α cgrp Search Results


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(A) Schematics of the experiment. Rag1 -/- female mice received daily subcutaneous injections of low-dose IL-2 (30,000 I.U.) or PBS for 4 weeks, 4 weeks after ovariectomy or sham operation. (B) Representative 3D μCT images of the distal femurs. (C) Quantification of μCT images by BV/TV (bone volume per tissue volume), Tb.N (trabecular number), Tb.Sp (trabecular separation), and Tb.Th (trabecular thickness), n=7-10 per group, bar indicates mean, one-way ANOVA, ∗P<0.05, ∗∗P<0.01. (D) Representative histological images of bone sections stained with H&E (top), TRAP (middle), and anti-TRAP immunohistochemistry (bottom) to evaluate the abundance of osteoclasts on bone surface. (E) UMAP visualization of bone marrow innate lymphoid cell (ILC) subsets from scRNA-seq data (Left) with key genes identifying ILC2s and ILC1s/ILC3s subclusters (Right). (F) Split UMAP visualization showing the distribution of bone marrow ILCs in each treatment group. (G) Pie charts showing the ratio of ILC2s to ILC1s/ILC3s. (H-I) Representative flow cytometry plots (H) and the quantification of BM-ILC2s (Lin - CD45 + CD127 + ST2 + Sca-1 + ) in WT and Rag1 -/- mice (I) . (J) Volcano plot of bulk RNA-seq data from purified ILC2s showing differential expression between control and IL-2 treated groups. (K) GO Pathway enrichment analysis of ILC2s comparing OVX vs. OVX + IL-2 groups from scRNA-seq data. (L-M) FACS sorted bone marrow CD3 - B220 - NK1.1 - CD11b + cells and ILC2s (Lin - CD45 + CD127 + Sca-1 + ST2 + ) from WT, Il10 -/- , <t>Calca</t> -/- and Il10 -/- Calca -/- (DKO) were cocultured at indicated ratios, in the presence of 20 ng/ml M-CSF and 50 ng/ml RANKL. Osteoclast formation was evaluated by TRAP staining. Representative images (L) and quantification (M) of TRAP + multinucleated (nuclei > 3) cells. Representative of at least 3 independent experiments. Bar indicates mean, one-way ANOVA, ∗∗P<0.01, ∗∗∗P<0.001, ∗∗∗∗P<0.0001. (N) Flow cytometry analysis of peripheral blood ILC2s in healthy donors (n=27) compared to patients with osteoporosis (n=17). T-test, ∗P<0.05. (O) Pearson correlation analysis between ILC2s and clinical samples with available BMD T-score, n=24, black indicates healthy donor, red indicates osteoporosis patients.
Cgrp Elisa Kit, supplied by Boster Bio, 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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(A) Schematics of the experiment. Rag1 -/- female mice received daily subcutaneous injections of low-dose IL-2 (30,000 I.U.) or PBS for 4 weeks, 4 weeks after ovariectomy or sham operation. (B) Representative 3D μCT images of the distal femurs. (C) Quantification of μCT images by BV/TV (bone volume per tissue volume), Tb.N (trabecular number), Tb.Sp (trabecular separation), and Tb.Th (trabecular thickness), n=7-10 per group, bar indicates mean, one-way ANOVA, ∗P<0.05, ∗∗P<0.01. (D) Representative histological images of bone sections stained with H&E (top), TRAP (middle), and anti-TRAP immunohistochemistry (bottom) to evaluate the abundance of osteoclasts on bone surface. (E) UMAP visualization of bone marrow innate lymphoid cell (ILC) subsets from scRNA-seq data (Left) with key genes identifying ILC2s and ILC1s/ILC3s subclusters (Right). (F) Split UMAP visualization showing the distribution of bone marrow ILCs in each treatment group. (G) Pie charts showing the ratio of ILC2s to ILC1s/ILC3s. (H-I) Representative flow cytometry plots (H) and the quantification of BM-ILC2s (Lin - CD45 + CD127 + ST2 + Sca-1 + ) in WT and Rag1 -/- mice (I) . (J) Volcano plot of bulk RNA-seq data from purified ILC2s showing differential expression between control and IL-2 treated groups. (K) GO Pathway enrichment analysis of ILC2s comparing OVX vs. OVX + IL-2 groups from scRNA-seq data. (L-M) FACS sorted bone marrow CD3 - B220 - NK1.1 - CD11b + cells and ILC2s (Lin - CD45 + CD127 + Sca-1 + ST2 + ) from WT, Il10 -/- , <t>Calca</t> -/- and Il10 -/- Calca -/- (DKO) were cocultured at indicated ratios, in the presence of 20 ng/ml M-CSF and 50 ng/ml RANKL. Osteoclast formation was evaluated by TRAP staining. Representative images (L) and quantification (M) of TRAP + multinucleated (nuclei > 3) cells. Representative of at least 3 independent experiments. Bar indicates mean, one-way ANOVA, ∗∗P<0.01, ∗∗∗P<0.001, ∗∗∗∗P<0.0001. (N) Flow cytometry analysis of peripheral blood ILC2s in healthy donors (n=27) compared to patients with osteoporosis (n=17). T-test, ∗P<0.05. (O) Pearson correlation analysis between ILC2s and clinical samples with available BMD T-score, n=24, black indicates healthy donor, red indicates osteoporosis patients.
α Cgrp Infusion, supplied by Tocris, used in various techniques. Bioz Stars score: 92/100, based on 1 PubMed citations. ZERO BIAS - scores, article reviews, protocol conditions and more
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Shanghai Korain Biotech Co Ltd cgrp
(A) Schematics of the experiment. Rag1 -/- female mice received daily subcutaneous injections of low-dose IL-2 (30,000 I.U.) or PBS for 4 weeks, 4 weeks after ovariectomy or sham operation. (B) Representative 3D μCT images of the distal femurs. (C) Quantification of μCT images by BV/TV (bone volume per tissue volume), Tb.N (trabecular number), Tb.Sp (trabecular separation), and Tb.Th (trabecular thickness), n=7-10 per group, bar indicates mean, one-way ANOVA, ∗P<0.05, ∗∗P<0.01. (D) Representative histological images of bone sections stained with H&E (top), TRAP (middle), and anti-TRAP immunohistochemistry (bottom) to evaluate the abundance of osteoclasts on bone surface. (E) UMAP visualization of bone marrow innate lymphoid cell (ILC) subsets from scRNA-seq data (Left) with key genes identifying ILC2s and ILC1s/ILC3s subclusters (Right). (F) Split UMAP visualization showing the distribution of bone marrow ILCs in each treatment group. (G) Pie charts showing the ratio of ILC2s to ILC1s/ILC3s. (H-I) Representative flow cytometry plots (H) and the quantification of BM-ILC2s (Lin - CD45 + CD127 + ST2 + Sca-1 + ) in WT and Rag1 -/- mice (I) . (J) Volcano plot of bulk RNA-seq data from purified ILC2s showing differential expression between control and IL-2 treated groups. (K) GO Pathway enrichment analysis of ILC2s comparing OVX vs. OVX + IL-2 groups from scRNA-seq data. (L-M) FACS sorted bone marrow CD3 - B220 - NK1.1 - CD11b + cells and ILC2s (Lin - CD45 + CD127 + Sca-1 + ST2 + ) from WT, Il10 -/- , <t>Calca</t> -/- and Il10 -/- Calca -/- (DKO) were cocultured at indicated ratios, in the presence of 20 ng/ml M-CSF and 50 ng/ml RANKL. Osteoclast formation was evaluated by TRAP staining. Representative images (L) and quantification (M) of TRAP + multinucleated (nuclei > 3) cells. Representative of at least 3 independent experiments. Bar indicates mean, one-way ANOVA, ∗∗P<0.01, ∗∗∗P<0.001, ∗∗∗∗P<0.0001. (N) Flow cytometry analysis of peripheral blood ILC2s in healthy donors (n=27) compared to patients with osteoporosis (n=17). T-test, ∗P<0.05. (O) Pearson correlation analysis between ILC2s and clinical samples with available BMD T-score, n=24, black indicates healthy donor, red indicates osteoporosis patients.
Cgrp, supplied by Shanghai Korain Biotech Co Ltd, used in various techniques. Bioz Stars score: 92/100, based on 1 PubMed citations. ZERO BIAS - scores, article reviews, protocol conditions and more
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Bachem rabbit primary antibodies to cgrp
(A) Schematics of the experiment. Rag1 -/- female mice received daily subcutaneous injections of low-dose IL-2 (30,000 I.U.) or PBS for 4 weeks, 4 weeks after ovariectomy or sham operation. (B) Representative 3D μCT images of the distal femurs. (C) Quantification of μCT images by BV/TV (bone volume per tissue volume), Tb.N (trabecular number), Tb.Sp (trabecular separation), and Tb.Th (trabecular thickness), n=7-10 per group, bar indicates mean, one-way ANOVA, ∗P<0.05, ∗∗P<0.01. (D) Representative histological images of bone sections stained with H&E (top), TRAP (middle), and anti-TRAP immunohistochemistry (bottom) to evaluate the abundance of osteoclasts on bone surface. (E) UMAP visualization of bone marrow innate lymphoid cell (ILC) subsets from scRNA-seq data (Left) with key genes identifying ILC2s and ILC1s/ILC3s subclusters (Right). (F) Split UMAP visualization showing the distribution of bone marrow ILCs in each treatment group. (G) Pie charts showing the ratio of ILC2s to ILC1s/ILC3s. (H-I) Representative flow cytometry plots (H) and the quantification of BM-ILC2s (Lin - CD45 + CD127 + ST2 + Sca-1 + ) in WT and Rag1 -/- mice (I) . (J) Volcano plot of bulk RNA-seq data from purified ILC2s showing differential expression between control and IL-2 treated groups. (K) GO Pathway enrichment analysis of ILC2s comparing OVX vs. OVX + IL-2 groups from scRNA-seq data. (L-M) FACS sorted bone marrow CD3 - B220 - NK1.1 - CD11b + cells and ILC2s (Lin - CD45 + CD127 + Sca-1 + ST2 + ) from WT, Il10 -/- , <t>Calca</t> -/- and Il10 -/- Calca -/- (DKO) were cocultured at indicated ratios, in the presence of 20 ng/ml M-CSF and 50 ng/ml RANKL. Osteoclast formation was evaluated by TRAP staining. Representative images (L) and quantification (M) of TRAP + multinucleated (nuclei > 3) cells. Representative of at least 3 independent experiments. Bar indicates mean, one-way ANOVA, ∗∗P<0.01, ∗∗∗P<0.001, ∗∗∗∗P<0.0001. (N) Flow cytometry analysis of peripheral blood ILC2s in healthy donors (n=27) compared to patients with osteoporosis (n=17). T-test, ∗P<0.05. (O) Pearson correlation analysis between ILC2s and clinical samples with available BMD T-score, n=24, black indicates healthy donor, red indicates osteoporosis patients.
Rabbit Primary Antibodies To Cgrp, supplied by Bachem, used in various techniques. Bioz Stars score: 90/100, based on 1 PubMed citations. ZERO BIAS - scores, article reviews, protocol conditions and more
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Biomol GmbH cgrp antibody sheep
(A) Schematics of the experiment. Rag1 -/- female mice received daily subcutaneous injections of low-dose IL-2 (30,000 I.U.) or PBS for 4 weeks, 4 weeks after ovariectomy or sham operation. (B) Representative 3D μCT images of the distal femurs. (C) Quantification of μCT images by BV/TV (bone volume per tissue volume), Tb.N (trabecular number), Tb.Sp (trabecular separation), and Tb.Th (trabecular thickness), n=7-10 per group, bar indicates mean, one-way ANOVA, ∗P<0.05, ∗∗P<0.01. (D) Representative histological images of bone sections stained with H&E (top), TRAP (middle), and anti-TRAP immunohistochemistry (bottom) to evaluate the abundance of osteoclasts on bone surface. (E) UMAP visualization of bone marrow innate lymphoid cell (ILC) subsets from scRNA-seq data (Left) with key genes identifying ILC2s and ILC1s/ILC3s subclusters (Right). (F) Split UMAP visualization showing the distribution of bone marrow ILCs in each treatment group. (G) Pie charts showing the ratio of ILC2s to ILC1s/ILC3s. (H-I) Representative flow cytometry plots (H) and the quantification of BM-ILC2s (Lin - CD45 + CD127 + ST2 + Sca-1 + ) in WT and Rag1 -/- mice (I) . (J) Volcano plot of bulk RNA-seq data from purified ILC2s showing differential expression between control and IL-2 treated groups. (K) GO Pathway enrichment analysis of ILC2s comparing OVX vs. OVX + IL-2 groups from scRNA-seq data. (L-M) FACS sorted bone marrow CD3 - B220 - NK1.1 - CD11b + cells and ILC2s (Lin - CD45 + CD127 + Sca-1 + ST2 + ) from WT, Il10 -/- , <t>Calca</t> -/- and Il10 -/- Calca -/- (DKO) were cocultured at indicated ratios, in the presence of 20 ng/ml M-CSF and 50 ng/ml RANKL. Osteoclast formation was evaluated by TRAP staining. Representative images (L) and quantification (M) of TRAP + multinucleated (nuclei > 3) cells. Representative of at least 3 independent experiments. Bar indicates mean, one-way ANOVA, ∗∗P<0.01, ∗∗∗P<0.001, ∗∗∗∗P<0.0001. (N) Flow cytometry analysis of peripheral blood ILC2s in healthy donors (n=27) compared to patients with osteoporosis (n=17). T-test, ∗P<0.05. (O) Pearson correlation analysis between ILC2s and clinical samples with available BMD T-score, n=24, black indicates healthy donor, red indicates osteoporosis patients.
Cgrp Antibody Sheep, supplied by Biomol GmbH, used in various techniques. Bioz Stars score: 90/100, based on 1 PubMed citations. ZERO BIAS - scores, article reviews, protocol conditions and more
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(A) Schematics of the experiment. Rag1 -/- female mice received daily subcutaneous injections of low-dose IL-2 (30,000 I.U.) or PBS for 4 weeks, 4 weeks after ovariectomy or sham operation. (B) Representative 3D μCT images of the distal femurs. (C) Quantification of μCT images by BV/TV (bone volume per tissue volume), Tb.N (trabecular number), Tb.Sp (trabecular separation), and Tb.Th (trabecular thickness), n=7-10 per group, bar indicates mean, one-way ANOVA, ∗P<0.05, ∗∗P<0.01. (D) Representative histological images of bone sections stained with H&E (top), TRAP (middle), and anti-TRAP immunohistochemistry (bottom) to evaluate the abundance of osteoclasts on bone surface. (E) UMAP visualization of bone marrow innate lymphoid cell (ILC) subsets from scRNA-seq data (Left) with key genes identifying ILC2s and ILC1s/ILC3s subclusters (Right). (F) Split UMAP visualization showing the distribution of bone marrow ILCs in each treatment group. (G) Pie charts showing the ratio of ILC2s to ILC1s/ILC3s. (H-I) Representative flow cytometry plots (H) and the quantification of BM-ILC2s (Lin - CD45 + CD127 + ST2 + Sca-1 + ) in WT and Rag1 -/- mice (I) . (J) Volcano plot of bulk RNA-seq data from purified ILC2s showing differential expression between control and IL-2 treated groups. (K) GO Pathway enrichment analysis of ILC2s comparing OVX vs. OVX + IL-2 groups from scRNA-seq data. (L-M) FACS sorted bone marrow CD3 - B220 - NK1.1 - CD11b + cells and ILC2s (Lin - CD45 + CD127 + Sca-1 + ST2 + ) from WT, Il10 -/- , <t>Calca</t> -/- and Il10 -/- Calca -/- (DKO) were cocultured at indicated ratios, in the presence of 20 ng/ml M-CSF and 50 ng/ml RANKL. Osteoclast formation was evaluated by TRAP staining. Representative images (L) and quantification (M) of TRAP + multinucleated (nuclei > 3) cells. Representative of at least 3 independent experiments. Bar indicates mean, one-way ANOVA, ∗∗P<0.01, ∗∗∗P<0.001, ∗∗∗∗P<0.0001. (N) Flow cytometry analysis of peripheral blood ILC2s in healthy donors (n=27) compared to patients with osteoporosis (n=17). T-test, ∗P<0.05. (O) Pearson correlation analysis between ILC2s and clinical samples with available BMD T-score, n=24, black indicates healthy donor, red indicates osteoporosis patients.
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Image Search Results


(A) Schematics of the experiment. Rag1 -/- female mice received daily subcutaneous injections of low-dose IL-2 (30,000 I.U.) or PBS for 4 weeks, 4 weeks after ovariectomy or sham operation. (B) Representative 3D μCT images of the distal femurs. (C) Quantification of μCT images by BV/TV (bone volume per tissue volume), Tb.N (trabecular number), Tb.Sp (trabecular separation), and Tb.Th (trabecular thickness), n=7-10 per group, bar indicates mean, one-way ANOVA, ∗P<0.05, ∗∗P<0.01. (D) Representative histological images of bone sections stained with H&E (top), TRAP (middle), and anti-TRAP immunohistochemistry (bottom) to evaluate the abundance of osteoclasts on bone surface. (E) UMAP visualization of bone marrow innate lymphoid cell (ILC) subsets from scRNA-seq data (Left) with key genes identifying ILC2s and ILC1s/ILC3s subclusters (Right). (F) Split UMAP visualization showing the distribution of bone marrow ILCs in each treatment group. (G) Pie charts showing the ratio of ILC2s to ILC1s/ILC3s. (H-I) Representative flow cytometry plots (H) and the quantification of BM-ILC2s (Lin - CD45 + CD127 + ST2 + Sca-1 + ) in WT and Rag1 -/- mice (I) . (J) Volcano plot of bulk RNA-seq data from purified ILC2s showing differential expression between control and IL-2 treated groups. (K) GO Pathway enrichment analysis of ILC2s comparing OVX vs. OVX + IL-2 groups from scRNA-seq data. (L-M) FACS sorted bone marrow CD3 - B220 - NK1.1 - CD11b + cells and ILC2s (Lin - CD45 + CD127 + Sca-1 + ST2 + ) from WT, Il10 -/- , Calca -/- and Il10 -/- Calca -/- (DKO) were cocultured at indicated ratios, in the presence of 20 ng/ml M-CSF and 50 ng/ml RANKL. Osteoclast formation was evaluated by TRAP staining. Representative images (L) and quantification (M) of TRAP + multinucleated (nuclei > 3) cells. Representative of at least 3 independent experiments. Bar indicates mean, one-way ANOVA, ∗∗P<0.01, ∗∗∗P<0.001, ∗∗∗∗P<0.0001. (N) Flow cytometry analysis of peripheral blood ILC2s in healthy donors (n=27) compared to patients with osteoporosis (n=17). T-test, ∗P<0.05. (O) Pearson correlation analysis between ILC2s and clinical samples with available BMD T-score, n=24, black indicates healthy donor, red indicates osteoporosis patients.

Journal: bioRxiv

Article Title: Therapeutic interleukin-2 rewires skeletal-immune circuits to reverse postmenopausal bone loss

doi: 10.64898/2026.01.07.696511

Figure Lengend Snippet: (A) Schematics of the experiment. Rag1 -/- female mice received daily subcutaneous injections of low-dose IL-2 (30,000 I.U.) or PBS for 4 weeks, 4 weeks after ovariectomy or sham operation. (B) Representative 3D μCT images of the distal femurs. (C) Quantification of μCT images by BV/TV (bone volume per tissue volume), Tb.N (trabecular number), Tb.Sp (trabecular separation), and Tb.Th (trabecular thickness), n=7-10 per group, bar indicates mean, one-way ANOVA, ∗P<0.05, ∗∗P<0.01. (D) Representative histological images of bone sections stained with H&E (top), TRAP (middle), and anti-TRAP immunohistochemistry (bottom) to evaluate the abundance of osteoclasts on bone surface. (E) UMAP visualization of bone marrow innate lymphoid cell (ILC) subsets from scRNA-seq data (Left) with key genes identifying ILC2s and ILC1s/ILC3s subclusters (Right). (F) Split UMAP visualization showing the distribution of bone marrow ILCs in each treatment group. (G) Pie charts showing the ratio of ILC2s to ILC1s/ILC3s. (H-I) Representative flow cytometry plots (H) and the quantification of BM-ILC2s (Lin - CD45 + CD127 + ST2 + Sca-1 + ) in WT and Rag1 -/- mice (I) . (J) Volcano plot of bulk RNA-seq data from purified ILC2s showing differential expression between control and IL-2 treated groups. (K) GO Pathway enrichment analysis of ILC2s comparing OVX vs. OVX + IL-2 groups from scRNA-seq data. (L-M) FACS sorted bone marrow CD3 - B220 - NK1.1 - CD11b + cells and ILC2s (Lin - CD45 + CD127 + Sca-1 + ST2 + ) from WT, Il10 -/- , Calca -/- and Il10 -/- Calca -/- (DKO) were cocultured at indicated ratios, in the presence of 20 ng/ml M-CSF and 50 ng/ml RANKL. Osteoclast formation was evaluated by TRAP staining. Representative images (L) and quantification (M) of TRAP + multinucleated (nuclei > 3) cells. Representative of at least 3 independent experiments. Bar indicates mean, one-way ANOVA, ∗∗P<0.01, ∗∗∗P<0.001, ∗∗∗∗P<0.0001. (N) Flow cytometry analysis of peripheral blood ILC2s in healthy donors (n=27) compared to patients with osteoporosis (n=17). T-test, ∗P<0.05. (O) Pearson correlation analysis between ILC2s and clinical samples with available BMD T-score, n=24, black indicates healthy donor, red indicates osteoporosis patients.

Article Snippet: The concentrations of IL-10 and CGRP in cultured ILC2 supernatants were measured using mouse IL-10 ELISA Kit (Biolegend) and CGRP ELISA kit (Boster), according to the manufacturer’s instruction.

Techniques: Staining, Immunohistochemistry, Flow Cytometry, RNA Sequencing, Purification, Quantitative Proteomics, Control