tgf b1 Search Results


95
MedChemExpress tgf β1 mouse rat hek293
The impact of nanoscale modification of PEEK implant surfaces on the mechanical perception, proliferation, and expression of fibrosis-related proteins in L929 cells. (A) The expression levels of mechanical perception, proliferation, and fibrosis-related proteins were evaluated in L929 cells cultured on different nanoscale modified PEEK surfaces at multiple time points. (B) The secretion <t>of</t> <t>TGF-β1</t> from L929 cells cultured on various nanoparticle-modified PEEK surfaces was quantified using Elisa at multiple time points. (C) Immunofluorescence analysis was conducted to assess the expression differences of Piezo1, ITGB1, and α-SMA in L929 cells cultured on different nanoparticle-modified PEEK surfaces. (D) Quantitative fluorescence analysis was performed on the data presented in C.
Tgf β1 Mouse Rat Hek293, supplied by MedChemExpress, used in various techniques. Bioz Stars score: 95/100, based on 1 PubMed citations. ZERO BIAS - scores, article reviews, protocol conditions and more
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R&D Systems human tgf immunoassay quantikine
The impact of nanoscale modification of PEEK implant surfaces on the mechanical perception, proliferation, and expression of fibrosis-related proteins in L929 cells. (A) The expression levels of mechanical perception, proliferation, and fibrosis-related proteins were evaluated in L929 cells cultured on different nanoscale modified PEEK surfaces at multiple time points. (B) The secretion <t>of</t> <t>TGF-β1</t> from L929 cells cultured on various nanoparticle-modified PEEK surfaces was quantified using Elisa at multiple time points. (C) Immunofluorescence analysis was conducted to assess the expression differences of Piezo1, ITGB1, and α-SMA in L929 cells cultured on different nanoparticle-modified PEEK surfaces. (D) Quantitative fluorescence analysis was performed on the data presented in C.
Human Tgf Immunoassay Quantikine, supplied by R&D Systems, 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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R&D Systems recombinant tgf β
The impact of nanoscale modification of PEEK implant surfaces on the mechanical perception, proliferation, and expression of fibrosis-related proteins in L929 cells. (A) The expression levels of mechanical perception, proliferation, and fibrosis-related proteins were evaluated in L929 cells cultured on different nanoscale modified PEEK surfaces at multiple time points. (B) The secretion <t>of</t> <t>TGF-β1</t> from L929 cells cultured on various nanoparticle-modified PEEK surfaces was quantified using Elisa at multiple time points. (C) Immunofluorescence analysis was conducted to assess the expression differences of Piezo1, ITGB1, and α-SMA in L929 cells cultured on different nanoparticle-modified PEEK surfaces. (D) Quantitative fluorescence analysis was performed on the data presented in C.
Recombinant Tgf β, supplied by R&D Systems, used in various techniques. Bioz Stars score: 95/100, based on 1 PubMed citations. ZERO BIAS - scores, article reviews, protocol conditions and more
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90
R&D Systems quantikine human tgf b1 immunoassay
The impact of nanoscale modification of PEEK implant surfaces on the mechanical perception, proliferation, and expression of fibrosis-related proteins in L929 cells. (A) The expression levels of mechanical perception, proliferation, and fibrosis-related proteins were evaluated in L929 cells cultured on different nanoscale modified PEEK surfaces at multiple time points. (B) The secretion <t>of</t> <t>TGF-β1</t> from L929 cells cultured on various nanoparticle-modified PEEK surfaces was quantified using Elisa at multiple time points. (C) Immunofluorescence analysis was conducted to assess the expression differences of Piezo1, ITGB1, and α-SMA in L929 cells cultured on different nanoparticle-modified PEEK surfaces. (D) Quantitative fluorescence analysis was performed on the data presented in C.
Quantikine Human Tgf B1 Immunoassay, supplied by R&D Systems, 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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Average 90 stars, based on 1 article reviews
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94
MedChemExpress growth factor beta 1
The impact of nanoscale modification of PEEK implant surfaces on the mechanical perception, proliferation, and expression of fibrosis-related proteins in L929 cells. (A) The expression levels of mechanical perception, proliferation, and fibrosis-related proteins were evaluated in L929 cells cultured on different nanoscale modified PEEK surfaces at multiple time points. (B) The secretion <t>of</t> <t>TGF-β1</t> from L929 cells cultured on various nanoparticle-modified PEEK surfaces was quantified using Elisa at multiple time points. (C) Immunofluorescence analysis was conducted to assess the expression differences of Piezo1, ITGB1, and α-SMA in L929 cells cultured on different nanoparticle-modified PEEK surfaces. (D) Quantitative fluorescence analysis was performed on the data presented in C.
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93
Shanghai Korain Biotech Co Ltd e0134hu
The impact of nanoscale modification of PEEK implant surfaces on the mechanical perception, proliferation, and expression of fibrosis-related proteins in L929 cells. (A) The expression levels of mechanical perception, proliferation, and fibrosis-related proteins were evaluated in L929 cells cultured on different nanoscale modified PEEK surfaces at multiple time points. (B) The secretion <t>of</t> <t>TGF-β1</t> from L929 cells cultured on various nanoparticle-modified PEEK surfaces was quantified using Elisa at multiple time points. (C) Immunofluorescence analysis was conducted to assess the expression differences of Piezo1, ITGB1, and α-SMA in L929 cells cultured on different nanoparticle-modified PEEK surfaces. (D) Quantitative fluorescence analysis was performed on the data presented in C.
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R&D Systems recombinant tgf β 1
The impact of nanoscale modification of PEEK implant surfaces on the mechanical perception, proliferation, and expression of fibrosis-related proteins in L929 cells. (A) The expression levels of mechanical perception, proliferation, and fibrosis-related proteins were evaluated in L929 cells cultured on different nanoscale modified PEEK surfaces at multiple time points. (B) The secretion <t>of</t> <t>TGF-β1</t> from L929 cells cultured on various nanoparticle-modified PEEK surfaces was quantified using Elisa at multiple time points. (C) Immunofluorescence analysis was conducted to assess the expression differences of Piezo1, ITGB1, and α-SMA in L929 cells cultured on different nanoparticle-modified PEEK surfaces. (D) Quantitative fluorescence analysis was performed on the data presented in C.
Recombinant Tgf β 1, supplied by R&D Systems, 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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R&D Systems recombinant latent tgf β1
The impact of nanoscale modification of PEEK implant surfaces on the mechanical perception, proliferation, and expression of fibrosis-related proteins in L929 cells. (A) The expression levels of mechanical perception, proliferation, and fibrosis-related proteins were evaluated in L929 cells cultured on different nanoscale modified PEEK surfaces at multiple time points. (B) The secretion <t>of</t> <t>TGF-β1</t> from L929 cells cultured on various nanoparticle-modified PEEK surfaces was quantified using Elisa at multiple time points. (C) Immunofluorescence analysis was conducted to assess the expression differences of Piezo1, ITGB1, and α-SMA in L929 cells cultured on different nanoparticle-modified PEEK surfaces. (D) Quantitative fluorescence analysis was performed on the data presented in C.
Recombinant Latent Tgf β1, supplied by R&D Systems, used in various techniques. Bioz Stars score: 93/100, based on 1 PubMed citations. ZERO BIAS - scores, article reviews, protocol conditions and more
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90
StressMarq beta1
The impact of nanoscale modification of PEEK implant surfaces on the mechanical perception, proliferation, and expression of fibrosis-related proteins in L929 cells. (A) The expression levels of mechanical perception, proliferation, and fibrosis-related proteins were evaluated in L929 cells cultured on different nanoscale modified PEEK surfaces at multiple time points. (B) The secretion <t>of</t> <t>TGF-β1</t> from L929 cells cultured on various nanoparticle-modified PEEK surfaces was quantified using Elisa at multiple time points. (C) Immunofluorescence analysis was conducted to assess the expression differences of Piezo1, ITGB1, and α-SMA in L929 cells cultured on different nanoparticle-modified PEEK surfaces. (D) Quantitative fluorescence analysis was performed on the data presented in C.
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90
Dr Raymond Laboratories Inc tgf-b1-specific luminometric assay
The impact of nanoscale modification of PEEK implant surfaces on the mechanical perception, proliferation, and expression of fibrosis-related proteins in L929 cells. (A) The expression levels of mechanical perception, proliferation, and fibrosis-related proteins were evaluated in L929 cells cultured on different nanoscale modified PEEK surfaces at multiple time points. (B) The secretion <t>of</t> <t>TGF-β1</t> from L929 cells cultured on various nanoparticle-modified PEEK surfaces was quantified using Elisa at multiple time points. (C) Immunofluorescence analysis was conducted to assess the expression differences of Piezo1, ITGB1, and α-SMA in L929 cells cultured on different nanoparticle-modified PEEK surfaces. (D) Quantitative fluorescence analysis was performed on the data presented in C.
Tgf B1 Specific Luminometric Assay, supplied by Dr Raymond Laboratories Inc, 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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Genentech inc rh tgfb1
The impact of nanoscale modification of PEEK implant surfaces on the mechanical perception, proliferation, and expression of fibrosis-related proteins in L929 cells. (A) The expression levels of mechanical perception, proliferation, and fibrosis-related proteins were evaluated in L929 cells cultured on different nanoscale modified PEEK surfaces at multiple time points. (B) The secretion <t>of</t> <t>TGF-β1</t> from L929 cells cultured on various nanoparticle-modified PEEK surfaces was quantified using Elisa at multiple time points. (C) Immunofluorescence analysis was conducted to assess the expression differences of Piezo1, ITGB1, and α-SMA in L929 cells cultured on different nanoparticle-modified PEEK surfaces. (D) Quantitative fluorescence analysis was performed on the data presented in C.
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Image Search Results


The impact of nanoscale modification of PEEK implant surfaces on the mechanical perception, proliferation, and expression of fibrosis-related proteins in L929 cells. (A) The expression levels of mechanical perception, proliferation, and fibrosis-related proteins were evaluated in L929 cells cultured on different nanoscale modified PEEK surfaces at multiple time points. (B) The secretion of TGF-β1 from L929 cells cultured on various nanoparticle-modified PEEK surfaces was quantified using Elisa at multiple time points. (C) Immunofluorescence analysis was conducted to assess the expression differences of Piezo1, ITGB1, and α-SMA in L929 cells cultured on different nanoparticle-modified PEEK surfaces. (D) Quantitative fluorescence analysis was performed on the data presented in C.

Journal: Materials Today Bio

Article Title: Uniform and controllable surface nano-structure on polyetheretherketone implants can regulate mechanical property to enhance soft tissue integration through Piezo1/TGF-β1 signaling axis

doi: 10.1016/j.mtbio.2025.101645

Figure Lengend Snippet: The impact of nanoscale modification of PEEK implant surfaces on the mechanical perception, proliferation, and expression of fibrosis-related proteins in L929 cells. (A) The expression levels of mechanical perception, proliferation, and fibrosis-related proteins were evaluated in L929 cells cultured on different nanoscale modified PEEK surfaces at multiple time points. (B) The secretion of TGF-β1 from L929 cells cultured on various nanoparticle-modified PEEK surfaces was quantified using Elisa at multiple time points. (C) Immunofluorescence analysis was conducted to assess the expression differences of Piezo1, ITGB1, and α-SMA in L929 cells cultured on different nanoparticle-modified PEEK surfaces. (D) Quantitative fluorescence analysis was performed on the data presented in C.

Article Snippet: TGF-β1 Mouse/Rat (HEK293) (HY-P70648, MedChemExpress LLC., USA).

Techniques: Modification, Expressing, Cell Culture, Enzyme-linked Immunosorbent Assay, Immunofluorescence, Fluorescence

Piezo1 mediates the proliferation and fibrosis enhancement of L929 cells on PEEK implants modified with a 500 nm surface treatment. (A) Changes in calcium influx induced by the specific Piezo1 agonist (Yoda1) and the calcium channel inhibitor (GsMTx-4) were assessed using Fluo-4AM. (B) The fluorescence intensity of calcium accumulation in L929 cells following treatment with Yoda1 and GsMTx-4 was observed under a fluorescence microscope. (C) Quantitative analysis of the average fluorescence intensity presented in B. (D) The regulatory effects of Piezo1 on proliferation-related pathways, fibrosis processes, and adhesion-associated proteins were evaluated separately on PEEK and PEEK-500. (E) RT-qPCR was employed to assess the transcriptional differences in fibrosis-related genes in L929 cells following the activation or inhibition of Piezo1. (F) Changes in TGF-β1 secretion by L929 cells after the activation or inhibition of Piezo1 were analyzed. (G) The involvement of TGF-β1 in fibrosis regulation through the activation and upregulation of Piezo1 was confirmed. (H) Schematic representation of the mechanism by which L929 cells detect mechanical signals from PEEK samples to facilitate soft tissue integration.

Journal: Materials Today Bio

Article Title: Uniform and controllable surface nano-structure on polyetheretherketone implants can regulate mechanical property to enhance soft tissue integration through Piezo1/TGF-β1 signaling axis

doi: 10.1016/j.mtbio.2025.101645

Figure Lengend Snippet: Piezo1 mediates the proliferation and fibrosis enhancement of L929 cells on PEEK implants modified with a 500 nm surface treatment. (A) Changes in calcium influx induced by the specific Piezo1 agonist (Yoda1) and the calcium channel inhibitor (GsMTx-4) were assessed using Fluo-4AM. (B) The fluorescence intensity of calcium accumulation in L929 cells following treatment with Yoda1 and GsMTx-4 was observed under a fluorescence microscope. (C) Quantitative analysis of the average fluorescence intensity presented in B. (D) The regulatory effects of Piezo1 on proliferation-related pathways, fibrosis processes, and adhesion-associated proteins were evaluated separately on PEEK and PEEK-500. (E) RT-qPCR was employed to assess the transcriptional differences in fibrosis-related genes in L929 cells following the activation or inhibition of Piezo1. (F) Changes in TGF-β1 secretion by L929 cells after the activation or inhibition of Piezo1 were analyzed. (G) The involvement of TGF-β1 in fibrosis regulation through the activation and upregulation of Piezo1 was confirmed. (H) Schematic representation of the mechanism by which L929 cells detect mechanical signals from PEEK samples to facilitate soft tissue integration.

Article Snippet: TGF-β1 Mouse/Rat (HEK293) (HY-P70648, MedChemExpress LLC., USA).

Techniques: Modification, Fluorescence, Microscopy, Quantitative RT-PCR, Activation Assay, Inhibition