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Conduction-Dominated Cryomesh for Organism Vitrification. | LitMetric

AI Article Synopsis

  • Vitrification-based cryopreservation is an effective method for long-term storage of biological materials, aiding in biodiversity, healthcare, and food production.
  • The use of the "cryomesh" system enhances rapid cooling and rewarming but requires further improvements in cooling rates to boost the viability of cryopreserved biosystems.
  • Conduction-dominated cryomesh technology significantly enhances cooling rates, successfully vitrifying various biological samples like coral larvae and zebrafish embryos, with potential applications in biorepositories and agriculture.

Article Abstract

Vitrification-based cryopreservation is a promising approach to achieving long-term storage of biological systems for maintaining biodiversity, healthcare, and sustainable food production. Using the "cryomesh" system achieves rapid cooling and rewarming of biomaterials, but further improvement in cooling rates is needed to increase biosystem viability and the ability to cryopreserve new biosystems. Improved cooling rates and viability are possible by enabling conductive cooling through cryomesh. Conduction-dominated cryomesh improves cooling rates from twofold to tenfold (i.e., 0.24 to 1.2 × 10  °C min ) in a variety of biosystems. Higher thermal conductivity, smaller mesh wire diameter and pore size, and minimizing the nitrogen vapor barrier (e.g., vertical plunging in liquid nitrogen) are key parameters to achieving improved vitrification. Conduction-dominated cryomesh successfully vitrifies coral larvae, Drosophila embryos, and zebrafish embryos with improved outcomes. Not only a theoretical foundation for improved vitrification in µm to mm biosystems but also the capability to scale up for biorepositories and/or agricultural, aquaculture, or scientific use are demonstrated.

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Source
http://www.ncbi.nlm.nih.gov/pmc/articles/PMC10797434PMC
http://dx.doi.org/10.1002/advs.202303317DOI Listing

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