Primordial germ cells of Astyanax altiparanae, isolated and recovered intact after vitrification: A preliminary study for potential cryopreservation of Neotropical fish germplasm

IF 4.6 Q2 MATERIALS SCIENCE, BIOMATERIALS
Jenyffer Rosero , Giselle Pessanha Pessoa , Gabriella Braga Carvalho , Lucia Suárez López , Silvio Carlos Alves dos Santos , Fabiana Fernandes Bressan , George Shigueki Yasui
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Abstract

Primordial germ cells (PGCs) constitute an important cell lineage that directly impacts genetic dissemination and species conservation through the creation of cryobanks. In order to advance the field of animal genetic cryopreservation, this work aimed to recover intact PGCs cryopreserved in embryonic tissues during the segmentation phase for subsequent in vitro maintenance, using the yellow-tailed tetra (Astyanax altiparanae) as a model organism. For this, a total of 202 embryos were distributed in two experiments. In the first experiment, embryos in the segmentation phase were dissociated, and isolated PGCs were maintained in vitro. They were visualized using gfp-Pm-ddx4 3′UTR labeling. The second experiment aimed to vitrify PGCs using 3 cryoprotective agents or CPAs (dimethyl sulfoxide, ethylene glycol, and 1,2 propanediol) at 3 molarities (2, 3, and 4 M). The toxicity, somatic cell viability, and recovery of intact PGCs were evaluated. After cryopreservation and thawing, 2 M ethylene glycol produced intact PGCs and somatic cells (44 ± 11.52 % and 42.35 ± 0.33 %, respectively) post-thaw. The recovery of PGCs from frozen embryonic tissues was not possible without the use of CPAs. Thus, the vitrification of PGCs from an important developmental model and Neotropical species such as A. altiparanae was achieved, and the process of isolating and maintaining PGCs in a culture medium was successful. Therefore, to ensure the maintenance of genetic diversity, PGCs obtained during embryonic development in the segmentation phase between 25 and 28 somites were stored through vitrification for future applications in the reconstitution of species through germinal chimerism.

分离并在玻璃化后恢复完整的 Astyanax altiparanae 原始生殖细胞:对新热带鱼种质低温保存潜力的初步研究。
原始生殖细胞(PGCs)是一个重要的细胞系,它通过建立低温库直接影响着基因传播和物种保护。为了推动动物基因冷冻保存领域的发展,本研究以黄尾四带鱼(Astyanax altiparanae)为模式生物,旨在恢复胚胎组织在分割阶段冷冻保存的完整 PGCs,以便进行后续的体外维护。为此,共有 202 个胚胎被分配到两个实验中。在第一项实验中,处于分割期的胚胎被解离,分离出的 PGCs 在体外维持。使用 gfp-Pm-ddx4 3'UTR 标记来观察它们。第二项实验旨在使用三种摩尔浓度(2、3 和 4M)的低温保护剂或 CPA(二甲亚砜、乙二醇和 1,2-丙二醇)对 PGCs 进行玻璃化。对其毒性、体细胞活力和完整 PGCs 的恢复情况进行了评估。冷冻保存和解冻后,2M乙二醇能产生完整的PGCs和体细胞(分别为44 ± 11.52%和42.35 ± 0.33%)。如果不使用 CPAs,就无法从冷冻胚胎组织中回收 PGCs。因此,从一个重要的发育模型和新热带物种(如 A. altiparanae)中实现了 PGCs 的玻璃化,并成功地在培养基中分离和维持了 PGCs。因此,为了确保遗传多样性的保持,在胚胎发育过程中,在25-28体节之间的分割阶段获得的PGCs通过玻璃化保存起来,以备将来通过种系嵌合重建物种时应用。
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
ACS Applied Bio Materials
ACS Applied Bio Materials Chemistry-Chemistry (all)
CiteScore
9.40
自引率
2.10%
发文量
464
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