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基于管状壳聚糖的周围神经植入物的改性:简单或更复杂方法的应用。

Modification of tubular chitosan-based peripheral nerve implants: applications for simple or more complex approaches.

作者信息

Dietzmeyer Nina, Förthmann Maria, Grothe Claudia, Haastert-Talini Kirsten

机构信息

Institute of Neuroanatomy and Cell Biology, Hannover Medical School, Center for Systems Neuroscience (ZSN) Hannover, Hannover, Germany.

出版信息

Neural Regen Res. 2020 Aug;15(8):1421-1431. doi: 10.4103/1673-5374.271668.

Abstract

Surgical treatment of peripheral nerve injuries is still a major challenge in human clinic. Up to now, none of the well-developed microsurgical treatment options is able to guarantee a complete restoration of nerve function. This restriction is also effective for novel clinically approved artificial nerve guides. In this review, we compare surgical repair techniques primarily for digital nerve injuries reported with relatively high prevalence to be valuable attempts in clinical digital nerve repair and point out their advantages and shortcomings. We furthermore discuss the use of artificial nerve grafts with a focus on chitosan-based nerve guides, for which our own studies contributed to their approval for clinical use. In the second part of this review, very recent future perspectives for the enhancement of tubular (commonly hollow) nerve guides are discussed in terms of their clinical translatability and ability to form three-dimensional constructs that biomimick the natural nerve structure. This includes materials that have already shown their beneficial potential in in vivo studies like fibrous intraluminal guidance structures, hydrogels, growth factors, and approaches of cell transplantation. Additionally, we highlight upcoming future perspectives comprising co-application of stem cell secretome. From our overview, we conclude that already simple attempts are highly effective to increase the regeneration supporting properties of nerve guides in experimental studies. But for bringing nerve repair with bioartificial nerve grafts to the next level, e.g. repair of defects > 3 cm in human patients, more complex intraluminal guidance structures such as innovatively manufactured hydrogels and likely supplementation of stem cells or their secretome for therapeutic purposes may represent promising future perspectives.

摘要

周围神经损伤的外科治疗在人类临床中仍然是一项重大挑战。到目前为止,任何成熟的显微外科治疗方法都无法保证神经功能的完全恢复。这种限制对于新的临床批准的人工神经导管同样适用。在本综述中,我们比较了主要用于指神经损伤的手术修复技术,这些技术报道的患病率相对较高,被认为是临床指神经修复中有价值的尝试,并指出了它们的优缺点。我们还讨论了人工神经移植物的使用,重点是基于壳聚糖的神经导管,我们自己的研究促成了其临床应用的批准。在本综述的第二部分,从临床可转化性和形成模仿天然神经结构的三维结构的能力方面讨论了管状(通常为中空)神经导管增强的最新未来前景。这包括已经在体内研究中显示出有益潜力的材料,如纤维腔内引导结构、水凝胶、生长因子和细胞移植方法。此外,我们强调了即将到来的未来前景,包括干细胞分泌组的联合应用。从我们的综述中可以得出结论,在实验研究中,即使是简单的尝试也能非常有效地提高神经导管的再生支持特性。但是,为了将生物人工神经移植物的神经修复提升到一个新水平,例如在人类患者中修复超过3厘米的缺损,更复杂的腔内引导结构,如创新制造的水凝胶,以及可能用于治疗目的的干细胞或其分泌组的补充,可能代表着有前景的未来前景。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/d6f5/7059590/64c534634936/NRR-15-1421-g001.jpg

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