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Valiant Co Ltd polyclonal pc goat anti c3 antibody
Polyclonal Pc Goat Anti C3 Antibody, supplied by Valiant Co Ltd, used in various techniques. Bioz Stars score: 96/100, based on 143 PubMed citations. ZERO BIAS - scores, article reviews, protocol conditions and more
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Average 96 stars, based on 143 article reviews
polyclonal pc goat anti c3 antibody - by Bioz Stars, 2026-09
96/100 stars

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Related Articles

Incubation:

Article Title: Impaired Function of Antibodies to Pneumococcal Surface Protein A but Not to Capsular Polysaccharide in Mexican American Adults with Type 2 Diabetes Mellitus
Article Snippet: Pellets were resuspended in 100 μl of HBSSG containing 25 μg/ml of baby rabbit complement (Pel-Freez Biologicals, Rogers, AK). .. Specimens were incubated for 30 min at 37°C, followed by washing and resuspension into 100 μl of fluorescein-conjugated goat IgG fraction to rabbit complement C3 (MP Biomedical) diluted to a final concentration of 1:100 in PBS–1% BSA. ..

Article Title: Impaired Function of Antibodies to Pneumococcal Surface Protein A but Not to Capsular Polysaccharide in Mexican American Adults with Type 2 Diabetes Mellitus
Article Snippet: Pellets were resuspended in 100 l of HBSSG containing 25 g/ml of baby rabbit complement (Pel-Freez Biologicals, Rogers, AK). .. Specimens were incubated for 30 min at 37°C, followed by washing and resuspension into 100 l of fluorescein-conjugated goat IgG fraction to rabbit complement C3 (MP Biomedical) diluted to a final concentration of 1:100 in PBS–1% BSA. ..

Article Title: Establishment of a modified opsonophagocytic killing assay for anti-pneumococcal surface protein A antibody.
Article Snippet: The cells were mixed with 3–4-week rabbit complement (Pel-Freez Biologicals, Rogers, AR, USA) diluted to 10% in gelatin veronal buffer (GVB; Denka Seiken, Tokyo, Japan) and incubated at 37 ◦C in the presence of 5% CO2 for 30 min. Next, the cells were centrifuged and washed with PBS. .. The washed cells were added to FITC-conjugated goat IgG to rabbit complement C3 (MP Biomedicals) in 1% BSA-PBS (1:500) and incubated at 4 ◦C for 30 min under light shielding. ..

Concentration Assay:

Article Title: Impaired Function of Antibodies to Pneumococcal Surface Protein A but Not to Capsular Polysaccharide in Mexican American Adults with Type 2 Diabetes Mellitus
Article Snippet: Pellets were resuspended in 100 μl of HBSSG containing 25 μg/ml of baby rabbit complement (Pel-Freez Biologicals, Rogers, AK). .. Specimens were incubated for 30 min at 37°C, followed by washing and resuspension into 100 μl of fluorescein-conjugated goat IgG fraction to rabbit complement C3 (MP Biomedical) diluted to a final concentration of 1:100 in PBS–1% BSA. ..

Article Title: Impaired Function of Antibodies to Pneumococcal Surface Protein A but Not to Capsular Polysaccharide in Mexican American Adults with Type 2 Diabetes Mellitus
Article Snippet: Pellets were resuspended in 100 l of HBSSG containing 25 g/ml of baby rabbit complement (Pel-Freez Biologicals, Rogers, AK). .. Specimens were incubated for 30 min at 37°C, followed by washing and resuspension into 100 l of fluorescein-conjugated goat IgG fraction to rabbit complement C3 (MP Biomedical) diluted to a final concentration of 1:100 in PBS–1% BSA. ..



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Immunofluorescence labeling of PFA-fixed wild type and <t>C3</t> -/- mouse eyecup tissue with A) anti-C3 (MP Biomedicals, 55463) and B) anti-C3d (R&D Systems, AF2655) antibodies, showing genuine antibody labeling in <t>the</t> <t>RPE</t> of wild type samples, localized primarily to the basal side of the RPE. Note suspected non- specific binding of the anti-C3 primary antibody to photoreceptor outer segments (OS). Abca4 -/- samples were included as a no primary control, to show general tissue AF. Labeling using the anti-C3 antibody was performed using frozen sections and labeling using the anti-C3d antibody was performed using paraffin-embedded tissue sections. General tissue AF at 488 nm was included to assist in identifying eyecup structures and for comparison to immunofluorescence signal in the no primary control conditions. Note that each C3 antibody may detect multiple C3 fragments. The scale bar represents 10 µm and is consistent across all images. Choroid, RPE and OS are shown. Arrowheads show red blood cells, which are fluorescent at 488 nm in paraffin sections. Arrows show the location of suspected RPE basal labyrinth.
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Immunofluorescence labeling of PFA-fixed wild type and <t>C3</t> -/- mouse eyecup tissue with A) anti-C3 (MP Biomedicals, 55463) and B) anti-C3d (R&D Systems, AF2655) antibodies, showing genuine antibody labeling in <t>the</t> <t>RPE</t> of wild type samples, localized primarily to the basal side of the RPE. Note suspected non- specific binding of the anti-C3 primary antibody to photoreceptor outer segments (OS). Abca4 -/- samples were included as a no primary control, to show general tissue AF. Labeling using the anti-C3 antibody was performed using frozen sections and labeling using the anti-C3d antibody was performed using paraffin-embedded tissue sections. General tissue AF at 488 nm was included to assist in identifying eyecup structures and for comparison to immunofluorescence signal in the no primary control conditions. Note that each C3 antibody may detect multiple C3 fragments. The scale bar represents 10 µm and is consistent across all images. Choroid, RPE and OS are shown. Arrowheads show red blood cells, which are fluorescent at 488 nm in paraffin sections. Arrows show the location of suspected RPE basal labyrinth.
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Immunofluorescence labeling of PFA-fixed wild type and <t>C3</t> -/- mouse eyecup tissue with A) anti-C3 (MP Biomedicals, 55463) and B) anti-C3d (R&D Systems, AF2655) antibodies, showing genuine antibody labeling in <t>the</t> <t>RPE</t> of wild type samples, localized primarily to the basal side of the RPE. Note suspected non- specific binding of the anti-C3 primary antibody to photoreceptor outer segments (OS). Abca4 -/- samples were included as a no primary control, to show general tissue AF. Labeling using the anti-C3 antibody was performed using frozen sections and labeling using the anti-C3d antibody was performed using paraffin-embedded tissue sections. General tissue AF at 488 nm was included to assist in identifying eyecup structures and for comparison to immunofluorescence signal in the no primary control conditions. Note that each C3 antibody may detect multiple C3 fragments. The scale bar represents 10 µm and is consistent across all images. Choroid, RPE and OS are shown. Arrowheads show red blood cells, which are fluorescent at 488 nm in paraffin sections. Arrows show the location of suspected RPE basal labyrinth.
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Immunofluorescence labeling of PFA-fixed wild type and <t>C3</t> -/- mouse eyecup tissue with A) anti-C3 (MP Biomedicals, 55463) and B) anti-C3d (R&D Systems, AF2655) antibodies, showing genuine antibody labeling in <t>the</t> <t>RPE</t> of wild type samples, localized primarily to the basal side of the RPE. Note suspected non- specific binding of the anti-C3 primary antibody to photoreceptor outer segments (OS). Abca4 -/- samples were included as a no primary control, to show general tissue AF. Labeling using the anti-C3 antibody was performed using frozen sections and labeling using the anti-C3d antibody was performed using paraffin-embedded tissue sections. General tissue AF at 488 nm was included to assist in identifying eyecup structures and for comparison to immunofluorescence signal in the no primary control conditions. Note that each C3 antibody may detect multiple C3 fragments. The scale bar represents 10 µm and is consistent across all images. Choroid, RPE and OS are shown. Arrowheads show red blood cells, which are fluorescent at 488 nm in paraffin sections. Arrows show the location of suspected RPE basal labyrinth.
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Immunofluorescence labeling of PFA-fixed wild type and <t>C3</t> -/- mouse eyecup tissue with A) anti-C3 (MP Biomedicals, 55463) and B) anti-C3d (R&D Systems, AF2655) antibodies, showing genuine antibody labeling in <t>the</t> <t>RPE</t> of wild type samples, localized primarily to the basal side of the RPE. Note suspected non- specific binding of the anti-C3 primary antibody to photoreceptor outer segments (OS). Abca4 -/- samples were included as a no primary control, to show general tissue AF. Labeling using the anti-C3 antibody was performed using frozen sections and labeling using the anti-C3d antibody was performed using paraffin-embedded tissue sections. General tissue AF at 488 nm was included to assist in identifying eyecup structures and for comparison to immunofluorescence signal in the no primary control conditions. Note that each C3 antibody may detect multiple C3 fragments. The scale bar represents 10 µm and is consistent across all images. Choroid, RPE and OS are shown. Arrowheads show red blood cells, which are fluorescent at 488 nm in paraffin sections. Arrows show the location of suspected RPE basal labyrinth.
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Valiant Co Ltd complement c3
A Representative images of microglial morphology labeled with IB4, Phalloidin, <t>complement</t> components <t>C3,</t> and Factor B in primary microglial cultures treated with vehicle or HOCPCA (100 nmol/L), following LPS stimulation. Scale bars, 50 μm. B The fluorescence intensity for complement components C3 and Factor B in microglia after LPS stimulation and HOCPCA treatment ( n = 6 per group). Data are shown as the mean ± SEM (* P < 0.05, ** P < 0.01, *** P < 0.001, **** P < 0.0001, one-way ANOVA with Tukey's test). C ELISA analysis of IL-1β, IL-6, and TNF-α levels in culture supernatants from microglial cells treated with HOCPCA (100 nmol/L and 1 μmol/L) and LPS ( n = 4 per group). Data are presented as the mean ± SEM (* P <0.05, ** P <0.01, *** P <0.001, **** P <0.0001, two-way ANOVA with Tukey's multiple comparisons test).
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Image Search Results


Immunofluorescence labeling of PFA-fixed wild type and C3 -/- mouse eyecup tissue with A) anti-C3 (MP Biomedicals, 55463) and B) anti-C3d (R&D Systems, AF2655) antibodies, showing genuine antibody labeling in the RPE of wild type samples, localized primarily to the basal side of the RPE. Note suspected non- specific binding of the anti-C3 primary antibody to photoreceptor outer segments (OS). Abca4 -/- samples were included as a no primary control, to show general tissue AF. Labeling using the anti-C3 antibody was performed using frozen sections and labeling using the anti-C3d antibody was performed using paraffin-embedded tissue sections. General tissue AF at 488 nm was included to assist in identifying eyecup structures and for comparison to immunofluorescence signal in the no primary control conditions. Note that each C3 antibody may detect multiple C3 fragments. The scale bar represents 10 µm and is consistent across all images. Choroid, RPE and OS are shown. Arrowheads show red blood cells, which are fluorescent at 488 nm in paraffin sections. Arrows show the location of suspected RPE basal labyrinth.

Journal: bioRxiv

Article Title: Loss of Complement Factor D suppresses alternative pathway activation but fails to reduce lipofuscin accumulation in the retinal pigmented epithelium of Abca4 -/- mice

doi: 10.1101/2025.10.25.684461

Figure Lengend Snippet: Immunofluorescence labeling of PFA-fixed wild type and C3 -/- mouse eyecup tissue with A) anti-C3 (MP Biomedicals, 55463) and B) anti-C3d (R&D Systems, AF2655) antibodies, showing genuine antibody labeling in the RPE of wild type samples, localized primarily to the basal side of the RPE. Note suspected non- specific binding of the anti-C3 primary antibody to photoreceptor outer segments (OS). Abca4 -/- samples were included as a no primary control, to show general tissue AF. Labeling using the anti-C3 antibody was performed using frozen sections and labeling using the anti-C3d antibody was performed using paraffin-embedded tissue sections. General tissue AF at 488 nm was included to assist in identifying eyecup structures and for comparison to immunofluorescence signal in the no primary control conditions. Note that each C3 antibody may detect multiple C3 fragments. The scale bar represents 10 µm and is consistent across all images. Choroid, RPE and OS are shown. Arrowheads show red blood cells, which are fluorescent at 488 nm in paraffin sections. Arrows show the location of suspected RPE basal labyrinth.

Article Snippet: C3 labeling was quantified in mouse eyecup structures, such as the RPE and choroid, using antibodies generated against full-length mouse C3 protein (referred to as “anti-C3”, MP Biomedicals) or purified mouse C3d (referred to as “anti-C3d”, R&D Systems) ( ).

Techniques: Immunofluorescence, Labeling, Antibody Labeling, Binding Assay, Control, Comparison

A) Representative images showing immunofluorescence labelling in PFA-fixed wild type, Abca4 -/- , Cfd -/- and Abca4 -/- ; Cfd -/- mouse eyecup tissue sections, using anti-C3 (MP Biomedicals) and anti-C3d (R&D Systems) antibodies. Anti-C3 immunofluorescence was performed using 6-12-mo frozen sections and anti-C3d immunofluorescence was performed using 12-mo paraffin embedded sections. For each image, 488 nm AF (green) and C3 immunofluorescence (magenta) are shown together, to aid in localizing the immunofluorescence signal. C3 immunofluorescence is also shown on its own in greyscale. Choroid, RPE and photoreceptor outer segments (OS) are labelled, with dotted lines indicating the basal (top) and apical (bottom) boundaries of the RPE. Arrowheads show the location of Bruch’s membrane, between the RPE basal labyrinth and the choroid region. Scale bar represents 10 µm. B-C) Quantification of total RPE immunofluorescence signal in each genotype using the anti-C3 and anti-C3d antibodies, respectively. Total immunofluorescence was quantified by measuring the mean immunofluorescence signal in the RPE of 3-4 images minus the fluorescent signal in 3-4 no primary antibody control images, per mouse. Each data point represents one mouse. Mean +/- 95% C.I. are shown. Data were analyzed by 1-way ANOVA with Tukey’s multiple comparisons test. **** indicates p<=0.0001

Journal: bioRxiv

Article Title: Loss of Complement Factor D suppresses alternative pathway activation but fails to reduce lipofuscin accumulation in the retinal pigmented epithelium of Abca4 -/- mice

doi: 10.1101/2025.10.25.684461

Figure Lengend Snippet: A) Representative images showing immunofluorescence labelling in PFA-fixed wild type, Abca4 -/- , Cfd -/- and Abca4 -/- ; Cfd -/- mouse eyecup tissue sections, using anti-C3 (MP Biomedicals) and anti-C3d (R&D Systems) antibodies. Anti-C3 immunofluorescence was performed using 6-12-mo frozen sections and anti-C3d immunofluorescence was performed using 12-mo paraffin embedded sections. For each image, 488 nm AF (green) and C3 immunofluorescence (magenta) are shown together, to aid in localizing the immunofluorescence signal. C3 immunofluorescence is also shown on its own in greyscale. Choroid, RPE and photoreceptor outer segments (OS) are labelled, with dotted lines indicating the basal (top) and apical (bottom) boundaries of the RPE. Arrowheads show the location of Bruch’s membrane, between the RPE basal labyrinth and the choroid region. Scale bar represents 10 µm. B-C) Quantification of total RPE immunofluorescence signal in each genotype using the anti-C3 and anti-C3d antibodies, respectively. Total immunofluorescence was quantified by measuring the mean immunofluorescence signal in the RPE of 3-4 images minus the fluorescent signal in 3-4 no primary antibody control images, per mouse. Each data point represents one mouse. Mean +/- 95% C.I. are shown. Data were analyzed by 1-way ANOVA with Tukey’s multiple comparisons test. **** indicates p<=0.0001

Article Snippet: C3 labeling was quantified in mouse eyecup structures, such as the RPE and choroid, using antibodies generated against full-length mouse C3 protein (referred to as “anti-C3”, MP Biomedicals) or purified mouse C3d (referred to as “anti-C3d”, R&D Systems) ( ).

Techniques: Immunofluorescence, Membrane, Control

A) Schematic representation of production and breakdown of the C3 protein. Estimated fragment molecular weights under reducing conditions are shown. Western blot was performed using eyecup lysate (RPE, choroid, sclera) detected using an antibody made against the C3d region (anti-C3d). Yellow shows the C3d region of the protein, which is part of the C3 α-chain (C3α). Note that the C3d region of the C3 protein contains the thioester site, which participates in covalent binding to target molecules (yellow arrowheads), potentially affecting fragment molecular weight of the C3b, iC3b, C3dg and C3d α-chain. B) Qualitative western blot images showing labelling of wild type and C3 -/- eyecup tissue using the anti-C3d antibody. Marked regions i-vi indicate C3 fragments of interest and are shown zoomed-in in greyscale in panel (C) with predicted C3 fragment identities indicated.

Journal: bioRxiv

Article Title: Loss of Complement Factor D suppresses alternative pathway activation but fails to reduce lipofuscin accumulation in the retinal pigmented epithelium of Abca4 -/- mice

doi: 10.1101/2025.10.25.684461

Figure Lengend Snippet: A) Schematic representation of production and breakdown of the C3 protein. Estimated fragment molecular weights under reducing conditions are shown. Western blot was performed using eyecup lysate (RPE, choroid, sclera) detected using an antibody made against the C3d region (anti-C3d). Yellow shows the C3d region of the protein, which is part of the C3 α-chain (C3α). Note that the C3d region of the C3 protein contains the thioester site, which participates in covalent binding to target molecules (yellow arrowheads), potentially affecting fragment molecular weight of the C3b, iC3b, C3dg and C3d α-chain. B) Qualitative western blot images showing labelling of wild type and C3 -/- eyecup tissue using the anti-C3d antibody. Marked regions i-vi indicate C3 fragments of interest and are shown zoomed-in in greyscale in panel (C) with predicted C3 fragment identities indicated.

Article Snippet: C3 labeling was quantified in mouse eyecup structures, such as the RPE and choroid, using antibodies generated against full-length mouse C3 protein (referred to as “anti-C3”, MP Biomedicals) or purified mouse C3d (referred to as “anti-C3d”, R&D Systems) ( ).

Techniques: Western Blot, Binding Assay, Molecular Weight

A) Representative blots labelled with the anti-C3d antibody, showing all genotypes. Note the faint C3 α-chain fragment detected with the anti-C3d antibody, which may be the opsonized iC3b α62 fragment (ops iC3b) and was frequently detected in Cfd +/+ but not Cfd -/- conditions. Arrowhead (*) indicates the suspected opsonized C3b α-chain fragment selected for quantification. Higher molecular weight opsonized C3bα fragments were not quantified due to transfer inconsistencies and blot damage, which frequently affected the high molecular weight region of the blots. Rpe65 and β-actin were included as loading controls. B) Quantification of various C3 fragments under reducing conditions from mouse eyecup lysate, detected by the anti-C3d antibody. Animals used in this experiment range from 6-12 months of age. Relative quantities of C3 preprotein, C3α, iC3(H2O) α72, opsonized C3bα (*), iC3b α62 and C3dg were normalized to Rpe65 and β-actin, which were shown to have stable signal across the experimental conditions of interest (Supplementary Figure 6). Given the large number of experimental conditions, samples were run across multiple blots with a mix of genotypes per blot. To control for variability between blots, normalized C3 fragment quantities were expressed relative to the C3α fragment from WT samples. Note that quantities of C3α and iC3(H2O) α72 (filled circles) are represented on the left y-axis, and quantities of the preprotein, opsonized C3bα, iC3b α62 and C3dg fragments (empty circles) are represented on the right y-axis. Data were analyzed using a two-way ANOVA, revealing an effect of C3 fragment (p<0.0001), genotype (p<0.0001) and C3 fragment X genotype (p<0.0001). Multiple comparisons were performed using Tukey’s test, and p-values <0.05 are shown on the graph. C-D) Analysis of data from D, organized by independent variable (Abca4 genotype and Cfd genotype, respectively). Within each C3 fragment, data are represented relative to the respective control conditions ( Abca4 +/+ or Cfd +/+ ). Data were analyzed using a two-way ANOVA, revealing an effect of C3 fragment X genotype for the Cfd genotype (p<0.0001) but not Abca4 genotype (p=0.6). Multiple comparisons were performed using Šídák’s test, and p-values <0.05 are shown on the graph. Each data point is a measurement from a single animal, and data are represented as mean +/- 95% C.I. for all graphs.

Journal: bioRxiv

Article Title: Loss of Complement Factor D suppresses alternative pathway activation but fails to reduce lipofuscin accumulation in the retinal pigmented epithelium of Abca4 -/- mice

doi: 10.1101/2025.10.25.684461

Figure Lengend Snippet: A) Representative blots labelled with the anti-C3d antibody, showing all genotypes. Note the faint C3 α-chain fragment detected with the anti-C3d antibody, which may be the opsonized iC3b α62 fragment (ops iC3b) and was frequently detected in Cfd +/+ but not Cfd -/- conditions. Arrowhead (*) indicates the suspected opsonized C3b α-chain fragment selected for quantification. Higher molecular weight opsonized C3bα fragments were not quantified due to transfer inconsistencies and blot damage, which frequently affected the high molecular weight region of the blots. Rpe65 and β-actin were included as loading controls. B) Quantification of various C3 fragments under reducing conditions from mouse eyecup lysate, detected by the anti-C3d antibody. Animals used in this experiment range from 6-12 months of age. Relative quantities of C3 preprotein, C3α, iC3(H2O) α72, opsonized C3bα (*), iC3b α62 and C3dg were normalized to Rpe65 and β-actin, which were shown to have stable signal across the experimental conditions of interest (Supplementary Figure 6). Given the large number of experimental conditions, samples were run across multiple blots with a mix of genotypes per blot. To control for variability between blots, normalized C3 fragment quantities were expressed relative to the C3α fragment from WT samples. Note that quantities of C3α and iC3(H2O) α72 (filled circles) are represented on the left y-axis, and quantities of the preprotein, opsonized C3bα, iC3b α62 and C3dg fragments (empty circles) are represented on the right y-axis. Data were analyzed using a two-way ANOVA, revealing an effect of C3 fragment (p<0.0001), genotype (p<0.0001) and C3 fragment X genotype (p<0.0001). Multiple comparisons were performed using Tukey’s test, and p-values <0.05 are shown on the graph. C-D) Analysis of data from D, organized by independent variable (Abca4 genotype and Cfd genotype, respectively). Within each C3 fragment, data are represented relative to the respective control conditions ( Abca4 +/+ or Cfd +/+ ). Data were analyzed using a two-way ANOVA, revealing an effect of C3 fragment X genotype for the Cfd genotype (p<0.0001) but not Abca4 genotype (p=0.6). Multiple comparisons were performed using Šídák’s test, and p-values <0.05 are shown on the graph. Each data point is a measurement from a single animal, and data are represented as mean +/- 95% C.I. for all graphs.

Article Snippet: C3 labeling was quantified in mouse eyecup structures, such as the RPE and choroid, using antibodies generated against full-length mouse C3 protein (referred to as “anti-C3”, MP Biomedicals) or purified mouse C3d (referred to as “anti-C3d”, R&D Systems) ( ).

Techniques: Molecular Weight, High Molecular Weight, Control

A Representative images of microglial morphology labeled with IB4, Phalloidin, complement components C3, and Factor B in primary microglial cultures treated with vehicle or HOCPCA (100 nmol/L), following LPS stimulation. Scale bars, 50 μm. B The fluorescence intensity for complement components C3 and Factor B in microglia after LPS stimulation and HOCPCA treatment ( n = 6 per group). Data are shown as the mean ± SEM (* P < 0.05, ** P < 0.01, *** P < 0.001, **** P < 0.0001, one-way ANOVA with Tukey's test). C ELISA analysis of IL-1β, IL-6, and TNF-α levels in culture supernatants from microglial cells treated with HOCPCA (100 nmol/L and 1 μmol/L) and LPS ( n = 4 per group). Data are presented as the mean ± SEM (* P <0.05, ** P <0.01, *** P <0.001, **** P <0.0001, two-way ANOVA with Tukey's multiple comparisons test).

Journal: Neuroscience Bulletin

Article Title: HOCPCA Exerts Neuroprotection on Retinal Ganglion Cells by Binding to CaMKIIα and Modulating Oxidative Stress and Neuroinflammation in Experimental Glaucoma

doi: 10.1007/s12264-025-01417-0

Figure Lengend Snippet: A Representative images of microglial morphology labeled with IB4, Phalloidin, complement components C3, and Factor B in primary microglial cultures treated with vehicle or HOCPCA (100 nmol/L), following LPS stimulation. Scale bars, 50 μm. B The fluorescence intensity for complement components C3 and Factor B in microglia after LPS stimulation and HOCPCA treatment ( n = 6 per group). Data are shown as the mean ± SEM (* P < 0.05, ** P < 0.01, *** P < 0.001, **** P < 0.0001, one-way ANOVA with Tukey's test). C ELISA analysis of IL-1β, IL-6, and TNF-α levels in culture supernatants from microglial cells treated with HOCPCA (100 nmol/L and 1 μmol/L) and LPS ( n = 4 per group). Data are presented as the mean ± SEM (* P <0.05, ** P <0.01, *** P <0.001, **** P <0.0001, two-way ANOVA with Tukey's multiple comparisons test).

Article Snippet: Complement C3 , MP Biomedicals, LLC, FITC fluorescein-conjugated goat igg fraction to mouse complement c3, #55500 , 1:500 , –.

Techniques: Labeling, Fluorescence, Enzyme-linked Immunosorbent Assay