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首页> 外文期刊>Journal of Internal Medicine >Emerging concepts in dendrimer-based nanomedicine: from design principles to clinical applications
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Emerging concepts in dendrimer-based nanomedicine: from design principles to clinical applications

机译:基于树枝状大分子的纳米医学的新兴概念:从设计原理到临床应用

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Dendrimers are discrete nanostructuresanoparticles with onion skin-like' branched layers. Beginning with a core, these nanostructures grow in concentric layers to produce stepwise increases in size that are similar to the dimensions of many in vivo globular proteins. These branched tree-like concentric layers are referred to as generations'. The outer generation of each dendrimer presents a precise number of functional groups that may act as a monodispersed platform for engineering favourable nanoparticle-drug and nanoparticle-tissue interactions. These features have attracted significant attention in medicine as nanocarriers for traditional small drugs, proteins, DNA/RNA and in some instances as intrinsically active nanoscale drugs. Dendrimer-based drugs, as well as diagnostic and imaging agents, are emerging as promising candidates for many nanomedicine applications. First, we will provide a brief survey of recent nanomedicines that are either approved or in the clinical approval process. This will be followed by an introduction to a new nanoperiodic' concept which proposes nanoparticle structure control and the engineering of critical nanoscale design parameters' (CNDPs) as a strategy for optimizing pharmocokinetics, pharmocodynamics and site-specific targeting of disease. This paradigm has led to the emergence of CNDP-directed nanoperiodic property patterns relating nanoparticle behaviour to critical in vivo clinical translation issues such as cellular uptake, transport, elimination, biodistribution, accumulation and nanotoxicology. With a focus on dendrimers, these CNDP-directed nanoperiodic patterns are used as a strategy for designing and optimizing nanoparticles for a variety of drug delivery and imaging applications, including a recent dendrimer-based theranostic nanodevice for imaging and treating cancer. Several emerging preclinical dendrimer-based nanotherapy concepts related to inflammation, neuro-inflammatory disorders, oncology and infectious and ocular diseases are reviewed. Finally we will consider challenges and opportunities anticipated for future clinical translation, nanotoxicology and the commercialization of nanomedicine.
机译:树状聚合物是具有洋葱皮状“分支层”的离散纳米结构/纳米颗粒。从核心开始,这些纳米结构在同心层中生长,以逐步增大尺寸,这类似于许多体内球状蛋白的尺寸。这些分支的树状同心层称为世代。每个树枝状大分子的外生代均呈现出精确数量的官能团,这些官能团可以充当用于工程化有利的纳米颗粒-药物和纳米颗粒-组织相互作用的单分散平台。这些特性作为传统小药物,蛋白质,DNA / RNA的纳米载体,在某些情况下作为内在活性的纳米级药物,在医学上引起了广泛的关注。基于树枝状大分子的药物以及诊断和显像剂正在成为许多纳米医学应用的有前途的候选者。首先,我们将对已批准或正在临床批准过程中的近期纳米药物进行简要调查。随后将介绍新的纳米周期概念,该概念提出了纳米颗粒结构控制和关键纳米级设计参数的工程设计(CNDP),作为优化药物动力学,药物动力学和疾病针对性的策略。这种范例导致了CNDP指导的纳米周期特性模式的出现,该模式将纳米粒子的行为与体内重要的临床翻译问题联系起来,例如细胞摄取,转运,消除,生物分布,积累和纳米毒理学。以树状聚合物为重点,这些以CNDP为导向的纳米周期图案被用作设计和优化用于各种药物递送和成像应用的纳米颗粒的策略,包括最近用于成像和治疗癌症的基于树状聚合物的治疗纳米设备。综述了几种与炎症,神经炎性疾病,肿瘤学以及感染性和眼部疾病有关的基于临床前树状大分子的纳米治疗概念。最后,我们将考虑未来临床翻译,纳米毒理学和纳米药物商业化所预期的挑战和机遇。

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