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Biocompatibility of nanomaterials and their immunological properties

机译:纳米材料的生物相容性及其免疫特性

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Nanomaterials (NMs) have revolutionized multiple aspects of medicine by enabling novel sensing, diagnostic, and therapeutic approaches. Advancements in processing and fabrication have also allowed significant expansion in the applications of the major classes of NMs based on polymer, metal/metal oxide, carbon, liposome, or multi-scale macro-nano bulk materials. Concomitantly, concerns regarding the nanotoxicity and overall biocompatibility of NMs have been raised. These involve putative negative effects on both patients and those subjected to occupational exposure during manufacturing. In this review, we describe the current state of testing of NMs including those that are in clinical use, in clinical trials, or under development. We also discuss the cellular and molecular interactions that dictate their toxicity and biocompatibility. Specifically, we focus on the reciprocal interactions between NMs and host proteins, lipids, and sugars and how these induce responses in immune and other cell types leading to topical and/or systemic effects.
机译:纳米材料(NMS)通过启用新颖的传感,诊断和治疗方法彻底改变了药物的多个方面。加工和制造的进步也允许基于聚合物,金属/金属氧化物,脂质体或多尺寸宏纳米散装材料的主要类别的MAMS的应用显着扩展。同时,已经提高了关于NMS的纳米毒性和总体生物相容性的担忧。这些涉及在制造过程中对患者和职业暴露进行职业暴露的造成的负面影响。在本次审查中,我们描述了NMS的现状,包括在临床试验中或正在开发中的临床使用。我们还讨论了对其毒性和生物相容性决定的细胞和分子相互作用。具体而言,我们专注于NMS和宿主蛋白,脂质和糖之间的互核相互作用以及这些诱导免疫和其他细胞类型中的反应导致局部和/或全身效应。

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