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Updated: Sep 20, 2025

Bulk Droplet Vitrification for Primary Hepatocyte Preservation
Published on: October 25, 2019
Small-molecule fulvic acid with strong hydration ability for non-vitreous cellular cryopreservation
Guoying Bai1,2, Jinhao Hu1, Sijia Qin1
1School of Materials Science and Engineering, Hebei University of Technology, Tianjin 300401, China.
Abstract:
The exploitation of biocompatible ice-control materials especially the small molecules for non-vitreous cryopreservation remains challenging. Here, we report a small molecule of fulvic acid (FA) with strong hydration ability, which enables non-vitreous cellular cryopreservation by reducing ice growth during freezing and reducing ice recrystallization/promoting ice melting during thawing. Without adding any other cryoprotectants, FA can enhance the recovery of sheep red blood cells (RBCs) by three times as compared with a commercial cryoprotectant (hydroxyethyl starch) under a stringent test condition. Investigation of water mobility reveals that the ice-control properties of FA can be ascribed to its strong bondage to water molecules. Furthermore, we found that FA can be absorbed by RBCs and mainly locates on membranes, suggesting the possible contribution of FA to cell protection through stabilizing membranes. This work bespeaks a bright future for small-molecule cryoprotectants in non-vitreous cryopreservation application.
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