用于基于多能干细胞的组织工程应用的电纺支架的商业化

N. K. Mohtaram, V. Karamzadeh, Yousef Shafieyan, S. Willerth
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引用次数: 4

摘要

组织工程是将生物活性支架通常与细胞结合以产生受损器官的替代品的过程,它代表着巨大的市场机会。这篇综述批判性地评估了电纺丝支架在干细胞生物学,包括组织工程中的应用的商业化潜力。首先,它提供了多能干细胞(PSCs)及其定义特性,多能性和自我更新能力的概述。这些细胞是工程组织的重要工具,包括临床应用。接下来,我们回顾了静电纺丝技术及其在制造细胞培养基质和支架以指导干细胞组织形成方面的前景,并将这些支架与现有技术(如水凝胶)进行了比较。我们通过分析该市场的净投资和相关增长率,阐述了用于psc的电纺丝支架的相关市场及其增长潜力,同时强调了3D细胞培养基质对于psc的重要性。本文最后详细介绍了电纺丝支架的商业化现状,以及将这些支架从研究实验室转化为成功的初创公司的途径,以及这一过程中的相关挑战。
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Commercializing Electrospun Scaffolds for Pluripotent Stem Cell-based Tissue Engineering Applications
Abstract Tissue engineering, the process of combining bioactive scaffolds often with cells to produce replacements for damaged organs, represents an enormous market opportunity. This review critically evaluates the commercialization potential of electrospun scaffolds for applications in stem cell biology, including tissue engineering. First, it provides an overview of pluripotent stem cells (PSCs) and their defining properties, pluripotency and the ability to self-renew. These cells serve as an important tool for engineering tissues, including for clinical applications. Next, we review the technique of electrospinning and its promise for fabricating cell culture substrates and scaffolds for directing tissue formation from stem cells and compare these scaffolds to existing technologies, such as hydrogels. We address the associated market for electrospun scaffolds for PSCs and its potential for growth along with highlighting the importance of 3D cell culture substrates for PSCs by analyzing the net capital invested in this market and the associated growth rate. This review finishes by detailing the current state of commercializing electrospun scaffolds along with pathways for translating these scaffolds from research laboratories into successful start-up companies and the associated challenges with this process.
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