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首页> 外文期刊>Journal of Controlled Release: Official Journal of the Controlled Release Society >Hyaluronan-coated nanoparticles: The influence of the molecular weight on CD44-hyaluronan interactions and on the immune response
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Hyaluronan-coated nanoparticles: The influence of the molecular weight on CD44-hyaluronan interactions and on the immune response

机译:透明质酸包覆的纳米颗粒:分子量对CD44-透明质酸相互作用和免疫反应的影响

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摘要

Hyaluronan (HA), a naturally occurring glycosaminoglycan, exerts different biological functions depending on its molecular weight ranging from 4000-10M Da. While high Mw HA (HMw-HA) is considered as anti-inflammatory, low Mw HA (LMw-HA) has been reported to activate an innate immune response. In addition, opposing effects on cell proliferation mediated by the HA receptor CD44, have also been reported for high and low Mw HA. We have previously demonstrated that HMw-HA can be covalently attached to the surface of lipid nanoparticles (NPs), endowing the carriers with long circulation and active targeting towards HA-receptors (CD44 and CD168) highly expressed on tumors. Here we present a small library of HA-coated NPs distinguished only by the Mw of their surface anchored HA ranging from 6.4 kDa to 1500 kDa. All types of NPs exerted no effect on macrophages, T cells and ovarian cancer cells proliferation. In addition, no induction of cytokines or complement activation was observed. The affinity towards the CD44 receptor was found to be solely controlled by the Mw of the NPs surface-bound HA, from extremely low binding for LMw-HA to binding with high affinity for HMw-HA. These findings have major implications for the use of HA in nanomedicine as LMw-HA surface modified-NPs could be a viable option for the replacement of polyethylene glycol (PEG) when passive delivery is required, lacking adverse effects such as complement activation and cytokine induction, while HMw-HA-coated NPs could be used for active targeting to CD44 overexpressing tumors and aberrantly activated leukocytes in inflammation.
机译:透明质酸(HA)是一种天然存在的糖胺聚糖,其分子量范围为4000-10M Da,具有不同的生物学功能。虽然高Mw HA(HMw-HA)被认为具有抗炎作用,但据报道低Mw HA(LMw-HA)可以激活先天性免疫反应。另外,对于高和低Mw HA,也已经报道了由HA受体CD44介导的对细胞增殖的相反作用。先前我们已经证明HMw-HA可以共价连接到脂质纳米颗粒(NPs)的表面,赋予载体长循环并主动靶向在肿瘤上高表达的HA受体(CD44和CD168)。在这里,我们介绍了一个由HA包覆的NPs组成的小库,仅通过其表面锚定HA的Mw(范围为6.4 kDa至1500 kDa)来区分。所有类型的NP对巨噬细胞,T细胞和卵巢癌细胞的增殖均无影响。另外,未观察到细胞因子或补体激活的诱导。发现对CD44受体的亲和力仅受NPs表面结合的HA的Mw控制,从对LMw-HA的极低结合到对HMw-HA的高亲和力结合。这些发现对于在纳米药物中使用HA具有重大意义,因为当需要被动递送时,LMw-HA表面修饰的NPs可能是替代聚乙二醇(PEG)的可行选择,缺乏诸如补体激活和细胞因子诱导的不良影响,而HMw-HA包被的NP可用于主动靶向过表达CD44的肿瘤和炎症中异常激活的白细胞。

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