Perspectives on chick embryo models in developmental and reproductive toxicity screening

IF 3.3 4区 医学 Q2 REPRODUCTIVE BIOLOGY Reproductive toxicology Pub Date : 2024-03-30 DOI:10.1016/j.reprotox.2024.108583
Biswajeet Acharya , Sandip Dey , Prafulla Kumar Sahu , Amulyaratna Behera , Bimalendu Chowdhury , Suchismeeta Behera
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Abstract

Teratology, the study of congenital anomalies and their causative factors intersects with developmental and reproductive toxicology, employing innovative methodologies. Evaluating the potential impacts of teratogens on fetal development and assessing human risk is an essential prerequisite in preclinical research. The chicken embryo model has emerged as a powerful tool for understanding human embryonic development due to its remarkable resemblance to humans. This model offers a unique platform for investigating the effects of substances on developing embryos, employing techniques such as ex ovo and in ovo assays, chorioallantoic membrane assays, and embryonic culture techniques. The advantages of chicken embryonic models include their accessibility, cost-effectiveness, and biological relevance to vertebrate development, enabling efficient screening of developmental toxicity. However, these models have limitations, such as the absence of a placenta and maternal metabolism, impacting the study of nutrient exchange and hormone regulation. Despite these limitations, understanding and mitigating the challenges posed by the absence of a placenta and maternal metabolism are critical for maximizing the utility of the chick embryo model in developmental toxicity testing. Indeed, the insights gained from utilizing these assays and their constraints can significantly contribute to our understanding of the developmental impacts of various agents. This review underscores the utilization of chicken embryonic models in developmental toxicity testing, highlighting their advantages and disadvantages by addressing the challenges posed by their physiological differences from mammalian systems.

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雏鸡胚胎模型在发育和生殖毒性筛选中的应用前景。
畸形学是一门研究先天畸形及其致病因素的学科,它与发育和生殖毒理学相互交叉,并采用创新的方法。评估致畸剂对胎儿发育的潜在影响和人类风险是临床前研究的重要前提。鸡胚胎模型与人类极为相似,因此已成为了解人类胚胎发育的有力工具。该模型提供了一个独特的平台,利用体外和体内检测、绒毛膜检测和胚胎培养技术等技术来研究物质对发育中胚胎的影响。鸡胚胎模型的优点包括容易获得、成本效益高,而且与脊椎动物的发育具有生物学相关性,可有效筛选发育毒性。然而,这些模型也有局限性,例如没有胎盘和母体代谢,影响了营养交换和激素调节的研究。尽管存在这些局限性,但要最大限度地发挥雏鸡胚胎模型在发育毒性测试中的作用,了解并减轻因缺乏胎盘和母体代谢而带来的挑战至关重要。事实上,利用这些检测方法及其制约因素所获得的见解可极大地促进我们对各种制剂对发育影响的理解。本综述强调了鸡胚胎模型在发育毒性测试中的应用,通过探讨鸡胚胎模型与哺乳动物系统的生理差异所带来的挑战,突出了鸡胚胎模型的优缺点。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
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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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