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Acetalated Dextran Is A Chemically And Biologically Tunable Material For Particulate Immunotherapy

机译:乙酰化右旋糖酐是一种用于颗粒免疫疗法的化学和生物可调性材料

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摘要

Materials that combine facile synthesis, simple tuning of degradation rate, processability, and biocompatibility are in high demand for use in biomedical applications. We report on acetalated dextran, a biocompatible material that can be formed into micropar-ticles with degradation rates that are tunable over 2 orders of magnitude depending on the degree and type of acetal modification. Varying the degradation rate produces particles that perform belter than poly(lactic-co-glycolic acid) and iron oxide, two commonly studied materials used for particulate immunotherapy, in major histocompatibility complex class I (MHC I) and MHC II presentation assays. Modulating the material properties leads to antigen presentation on MHC lvia pathways that are dependent or independent of the transporter associated with antigen processing. To the best of our knowledge, this is the only example of a material that can be tuned to operate on different immunological pathways while maximizing immunological presentation.
机译:结合容易的合成,降解速率的简单调节,可加工性和生物相容性的材料在生物医学应用中有很高的需求。我们报道了乙缩醛右旋糖酐,这是一种生物相容性材料,可以形成微粒,降解速度可根据缩醛修饰的程度和类型在2个数量级上调整。在主要的组织相容性复合体I类(MHC I)和MHC II呈递分析中,改变降解速率所产生的颗粒比聚乳酸-乙醇酸和氧化铁(用于颗粒免疫治疗的两种常用研究材料)的性能更高。调节材料性质导致抗原呈递至MHC lvia通路,该通路依赖于或独立于与抗原加工相关的转运蛋白。据我们所知,这是可以调整为在不同的免疫途径上起作用同时最大程度地提高免疫学表现的材料的唯一示例。

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