < 0.01, ***p < 0.001, ****p < 0.0001, ####p < 0.0001, $p < 0.05, $$p < 0.01, $$$p < 0.001, $$$$p< 0.0001). PPI, protein–protein interaction; RIF, recurrent implantation failure; RPL, recurrent pregnancy loss; hESCs, human endometrial stromal cells; cAMP, cyclic adenosine monophosphate.
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    PTN regulates endometrial stromal cell decidualization through <t>the</t> <t>IGF-2</t> signaling axis. (A) PPI network of PTN, IGF-2, IGFBP1, LIF, PRL, and other decidualization-related genes. (B) The expression levels of PTN and its interacting partners (IGF-2, WNT4, PRL, IGFBP1, and LIF) in the RIF (left) and RPL (right) datasets. (C) Expressions of decidualization-related genes (including IGFBP1 , LIF , PRL , and WNT4 ) in NC or si PTN hESCs after treatment with control vehicle, cAMP, and IGF-2 via RT-qPCR (n = 9). (D) Immunoblotting for PTN, IGFBP1, and PRL expression levels with control vehicle, cAMP, and IGF-2. (E) ELISA for IGF-2 levels with control vehicle, cAMP, and IGF-2. (F) Schematic diagram of the experiments performed using the different treatments of hESCs. Data are presented as mean ± SEM and analyzed using t-test or one-way ANOVA test. * compared with NC treated with control vehicle, # compared with si PTN treated with control vehicle, $ compared with si PTN treated with control cAMP (NS, no significant difference; *p < 0.05, **p < 0.01, ***p < 0.001, ****p < 0.0001, ####p < 0.0001, $p < 0.05, $$p < 0.01, $$$p < 0.001, $$$$p< 0.0001). PPI, protein–protein interaction; RIF, recurrent implantation failure; RPL, recurrent pregnancy loss; hESCs, human endometrial stromal cells; cAMP, cyclic adenosine monophosphate.
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    PTN regulates endometrial stromal cell decidualization through <t>the</t> <t>IGF-2</t> signaling axis. (A) PPI network of PTN, IGF-2, IGFBP1, LIF, PRL, and other decidualization-related genes. (B) The expression levels of PTN and its interacting partners (IGF-2, WNT4, PRL, IGFBP1, and LIF) in the RIF (left) and RPL (right) datasets. (C) Expressions of decidualization-related genes (including IGFBP1 , LIF , PRL , and WNT4 ) in NC or si PTN hESCs after treatment with control vehicle, cAMP, and IGF-2 via RT-qPCR (n = 9). (D) Immunoblotting for PTN, IGFBP1, and PRL expression levels with control vehicle, cAMP, and IGF-2. (E) ELISA for IGF-2 levels with control vehicle, cAMP, and IGF-2. (F) Schematic diagram of the experiments performed using the different treatments of hESCs. Data are presented as mean ± SEM and analyzed using t-test or one-way ANOVA test. * compared with NC treated with control vehicle, # compared with si PTN treated with control vehicle, $ compared with si PTN treated with control cAMP (NS, no significant difference; *p < 0.05, **p < 0.01, ***p < 0.001, ****p < 0.0001, ####p < 0.0001, $p < 0.05, $$p < 0.01, $$$p < 0.001, $$$$p< 0.0001). PPI, protein–protein interaction; RIF, recurrent implantation failure; RPL, recurrent pregnancy loss; hESCs, human endometrial stromal cells; cAMP, cyclic adenosine monophosphate.
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    PTN regulates endometrial stromal cell decidualization through <t>the</t> <t>IGF-2</t> signaling axis. (A) PPI network of PTN, IGF-2, IGFBP1, LIF, PRL, and other decidualization-related genes. (B) The expression levels of PTN and its interacting partners (IGF-2, WNT4, PRL, IGFBP1, and LIF) in the RIF (left) and RPL (right) datasets. (C) Expressions of decidualization-related genes (including IGFBP1 , LIF , PRL , and WNT4 ) in NC or si PTN hESCs after treatment with control vehicle, cAMP, and IGF-2 via RT-qPCR (n = 9). (D) Immunoblotting for PTN, IGFBP1, and PRL expression levels with control vehicle, cAMP, and IGF-2. (E) ELISA for IGF-2 levels with control vehicle, cAMP, and IGF-2. (F) Schematic diagram of the experiments performed using the different treatments of hESCs. Data are presented as mean ± SEM and analyzed using t-test or one-way ANOVA test. * compared with NC treated with control vehicle, # compared with si PTN treated with control vehicle, $ compared with si PTN treated with control cAMP (NS, no significant difference; *p < 0.05, **p < 0.01, ***p < 0.001, ****p < 0.0001, ####p < 0.0001, $p < 0.05, $$p < 0.01, $$$p < 0.001, $$$$p< 0.0001). PPI, protein–protein interaction; RIF, recurrent implantation failure; RPL, recurrent pregnancy loss; hESCs, human endometrial stromal cells; cAMP, cyclic adenosine monophosphate.
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    PTN regulates endometrial stromal cell decidualization through <t>the</t> <t>IGF-2</t> signaling axis. (A) PPI network of PTN, IGF-2, IGFBP1, LIF, PRL, and other decidualization-related genes. (B) The expression levels of PTN and its interacting partners (IGF-2, WNT4, PRL, IGFBP1, and LIF) in the RIF (left) and RPL (right) datasets. (C) Expressions of decidualization-related genes (including IGFBP1 , LIF , PRL , and WNT4 ) in NC or si PTN hESCs after treatment with control vehicle, cAMP, and IGF-2 via RT-qPCR (n = 9). (D) Immunoblotting for PTN, IGFBP1, and PRL expression levels with control vehicle, cAMP, and IGF-2. (E) ELISA for IGF-2 levels with control vehicle, cAMP, and IGF-2. (F) Schematic diagram of the experiments performed using the different treatments of hESCs. Data are presented as mean ± SEM and analyzed using t-test or one-way ANOVA test. * compared with NC treated with control vehicle, # compared with si PTN treated with control vehicle, $ compared with si PTN treated with control cAMP (NS, no significant difference; *p < 0.05, **p < 0.01, ***p < 0.001, ****p < 0.0001, ####p < 0.0001, $p < 0.05, $$p < 0.01, $$$p < 0.001, $$$$p< 0.0001). PPI, protein–protein interaction; RIF, recurrent implantation failure; RPL, recurrent pregnancy loss; hESCs, human endometrial stromal cells; cAMP, cyclic adenosine monophosphate.
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    Image Search Results


    PTN regulates endometrial stromal cell decidualization through the IGF-2 signaling axis. (A) PPI network of PTN, IGF-2, IGFBP1, LIF, PRL, and other decidualization-related genes. (B) The expression levels of PTN and its interacting partners (IGF-2, WNT4, PRL, IGFBP1, and LIF) in the RIF (left) and RPL (right) datasets. (C) Expressions of decidualization-related genes (including IGFBP1 , LIF , PRL , and WNT4 ) in NC or si PTN hESCs after treatment with control vehicle, cAMP, and IGF-2 via RT-qPCR (n = 9). (D) Immunoblotting for PTN, IGFBP1, and PRL expression levels with control vehicle, cAMP, and IGF-2. (E) ELISA for IGF-2 levels with control vehicle, cAMP, and IGF-2. (F) Schematic diagram of the experiments performed using the different treatments of hESCs. Data are presented as mean ± SEM and analyzed using t-test or one-way ANOVA test. * compared with NC treated with control vehicle, # compared with si PTN treated with control vehicle, $ compared with si PTN treated with control cAMP (NS, no significant difference; *p < 0.05, **p < 0.01, ***p < 0.001, ****p < 0.0001, ####p < 0.0001, $p < 0.05, $$p < 0.01, $$$p < 0.001, $$$$p< 0.0001). PPI, protein–protein interaction; RIF, recurrent implantation failure; RPL, recurrent pregnancy loss; hESCs, human endometrial stromal cells; cAMP, cyclic adenosine monophosphate.

    Journal: Frontiers in Immunology

    Article Title: PTN/IGF-2 signaling modulates endometrial decidualization and immune cell trafficking to facilitate pregnancy maintenance

    doi: 10.3389/fimmu.2026.1790942

    Figure Lengend Snippet: PTN regulates endometrial stromal cell decidualization through the IGF-2 signaling axis. (A) PPI network of PTN, IGF-2, IGFBP1, LIF, PRL, and other decidualization-related genes. (B) The expression levels of PTN and its interacting partners (IGF-2, WNT4, PRL, IGFBP1, and LIF) in the RIF (left) and RPL (right) datasets. (C) Expressions of decidualization-related genes (including IGFBP1 , LIF , PRL , and WNT4 ) in NC or si PTN hESCs after treatment with control vehicle, cAMP, and IGF-2 via RT-qPCR (n = 9). (D) Immunoblotting for PTN, IGFBP1, and PRL expression levels with control vehicle, cAMP, and IGF-2. (E) ELISA for IGF-2 levels with control vehicle, cAMP, and IGF-2. (F) Schematic diagram of the experiments performed using the different treatments of hESCs. Data are presented as mean ± SEM and analyzed using t-test or one-way ANOVA test. * compared with NC treated with control vehicle, # compared with si PTN treated with control vehicle, $ compared with si PTN treated with control cAMP (NS, no significant difference; *p < 0.05, **p < 0.01, ***p < 0.001, ****p < 0.0001, ####p < 0.0001, $p < 0.05, $$p < 0.01, $$$p < 0.001, $$$$p< 0.0001). PPI, protein–protein interaction; RIF, recurrent implantation failure; RPL, recurrent pregnancy loss; hESCs, human endometrial stromal cells; cAMP, cyclic adenosine monophosphate.

    Article Snippet: The remaining cells were digested with trypsin and inoculated into a new culture dish, and they were treated with control vehicle or IGF-2 (50 ng/mL, R&D Systems, Minneapolis, MN, USA, 292-G2) for 48 h and then collected for quantitative real-time polymerase chain reaction (qRT-PCR).

    Techniques: Expressing, Control, Quantitative RT-PCR, Western Blot, Enzyme-linked Immunosorbent Assay

    IGF-2 promotes decidualization and rescues decidualization defects caused by PTN deficiency. (A) Schematic diagram of the experiments performed using the different treatments of ESCs isolated from endometrium of RIF and RPL patients. (B, C) RT-qPCR analysis of levels of decidualization-related genes in ESCs isolated from endometrium of RIF (B) and RPL (C) patients after IGF-2 (50 ng/mL) treatment for 48 h (n = 9). (D) The flowchart depicts the steps involved in establishing a mouse model of intrauterine perfusion with siRNA-mediated knockdown of PTN and then supplemented with IGF-2 (50 ng/mL) through tail vein injection. (E) Expression of PTN after Ptn knockdown and supplemented with control vehicle or IGF-2 (50 ng/mL) in the mouse endometrium, measured by immunofluorescence, and quantitative analysis of immunofluorescence was performed (n = 6). (F) RT-qPCR analysis of levels of decidualization-related genes after Ptn knockdown and supplemented with control vehicle or IGF-2 (50 ng/mL) in the mouse endometrium (n = 6). Data are presented as mean ± SEM and analyzed using t-test or one-way ANOVA test. * compared with NC treated with control vehicle, # compared with si PTN treated with control vehicle (NS, no significant difference; *p < 0.05, **p < 0.01, ***p < 0.001, ****p< 0.0001, ## p < 0.01, ### p < 0.001, #### p < 0.0001). ESCs, endometrial stromal cells; PPI, protein–protein interaction; RIF, recurrent implantation failure.

    Journal: Frontiers in Immunology

    Article Title: PTN/IGF-2 signaling modulates endometrial decidualization and immune cell trafficking to facilitate pregnancy maintenance

    doi: 10.3389/fimmu.2026.1790942

    Figure Lengend Snippet: IGF-2 promotes decidualization and rescues decidualization defects caused by PTN deficiency. (A) Schematic diagram of the experiments performed using the different treatments of ESCs isolated from endometrium of RIF and RPL patients. (B, C) RT-qPCR analysis of levels of decidualization-related genes in ESCs isolated from endometrium of RIF (B) and RPL (C) patients after IGF-2 (50 ng/mL) treatment for 48 h (n = 9). (D) The flowchart depicts the steps involved in establishing a mouse model of intrauterine perfusion with siRNA-mediated knockdown of PTN and then supplemented with IGF-2 (50 ng/mL) through tail vein injection. (E) Expression of PTN after Ptn knockdown and supplemented with control vehicle or IGF-2 (50 ng/mL) in the mouse endometrium, measured by immunofluorescence, and quantitative analysis of immunofluorescence was performed (n = 6). (F) RT-qPCR analysis of levels of decidualization-related genes after Ptn knockdown and supplemented with control vehicle or IGF-2 (50 ng/mL) in the mouse endometrium (n = 6). Data are presented as mean ± SEM and analyzed using t-test or one-way ANOVA test. * compared with NC treated with control vehicle, # compared with si PTN treated with control vehicle (NS, no significant difference; *p < 0.05, **p < 0.01, ***p < 0.001, ****p< 0.0001, ## p < 0.01, ### p < 0.001, #### p < 0.0001). ESCs, endometrial stromal cells; PPI, protein–protein interaction; RIF, recurrent implantation failure.

    Article Snippet: The remaining cells were digested with trypsin and inoculated into a new culture dish, and they were treated with control vehicle or IGF-2 (50 ng/mL, R&D Systems, Minneapolis, MN, USA, 292-G2) for 48 h and then collected for quantitative real-time polymerase chain reaction (qRT-PCR).

    Techniques: Isolation, Quantitative RT-PCR, Knockdown, Injection, Expressing, Control, Immunofluorescence

    PTN deficiency induces endometrial immune imbalance and leads to adverse pregnancy outcomes, which can be partially reversed by IGF-2. (A) PPI network of PTN, IGF-2, CXCR4, CD4, CD8, CD56, and other immunoregulators. (B, C) Flow cytometry analysis (B) and statistical quantification (C) of cell populations of NK cells and T cells, and the expression levels of CD16, CXCR4, and GZMB in NK cell form the endometrial tissues of NC and si PTN mice treated with control vehicle or IGF-2 (50 ng/mL) (n = 6). (D) The flowchart depicts the steps involved in establishing a mouse model of intrauterine perfusion with siRNA-mediated knockdown of Ptn and then supplemented with IGF-2 (50 ng/mL) through tail vein injection for 2 days; then, these female mice were mated with fertile male mice; analysis of fertility, including pregnancy rate, IF, and fluorescence-activated cell sorting (FACS). were performed at gestational day 13.5. (E) Representative images of uteri from pregnant mice in the NC and si PTN mice treated with control vehicle or IGF-2 (50 ng/mL) at gestational day 13.5 (n = 6) (arrow shows the absorption site). (F) Pregnancy rate (%) in NC and si PTN mice treated with control vehicle or IGF-2 (50 ng/mL) (n = 15). (G) Quantification of embryo numbers (left) and absorption rate (right) per mouse in NC (n = 13) and si PTN mice treated with control vehicle (n = 6) or IGF-2 (50 ng/mL) (n = 11) at gestational day 13.5. Data are presented as mean ± SEM and analyzed using one-way ANOVA test or χ 2 test. * Compared with NC treated with control vehicle, # compared with si PTN treated with control vehicle (NS, no significant difference; *p < 0.05, **p < 0.01, ***p < 0.001, ****p < 0.0001, ## p < 0.01, ### p < 0.001, #### p < 0.0001). IF, immunofluorescence.

    Journal: Frontiers in Immunology

    Article Title: PTN/IGF-2 signaling modulates endometrial decidualization and immune cell trafficking to facilitate pregnancy maintenance

    doi: 10.3389/fimmu.2026.1790942

    Figure Lengend Snippet: PTN deficiency induces endometrial immune imbalance and leads to adverse pregnancy outcomes, which can be partially reversed by IGF-2. (A) PPI network of PTN, IGF-2, CXCR4, CD4, CD8, CD56, and other immunoregulators. (B, C) Flow cytometry analysis (B) and statistical quantification (C) of cell populations of NK cells and T cells, and the expression levels of CD16, CXCR4, and GZMB in NK cell form the endometrial tissues of NC and si PTN mice treated with control vehicle or IGF-2 (50 ng/mL) (n = 6). (D) The flowchart depicts the steps involved in establishing a mouse model of intrauterine perfusion with siRNA-mediated knockdown of Ptn and then supplemented with IGF-2 (50 ng/mL) through tail vein injection for 2 days; then, these female mice were mated with fertile male mice; analysis of fertility, including pregnancy rate, IF, and fluorescence-activated cell sorting (FACS). were performed at gestational day 13.5. (E) Representative images of uteri from pregnant mice in the NC and si PTN mice treated with control vehicle or IGF-2 (50 ng/mL) at gestational day 13.5 (n = 6) (arrow shows the absorption site). (F) Pregnancy rate (%) in NC and si PTN mice treated with control vehicle or IGF-2 (50 ng/mL) (n = 15). (G) Quantification of embryo numbers (left) and absorption rate (right) per mouse in NC (n = 13) and si PTN mice treated with control vehicle (n = 6) or IGF-2 (50 ng/mL) (n = 11) at gestational day 13.5. Data are presented as mean ± SEM and analyzed using one-way ANOVA test or χ 2 test. * Compared with NC treated with control vehicle, # compared with si PTN treated with control vehicle (NS, no significant difference; *p < 0.05, **p < 0.01, ***p < 0.001, ****p < 0.0001, ## p < 0.01, ### p < 0.001, #### p < 0.0001). IF, immunofluorescence.

    Article Snippet: The remaining cells were digested with trypsin and inoculated into a new culture dish, and they were treated with control vehicle or IGF-2 (50 ng/mL, R&D Systems, Minneapolis, MN, USA, 292-G2) for 48 h and then collected for quantitative real-time polymerase chain reaction (qRT-PCR).

    Techniques: Flow Cytometry, Expressing, Control, Knockdown, Injection, Fluorescence, FACS, Immunofluorescence