3D culture applied to reproduction in females: possibilities and perspectives.

IF 1.6 4区 农林科学 Q2 AGRICULTURE, DAIRY & ANIMAL SCIENCE Animal Reproduction Pub Date : 2024-03-08 eCollection Date: 2024-01-01 DOI:10.1590/1984-3143-AR2023-0039
Giuliana de Avila Ferronato, Franciele Flores Vit, Juliano Coelho da Silveira
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Abstract

In vitro cell culture is a well-established technique present in numerous laboratories in diverse areas. In reproduction, gametes, embryos, and reproductive tissues, such as the ovary and endometrium, can be cultured. These cultures are essential for embryo development studies, understanding signaling pathways, developing drugs for reproductive diseases, and in vitro embryo production (IVP). Although many culture systems are successful, they still have limitations to overcome. Three-dimensional (3D) culture systems can be close to physiological conditions, allowing greater interaction between cells and cells with the surrounding environment, maintenance of the cells' natural morphology, and expression of genes and proteins such as in vivo. Additionally, three-dimensional culture systems can stimulated extracellular matrix generating responses due to the mechanical force produced. Different techniques can be used to perform 3D culture systems, such as hydrogel matrix, hanging drop, low attachment surface, scaffold, levitation, liquid marble, and 3D printing. These systems demonstrate satisfactory results in follicle culture, allowing the culture from the pre-antral to antral phase, maintaining the follicular morphology, and increasing the development rates of embryos. Here, we review some of the different techniques of 3D culture systems and their applications to the culture of follicles and embryos, bringing new possibilities to the future of assisted reproduction.

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将三维培养应用于女性生殖:可能性与前景。
体外细胞培养是一项成熟的技术,在不同领域的众多实验室中都有应用。在生殖领域,配子、胚胎以及卵巢和子宫内膜等生殖组织都可以进行培养。这些培养物对于胚胎发育研究、了解信号传导途径、开发治疗生殖疾病的药物和体外胚胎生产(IVP)至关重要。尽管许多培养系统都很成功,但它们仍有一些局限性需要克服。三维(3D)培养系统可以接近生理条件,使细胞与细胞之间、细胞与周围环境之间有更多的相互作用,保持细胞的自然形态,表达基因和蛋白质,如在体内。此外,三维培养系统产生的机械力还能刺激细胞外基质产生反应。三维培养系统可采用不同的技术,如水凝胶基质、悬滴、低附着面、支架、悬浮、液体大理石和三维打印。这些系统在卵泡培养方面取得了令人满意的结果,可从前胸期培养到前列期,保持卵泡形态,提高胚胎发育率。在此,我们回顾了三维培养系统的一些不同技术及其在卵泡和胚胎培养中的应用,为辅助生殖的未来带来了新的可能性。
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来源期刊
Animal Reproduction
Animal Reproduction AGRICULTURE, DAIRY & ANIMAL SCIENCE-
CiteScore
2.30
自引率
11.80%
发文量
49
审稿时长
70 days
期刊介绍: Animal Reproduction (AR) publishes original scientific papers and invited literature reviews, in the form of Basic Research, Biotechnology, Applied Research and Review Articles, with the goal of contributing to a better understanding of phenomena related to animal reproduction. The scope of the journal applies to students, researchers and practitioners in the fields of veterinary, biology and animal science, also being of interest to practitioners of human medicine. Animal Reproduction Journal is the official organ of the Brazilian College of Animal Reproduction in Brazil.
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