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60 core tissue microarray tma slide  (Novus Biologicals)


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    Novus Biologicals 60 core tissue microarray tma slide
    60 Core Tissue Microarray Tma Slide, supplied by Novus Biologicals, used in various techniques. Bioz Stars score: 93/100, based on 2 PubMed citations. ZERO BIAS - scores, article reviews, protocol conditions and more
    https://www.bioz.com/product/human+tissue+microarray+slides/Human+Multi-tissue+Tissue+MicroArray+(Cancer)/pmc13036268-60-45-51
    Average 93 stars, based on 2 article reviews
    60 core tissue microarray tma slide - by Bioz Stars, 2026-09
    93/100 stars

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    Related Articles

    Selection:

    Article Title: Techniques to study chimerism at the tissue level in humanized mice
    Article Snippet: As described in previous works, , , rabbit antibodies targeting HLA-A (ab52922, Abcam, Cambridge, Massachusetts; IHC working dilution: 1/600) and human Ku80 (hKu80; 2180; Cell Signaling Technology, Danvers, Massachusetts; IHC working dilution: 1/100), as well as a mouse antibody against a 60 kDa protein on human mitochondria (hMito; MA5-12017; Invitrogen, Waltham, Massachusetts; IHC working dilution: 1/500), were employed as broad-spectrum immunohistochemical markers for identifying virtually all cells of human origin in chimeric mice., , While other broad-spectrum antibodies have been used for this same purpose, including NUMA-1, a comprehensive testing of all the possible markers ubiquitously expressed in human tissues was beyond the scope of this work. .. In this context, the target’s cellular location and distribution were considered in the selection, with HLA-A as a membranous antigen, hKu80 as a nuclear antigen, and hMito as a cytoplasmic marker., , , The overall sensitivity of these 3 broad-spectrum markers was investigated using a 60-core tissue microarray (TMA) slide (NBP2-30233, Novus Biologicals, Centennial, Colorado) containing different types of normal (32 cores) and neoplastic (27 cores) human tissues with one carbon core. ..

    Article Title: Techniques to study chimerism at the tissue level in humanized mice.
    Article Snippet: As described in previous works,6,43,57 rabbit antibodies targeting HLA-A (ab52922, Abcam, Cambridge, Massachusetts; IHC working dilution: 1/600) and human Ku80 (hKu80; 2180; Cell Signaling Technology, Danvers, Massachusetts; IHC working dilution: 1/100), as well as a mouse antibody against a 60 kDa protein on human mitochondria (hMito; MA5-12017; Invitrogen, Waltham, Massachusetts; IHC working dilution: 1/500), were employed as broad-spectrum immunohistochemical markers for identifying virtually all cells of human origin in chimeric mice.9,10,13 While other broad-spectrum antibodies have been used for this same purpose, including NUMA-1,60 a comprehensive testing of all the possible markers ubiquitously expressed in human tissues was beyond the scope of this work. .. In this context, the target’s cellular location and distribution were considered in the selection, with HLA-A as a membranous antigen, hKu80 as a nuclear antigen, and hMito as a cytoplasmic marker.2,6,12,44 The overall sensitivity of these 3 broad-spectrum markers was investigated using a 60-core tissue microarray (TMA) slide (NBP2-30233, Novus Biologicals, Centennial, Colorado) containing different types of normal (32 cores) and neoplastic (27 cores) human tissues with one carbon core. ..

    Marker:

    Article Title: Techniques to study chimerism at the tissue level in humanized mice
    Article Snippet: As described in previous works, , , rabbit antibodies targeting HLA-A (ab52922, Abcam, Cambridge, Massachusetts; IHC working dilution: 1/600) and human Ku80 (hKu80; 2180; Cell Signaling Technology, Danvers, Massachusetts; IHC working dilution: 1/100), as well as a mouse antibody against a 60 kDa protein on human mitochondria (hMito; MA5-12017; Invitrogen, Waltham, Massachusetts; IHC working dilution: 1/500), were employed as broad-spectrum immunohistochemical markers for identifying virtually all cells of human origin in chimeric mice., , While other broad-spectrum antibodies have been used for this same purpose, including NUMA-1, a comprehensive testing of all the possible markers ubiquitously expressed in human tissues was beyond the scope of this work. .. In this context, the target’s cellular location and distribution were considered in the selection, with HLA-A as a membranous antigen, hKu80 as a nuclear antigen, and hMito as a cytoplasmic marker., , , The overall sensitivity of these 3 broad-spectrum markers was investigated using a 60-core tissue microarray (TMA) slide (NBP2-30233, Novus Biologicals, Centennial, Colorado) containing different types of normal (32 cores) and neoplastic (27 cores) human tissues with one carbon core. ..

    Article Title: Techniques to study chimerism at the tissue level in humanized mice.
    Article Snippet: As described in previous works,6,43,57 rabbit antibodies targeting HLA-A (ab52922, Abcam, Cambridge, Massachusetts; IHC working dilution: 1/600) and human Ku80 (hKu80; 2180; Cell Signaling Technology, Danvers, Massachusetts; IHC working dilution: 1/100), as well as a mouse antibody against a 60 kDa protein on human mitochondria (hMito; MA5-12017; Invitrogen, Waltham, Massachusetts; IHC working dilution: 1/500), were employed as broad-spectrum immunohistochemical markers for identifying virtually all cells of human origin in chimeric mice.9,10,13 While other broad-spectrum antibodies have been used for this same purpose, including NUMA-1,60 a comprehensive testing of all the possible markers ubiquitously expressed in human tissues was beyond the scope of this work. .. In this context, the target’s cellular location and distribution were considered in the selection, with HLA-A as a membranous antigen, hKu80 as a nuclear antigen, and hMito as a cytoplasmic marker.2,6,12,44 The overall sensitivity of these 3 broad-spectrum markers was investigated using a 60-core tissue microarray (TMA) slide (NBP2-30233, Novus Biologicals, Centennial, Colorado) containing different types of normal (32 cores) and neoplastic (27 cores) human tissues with one carbon core. ..

    Microarray:

    Article Title: Techniques to study chimerism at the tissue level in humanized mice
    Article Snippet: As described in previous works, , , rabbit antibodies targeting HLA-A (ab52922, Abcam, Cambridge, Massachusetts; IHC working dilution: 1/600) and human Ku80 (hKu80; 2180; Cell Signaling Technology, Danvers, Massachusetts; IHC working dilution: 1/100), as well as a mouse antibody against a 60 kDa protein on human mitochondria (hMito; MA5-12017; Invitrogen, Waltham, Massachusetts; IHC working dilution: 1/500), were employed as broad-spectrum immunohistochemical markers for identifying virtually all cells of human origin in chimeric mice., , While other broad-spectrum antibodies have been used for this same purpose, including NUMA-1, a comprehensive testing of all the possible markers ubiquitously expressed in human tissues was beyond the scope of this work. .. In this context, the target’s cellular location and distribution were considered in the selection, with HLA-A as a membranous antigen, hKu80 as a nuclear antigen, and hMito as a cytoplasmic marker., , , The overall sensitivity of these 3 broad-spectrum markers was investigated using a 60-core tissue microarray (TMA) slide (NBP2-30233, Novus Biologicals, Centennial, Colorado) containing different types of normal (32 cores) and neoplastic (27 cores) human tissues with one carbon core. ..

    Article Title: Techniques to study chimerism at the tissue level in humanized mice.
    Article Snippet: As described in previous works,6,43,57 rabbit antibodies targeting HLA-A (ab52922, Abcam, Cambridge, Massachusetts; IHC working dilution: 1/600) and human Ku80 (hKu80; 2180; Cell Signaling Technology, Danvers, Massachusetts; IHC working dilution: 1/100), as well as a mouse antibody against a 60 kDa protein on human mitochondria (hMito; MA5-12017; Invitrogen, Waltham, Massachusetts; IHC working dilution: 1/500), were employed as broad-spectrum immunohistochemical markers for identifying virtually all cells of human origin in chimeric mice.9,10,13 While other broad-spectrum antibodies have been used for this same purpose, including NUMA-1,60 a comprehensive testing of all the possible markers ubiquitously expressed in human tissues was beyond the scope of this work. .. In this context, the target’s cellular location and distribution were considered in the selection, with HLA-A as a membranous antigen, hKu80 as a nuclear antigen, and hMito as a cytoplasmic marker.2,6,12,44 The overall sensitivity of these 3 broad-spectrum markers was investigated using a 60-core tissue microarray (TMA) slide (NBP2-30233, Novus Biologicals, Centennial, Colorado) containing different types of normal (32 cores) and neoplastic (27 cores) human tissues with one carbon core. ..



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    Tumor localized FAP + CAFs inhibit CAR T cell intra-tumoral infiltration and anti-tumor cytotoxicity (A) Schematic illustrating T cell infiltration assay in tumor spheroids plated with or without CAFs. (B) Graph depicting flow cytometry quantitation of T cells infiltrated per tumor spheroids with or without CAFs, represented as percentage of T cell input. Bars show means ± SD, n = 3; p values determined by Student t test (two-tailed, unpaired). ns, not significant, ∗ p ≤ 0.05, ∗∗ p ≤ 0.01, ∗∗∗ p ≤ 0.001. (C) Schematic of TRAC KO ML CAR T cell cytotoxicity assay against tumor spheroids of TNBC cell line MDA-MB-231-Luc alone or co-cultured with TNBC-derived CAFs. (D) Bar graph representing percentage MDA-MB-231-Luc tumor cell survival post cytotoxicity assay outlined in (C), at Effector:Target ratio = 5:1. Bars show means ± SD, n = 3; p values determined by Student t test (two-tailed, unpaired). ns, not significant, ∗ p ≤ 0.05, ∗∗ p ≤ 0.01. (E) Immunohistochemistry for detection of human FAP protein in tissue <t>microarray</t> of patient samples from different cancers. (F) Heatmap depicting percentage positive area stained for human FAP protein in immunohistochemical analysis of healthy human tissue microarray.
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    Tumor localized FAP + CAFs inhibit CAR T cell intra-tumoral infiltration and anti-tumor cytotoxicity (A) Schematic illustrating T cell infiltration assay in tumor spheroids plated with or without CAFs. (B) Graph depicting flow cytometry quantitation of T cells infiltrated per tumor spheroids with or without CAFs, represented as percentage of T cell input. Bars show means ± SD, n = 3; p values determined by Student t test (two-tailed, unpaired). ns, not significant, ∗ p ≤ 0.05, ∗∗ p ≤ 0.01, ∗∗∗ p ≤ 0.001. (C) Schematic of TRAC KO ML CAR T cell cytotoxicity assay against tumor spheroids of TNBC cell line MDA-MB-231-Luc alone or co-cultured with TNBC-derived CAFs. (D) Bar graph representing percentage MDA-MB-231-Luc tumor cell survival post cytotoxicity assay outlined in (C), at Effector:Target ratio = 5:1. Bars show means ± SD, n = 3; p values determined by Student t test (two-tailed, unpaired). ns, not significant, ∗ p ≤ 0.05, ∗∗ p ≤ 0.01. (E) Immunohistochemistry for detection of human FAP protein in tissue <t>microarray</t> of patient samples from different cancers. (F) Heatmap depicting percentage positive area stained for human FAP protein in immunohistochemical analysis of healthy human tissue microarray.
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    Image Search Results


    Tumor localized FAP + CAFs inhibit CAR T cell intra-tumoral infiltration and anti-tumor cytotoxicity (A) Schematic illustrating T cell infiltration assay in tumor spheroids plated with or without CAFs. (B) Graph depicting flow cytometry quantitation of T cells infiltrated per tumor spheroids with or without CAFs, represented as percentage of T cell input. Bars show means ± SD, n = 3; p values determined by Student t test (two-tailed, unpaired). ns, not significant, ∗ p ≤ 0.05, ∗∗ p ≤ 0.01, ∗∗∗ p ≤ 0.001. (C) Schematic of TRAC KO ML CAR T cell cytotoxicity assay against tumor spheroids of TNBC cell line MDA-MB-231-Luc alone or co-cultured with TNBC-derived CAFs. (D) Bar graph representing percentage MDA-MB-231-Luc tumor cell survival post cytotoxicity assay outlined in (C), at Effector:Target ratio = 5:1. Bars show means ± SD, n = 3; p values determined by Student t test (two-tailed, unpaired). ns, not significant, ∗ p ≤ 0.05, ∗∗ p ≤ 0.01. (E) Immunohistochemistry for detection of human FAP protein in tissue microarray of patient samples from different cancers. (F) Heatmap depicting percentage positive area stained for human FAP protein in immunohistochemical analysis of healthy human tissue microarray.

    Journal: Molecular Therapy

    Article Title: TALEN-edited allogeneic inducible dual CAR T cells enable effective targeting of solid tumors while mitigating off-tumor toxicity

    doi: 10.1016/j.ymthe.2024.08.018

    Figure Lengend Snippet: Tumor localized FAP + CAFs inhibit CAR T cell intra-tumoral infiltration and anti-tumor cytotoxicity (A) Schematic illustrating T cell infiltration assay in tumor spheroids plated with or without CAFs. (B) Graph depicting flow cytometry quantitation of T cells infiltrated per tumor spheroids with or without CAFs, represented as percentage of T cell input. Bars show means ± SD, n = 3; p values determined by Student t test (two-tailed, unpaired). ns, not significant, ∗ p ≤ 0.05, ∗∗ p ≤ 0.01, ∗∗∗ p ≤ 0.001. (C) Schematic of TRAC KO ML CAR T cell cytotoxicity assay against tumor spheroids of TNBC cell line MDA-MB-231-Luc alone or co-cultured with TNBC-derived CAFs. (D) Bar graph representing percentage MDA-MB-231-Luc tumor cell survival post cytotoxicity assay outlined in (C), at Effector:Target ratio = 5:1. Bars show means ± SD, n = 3; p values determined by Student t test (two-tailed, unpaired). ns, not significant, ∗ p ≤ 0.05, ∗∗ p ≤ 0.01. (E) Immunohistochemistry for detection of human FAP protein in tissue microarray of patient samples from different cancers. (F) Heatmap depicting percentage positive area stained for human FAP protein in immunohistochemical analysis of healthy human tissue microarray.

    Article Snippet: Human tumor tissue and healthy tissue microarray slides were obtained from Novus Biologicals (NBP2-30234, NBP2-78082, NBP2-30232, NBP2-30233, NBP2-30189).

    Techniques: Flow Cytometry, Quantitation Assay, Two Tailed Test, Cytotoxicity Assay, Cell Culture, Derivative Assay, Immunohistochemistry, Microarray, Staining, Immunohistochemical staining