Mansbridge Jonathan
Smith & Nephew Wound Management La Jolla, 10933 North Torrey Pines Road, La Jolla, CA 92037, USA.
J Anat. 2006 Oct;209(4):527-32. doi: 10.1111/j.1469-7580.2006.00631.x.
Tissue engineering is a field with immense promise. Using the example of an early tissue-engineered skin implant, Dermagraft, factors involved in the successful commercial development of devices of this type are explored. Tissue engineering has to strike a balance between tissue culture, which is a resource-intensive activity, and business considerations that are concerned with minimizing cost and maximizing customer convenience. Bioreactor design takes place in a highly regulated environment, so factors to be incorporated into the concept include not only tissue culture considerations but also matters related to asepsis, scaleup, automation and ease of use by the final customer. Dermagraft is an allogeneic tissue. Stasis preservation, in this case cryopreservation, is essential in allogeneic tissue engineering, allowing sterility testing, inventory control and, in the case of Dermagraft, a cellular stress that may be important for hormesis following implantation. Although the use of allogeneic cells provides advantages in manufacturing under suitable conditions, it raises the spectre of immunological rejection. Such rejection has not been experienced with Dermagraft. Possible reasons for this and the vision of further application of allogeneic tissues are important considerations in future tissue-engineered cellular devices. This review illustrates approaches that indicate some of the criteria that may provide a basis for further developments. Marketing is a further requirement for success, which entails understanding of the mechanism of action of the procedure, and is illustrated for Dermagraft. The success of a tissue-engineered product is dependent on many interacting operations, some discussed here, each of which must be performed simultaneously and well.
组织工程是一个极具前景的领域。以早期的组织工程皮肤植入物Dermagraft为例,探讨了这类设备成功进行商业开发所涉及的因素。组织工程必须在资源密集型的组织培养与关注成本最小化和客户便利性最大化的商业考量之间取得平衡。生物反应器的设计处于高度规范的环境中,因此纳入该概念的因素不仅包括组织培养方面的考量,还包括与无菌、放大生产、自动化以及最终客户的易用性相关的事项。Dermagraft是一种同种异体组织。在同种异体组织工程中,停滞保存(在这种情况下是冷冻保存)至关重要,它能进行无菌测试、库存控制,对于Dermagraft而言,还能产生一种细胞应激,这对植入后的应激效应可能很重要。尽管在合适条件下使用同种异体细胞在制造方面具有优势,但它引发了免疫排斥的担忧。Dermagraft尚未出现这种排斥情况。其可能原因以及同种异体组织进一步应用的前景是未来组织工程细胞设备的重要考量因素。本综述阐述了一些方法,这些方法指出了可能为进一步发展提供基础的一些标准。营销是成功的另一项要求,这需要了解该程序的作用机制,并以Dermagraft为例进行了说明。组织工程产品的成功取决于许多相互作用的操作,本文讨论了其中一些操作,每个操作都必须同时且出色地完成。