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Preserving Porcine Genetics: A Simple and Effective Method for On-Site Cryopreservation of Ear Tissue Using Direct Cover Vitrification.

Xia ZhangXin LiuXiao-Li LiuDan-Ya WuKai ZhouZhi-Sheng YuCheng-Li DouTian XuMei YuYi-Liang Miao
Published in: International journal of molecular sciences (2023)
Cell cryopreservation is widely used for porcine genetic conservation; however, isolating and freezing primary cells in farms without adequate experimental equipment and environment poses a significant challenge. Therefore, it is necessary to establish a quick and simple method to freeze tissues on-site, which can be used for deriving primary fibroblasts when needed to achieve porcine genetic conservation. In this study, we explored a suitable approach for porcine ear tissue cryopreservation. The porcine ear tissues were cut into strips and frozen by direct cover vitrification (DCV) in the cryoprotectant solution with 15% EG, 15% DMSO and 0.1 M trehalose. Histological analysis and ultrastructural evaluation revealed that thawed tissues had normal tissue structure. More importantly, viable fibroblasts could be derived from these tissues frozen in liquid nitrogen for up to 6 months. Cells derived from thawed tissues did not show any cell apoptosis, had normal karyotypes and could be used for nuclear transfer. These results suggest that this quick and simple ear tissue cryopreservation method can be applied for porcine genetic conservation, especially in the face of a deadly emerging disease in pigs.
Keyphrases
  • gene expression
  • induced apoptosis
  • single cell
  • genome wide
  • cell cycle arrest
  • cell proliferation
  • pregnant women
  • stem cells
  • signaling pathway
  • cell death
  • extracellular matrix
  • pregnancy outcomes
  • dna methylation