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Chitosan/gelatin porous scaffolds containing hyaluronic acid and heparan sulfate for neural tissue engineering.壳聚糖/明胶多孔支架,内含透明质酸和硫酸乙酰肝素,用于神经组织工程。
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A multilayered scaffold of a chitosan and gelatin hydrogel supported by a PCL core for cardiac tissue engineering.用于心脏组织工程的壳聚糖和明胶水凝胶多层支架,由 PCL 芯支撑。
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Osteogenic differentiation of muscle satellite cells induced by platelet-rich plasma encapsulated in three-dimensional alginate scaffold.富血小板血浆包被于三维藻酸盐支架中诱导肌卫星细胞成骨分化。
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Chitosan-based scaffolds for the support of smooth muscle constructs in intestinal tissue engineering.壳聚糖基支架在肠道组织工程中用于平滑肌构建物的支撑。
Biomaterials. 2012 Jun;33(19):4810-7. doi: 10.1016/j.biomaterials.2012.03.051. Epub 2012 Apr 5.
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An effective method of RNA isolation from Fallopia multiflora tuberous roots.从菝葜块根中有效分离 RNA 的方法。
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Biophysicochemical evaluation of chitosan-hydroxyapatite-marine sponge collagen composite for bone tissue engineering.用于骨组织工程的壳聚糖-羟基磷灰石-海洋海绵胶原蛋白复合材料的生物物理化学评估
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Extraction of high quality RNA from polysaccharide matrices using cetyltrimethylammonium bromide.用十六烷基三甲基溴化铵从多糖基质中提取高质量 RNA。
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从壳聚糖水凝胶包封的细胞中分离高质量 RNA 的技术。

Techniques for the isolation of high-quality RNA from cells encapsulated in chitosan hydrogels.

机构信息

1 Department of Chemical Engineering, Queen's University , Kingston, Ontario, Canada .

出版信息

Tissue Eng Part C Methods. 2013 Nov;19(11):829-38. doi: 10.1089/ten.TEC.2012.0693. Epub 2013 Mar 29.

DOI:10.1089/ten.TEC.2012.0693
PMID:23448167
原文链接:https://pmc.ncbi.nlm.nih.gov/articles/PMC3793649/
Abstract

Extracting high-quality RNA from hydrogels containing polysaccharide components is challenging, as traditional RNA isolation techniques designed for cells and tissues can have limited yields and purity due to physiochemical interactions between the nucleic acids and the biomaterials. In this study, a comparative analysis of several different RNA isolation methods was performed on human adipose-derived stem cells photo-encapsulated within methacrylated glycol chitosan hydrogels. The results demonstrated that RNA isolation methods with cetyl trimethylammonium bromide (CTAB) buffer followed by purification with an RNeasy® mini kit resulted in low yields of RNA, except when the samples were preminced directly within the buffer. In addition, genomic DNA contamination during reverse transcriptase-polymerase chain reaction (RT-PCR) analysis was observed in the hydrogels processed with the CTAB-based methods. Isolation methods using TRIzol® in combination with one of a Qiaex® gel extraction kit, an RNeasy® mini kit, or an extended solvent purification method extracted RNA suitable for gene amplification, with no evidence of genomic contamination. The latter two methods yielded the best results in terms of yield and amplification efficiency. Predigestion of the scaffolds with lysozyme was investigated as a possible means of enhancing RNA extraction from the polysaccharide gels, with no improvements observed in terms of the purity, yield, or amplification efficiency. Overall, this work highlights the application of a TRIzol®+extended solvent purification method for optimizing RNA extraction that can be applied to obtain reliable and accurate gene expression data in studies investigating cells seeded in chitosan-based scaffolds.

摘要

从含有多糖成分的水凝胶中提取高质量的 RNA 是具有挑战性的,因为传统的针对细胞和组织设计的 RNA 分离技术由于核酸与生物材料之间的物理化学相互作用,其产率和纯度可能有限。在这项研究中,对几种不同的 RNA 分离方法进行了比较分析,这些方法用于 photo-encapsulated 在甲基丙烯酰化乙二醇壳聚糖水凝胶内的人脂肪源性干细胞。结果表明,使用溴化十六烷基三甲铵 (CTAB) 缓冲液的 RNA 分离方法,然后用 RNeasy® mini 试剂盒进行纯化,除了将样品直接预切碎在缓冲液中之外,结果导致 RNA 的产率较低。此外,在用基于 CTAB 的方法处理的水凝胶中观察到逆转录聚合酶链反应 (RT-PCR) 分析过程中的基因组 DNA 污染。使用 TRIzol®与 Qiaex®凝胶提取试剂盒、RNeasy® mini 试剂盒或扩展溶剂纯化方法之一结合的分离方法提取了适合基因扩增的 RNA,没有基因组污染的证据。就产量和扩增效率而言,后两种方法的效果最佳。研究了溶菌酶对支架的预消化作为增强多糖凝胶中 RNA 提取的一种可能方法,但在纯度、产量或扩增效率方面没有观察到任何改善。总的来说,这项工作强调了使用 TRIzol®+扩展溶剂纯化方法优化 RNA 提取的应用,可用于获得在研究中植入壳聚糖支架的细胞中进行可靠和准确的基因表达数据。