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开菲尔多糖胞外多糖提取对其在组织工程和再生医学中适用性的影响。

Impact of Kefiran Exopolysaccharide Extraction on Its Applicability for Tissue Engineering and Regenerative Medicine.

作者信息

Correia Susana, Gonçalves Cristiana, Oliveira Joaquim M, Radhouani Hajer, Reis Rui L

机构信息

3B's Research Group, I3Bs-Research Institute on Biomaterials, Biodegradables and Biomimetics, University of Minho, Headquarters of the European Institute of Excellence on Tissue Engineering and Regenerative Medicine, AvePark, Parque de Ciência e Tecnologia, Zona Industrial da Gandra, Barco, 4805-017 Guimarães, Portugal.

ICVS/3B's-PT Government Associate Laboratory, Braga, 4805-017 Guimarães, Portugal.

出版信息

Pharmaceutics. 2022 Aug 17;14(8):1713. doi: 10.3390/pharmaceutics14081713.

Abstract

Kefiran is an exopolysaccharide produced by the microflora of kefir grains used to produce the fermented milk beverage kefir. The health-promoting and physicochemical properties of kefiran led to its exploration for a range of applications, mainly in the food industry and biomedical fields. Aiming to explore its potential for tissue engineering and regenerative medicine (TERM) applications, the kefiran biopolymer obtained through three different extraction methodologies was fully characterized and compared. High-quality kefiran polysaccharides were recovered with suitable yield through different extraction protocols. The methods consisted of heating the kefir grains prior to recovering kefiran by centrifugation and differed mainly in the precipitation steps included before lyophilization. Then, kefiran scaffolds were successfully produced from each extract by cryogelation and freeze-drying. In all extracts, it was possible to identify the molecular structure of the kefiran polysaccharide through H-NMR and FTIR spectra. The kefiran from extraction 1 showed the highest molecular weight (~3000 kDa) and the best rheological properties, showing a pseudoplastic behavior; its scaffold presented the highest value of porosity (93.2% ± 2), and wall thickness (85.8 µm ± 16.3). All extracts showed thermal stability, good injectability and desirable viscoelastic properties; the developed scaffolds demonstrated mechanical stability, elastic behavior, and pore size comprised between 98-94 µm. Additionally, all kefiran products proved to be non-cytotoxic over L929 cells. The interesting structural, physicochemical, and biological properties showed by the kefiran extracts and cryogels revealed their biomedical potential and suitability for TERM applications.

摘要

开菲尔糖是由开菲尔粒微生物群产生的一种胞外多糖,开菲尔粒用于生产发酵乳饮料开菲尔。开菲尔糖的健康促进和物理化学特性促使人们探索其在一系列应用中的潜力,主要应用于食品工业和生物医学领域。为了探索其在组织工程和再生医学(TERM)应用中的潜力,对通过三种不同提取方法获得的开菲尔糖生物聚合物进行了全面表征和比较。通过不同的提取方案以合适的产率回收了高质量的开菲尔糖多糖。这些方法包括在通过离心回收开菲尔糖之前加热开菲尔粒,主要区别在于冻干前包含的沉淀步骤。然后,通过冷冻凝胶化和冷冻干燥从每种提取物中成功制备了开菲尔糖支架。在所有提取物中,都可以通过H-NMR和FTIR光谱鉴定开菲尔糖多糖的分子结构。提取物1中的开菲尔糖显示出最高的分子量(约3000 kDa)和最佳的流变学特性,呈现假塑性行为;其支架的孔隙率最高(93.2%±2),壁厚为(85.8 µm±16.3)。所有提取物均表现出热稳定性、良好的可注射性和理想的粘弹性;所制备的支架表现出机械稳定性、弹性行为,孔径在98-94 µm之间。此外,所有开菲尔糖产品对L929细胞均无细胞毒性。开菲尔糖提取物和冷冻凝胶所显示的有趣的结构、物理化学和生物学特性揭示了它们的生物医学潜力以及在TERM应用中的适用性。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/e54a/9415419/737b94bcfeaa/pharmaceutics-14-01713-g001.jpg

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