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Biopolymeric Mucin and Synthetic Polymer Analogs: Their Structure Function and Role in Biomedical Applications

机译:生物聚合粘蛋白和合成聚合物类似物:它们的结构功能和在生物医学应用中的作用

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摘要

Mucin networks are viscoelastic fibrillar aggregates formed through the complex self-association of biopolymeric glycoprotein chains. The networks form a lubricious, hydrated protective shield along epithelial regions within the human body. The critical role played by mucin networks in impacting the transport properties of biofunctional molecules (e.g., biogenic molecules, probes, nanoparticles), and its effect on bioavailability are well described in the literature. An alternate perspective is provided in this paper, presenting mucin’s complex network structure, and its interdependent functional characteristics in human physiology. We highlight the recent advances that were achieved through the use of mucin in diverse areas of bioengineering applications (e.g., drug delivery, biomedical devices and tissue engineering). Mucin network formation is a highly complex process, driven by wide variety of molecular interactions, and the network possess structural and chemical variations, posing a great challenge to understand mucin’s bulk behavior. Through this review, the prospective potential of polymer based analogs to serve as mucin mimic is suggested. These analog systems, apart from functioning as an artificial model, reducing the current dependency on animal models, can aid in furthering our fundamental understanding of such complex structures.
机译:粘蛋白网络是通过生物聚合糖蛋白链的复杂自缔合形成的粘弹性原纤维聚集体。这些网络沿着人体上皮区域形成润滑,水合的保护层。粘蛋白网络在影响生物功能分子(例如,生物分子,探针,纳米颗粒)的运输特性中发挥的关键作用及其对生物利用度的影响已在文献中充分描述。本文提供了另一种视角,介绍了粘蛋白的复杂网络结构及其在人类生理学中相互依存的功能特征。我们重点介绍了通过在生物工程应用的各个领域(例如药物输送,生物医学设备和组织工程)中使用粘蛋白获得的最新进展。粘蛋白网络的形成是一个高度复杂的过程,受多种分子相互作用的驱动,该网络具有结构和化学变化,对理解粘蛋白的整体行为提出了巨大挑战。通过这篇综述,提出了基于聚合物的类似物作为粘蛋白模拟物的潜在潜力。这些模拟系统除了可以充当人工模型之外,还可以减少当前对动物模型的依赖性,还可以帮助我们进一步了解这种复杂的结构。

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