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与植物基多糖交联的胶原蛋白支架的组织工程

Tissue engineering of collagen scaffolds crosslinked with plant based polysaccharides.

作者信息

Rekulapally Rohit, Udayachandrika K, Hamlipur Sirisha, Sasidharan Nair Anuja, Pal Biswajit, Singh Shashi

机构信息

CSIR Centre for Cellular and Molecular Biology, Uppal Road, Hyderabad, 500007, India.

出版信息

Prog Biomater. 2021 Mar;10(1):29-41. doi: 10.1007/s40204-021-00149-4. Epub 2021 Feb 18.

Abstract

Ideally, a bioscaffold should mimic the characteristics of an extracellular matrix of a living organ of interest. The present study deals with the formation of composite scaffolds of collagen with gum arabic. Collagen was cross-linked with oxidized gum arabic having aldehyde groups to form a porous block. By changing the oxidation level of gum arabic, incorporation of the polysaccharides into the scaffold could be varied resulting in scaffolds with variable polysaccharide to protein content. A series of scaffolds were made by altering collagen concentration and oxidation level of gum arabic. The scaffolds were tested for their physical properties, stability, biocompatibility and ability to support the cell growth. Results implied that variable polysaccharide incorporation into the scaffolds was possible depending on the oxidation level of gum arabic which could influence the swelling behavior. The scaffolds showed non-toxic behavior towards the mesenchymal stem cells and nucleus pulposa cells using viability assay in culture conditions up to 30 days; the growth of cells was seen at all combinations of gels. Nucleus pulposa cells were able to maintain their phenotype in the GACO gels. The studies show that these scaffolds are potential candidates in applications, such as tissue engineering, and can be designed to match the requirement of different cell/tissues as per their ECM.

摘要

理想情况下,生物支架应模仿目标活体器官细胞外基质的特性。本研究涉及胶原蛋白与阿拉伯胶复合支架的形成。胶原蛋白与具有醛基的氧化阿拉伯胶交联形成多孔块体。通过改变阿拉伯胶的氧化程度,可以改变多糖在支架中的掺入量,从而得到多糖与蛋白质含量不同的支架。通过改变胶原蛋白浓度和阿拉伯胶氧化程度制备了一系列支架。对这些支架的物理性质、稳定性、生物相容性以及支持细胞生长的能力进行了测试。结果表明,根据阿拉伯胶的氧化程度,有可能将不同量的多糖掺入支架中,这会影响支架的溶胀行为。在长达30天的培养条件下,通过活力测定法发现这些支架对间充质干细胞和髓核细胞无毒性;在所有凝胶组合中均观察到细胞生长。髓核细胞能够在GACO凝胶中维持其表型。研究表明,这些支架在组织工程等应用中具有潜在的应用前景,并且可以根据不同细胞/组织的细胞外基质需求进行设计。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/4ab9/8021656/7d8747b8b0c3/40204_2021_149_Fig1_HTML.jpg

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