Heart Surgery Center Basel-Bern; University Hospital and Department of Biomedicine; Basel, Switzerland.
Organogenesis. 2009 Jul;5(3):97-104. doi: 10.4161/org.5.3.9495.
Cryopreservation of human blood vessels may become an important tool in bypass surgery and peripheral vascular reconstruction. Ideally cryopreservation of a blood vessel should preserve functional characteristics comparable to those of fresh controls. The key advantage of cryopreservation is the fact that storage at deep subzero temperatures allows storage of structurally intact living vascular tissues for virtually infinite time. Originally developed for long-time storage of isolated cells, the techniques of cryopreservation of tissues are challenged by the fact that these are complex multicellular systems containing diverse types of cells with differing requirements for optimal preservation. Therefore, the post-thaw functional activity of vascular tissues is determined by the type of blood vessel and, in addition, by the cell packing effect. Moreover, evidence from pharmacological studies suggests that cryopreservation induces tissue specific changes in transmembrane signaling and the mechanisms coupling intracellular calcium release, sensitivity and calcium entry into the smooth muscle cells.
人体血管的低温保存可能成为旁路手术和外周血管重建的重要工具。理想情况下,血管的低温保存应保持与新鲜对照相当的功能特性。低温保存的主要优势在于,在深亚低温下储存可以使结构完整的活体血管组织实际上无限期地储存。该技术最初是为了长期储存分离的细胞而开发的,但由于组织是包含多种不同类型细胞的复杂多细胞系统,对最佳保存有不同的要求,因此低温保存技术受到了挑战。因此,血管组织的解冻后功能活性取决于血管的类型,此外,还取决于细胞包装效应。此外,药理学研究的证据表明,低温保存会诱导跨膜信号转导以及细胞内钙释放、敏感性和钙进入平滑肌细胞的耦联机制发生组织特异性变化。