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Structured Review

Proteintech col1
Biological functional analysis of tri-layer scaffold systems. A) Representative images of migrated cells stained with crystal violet at 48 h. B) Number of migrating cells in control and CE-SKP. C) Glycosaminoglycan concentrations in control and CE-SKP at 7 and 14 days. D) qPCR analysis for COL2, SOX9, and ACAN. E) Western blotting of COL2 and SOX9. F) Alizarin red staining of control and CPH. G) ALP activity of control and CPH. H) qPCR analysis for <t>COL1,</t> COL10, OCN, and RUNX2. I) Western blotting of COL10, COL1, and RUNX2. J) Representative images of migrated cells stained with crystal violet at 48 h. K) Number of migrating cells in control and P2G3. L) Scanning electron microscope micrographs of P2G3. ∗P < 0.05, ∗∗P < 0.01, ∗∗∗P < 0.001.
Col1, supplied by Proteintech, used in various techniques. Bioz Stars score: 96/100, based on 650 PubMed citations. ZERO BIAS - scores, article reviews, protocol conditions and more
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col1 - by Bioz Stars, 2026-02
96/100 stars

Images

1) Product Images from "Bioinspired scaffold recapitulating chondrogenic ontogeny and microenvironment for functional cartilage regeneration"

Article Title: Bioinspired scaffold recapitulating chondrogenic ontogeny and microenvironment for functional cartilage regeneration

Journal: Bioactive Materials

doi: 10.1016/j.bioactmat.2025.11.041

Biological functional analysis of tri-layer scaffold systems. A) Representative images of migrated cells stained with crystal violet at 48 h. B) Number of migrating cells in control and CE-SKP. C) Glycosaminoglycan concentrations in control and CE-SKP at 7 and 14 days. D) qPCR analysis for COL2, SOX9, and ACAN. E) Western blotting of COL2 and SOX9. F) Alizarin red staining of control and CPH. G) ALP activity of control and CPH. H) qPCR analysis for COL1, COL10, OCN, and RUNX2. I) Western blotting of COL10, COL1, and RUNX2. J) Representative images of migrated cells stained with crystal violet at 48 h. K) Number of migrating cells in control and P2G3. L) Scanning electron microscope micrographs of P2G3. ∗P < 0.05, ∗∗P < 0.01, ∗∗∗P < 0.001.
Figure Legend Snippet: Biological functional analysis of tri-layer scaffold systems. A) Representative images of migrated cells stained with crystal violet at 48 h. B) Number of migrating cells in control and CE-SKP. C) Glycosaminoglycan concentrations in control and CE-SKP at 7 and 14 days. D) qPCR analysis for COL2, SOX9, and ACAN. E) Western blotting of COL2 and SOX9. F) Alizarin red staining of control and CPH. G) ALP activity of control and CPH. H) qPCR analysis for COL1, COL10, OCN, and RUNX2. I) Western blotting of COL10, COL1, and RUNX2. J) Representative images of migrated cells stained with crystal violet at 48 h. K) Number of migrating cells in control and P2G3. L) Scanning electron microscope micrographs of P2G3. ∗P < 0.05, ∗∗P < 0.01, ∗∗∗P < 0.001.

Techniques Used: Functional Assay, Staining, Control, Western Blot, Activity Assay, Microscopy

Regeneration of the femoral trochlea in a rabbit model. Representative images of IHC staining for A) COL1, B) COL10.
Figure Legend Snippet: Regeneration of the femoral trochlea in a rabbit model. Representative images of IHC staining for A) COL1, B) COL10.

Techniques Used: Immunohistochemistry



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Biological functional analysis of tri-layer scaffold systems. A) Representative images of migrated cells stained with crystal violet at 48 h. B) Number of migrating cells in control and CE-SKP. C) Glycosaminoglycan concentrations in control and CE-SKP at 7 and 14 days. D) qPCR analysis for COL2, SOX9, and ACAN. E) Western blotting of COL2 and SOX9. F) Alizarin red staining of control and CPH. G) ALP activity of control and CPH. H) qPCR analysis for <t>COL1,</t> COL10, OCN, and RUNX2. I) Western blotting of COL10, COL1, and RUNX2. J) Representative images of migrated cells stained with crystal violet at 48 h. K) Number of migrating cells in control and P2G3. L) Scanning electron microscope micrographs of P2G3. ∗P < 0.05, ∗∗P < 0.01, ∗∗∗P < 0.001.
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Biological functional analysis of tri-layer scaffold systems. A) Representative images of migrated cells stained with crystal violet at 48 h. B) Number of migrating cells in control and CE-SKP. C) Glycosaminoglycan concentrations in control and CE-SKP at 7 and 14 days. D) qPCR analysis for COL2, SOX9, and ACAN. E) Western blotting of COL2 and SOX9. F) Alizarin red staining of control and CPH. G) ALP activity of control and CPH. H) qPCR analysis for <t>COL1,</t> COL10, OCN, and RUNX2. I) Western blotting of COL10, COL1, and RUNX2. J) Representative images of migrated cells stained with crystal violet at 48 h. K) Number of migrating cells in control and P2G3. L) Scanning electron microscope micrographs of P2G3. ∗P < 0.05, ∗∗P < 0.01, ∗∗∗P < 0.001.
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Biological functional analysis of tri-layer scaffold systems. A) Representative images of migrated cells stained with crystal violet at 48 h. B) Number of migrating cells in control and CE-SKP. C) Glycosaminoglycan concentrations in control and CE-SKP at 7 and 14 days. D) qPCR analysis for COL2, SOX9, and ACAN. E) Western blotting of COL2 and SOX9. F) Alizarin red staining of control and CPH. G) ALP activity of control and CPH. H) qPCR analysis for <t>COL1,</t> COL10, OCN, and RUNX2. I) Western blotting of COL10, COL1, and RUNX2. J) Representative images of migrated cells stained with crystal violet at 48 h. K) Number of migrating cells in control and P2G3. L) Scanning electron microscope micrographs of P2G3. ∗P < 0.05, ∗∗P < 0.01, ∗∗∗P < 0.001.
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Image Search Results


Biological functional analysis of tri-layer scaffold systems. A) Representative images of migrated cells stained with crystal violet at 48 h. B) Number of migrating cells in control and CE-SKP. C) Glycosaminoglycan concentrations in control and CE-SKP at 7 and 14 days. D) qPCR analysis for COL2, SOX9, and ACAN. E) Western blotting of COL2 and SOX9. F) Alizarin red staining of control and CPH. G) ALP activity of control and CPH. H) qPCR analysis for COL1, COL10, OCN, and RUNX2. I) Western blotting of COL10, COL1, and RUNX2. J) Representative images of migrated cells stained with crystal violet at 48 h. K) Number of migrating cells in control and P2G3. L) Scanning electron microscope micrographs of P2G3. ∗P < 0.05, ∗∗P < 0.01, ∗∗∗P < 0.001.

Journal: Bioactive Materials

Article Title: Bioinspired scaffold recapitulating chondrogenic ontogeny and microenvironment for functional cartilage regeneration

doi: 10.1016/j.bioactmat.2025.11.041

Figure Lengend Snippet: Biological functional analysis of tri-layer scaffold systems. A) Representative images of migrated cells stained with crystal violet at 48 h. B) Number of migrating cells in control and CE-SKP. C) Glycosaminoglycan concentrations in control and CE-SKP at 7 and 14 days. D) qPCR analysis for COL2, SOX9, and ACAN. E) Western blotting of COL2 and SOX9. F) Alizarin red staining of control and CPH. G) ALP activity of control and CPH. H) qPCR analysis for COL1, COL10, OCN, and RUNX2. I) Western blotting of COL10, COL1, and RUNX2. J) Representative images of migrated cells stained with crystal violet at 48 h. K) Number of migrating cells in control and P2G3. L) Scanning electron microscope micrographs of P2G3. ∗P < 0.05, ∗∗P < 0.01, ∗∗∗P < 0.001.

Article Snippet: After blocking the membranes for an hour at room temperature using fast blocking solution, the membranes were incubated with primary antibodies specific for SOX9 (1:2000, 67439-1-Ig, Proteintech), COL2 (1:200, NBP1-91056, Novus Biologicals), COL10 (1:500, 26984-1-AP, Proteintech), COL1 (1:2000, 67288-1-Ig, Proteintech), RUNX2 (1:200, 20700-1-AP, Proteintech), FGF2 (1:500, 11234-1-AP, Proteintech), FGF18 (1:500, 60341-1-Ig, Proteintech) and GAPDH (1:50000, 60004-1-Ig, Proteintech) for an entire night at 4 °C.

Techniques: Functional Assay, Staining, Control, Western Blot, Activity Assay, Microscopy

Regeneration of the femoral trochlea in a rabbit model. Representative images of IHC staining for A) COL1, B) COL10.

Journal: Bioactive Materials

Article Title: Bioinspired scaffold recapitulating chondrogenic ontogeny and microenvironment for functional cartilage regeneration

doi: 10.1016/j.bioactmat.2025.11.041

Figure Lengend Snippet: Regeneration of the femoral trochlea in a rabbit model. Representative images of IHC staining for A) COL1, B) COL10.

Article Snippet: After blocking the membranes for an hour at room temperature using fast blocking solution, the membranes were incubated with primary antibodies specific for SOX9 (1:2000, 67439-1-Ig, Proteintech), COL2 (1:200, NBP1-91056, Novus Biologicals), COL10 (1:500, 26984-1-AP, Proteintech), COL1 (1:2000, 67288-1-Ig, Proteintech), RUNX2 (1:200, 20700-1-AP, Proteintech), FGF2 (1:500, 11234-1-AP, Proteintech), FGF18 (1:500, 60341-1-Ig, Proteintech) and GAPDH (1:50000, 60004-1-Ig, Proteintech) for an entire night at 4 °C.

Techniques: Immunohistochemistry

Biological functional analysis of tri-layer scaffold systems. A) Representative images of migrated cells stained with crystal violet at 48 h. B) Number of migrating cells in control and CE-SKP. C) Glycosaminoglycan concentrations in control and CE-SKP at 7 and 14 days. D) qPCR analysis for COL2, SOX9, and ACAN. E) Western blotting of COL2 and SOX9. F) Alizarin red staining of control and CPH. G) ALP activity of control and CPH. H) qPCR analysis for COL1, COL10, OCN, and RUNX2. I) Western blotting of COL10, COL1, and RUNX2. J) Representative images of migrated cells stained with crystal violet at 48 h. K) Number of migrating cells in control and P2G3. L) Scanning electron microscope micrographs of P2G3. ∗P < 0.05, ∗∗P < 0.01, ∗∗∗P < 0.001.

Journal: Bioactive Materials

Article Title: Bioinspired scaffold recapitulating chondrogenic ontogeny and microenvironment for functional cartilage regeneration

doi: 10.1016/j.bioactmat.2025.11.041

Figure Lengend Snippet: Biological functional analysis of tri-layer scaffold systems. A) Representative images of migrated cells stained with crystal violet at 48 h. B) Number of migrating cells in control and CE-SKP. C) Glycosaminoglycan concentrations in control and CE-SKP at 7 and 14 days. D) qPCR analysis for COL2, SOX9, and ACAN. E) Western blotting of COL2 and SOX9. F) Alizarin red staining of control and CPH. G) ALP activity of control and CPH. H) qPCR analysis for COL1, COL10, OCN, and RUNX2. I) Western blotting of COL10, COL1, and RUNX2. J) Representative images of migrated cells stained with crystal violet at 48 h. K) Number of migrating cells in control and P2G3. L) Scanning electron microscope micrographs of P2G3. ∗P < 0.05, ∗∗P < 0.01, ∗∗∗P < 0.001.

Article Snippet: To evaluate the regeneration of cartilage, COL1 (1:100, HY- P81227 , MCE), COL2 (1:100, ARG20787 , Arigobio), and COL10 (1:100, BA2023, Boster) were used as a marker in immunohistochemistry (IHC) staining.

Techniques: Functional Assay, Staining, Control, Western Blot, Activity Assay, Microscopy

Regeneration of the femoral trochlea in a rabbit model. Representative images of IHC staining for A) COL1, B) COL10.

Journal: Bioactive Materials

Article Title: Bioinspired scaffold recapitulating chondrogenic ontogeny and microenvironment for functional cartilage regeneration

doi: 10.1016/j.bioactmat.2025.11.041

Figure Lengend Snippet: Regeneration of the femoral trochlea in a rabbit model. Representative images of IHC staining for A) COL1, B) COL10.

Article Snippet: To evaluate the regeneration of cartilage, COL1 (1:100, HY- P81227 , MCE), COL2 (1:100, ARG20787 , Arigobio), and COL10 (1:100, BA2023, Boster) were used as a marker in immunohistochemistry (IHC) staining.

Techniques: Immunohistochemistry

Influence of LCN2 on the growth of lung cancer in mice. (A) Simplified flowchart outlining the establishment of an anti-PD-L1 immunotherapy tolerance model in mice with lung cancer. (B) Western blot analysis of LCN2, COL1A1 and THY1 expression in tumor tissues from drug-resistant and drug-sensitive mice. (C) Immunohistochemical detection of LCN2, COL1A1 and THY1 expression in tumor tissues from drug-resistant and drug-sensitive mice (scale bar, 100 µm). (D) Establishment of a model for anti-PD-L1 immunotherapy in LCN2-silenced mice. (E) Evaluation of LCN2 mRNA expression in tumor tissues after LCN2 gene intervention in mice. (F) Assessment of LCN2 protein expression in tumor tissues following LCN2 gene intervention in mice. (G) Tumor size in LCN2 gene intervention mice (n=10 in each group). *P<0.05, **P<0.01 and ***P<0.001. Unpaired two-tailed Student's t-test was used for (B) and (C) and one-way ANOVA with Tukey's multiple comparisons test was used for (E) and (G). LCN2, lipocalin 2; PD-L1, programmed death-ligand 1; sh-, short hairpin; NC, negative control; COL1A1, collagen α-1(I) chain; THY1, Thy-1 membrane glycoprotein; i.p., intraperitoneal.

Journal: International Journal of Molecular Medicine

Article Title: Deciphering the CAF-LCN2 axis: Key to overcoming anti-PD-L1 immunotherapy resistance in lung cancer

doi: 10.3892/ijmm.2026.5735

Figure Lengend Snippet: Influence of LCN2 on the growth of lung cancer in mice. (A) Simplified flowchart outlining the establishment of an anti-PD-L1 immunotherapy tolerance model in mice with lung cancer. (B) Western blot analysis of LCN2, COL1A1 and THY1 expression in tumor tissues from drug-resistant and drug-sensitive mice. (C) Immunohistochemical detection of LCN2, COL1A1 and THY1 expression in tumor tissues from drug-resistant and drug-sensitive mice (scale bar, 100 µm). (D) Establishment of a model for anti-PD-L1 immunotherapy in LCN2-silenced mice. (E) Evaluation of LCN2 mRNA expression in tumor tissues after LCN2 gene intervention in mice. (F) Assessment of LCN2 protein expression in tumor tissues following LCN2 gene intervention in mice. (G) Tumor size in LCN2 gene intervention mice (n=10 in each group). *P<0.05, **P<0.01 and ***P<0.001. Unpaired two-tailed Student's t-test was used for (B) and (C) and one-way ANOVA with Tukey's multiple comparisons test was used for (E) and (G). LCN2, lipocalin 2; PD-L1, programmed death-ligand 1; sh-, short hairpin; NC, negative control; COL1A1, collagen α-1(I) chain; THY1, Thy-1 membrane glycoprotein; i.p., intraperitoneal.

Article Snippet: Following permeabilization, cells were incubated overnight at 4°C with the following primary antibodies: Rabbit anti-collagen α-1(I) chain (COL1A1) (cat. no. PA5-101300; 1:250; Invitrogen; Thermo Fisher Scientific, Inc.), rabbit anti-Cytokeratin (cat. no. ab53280; 1:500; Abcam) and mouse anti-CD31 (cat. no. sc-376764; 1:50; Santa Cruz Biotechnology, Inc.).

Techniques: Western Blot, Expressing, Immunohistochemical staining, Two Tailed Test, Negative Control, Membrane