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March 5, 2026Proceedings of the National Academy of Sciences4 citationsOpen Access

Functional recovery of the adult murine hippocampus after cryopreservation by vitrification

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AGAlexander GermanEAEnes Yağız AkdaşCFCassandra Flügel-Koch

Key Points

  • To investigate the recovery of the adult murine hippocampus after vitrification and assess the preservation of neural function.
  • Cryopreservation using vitrification in adult murine brain slices
  • Assessment of structural integrity and neuronal function after vitrification
  • Evaluation of metabolic responsiveness and synaptic plasticity measures
  • Key features of the hippocampus, like structural integrity and neuronal excitability, were preserved after vitrification.
  • Hippocampal long-term potentiation (LTP) was well-preserved, indicating functional vitality for learning and memory.
  • Demonstrated recovery was achieved after complete cessation of molecular mobility in the vitreous state.

Abstract

Cryopreserving the adult brain is challenging due to damage from ice formation, and traditional freezing methods fail to maintain neural architecture and function. Vitrification offers a promising alternative but has not been surveyed in the brain. Here, we demonstrate short-term recovery of the adult murine hippocampus after vitrification of brain slices and of the whole brain in situ. Key features of the hippocampus are preserved, including structural integrity, metabolic responsiveness, neuronal excitability, and synaptic transmission and plasticity. Notably, hippocampal long-term potentiation (LTP) was well preserved, indicating that the cellular machinery of learning and memory remains operational. These findings extend known biophysical limits for cerebral hypothermic shutdown by demonstrating recovery after complete cessation of molecular mobility in the vitreous state and thus contribute to achieving the objective of structural and functional preservation of neural tissue.

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Cite This Study

German et al. (2026) studied this question.

synapsesocial.com/papers/69a91e02d6127c7a504c18f1https://doi.org/10.1073/pnas.2516848123
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