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组织保存与获取:生物样本库中的现代创新推动个性化治疗发展。

Tissue Preservation and Access: Modern Innovation in Biobanking Moving Forwards a Personalized Treatment.

作者信息

Tessari Chiara, Imran Saima Jalil, Akbar Nukhba, Gerosa Gino

机构信息

Department of Cardiac, Thoracic, Vascular Sciences and Public Health, University of Padua, I-35128 Padua, Italy.

Dr. Zafar H. Zaidi Center for Proteomics, University of Karachi, Karachi 75270, Pakistan.

出版信息

J Pers Med. 2025 May 7;15(5):190. doi: 10.3390/jpm15050190.

Abstract

Tissue substitution and graft transplantation are currently the best treatment options for patients suffering from severe heart diseases. However, the limited availability of donors and the restricted durability of tissues applied in cardiovascular treatments result in a constraint on applicability and a suboptimal therapeutic approach that is still not fully resolved. There are multiple ways to preserve heart tissue grafts, and the choice of method is solely dependent upon the nature and complexity of the tissue and the length of storage. The conventional cold storage method provides the base to nearly all of the preservation protocols for short- and long-term storage. Short-term storage methods frequently rely on designing preserving solutions to protect the graft against warm and cold ischemia at the temperature above freezing point. As ice-nucleation is the major notorious phenomenon during graft preservation, the modern era of research is focusing on developing ice-free preservation techniques, termed vitrification. However, despite the promising outcomes of vitrification, there are several recognized hurdles required to be overcome to build a biobank of heart grafts for an extended period of time. Besides tissue deterioration due to extreme cold temperature, there is another extreme phenomenon of tissue rejection mainly caused by the presence of cellular antigens. The modern approach of decellularization has the potential to minimize the chances of tissue rejection by removing the cells and providing a structural support and sustained biochemical signal via keeping the extracellular matrix of the graft intact. In conclusion, both nano-warming and decellularization are the leading approaches that have great potential to store the graft tissue in its optimal form via keeping its viability safe for a longer time and extending its applicability. This review article outlines a variety of approaches for the preservation and bioengineering of tissue to fulfill the need for the availability of on-shelf long-lasting grafts both in clinical and laboratory setups.

摘要

组织替代和移植目前是重症心脏病患者的最佳治疗选择。然而,供体的可用性有限以及心血管治疗中所用组织的耐久性受限,导致其适用性受到限制,且这种次优治疗方法仍未得到充分解决。保存心脏组织移植物有多种方法,方法的选择完全取决于组织的性质和复杂性以及储存时间的长短。传统的冷藏方法为几乎所有短期和长期储存的保存方案提供了基础。短期储存方法通常依赖于设计保存溶液,以在高于冰点的温度下保护移植物免受热缺血和冷缺血的影响。由于冰核形成是移植物保存过程中主要的不良现象,现代研究时代正专注于开发无冰保存技术,即玻璃化。然而,尽管玻璃化取得了有前景的成果,但要建立一个长期的心脏移植物生物样本库,仍有几个公认的障碍需要克服。除了极端低温导致的组织退化外,还有另一种极端现象,即主要由细胞抗原的存在引起的组织排斥。现代的脱细胞方法有可能通过去除细胞并通过保持移植物的细胞外基质完整来提供结构支持和持续的生化信号,从而将组织排斥的可能性降至最低。总之,纳米升温法和脱细胞法都是领先的方法,它们极有可能通过长时间安全地保持移植物组织的活力并扩大其适用性,以最佳形式储存移植物组织。这篇综述文章概述了多种组织保存和生物工程方法,以满足临床和实验室环境中对现成的长期移植物的需求。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/de5c/12113189/c0c4e24f5656/jpm-15-00190-g001.jpg

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