4.6 Article

Polysaccharide/Lipid Nanoconjugates as Alternative Building Blocks for Highly Biocompatible Microcapsules

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LANGMUIR
卷 -, 期 -, 页码 -

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AMER CHEMICAL SOC
DOI: 10.1021/acs.langmuir.2c00937

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  1. National Key R&D Program of China [2022YFE0100600]
  2. National Natural Science Foundation of China [21871180]
  3. Tracking Program for Professor of Special Appointment (Easter n Scholar) at the Shanghai Institutions of Higher Learning [SHDP201802]
  4. Open Project of Translational Medicine of SJTU [TMSK-2021-108]
  5. Instrumental Analysis Center at Shangha i Jiao Tong University (SJTU)

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In this study, nanoconjugates based on Dex-OA were synthesized and self-assembled into microcapsules through a water-in-oil emulsification process. The morphology of the microcapsules depended on the concentration of Dex-OA nanoconjugates, and they were able to encapsulate and retain fluorescently labeled dextran. This strategy provides a feasible method for constructing microcapsules using natural amphiphilic building blocks.
Saccharide/lipid nanoconjugates are attractive building blocks for the construction of micro-and nanosized structures because of the roles of glycolipids in human body, courtesy of their intrinsic and functional properties. Herein, nanoconjugates based on dextran and oleic acid (Dex-OA) were synthesized via facile amide-linkage chemistry. The resultant DexOA micelles could self-assemble into spherical water-filled microcapsules via a water-in-oil emulsification process. By cross linking, the microcapsules could be transferred to aqueous media, forming a stable microcapsule dispersion. According to optical and fluorescence microscopy, the microcapsules displayed a spherical morphology, and their synthesis is dependent on the concentration of Dex-OA nanoconjugates. Furthermore, the microcapsules could easily encapsulate and retain fluorescently labeled dextran. This strategy offers a robust and efficient method for the construction of microcapsules from fully natural amphiphilic building blocks with the potential for application in diverse fields such as biomedicine, protocell research, and microreactors.

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