Human Type III Collagen-Solution

Referentie 1230-01S

Formaat : 0.5mg

Merk : Southern Biotech

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Description Collagen is the main structural protein in the extracellular space and is the most abundant protein in the ECM. Collagens are divided into two classes - fibril (types I, II, III, V) and non-fibril (types IV, VI). Type III collagen is expressed in the skin and a variety of internal organs including the lungs, intestinal walls, uterus, and walls of blood vessels and is often associated with type I collagen. It also interacts with platelets in the blood clotting cascade. Type III collagen mutations are associated in a range of diseases including the vascular form of Ehlers–Danlos syndrome. Type III collagen is formed by homotrimers of α1(III) chains.
Source Placental villi
Purity > 90% by SDS-PAGE
Purification Method Controlled and limited pepsin digestion followed by selective salt precipitation
Buffer Formulation 500 mM acetic acid
Concentration 0.5 mg/mL
Volume 1.0 mL
Recommended Storage 2-8°C
Applications ELISA – Quality tested 1-27
SDS-PAGE – Quality tested
Surface Plasmon Resonance – Reported in literature 8,28
Thermal Stability Studies – Reported in literature 29,30
Coating Material for –
Adhesion Studies – Reported in literature 13,19,22,31-34
Aggregation Studies – Reported in literature 34
Blood Disorder Studies – Reported in literature 8-28,32-35
Differentiation Studies – Reported in literature 36
ECM Interaction Studies – Reported in literature 37-38


Documentation
Technical Bulletin Safety Datasheet

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  27. 27. Hinterleitner C, Pecher A, Kreißelmeier K, Budde U, Kanz L, Kopp H, et al. Disease progression and defects in primary hemostasis as major cause of bleeding in multiple myeloma. Eur J Haematol. 2020;104:26-35. (ELISA, Coating, Blood Disorder Studies)
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  31. 31. DeNigris J, Yao Q, Birk EK, Birk DE. Altered dermal fibroblast behavior in a collagen V haploinsufficient murine model of classic Ehlers-Danlos syndrome. Connect Tissue Res. 2016;57:1-9. (Coating, Adhesion Studies)
  32. 32. Nowak AA, O'Brien HE, Henne P, Doerr A, Vanhoorelbeke K, Laffan MA, et al. ADAMTS-13 glycans and conformation-dependent activity. J Thromb Haemost. 2017;15:1155-66. (Coating, Blood Disorder Studies, Adhesion Studies)
  33. 33. Jalaer I, Tsakiris DA, Solecka-Witulska BA, Kannicht C. The role of von Willebrand factor in primary haemostasis under conditions of haemodilution. Thromb Res. 2017;157:142-6. (Coating, Blood Disorder Studies, Adhesion Studies)
  34. 34. South K, Denorme F, Salles-Crawley II, De Meyer SF, Lane DA. Enhanced activity of an ADAMTS-13 variant (R568K/F592Y/R660K/Y661F/Y665F) against platelet agglutination in vitro and in a murine model of acute ischemic stroke. J Thromb Haemost. 2018;16:2289-99. (Coating, Blood Disorder Studies, Adhesion Studies, Aggregation Studies)
  35. 35. South K, Freitas MO, Lane DA. Conformational quiescence of ADAMTS-13 prevents proteolytic promiscuity. J Thromb Haemost. 2016;14:2011-22. (Coating, Blood Disorder Studies)
  36. 36. Andrianarivo AG, Robinson JA, Mann KG, Tracy RP. Growth on type I collagen promotes expression of the osteoblastic phenotype in human osteosarcoma MG-63 cells. J Cell Physiol. 1992;153:256-65. (Coating, Differentiation Studies)
  37. 37. Bidanset DJ, Guidry C, Rosenberg LC, Choi HU, Timpl R, Hook M. Binding of the proteoglycan decorin to collagen type VI. J Biol Chem. 1992;267:5250-6. (Coating, ECM Interaction Studies)
  38. 38. Hocking AM, Strugnell RA, Ramamurthy P, McQuillan DJ. Eukaryotic expression of recombinant biglycan. Post-translational processing and the importance of secondary structure for biological activity. J Biol Chem. 1996;271:19571-7. (Coating, ECM Interaction Studies)

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