研究天然组织和生物工程组织中细胞外基质组成和结构的新方法。

Biomatter Pub Date : 2012-07-01 DOI:10.4161/biom.20866
Jürgen Schiller, Daniel Huster
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引用次数: 30

摘要

细胞外基质(ECM)包括存在于多种生物组织中的许多生物聚合物的凝胶。ECM提供骨骼组织的基本支持和机械强度,并负责保持形状。同时,ECM还负责软组织的粘弹性和弹性。正如预期的那样,有几种重要的疾病影响和退化ECM,并对其性质造成严重后果。生物工程是支持人体再生能力的一种很有前途的方法。不幸的是,生物工程ECM的生物力学性能通常只能很差地达到其原生对应物的标准。许多生物工程组织的特点是增加了糖胺聚糖(GAG),但减少了胶原含量。这导致水含量的增加,强烈地改变了粘弹性,从而改变了生物力学性能。因此,成分分析是评价组织质量的重要手段。我们将表明,核磁共振(NMR)光谱和软电离质谱(MS)是在天然和生物工程组织中进行ECM研究的有用技术。这两种方法是非常互补的:虽然MS技术(如基质辅助激光解吸和电离(MALDI))是确定组织中胶原蛋白和GAG含量的优秀且非常敏感的分析工具,但核磁共振波谱法可以深入了解ECM的分子结构,其动力学和其他重要参数,如组织的含水量以及分子在ECM内的扩散。
本文章由计算机程序翻译,如有差异,请以英文原文为准。

New methods to study the composition and structure of the extracellular matrix in natural and bioengineered tissues.

New methods to study the composition and structure of the extracellular matrix in natural and bioengineered tissues.

New methods to study the composition and structure of the extracellular matrix in natural and bioengineered tissues.

New methods to study the composition and structure of the extracellular matrix in natural and bioengineered tissues.

The extracellular matrix (ECM) comprises a gel of numerous biopolymers that occurs in a multitude of biological tissues. The ECM provides the basic support and mechanical strength of skeletal tissue and is responsible for shape retention. At the same time, the ECM is responsible for the viscoelastic properties and the elasticity of soft tissues. As expected, there are several important diseases that affect and degenerate the ECM with severe consequences for its properties. Bioengineering is a promising approach to support the regenerative capacity of the body. Unfortunately, the biomechanical properties of bioengineered ECM often only poorly meet the standards of their native counterparts. Many bioengineered tissues are characterized by an increased glycosaminoglycan (GAG) but decreased collagen content. This leads to an enhanced water content that strongly alters the viscoelastic and thus the biomechanical properties. Therefore, compositional analysis is important to estimate the tissue quality. We will show that nuclear magnetic resonance (NMR) spectroscopy and soft-ionization mass spectrometry (MS) represent useful techniques for ECM research both in natural and bioengineered tissues. Both methods are strongly complimentary: while MS techniques such as matrix-assisted laser desorption and ionization (MALDI) are excellent and very sensitive analytical tools to determine the collagen and the GAG contents of tissues, NMR spectroscopy provides insight into the molecular architecture of the ECM, its dynamics and other important parameters such as the water content of the tissue as well as the diffusion of molecules within the ECM.

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