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Eclectic characterisation of chemically modified cell-derived matrices obtained by metabolic glycoengineering and re-assessment of commonly used methods

机译:通过代谢甘油化学化学修饰的细胞衍生基质的折衷表征,并重新评估常用方法

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摘要

Azide-bearing cell-derived extracellular matrices ("clickECMs") have emerged as a highly exciting new class of biomaterials. They conserve substantial characteristics of the natural extracellular matrix (ECM) and offer simultaneously small abiotic functional groups that enable bioorthogonal bioconjugation reactions. Despite their attractiveness, investigation of their biomolecular composition is very challenging due to the insoluble and highly complex nature of cell-derived matrices (CDMs). Yet, thorough qualitative and quantitative analysis of the overall material composition, organisation, localisation, and distribution of typical ECM-specific biomolecules is essential for consistent advancement of CDMs and the understanding of the prospective functions of the developed biomaterial. In this study, we evaluated frequently used methods for the analysis of complex CDMs. Sodium dodecyl sulphate polyacrylamide gel electrophoresis (SDS-PAGE) and (immune)histochemical staining methods in combination with several microscopic techniques were found to be highly eligible. Commercially available colorimetric protein assays turned out to deliver inaccurate information on CDMs. In contrast, we determined the nitrogen content of CDMs by elementary analysis and converted it into total protein content using conversion factors which were calculated from matching amino acid compositions. The amount of insoluble collagens was assessed based on the hydroxyproline content. The Sircol (TM) assay was identified as a suitable method to quantify soluble collagens while the Blyscan (TM) assay was found to be well-suited for the quantification of sulphated glycosaminoglycans (sGAGs). Eventually, we propose a series of suitable methods to reliably characterise the biomolecular composition of fibroblast-derived clickECM.
机译:含叠氮化物的细胞衍生的细胞外基质(“ClickCMS”)已成为一种高令人兴奋的新类生物材料。它们保护天然细胞外基质(ECM)的实质性特征,同时提供具有生物正交生物谐波反应的小的非生物官能团。尽管其吸引力,由于细胞衍生的基质(CDMS)的不溶性和高度复杂性,对其生物分子组成的调查非常具有挑战性。然而,对典型ECM特异性生物分子的整体材料组成,组织,本地化和分布的彻底定性和定量分析是CDMS一致进步的必要条件,并了解发育生物材料的前瞻性功能。在这项研究中,我们评估了复杂CDMS分析的经常使用方法。发现十二烷基硫酸钠聚丙烯酰胺凝胶电泳(SDS-PAGE)和(免疫)组织化学染色方法与几种微观技术的组合是高度合格的。商业上可获得的比色蛋白质测定结果证明了对CDM的不准确信息。相反,我们通过基本分析确定CDMS的氮含量,并使用从匹配的氨基酸组合物计算的转化因子将其转化为总蛋白质含量。基于羟脯氨酸含量评估不溶性胶原蛋白的量。鉴定Sircol(TM)测定作为定量可溶性胶原的合适方法,同时发现Blyscan(TM)测定非常适合定量硫酸化糖胺聚糖(SGAG)。最终,我们提出了一系列合适的方法来可靠地表征成纤维细胞衍生的裁数的生物分子组成。

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  • 来源
    《RSC Advances》 |2020年第58期|共14页
  • 作者单位

    Univ Stuttgart Inst Interfacial Proc Engn &

    Plasma Technol IGVP Nobelstr 12 D-70569 Stuttgart Germany;

    Univ Stuttgart Inst Interfacial Proc Engn &

    Plasma Technol IGVP Nobelstr 12 D-70569 Stuttgart Germany;

    Worcester Polytech Inst Dept Biomed Engn Worcester MA 01609 USA;

    Univ Hohenheim Core Facil Module 3 Analyt Chem Unit Emil Wolff Str 12 D-70599 Stuttgart Germany;

    Univ Stuttgart Inst Interfacial Proc Engn &

    Plasma Technol IGVP Nobelstr 12 D-70569 Stuttgart Germany;

    Reutlingen Univ Sch Appl Chem Alteburgstr 150 D-72762 Reutlingen Germany;

    Univ Stuttgart Inst Interfacial Proc Engn &

    Plasma Technol IGVP Nobelstr 12 D-70569 Stuttgart Germany;

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  • 正文语种 eng
  • 中图分类 化学;
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