Formation of Coacervates from Charged Polypeptides for Cryopreservation

Abstract Bioinspired antifreeze polypeptides can be used as macromolecular cryoprotectants, but the wide application of charged polypeptides remains a challenge for cell cryopreservation due to the possible membrane-destructive activity. In this work, positively charged poly(l-methionine) derivatives tethering threonine-mimetic methyl and hydroxyl groups (PMOH) are synthesized, which can form coacervates with anionic γ-poly(glutamic acid) (PGA) with or without trehalose via liquid–liquid phase separation. The coacervate consisting of PMOH and PGA each at 20 mg/mL with 0.2 M trehalose exhibits a strong ice recrystallization inhibition activity with a mean largest grain size of 22.2 ± 1.9% relative to PBS, attributable to the depressed diffusion of water molecules through the highly confined water and contribution of trehalose. The coacervation of PMOH/PGA could also promote ice nucleation owing to the charged nature of the polymers. Actually, the PMOH/PGA coacervates show acceptable cytocompatibility and cryopreservative effects on cell cryopreservation by reducing half of the dimethyl sulfoxide dosage. This work offers a valuable strategy for the utility of charged polypeptides in cryopreservation.

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Publication Details

Journal
ACS Biomaterials Science & Engineering
Published
2026-10-06
DOI
https://doi.org/10.1021/acsbiomaterials.6c01215
Primary Topic
nanoparticles nucleation surface interactions
Type
article
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article

Formation of Coacervates from Charged Polypeptides for Cryopreservation

朱孔营, Xiaoyan Yuan, Lixia Ren, Zhenghua Zeng et al.
ACS Biomaterials Science & Engineering
nanoparticles nucleation surface interactions
article

Formation of Coacervates from Charged Polypeptides for Cryopreservation

朱孔营, Xiaoyan Yuan, Lixia Ren, Zhenghua Zeng, Liang Yuan
article en

Abstract

Abstract Bioinspired antifreeze polypeptides can be used as macromolecular cryoprotectants, but the wide application of charged polypeptides remains a challenge for cell cryopreservation due to the possible membrane-destructive activity. In this work, positively charged poly(l-methionine) derivatives tethering threonine-mimetic methyl and hydroxyl groups (PMOH) are synthesized, which can form coacervates with anionic γ-poly(glutamic acid) (PGA) with or without trehalose via liquid–liquid phase separation. The coacervate consisting of PMOH and PGA each at 20 mg/mL with 0.2 M trehalose exhibits a strong ice recrystallization inhibition activity with a mean largest grain size of 22.2 ± 1.9% relative to PBS, attributable to the depressed diffusion of water molecules through the highly confined water and contribution of trehalose. The coacervation of PMOH/PGA could also promote ice nucleation owing to the charged nature of the polymers. Actually, the PMOH/PGA coacervates show acceptable cytocompatibility and cryopreservative effects on cell cryopreservation by reducing half of the dimethyl sulfoxide dosage. This work offers a valuable strategy for the utility of charged polypeptides in cryopreservation.

ACS Biomaterials Science & Engineering
Tianjin University (CN)
Openalex Percentile: Top 19%
nanoparticles nucleation surface interactions
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