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isotype matched control igg  (MedChemExpress)


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    Structured Review

    MedChemExpress isotype matched control igg
    Isotype Matched Control Igg, supplied by MedChemExpress, used in various techniques. Bioz Stars score: 94/100, based on 6 PubMed citations. ZERO BIAS - scores, article reviews, protocol conditions and more
    https://www.bioz.com/product/isotype+matched+control+igg/Rat+IgG2a+kappa%2C+Isotype+Control/pm41967236-79-33-39
    Average 94 stars, based on 6 article reviews
    isotype matched control igg - by Bioz Stars, 2026-09
    94/100 stars

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    Related Articles

    Recombinant:

    Article Title: Hepassocin drives EGFR-dependent endothelial atherogenic activation via NOX1/ROS amplification and p38 signaling.
    Article Snippet: Metabolic stress results in the production of circulating hepatokines that can be coupled to hepatic injury and vascular dysfunction, but the underlying biochemical signaling routes remain incompletely defined.. Hepassocin (HPS; FGL1) is a hepatocyte-derived factor implicated in metabolic inflammation; however, whether it directly programs endothelial pro-atherogenic signaling is unclear.. Here, we report that a high-fat diet (HFD) increases serum HPS and that palmitate induces oxidative stress–dependent HPS expression and release from hepatocytes, as these responses are reversed by N-acetylcysteine (NAC).

    Control:

    Article Title: Hepassocin drives EGFR-dependent endothelial atherogenic activation via NOX1/ROS amplification and p38 signaling.
    Article Snippet: Metabolic stress results in the production of circulating hepatokines that can be coupled to hepatic injury and vascular dysfunction, but the underlying biochemical signaling routes remain incompletely defined.. Hepassocin (HPS; FGL1) is a hepatocyte-derived factor implicated in metabolic inflammation; however, whether it directly programs endothelial pro-atherogenic signaling is unclear.. Here, we report that a high-fat diet (HFD) increases serum HPS and that palmitate induces oxidative stress–dependent HPS expression and release from hepatocytes, as these responses are reversed by N-acetylcysteine (NAC).

    Article Title: MRGPRX2-Mediated Mast Cell Activation Promotes Malignant Progression of Cutaneous Squamous Cell Carcinoma through IL-17A Release.
    Article Snippet: Cutaneous squamous cell carcinoma (cSCC) is a common keratinocyte-derived malignancy with increasing activated mast cells (MCs) around.. Although MCs are abundant in the skin and demonstrate microenvironment-dependent plasticity, their precise role in cSCC pathogenesis remains unclear, particularly regarding activation mechanisms and functional contributions to cSCC progression.. In this study, bioinformatics and histopathological analysis revealed that significantly enriched activated MCs in cSCC lesions correlate with adverse prognosis.



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    R&D Systems isotype matched rat igg2a
    a, Schematic of the experimental design: aged mice were treated with either control <t>IgG</t> or an anti–eotaxin-1 neutralizing antibody for 30 days (Control, n = 3, Eotaxin Ab, n = 5). b, Representative CD31 immunostaining and quantification showing increased blood vessel density in the cortex of Eotaxin-1–inhibited mice. c, BrdU labeling (green, arrows) of proliferating cells in the DG and quantification of BrdU+ cells reveals enhanced adult neurogenesis following Eotaxin-1 inhibition. d, Immunofluorescence for Iba1 (magenta) and CD68 (green) shows reduced microglial activation in Eotaxin-1–treated mice. Yellow arrows indicate double positive cells. e, Quantification of myelinating oligodendrocyte precursor cells (Pdgfra+, green) in the corpus callosum (highlighted in white) indicates increased myelination upon Eotaxin-1 blockade. Scale bars: 100 μm (b), 50 μm (c,d), 500 μm (e). f, Schematic of behavioral test design: aged mice treated with Rat IgG or Eotaxin-1 antibody were tested for locomotor function and anxiety using the Open Field (OF) test, and their memory was assessed using the novel object recognition test (NOR) test. g, Time (sec) and distance spent (m) in the center or periphery of the arena during the OF test. h, Discrimination index, exploration time (sec) and total distance travelled (m) in the NOR test (n = 7/control; 10/Eotaxin-1 antibody). All data represented as mean ± s.e.m.; * P < 0.05, ** P < 0.01, Student’s t -test.
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    Image Search Results


    a, Schematic of the experimental design: aged mice were treated with either control IgG or an anti–eotaxin-1 neutralizing antibody for 30 days (Control, n = 3, Eotaxin Ab, n = 5). b, Representative CD31 immunostaining and quantification showing increased blood vessel density in the cortex of Eotaxin-1–inhibited mice. c, BrdU labeling (green, arrows) of proliferating cells in the DG and quantification of BrdU+ cells reveals enhanced adult neurogenesis following Eotaxin-1 inhibition. d, Immunofluorescence for Iba1 (magenta) and CD68 (green) shows reduced microglial activation in Eotaxin-1–treated mice. Yellow arrows indicate double positive cells. e, Quantification of myelinating oligodendrocyte precursor cells (Pdgfra+, green) in the corpus callosum (highlighted in white) indicates increased myelination upon Eotaxin-1 blockade. Scale bars: 100 μm (b), 50 μm (c,d), 500 μm (e). f, Schematic of behavioral test design: aged mice treated with Rat IgG or Eotaxin-1 antibody were tested for locomotor function and anxiety using the Open Field (OF) test, and their memory was assessed using the novel object recognition test (NOR) test. g, Time (sec) and distance spent (m) in the center or periphery of the arena during the OF test. h, Discrimination index, exploration time (sec) and total distance travelled (m) in the NOR test (n = 7/control; 10/Eotaxin-1 antibody). All data represented as mean ± s.e.m.; * P < 0.05, ** P < 0.01, Student’s t -test.

    Journal: bioRxiv

    Article Title: Microbiome depletion rejuvenates the aging brain

    doi: 10.64898/2026.02.13.705770

    Figure Lengend Snippet: a, Schematic of the experimental design: aged mice were treated with either control IgG or an anti–eotaxin-1 neutralizing antibody for 30 days (Control, n = 3, Eotaxin Ab, n = 5). b, Representative CD31 immunostaining and quantification showing increased blood vessel density in the cortex of Eotaxin-1–inhibited mice. c, BrdU labeling (green, arrows) of proliferating cells in the DG and quantification of BrdU+ cells reveals enhanced adult neurogenesis following Eotaxin-1 inhibition. d, Immunofluorescence for Iba1 (magenta) and CD68 (green) shows reduced microglial activation in Eotaxin-1–treated mice. Yellow arrows indicate double positive cells. e, Quantification of myelinating oligodendrocyte precursor cells (Pdgfra+, green) in the corpus callosum (highlighted in white) indicates increased myelination upon Eotaxin-1 blockade. Scale bars: 100 μm (b), 50 μm (c,d), 500 μm (e). f, Schematic of behavioral test design: aged mice treated with Rat IgG or Eotaxin-1 antibody were tested for locomotor function and anxiety using the Open Field (OF) test, and their memory was assessed using the novel object recognition test (NOR) test. g, Time (sec) and distance spent (m) in the center or periphery of the arena during the OF test. h, Discrimination index, exploration time (sec) and total distance travelled (m) in the NOR test (n = 7/control; 10/Eotaxin-1 antibody). All data represented as mean ± s.e.m.; * P < 0.05, ** P < 0.01, Student’s t -test.

    Article Snippet: An isotype-matched rat IgG2a (50 ng/g body weight; R&D Systems, 54447) was used as control.

    Techniques: Control, Immunostaining, Labeling, Inhibition, Immunofluorescence, Activation Assay