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Author Spotlight: Advancing Therapeutics with Biocompatible Sodium Alginate Hydrogel Microspheres
Published on: June 7, 2024
Tuning Collagen Molecular Aggregation Behavior: Solvent Shielding in a Biphasic Polar System for Oxidized Sodium
Lingyu Hua1,2, Fengxian Ju1,2, Zihan Shen1,2
1Shandong Provincial Key Laboratory of Molecular Engineering, Qilu University of Technology (Shandong Academy of Sciences), Jinan 250353, PR China.
Abstract:
Precise regulation of the collagen molecular aggregation behavior is an indispensable prerequisite for constructing functional collagen-based biomaterials. This study innovatively proposes a sustainable strategy to tune collagen molecular aggregation behavior using oxidized sodium alginate (OSA) as a cross-linker within a biphasic acetic acid/1-ethyl-3-methylimidazolium acetate solvent system. Such a polar solvent environment effectively shields electrostatic interactions between OSA and collagen, resulting in a homogeneous cross-linked network. The results indicated that the critical aggregation concentration of collagen was 1.70 mg/mL in the AA/[EMIM][Ac] solvent system and revealed a [NH2]/[CHO] ratio-governed aggregation transition. Beyond the threshold ratio of 1:20, OSA exhibited optimal cross-linking efficiency, thereby driving the formation of large-sized collagen aggregates. Finally, molecular docking simulations of the binding interactions between collagen and OSA were conducted to validate the experimental findings. This work affords a practical methodology for developing high-performance OSA-mediated collagen-based biomaterials while achieving the biological resources transformation and valorization.

