Effect of embryo cryopreservation on derivation efficiency, pluripotency, and differentiation capacity of mouse

Vahideh Assadollahi1, Kambiz Hassanzadeh1, Mohammad Abdi1

  • 1Cellular and Molecular Research Center, Research Institute for Health Development, Kurdistan University of Medical Sciences, Sanandaj, Iran.

Insights

This study successfully isolated mouse embryonic stem cells (mESCs) from cryopreserved embryos using serum-free culture, demonstrating potential impacts of cryopreservation on mESC derivation and characteristics.

Area of Science:

  • Stem Cell Biology
  • Reproductive Biology
  • Developmental Biology

Background:

  • Mouse embryonic stem cells (mESCs) are crucial for self-renewal and pluripotency research.
  • Embryo quality significantly impacts mESC isolation efficiency.
  • Cryopreservation of embryos presents challenges for subsequent stem cell derivation.

Purpose of the Study:

  • To isolate and characterize mouse embryonic stem cells (mESCs) from frozen/thawed C57BL/6 eight-cell mouse embryos.
  • To evaluate the effects of cryopreservation on mESC derivation, karyotype, pluripotency gene expression, and differentiation potential.
  • To establish and assess novel mESC lines derived from cryopreserved embryos using serum-free culture conditions.

Main Methods:

  • Isolation of mESCs from blastocysts developed from frozen/thawed eight-cell embryos.
  • Characterization of mESC lines using karyotype analysis, alkaline phosphatase (ALP) activity assays, and polymerase chain reaction (PCR) for pluripotency genes (Oct4, Rex1, Sox2, Nanog).
  • Immunocytochemistry for OCT4 and SSEA-1 protein expression, embryoid body (EB) formation for differentiation potential assessment, and cell doubling time (DT) determination.

Main Results:

  • Three independent mESC lines (MUKF-1, MUKF-2, MUKF-3) were successfully established from cryopreserved embryos.
  • MUKF-3 exhibited a diploid karyotype, while MUKF-1 and MUKF-2 showed abnormal karyotypes.
  • All lines displayed ALP activity and expressed key pluripotency markers (Oct4, Rex1, Nanog) at the gene and protein levels; MUKF-1 and MUKF-3 demonstrated differentiation capacity into three germ layers via EB formation.

Conclusions:

  • Cryopreservation likely influences the efficiency of mESC derivation, karyotype stability, cell doubling time, pluripotency gene expression, and differentiation capabilities.
  • Serum-free culture conditions can support the derivation of mESCs from cryopreserved embryos.
  • The study provides valuable insights into the impact of cryopreservation on stem cell derivation and characteristics.

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