rat tail collagen ratcol® type i collagen Search Results


91
Chondrex Inc rat collagen type i elisa
Rat Collagen Type I Elisa, supplied by Chondrex Inc, used in various techniques. Bioz Stars score: 91/100, based on 1 PubMed citations. ZERO BIAS - scores, article reviews, protocol conditions and more
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Becton Dickinson rat type i collagen (ci)
Rat Type I Collagen (Ci), supplied by Becton Dickinson, 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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Becton Dickinson neutralized rat-tail collagen type (rtc
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Merck KGaA collagen type 1 (rat tail)
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Becton Dickinson rat tail collagen type 1
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Corning Life Sciences collagen rat type i corning 354236
Collagen Rat Type I Corning 354236, supplied by Corning Life Sciences, 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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Elabscience Biotechnology collagen type i elisa kit e el r3008
Collagen Type I Elisa Kit E El R3008, supplied by Elabscience Biotechnology, 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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Becton Dickinson rat tail collagen type 1, 99% pure
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Chondrex Inc anti rat type i collagen antibody
Week 4 in vivo analysis. (a) Schematic representation of in vivo rat distal femur model surgery. (b) Histomorphometry of osteoid formation and bone mineralization, normalized to the exposed implant area (black). Ginger extract (gingerol), garlic extract (allicin), and ginger + garlic extract (gingerol + allicin) show a significantly higher formation of osteoid compared to control TCP (n = 5, *p = 0.05, and **p = 0.01). (c) Optical microscopy images of quantified Masson-Goldner trichrome staining show prominent osteoid formation of ginger + garlic extract samples compared to the control. Color coding is as follows: implant (black marked with a white diamond), osteoid tissue (red/orange), and mineralized bone tissue (green/blue). Gaps in tissue growth are seen within control TCP scaffold implants at both timepoints comparatively to ginger + garlic extract-loaded TCP scaffolds. (d) H&E-stained tissues show healthy bone tissue, trabecular bone tissue, osteocytes, and bone marrow in all compositions. Ginger and garlic extracts both individually show support of osteogenesis, but results are more profound when they are used together. Ginger + garlic extract supports about a 90% increase in osteocytes and 30% increase in bone area (*, n = 5, p < 0.05). <t>(e)</t> <t>Collagen</t> staining shows an increase in collagen formation with ginger extract and even more so by ginger + garlic extract scaffolds in week 4. Collagen is indicated by the orange/yellow color and green arrow. Enhanced <t>type</t> <t>I</t> collagen can induce osteoblastic differentiation, thus aiding in osteogenesis and bone healing.
Anti Rat Type I Collagen Antibody, supplied by Chondrex Inc, used in various techniques. Bioz Stars score: 93/100, based on 1 PubMed citations. ZERO BIAS - scores, article reviews, protocol conditions and more
https://www.bioz.com/product/rat+tail+collagen+ratcol%C2%AE+type+i+collagen/pmc09034760-149-3-16?v=Chondrex+Inc
Average 93 stars, based on 1 article reviews
anti rat type i collagen antibody - by Bioz Stars, 2026-06
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90
Bachem synthetic rcgrp (rat sequence, cgrp type i, cgrp-α)
Week 4 in vivo analysis. (a) Schematic representation of in vivo rat distal femur model surgery. (b) Histomorphometry of osteoid formation and bone mineralization, normalized to the exposed implant area (black). Ginger extract (gingerol), garlic extract (allicin), and ginger + garlic extract (gingerol + allicin) show a significantly higher formation of osteoid compared to control TCP (n = 5, *p = 0.05, and **p = 0.01). (c) Optical microscopy images of quantified Masson-Goldner trichrome staining show prominent osteoid formation of ginger + garlic extract samples compared to the control. Color coding is as follows: implant (black marked with a white diamond), osteoid tissue (red/orange), and mineralized bone tissue (green/blue). Gaps in tissue growth are seen within control TCP scaffold implants at both timepoints comparatively to ginger + garlic extract-loaded TCP scaffolds. (d) H&E-stained tissues show healthy bone tissue, trabecular bone tissue, osteocytes, and bone marrow in all compositions. Ginger and garlic extracts both individually show support of osteogenesis, but results are more profound when they are used together. Ginger + garlic extract supports about a 90% increase in osteocytes and 30% increase in bone area (*, n = 5, p < 0.05). <t>(e)</t> <t>Collagen</t> staining shows an increase in collagen formation with ginger extract and even more so by ginger + garlic extract scaffolds in week 4. Collagen is indicated by the orange/yellow color and green arrow. Enhanced <t>type</t> <t>I</t> collagen can induce osteoblastic differentiation, thus aiding in osteogenesis and bone healing.
Synthetic Rcgrp (Rat Sequence, Cgrp Type I, Cgrp α), 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
https://www.bioz.com/product/rat+tail+collagen+ratcol%C2%AE+type+i+collagen/pmc02326748-108-0-11?v=Bachem
Average 90 stars, based on 1 article reviews
synthetic rcgrp (rat sequence, cgrp type i, cgrp-α) - by Bioz Stars, 2026-06
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Corning Life Sciences collagen type 1 [rat tail] corning 354236
Week 4 in vivo analysis. (a) Schematic representation of in vivo rat distal femur model surgery. (b) Histomorphometry of osteoid formation and bone mineralization, normalized to the exposed implant area (black). Ginger extract (gingerol), garlic extract (allicin), and ginger + garlic extract (gingerol + allicin) show a significantly higher formation of osteoid compared to control TCP (n = 5, *p = 0.05, and **p = 0.01). (c) Optical microscopy images of quantified Masson-Goldner trichrome staining show prominent osteoid formation of ginger + garlic extract samples compared to the control. Color coding is as follows: implant (black marked with a white diamond), osteoid tissue (red/orange), and mineralized bone tissue (green/blue). Gaps in tissue growth are seen within control TCP scaffold implants at both timepoints comparatively to ginger + garlic extract-loaded TCP scaffolds. (d) H&E-stained tissues show healthy bone tissue, trabecular bone tissue, osteocytes, and bone marrow in all compositions. Ginger and garlic extracts both individually show support of osteogenesis, but results are more profound when they are used together. Ginger + garlic extract supports about a 90% increase in osteocytes and 30% increase in bone area (*, n = 5, p < 0.05). <t>(e)</t> <t>Collagen</t> staining shows an increase in collagen formation with ginger extract and even more so by ginger + garlic extract scaffolds in week 4. Collagen is indicated by the orange/yellow color and green arrow. Enhanced <t>type</t> <t>I</t> collagen can induce osteoblastic differentiation, thus aiding in osteogenesis and bone healing.
Collagen Type 1 [Rat Tail] Corning 354236, supplied by Corning Life Sciences, used in various techniques. Bioz Stars score: 90/100, based on 1 PubMed citations. ZERO BIAS - scores, article reviews, protocol conditions and more
https://www.bioz.com/product/rat+tail+collagen+ratcol%C2%AE+type+i+collagen/pmc07218928-71-0-6?v=Corning+Life+Sciences
Average 90 stars, based on 1 article reviews
collagen type 1 [rat tail] corning 354236 - by Bioz Stars, 2026-06
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Image Search Results


Week 4 in vivo analysis. (a) Schematic representation of in vivo rat distal femur model surgery. (b) Histomorphometry of osteoid formation and bone mineralization, normalized to the exposed implant area (black). Ginger extract (gingerol), garlic extract (allicin), and ginger + garlic extract (gingerol + allicin) show a significantly higher formation of osteoid compared to control TCP (n = 5, *p = 0.05, and **p = 0.01). (c) Optical microscopy images of quantified Masson-Goldner trichrome staining show prominent osteoid formation of ginger + garlic extract samples compared to the control. Color coding is as follows: implant (black marked with a white diamond), osteoid tissue (red/orange), and mineralized bone tissue (green/blue). Gaps in tissue growth are seen within control TCP scaffold implants at both timepoints comparatively to ginger + garlic extract-loaded TCP scaffolds. (d) H&E-stained tissues show healthy bone tissue, trabecular bone tissue, osteocytes, and bone marrow in all compositions. Ginger and garlic extracts both individually show support of osteogenesis, but results are more profound when they are used together. Ginger + garlic extract supports about a 90% increase in osteocytes and 30% increase in bone area (*, n = 5, p < 0.05). (e) Collagen staining shows an increase in collagen formation with ginger extract and even more so by ginger + garlic extract scaffolds in week 4. Collagen is indicated by the orange/yellow color and green arrow. Enhanced type I collagen can induce osteoblastic differentiation, thus aiding in osteogenesis and bone healing.

Journal: ACS applied materials & interfaces

Article Title: Ginger and Garlic Extracts Enhance Osteogenesis in 3D Printed Calcium Phosphate Bone Scaffolds with Bimodal Pore Distribution

doi: 10.1021/acsami.1c19617

Figure Lengend Snippet: Week 4 in vivo analysis. (a) Schematic representation of in vivo rat distal femur model surgery. (b) Histomorphometry of osteoid formation and bone mineralization, normalized to the exposed implant area (black). Ginger extract (gingerol), garlic extract (allicin), and ginger + garlic extract (gingerol + allicin) show a significantly higher formation of osteoid compared to control TCP (n = 5, *p = 0.05, and **p = 0.01). (c) Optical microscopy images of quantified Masson-Goldner trichrome staining show prominent osteoid formation of ginger + garlic extract samples compared to the control. Color coding is as follows: implant (black marked with a white diamond), osteoid tissue (red/orange), and mineralized bone tissue (green/blue). Gaps in tissue growth are seen within control TCP scaffold implants at both timepoints comparatively to ginger + garlic extract-loaded TCP scaffolds. (d) H&E-stained tissues show healthy bone tissue, trabecular bone tissue, osteocytes, and bone marrow in all compositions. Ginger and garlic extracts both individually show support of osteogenesis, but results are more profound when they are used together. Ginger + garlic extract supports about a 90% increase in osteocytes and 30% increase in bone area (*, n = 5, p < 0.05). (e) Collagen staining shows an increase in collagen formation with ginger extract and even more so by ginger + garlic extract scaffolds in week 4. Collagen is indicated by the orange/yellow color and green arrow. Enhanced type I collagen can induce osteoblastic differentiation, thus aiding in osteogenesis and bone healing.

Article Snippet: For collagen staining, anti-rat type I collagen antibody, clone 1F10C2, biotinylated, 1 mg/mL × 0.1 mL (Chondrex, WA, USA) was used as the primary antibody.

Techniques: In Vivo, Microscopy, Staining