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解析网络:蜘蛛丝生物生产的潜力和可行性的跨学科综述。

Disentangling the Web: An Interdisciplinary Review on the Potential and Feasibility of Spider Silk Bioproduction.

机构信息

Department of Physics, University of California at San Diego, La Jolla, California 92092, United States.

Research Initiative, Nucleate, 88 Gordon Street #401, Brighton, Massachusetts 02135, United States.

出版信息

ACS Biomater Sci Eng. 2024 Sep 9;10(9):5412-5438. doi: 10.1021/acsbiomaterials.4c00145. Epub 2024 Aug 13.

Abstract

The remarkable material properties of spider silk, such as its high toughness and tensile strength combined with its low density, make it a highly sought-after material with myriad applications. In addition, the biological nature of spider silk makes it a promising, potentially sustainable alternative to many toxic or petrochemical-derived materials. Therefore, interest in the heterologous production of spider silk proteins has greatly increased over the past few decades, making recombinant spider silk an important frontier in biomanufacturing. This has resulted in a diversity of potential host organisms, a large space for sequence design, and a variety of downstream processing techniques and product applications for spider silk production. Here, we highlight advances in each of these technical aspects as well as white spaces therein, still ripe for further investigation and discovery. Additionally, industry landscaping, patent analyses, and interviews with Key Opinion Leaders help define both the research and industry landscapes. In particular, we found that though textiles dominated the early products proposed by companies, the versatile nature of spider silk has opened up possibilities in other industries, such as high-performance materials in automotive applications or biomedical therapies. While continuing enthusiasm has imbued scientists and investors alike, many technical and business considerations still remain unsolved before spider silk can be democratized as a high-performance product. We provide insights and strategies for overcoming these initial hurdles, and we highlight the importance of collaboration between academia, industry, and policy makers. Linking technical considerations to business and market entry strategies highlights the importance of a holistic approach for the effective scale-up and commercial viability of spider silk bioproduction.

摘要

蜘蛛丝具有显著的材料特性,如高强度、高韧性和低密度,这使得它成为一种备受追捧的材料,具有广泛的应用前景。此外,蜘蛛丝的生物特性使其成为许多有毒或源自石化产品的材料的潜在可持续替代品。因此,过去几十年来,人们对蜘蛛丝蛋白的异源生产产生了浓厚的兴趣,使得重组蜘蛛丝成为生物制造的一个重要前沿领域。这导致了潜在宿主生物的多样性、序列设计的广阔空间,以及各种下游加工技术和蜘蛛丝生产的产品应用。在这里,我们重点介绍了这些技术方面的进展以及其中仍有很大的研究空间,这些都有待进一步的研究和发现。此外,行业景观、专利分析和与关键意见领袖的访谈有助于定义研究和行业景观。特别是,我们发现,尽管纺织品在早期主导了公司提出的产品,但蜘蛛丝的多功能性已经在其他行业开辟了可能性,例如汽车应用中的高性能材料或生物医学疗法。尽管持续的热情激发了科学家和投资者的热情,但在蜘蛛丝能够普及成为高性能产品之前,仍有许多技术和商业方面的考虑因素尚未解决。我们提供了克服这些初始障碍的见解和策略,并强调了学术界、产业界和政策制定者之间合作的重要性。将技术考虑因素与商业和市场进入策略联系起来,突出了对于蜘蛛丝生物生产的有效扩大规模和商业可行性需要采取整体方法的重要性。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/b6cf/11388149/2d42bba8b42d/ab4c00145_0001.jpg

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