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关于用于卵巢组织工程的生物材料的综述。

A review on biomaterials for ovarian tissue engineering.

机构信息

Pôle de Recherche en Gynécologie, Institut de Recherche Expérimentale et Clinique, Université Catholique de Louvain, Avenue Mounier 52, Bte. B1.52.02, Brussels 1200, Belgium.

BioMatter Unit-Biomass Transformation Lab (BTL), École Polytechnique de Bruxelles, Université Libre de Bruxelles, Campus du Solbosch-CP 165/61, Avenue F.D. Roosevelt, Brussels 50 1050, Belgium.

出版信息

Acta Biomater. 2021 Nov;135:48-63. doi: 10.1016/j.actbio.2021.08.026. Epub 2021 Aug 26.

Abstract

Considerable challenges in engineering the female reproductive tissue are the follicle's unique architecture, the need to recapitulate the extracellular matrix, and tissue vascularization. Over the years, various strategies have been developed for preserving fertility in women diagnosed with cancer, such as embryo, oocyte, or ovarian tissue cryopreservation. While autotransplantation of cryopreserved ovarian tissue is a viable choice to restore fertility in prepubertal girls and women who need to begin chemo- or radiotherapy soon after the cancer diagnosis, it is not suitable for all patients due to the risk of having malignant cells present in the ovarian fragments in some types of cancer. Advances in tissue engineering such as 3D printing and ovary-on-a-chip technologies have the potential to be a translational strategy for precisely recapitulating normal tissue in terms of physical structure, vascularization, and molecular and cellular spatial distribution. This review first introduces the ovarian tissue structure, describes suitable properties of biomaterials for ovarian tissue engineering, and highlights recent advances in tissue engineering for developing an artificial ovary. STATEMENT OF SIGNIFICANCE: The increase of survival rates in young cancer patients has been accompanied by a rise in infertility/sterility in cancer survivors caused by the gonadotoxic effect of some chemotherapy regimens or radiotherapy. Such side-effect has a negative impact on these patients' quality of life as one of their main concerns is generating biologically related children. To aid female cancer patients, several research groups have been resorting to tissue engineering strategies to develop an artificial ovary. In this review, we discuss the numerous biomaterials cited in the literature that have been tested to encapsulate and in vitro culture or transplant isolated preantral follicles from human and different animal models. We also summarize the recent advances in tissue engineering that can potentially be optimal strategies for developing an artificial ovary.

摘要

工程女性生殖组织面临着许多挑战,包括卵泡独特的结构、需要重现细胞外基质和组织血管化。多年来,已经开发出各种策略来保存患有癌症的女性的生育能力,例如胚胎、卵母细胞或卵巢组织冷冻保存。虽然冷冻保存的卵巢组织自体移植是恢复青春期前女孩和癌症诊断后不久需要开始化疗或放疗的女性生育能力的可行选择,但由于某些类型的癌症中卵巢碎片中可能存在恶性细胞,因此并不适合所有患者。组织工程学的进步,如 3D 打印和卵巢芯片技术,有可能成为一种转化策略,可以精确地再现正常组织的物理结构、血管化以及分子和细胞的空间分布。这篇综述首先介绍了卵巢组织的结构,描述了适合卵巢组织工程的生物材料的特性,并强调了在开发人工卵巢方面组织工程学的最新进展。

意义陈述

年轻癌症患者生存率的提高伴随着一些化疗方案或放疗对性腺的毒性作用导致的癌症幸存者不孕/不育的增加。这种副作用对这些患者的生活质量产生了负面影响,因为他们的主要关注点之一是生育有生物学关系的孩子。为了帮助女性癌症患者,一些研究小组已经采用组织工程策略来开发人工卵巢。在这篇综述中,我们讨论了文献中引用的许多生物材料,这些材料已被测试用于包裹和体外培养或移植来自人类和不同动物模型的分离的原始卵泡。我们还总结了组织工程学的最新进展,这些进展可能是开发人工卵巢的最佳策略。

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