A Multi-hole Cryovial Eliminates Freezing Artifacts when Muscle Tissues are Directly Immersed in Liquid Nitrogen

Yizhong Huang1, Maozhang He1, Qingjie Zeng1

  • 1State Key Laboratory for Pig Genetic Improvement and Production Technology, Jiangxi Agricultural University.

Insights

This study presents a novel cryovial method for rapidly freezing skeletal muscle tissue using liquid nitrogen. This technique prevents ice crystal formation, ensuring well-preserved muscle fibers for physiological studies.

Area of Science:

  • Skeletal Muscle Physiology
  • Cryopreservation Techniques
  • Tissue Processing

Background:

  • Skeletal muscle studies require well-preserved tissue sections for clear visualization.
  • Traditional methods like fixation and paraffin embedding cause muscle fiber shrinkage.
  • Freezing is preferred, but ice crystal formation is a common issue.

Purpose of the Study:

  • To develop an efficient and simple method for freezing muscle tissue.
  • To overcome ice crystal formation during cryopreservation.
  • To improve skeletal muscle specimen processing for research.

Main Methods:

  • A novel cryovial design with 14 inlet holes was used for liquid nitrogen immersion.
  • The cryovial design enhances liquid nitrogen flow, preventing vapor blanket formation.
  • Muscle tissues were frozen by immersing the modified cryovial in liquid nitrogen.

Main Results:

  • The new method effectively prevents ice crystal formation in muscle tissue.
  • This protocol is simpler and more efficient than using pre-chilled isopentane.
  • The technique allows for high-throughput freezing of muscle specimens.

Conclusions:

  • The modified cryovial method provides superior cryopreservation of skeletal muscle.
  • This technique is a valuable tool for skeletal muscle physiology research.
  • It offers a safer and more accessible alternative to isopentane freezing.