van Neerven Sabien G A, Krings Laura, Haastert-Talini Kirsten, Vogt Michael, Tolba René H, Brook Gary, Pallua Norbert, Bozkurt Ahmet
Department of Plastic Surgery, Reconstructive Surgery, Hand Surgery and Burn Injuries, RWTH Aachen University Hospital, Pauwelsstraße 30, 52074 Aachen, Germany.
Institute of Neuroanatomy, Hannover Medical School, Carl-Neuberg-Straße 1, 30625 Hannover, Germany ; Center for Systems Neuroscience (ZSN), Carl-Neuberg-Straße 1, 30625 Hannover, Germany.
Biomed Res Int. 2014;2014:493823. doi: 10.1155/2014/493823. Epub 2014 May 11.
A variety of new bioartificial nerve guides have been tested preclinically for their safety and nerve regeneration supporting properties. So far, only a limited number of biomaterials have been tested in humans since the step from preclinical work to a clinical application is challenging. We here present an in vitro model with human Schwann cells (hSCs) as an intermediate step towards clinical application of the nerve guide Perimaix, a collagen-based microstructured 3D scaffold containing numerous longitudinal guidance channels for directed axonal growth. hSCs were seeded onto different prototypes of Perimaix and cultivated for 14 days. hSC adhered to the scaffold, proliferated, and demonstrated healthy Schwann cell morphology (spindle shaped cell bodies, bipolar oriented processes) not only at the surface of the material, but also in the deeper layers of the scaffold. The general well-being of the cells was quantitatively confirmed by low levels of lactate dehydrogenase release into the culture medium. Moreover, conditioned medium of hSCs that were cultivated on Perimaix was able to modify neurite outgrowth from sensory dorsal root ganglion neurons. Overall these data indicate that Perimaix is able to provide a matrix that can promote the attachment and supports process extension, migration, and proliferation of hSC.
多种新型生物人工神经导管已在临床前测试其安全性和支持神经再生的特性。到目前为止,由于从临床前研究迈向临床应用具有挑战性,仅有有限数量的生物材料在人体中进行了测试。我们在此展示一种以人雪旺细胞(hSCs)为基础的体外模型,作为神经导管Perimaix临床应用的中间步骤,Perimaix是一种基于胶原蛋白的微结构化3D支架,包含众多用于定向轴突生长的纵向引导通道。将hSCs接种到Perimaix的不同原型上并培养14天。hSCs不仅在材料表面,而且在支架的更深层都能附着于支架、增殖并呈现健康的雪旺细胞形态(纺锤形细胞体,双极定向突起)。通过释放到培养基中的低水平乳酸脱氢酶定量证实了细胞的总体健康状况。此外,在Perimaix上培养的hSCs的条件培养基能够改变感觉背根神经节神经元的神经突生长。总体而言,这些数据表明Perimaix能够提供一种可促进hSCs附着并支持其突起延伸、迁移和增殖的基质。