评估生殖毒理学的多细胞工程活体系统。

IF 3.3 4区 医学 Q2 REPRODUCTIVE BIOLOGY
Isabella Lopez, George A. Truskey
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引用次数: 0

摘要

毒物和某些药物会对生殖健康产生负面影响。由于缺乏可用模型,许多毒物尚未经过测试。在怀孕期间服用许多药物来解决母体健康问题,可能会对胎儿的发育产生不利影响,而且这种影响是终身的,而临床试验并不检查毒性对母体-胎儿界面的影响,因此需要对安全性和有效性进行间接评估。鉴于目前生殖毒理学知识的空白和动物模型的局限性,多细胞工程生物系统可为化学和异生物毒性研究提供生殖生理和病理建模的解决方案。多细胞工程生命系统是微生理系统(MPS)和有机体等组织功能单元的模型。在本综述中,我们将重点介绍人类生殖器官的主要功能和结构,以及影响这些系统的众所周知的代表性毒物。然后,我们将讨论当前的方法和具体研究,在这些方法和研究中,科学家们利用微物理系统或有机体再现了女性和男性生殖系统的体内标记和细胞反应,以及与妊娠相关的胎盘形成和胚胎发育。我们提供了器官组织和芯片上器官用于毒理学目的并取得不同成功的具体实例。最后,我们讨论了与使用多细胞生物系统有关的当前问题、改善这些并发症的新兴技术,以及使多细胞生物系统更有能力评估生殖毒理学所需的改进。总之,与动物研究和二维培养相比,多细胞工程生物系统有望成为一种合适的、可替代的生殖生物学模型。
本文章由计算机程序翻译,如有差异,请以英文原文为准。

Multi-cellular engineered living systems to assess reproductive toxicology

Multi-cellular engineered living systems to assess reproductive toxicology

Toxicants and some drugs can negatively impact reproductive health. Many toxicants haven’t been tested due to lack of available models. The impact of many drugs taken during pregnancy to address maternal health may adversely affect fetal development with life-long effects and clinical trials do not examine toxicity effects on the maternal-fetal interface, requiring indirect assessment of safety and efficacy. Due to current gaps in reproductive toxicological knowledge and limitations of animal models, multi-cellular engineered living systems may provide solutions for modeling reproductive physiology and pathology for chemical and xenobiotic toxicity studies. Multi-cellular engineered living systems, such as microphysiological systems (MPS) and organoids, model of functional units of tissues. In this review, we highlight the key functions and structures of human reproductive organs and well-known representative toxicants afflicting these systems. We then discuss current approaches and specific studies where scientists have used MPS or organoids to recreate in vivo markers and cellular responses of the female and male reproductive system, as well as pregnancy-associated placenta formation and embryo development. We provide specific examples of organoids and organ-on-chip that have been used for toxicological purposes with varied success. Finally, we address current issues related to usage of MPS, emerging techniques for improving upon these complications, and improvements needed to make MPS more capable in assessing reproductive toxicology. Overall, multi-cellular engineered living systems have considerable promise to serve as a suitable, alternative reproductive biological model compared to animal studies and 2D culture.

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来源期刊
Reproductive toxicology
Reproductive toxicology 生物-毒理学
CiteScore
6.50
自引率
3.00%
发文量
131
审稿时长
45 days
期刊介绍: Drawing from a large number of disciplines, Reproductive Toxicology publishes timely, original research on the influence of chemical and physical agents on reproduction. Written by and for obstetricians, pediatricians, embryologists, teratologists, geneticists, toxicologists, andrologists, and others interested in detecting potential reproductive hazards, the journal is a forum for communication among researchers and practitioners. Articles focus on the application of in vitro, animal and clinical research to the practice of clinical medicine. All aspects of reproduction are within the scope of Reproductive Toxicology, including the formation and maturation of male and female gametes, sexual function, the events surrounding the fusion of gametes and the development of the fertilized ovum, nourishment and transport of the conceptus within the genital tract, implantation, embryogenesis, intrauterine growth, placentation and placental function, parturition, lactation and neonatal survival. Adverse reproductive effects in males will be considered as significant as adverse effects occurring in females. To provide a balanced presentation of approaches, equal emphasis will be given to clinical and animal or in vitro work. Typical end points that will be studied by contributors include infertility, sexual dysfunction, spontaneous abortion, malformations, abnormal histogenesis, stillbirth, intrauterine growth retardation, prematurity, behavioral abnormalities, and perinatal mortality.
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