West China School of Basic Medical Sciences & Forensic Medicine, Experimental and Research Animal Institute, Sichuan University, Chengdu, 610065, People's Republic of China.
College of Polymer Science and Engineering, Sichuan University, Chengdu, 610065, People's Republic of China.
Ann Biomed Eng. 2023 Mar;51(3):461-478. doi: 10.1007/s10439-022-03125-6. Epub 2023 Jan 11.
For certain types of cancer patients, ovarian transplantation has a risk of malignant cancer cell infection. However, the autologous transplantation of an artificial ovary is safe and effective, guarantees the normal development of isolated follicles, regular oocyte maturation, and ovulation, partially restores endocrine function, and enables the patient to regain reproductive ability. Despite the complexity of the natural ovary, some progress has been made in the repair or replacement of reproductive tissues with the use of various biomaterials. This article reviews the physical structure, biomechanical properties, design elements, preparation routes, construction and practical use of natural polymer materials, usually hydrogel scaffolds, such as alginate, fibrin, gelatin, collagen, agarose, and acellular ovarian matrix in the preparation of artificial ovaries. We summarize how these materials can be made into artificial ovaries to achieve the conditions for fertility through follicle and oocyte development and identify several major issues to overcome for the future development of artificial ovaries, including how to establish blood recirculation, and how to establish hormone synthesis and release channels. This review is intended to provide a reference for the use of natural polymer biomaterials in reproductive clinics.
对于某些类型的癌症患者,卵巢移植有恶性癌细胞感染的风险。然而,自体人工卵巢移植是安全有效的,保证了孤立卵泡的正常发育、卵母细胞的正常成熟和排卵,部分恢复了内分泌功能,使患者恢复了生殖能力。尽管天然卵巢的结构复杂,但在使用各种生物材料修复或替代生殖组织方面已经取得了一些进展。本文综述了天然聚合物材料(通常为水凝胶支架)在制备人工卵巢中的物理结构、生物力学特性、设计要素、制备途径、构建和实际应用,如海藻酸盐、纤维蛋白、明胶、胶原、琼脂糖和去细胞卵巢基质。我们总结了如何利用这些材料来制造人工卵巢,以通过卵泡和卵母细胞发育来实现生育条件,并确定了未来人工卵巢发展需要克服的几个主要问题,包括如何建立血液再循环以及如何建立激素合成和释放途径。本文旨在为天然聚合物生物材料在生殖临床中的应用提供参考。