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Biomimetic carriers mimicking leukocyte plasma membrane to increase tumor vasculature permeability

机译:仿生载体模仿白细胞质膜增加肿瘤血管通透性

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摘要

Recent advances in the field of nanomedicine have demonstrated that biomimicry can further improve targeting properties of current nanotechnologies while simultaneously enable carriers with a biological identity to better interact with the biological environment. Immune cells for example employ membrane proteins to target inflamed vasculature, locally increase vascular permeability, and extravasate across inflamed endothelium. Inspired by the physiology of immune cells, we recently developed a procedure to transfer leukocyte membranes onto nanoporous silicon particles (NPS), yielding Leukolike Vectors (LLV). LLV are composed of a surface coating containing multiple receptors that are critical in the cross-talk with the endothelium, mediating cellular accumulation in the tumor microenvironment while decreasing vascular barrier function. We previously demonstrated that lymphocyte function-associated antigen (LFA-1) transferred onto LLV was able to trigger the clustering of intercellular adhesion molecule 1 (ICAM-1) on endothelial cells. Herein, we provide a more comprehensive analysis of the working mechanism of LLV in vitro in activating this pathway and in vivo in enhancing vascular permeability. Our results suggest the biological activity of the leukocyte membrane can be retained upon transplant onto NPS and is critical in providing the particles with complex biological functions towards tumor vasculature.
机译:纳米医学领域的最新进展表明,仿生技术可以进一步改善当前纳米技术的靶向特性,同时使具有生物学特性的载体能够更好地与生物环境相互作用。例如,免疫细胞利用膜蛋白靶向发炎的血管,局部增加血管通透性,并在发炎的内皮细胞外渗。受免疫细胞生理学的启发,我们最近开发了一种将白细胞膜转移到纳米多孔硅颗粒(NPS)上的程序,从而产生了类白细胞载体(LLV)。 LLV由包含多种受体的表面涂层组成,这些受体在与内皮的串扰中起关键作用,介导肿瘤微环境中的细胞蓄积,同时降低血管屏障功能。我们先前证明,转移至LLV的淋巴细胞功能相关抗原(LFA-1)能够触发内皮细胞上细胞间粘附分子1(ICAM-1)的聚集。在本文中,我们提供了LLV在体外激活该途径和在体内增强血管通透性的工作机制的更全面分析。我们的结果表明,白细胞膜的生物学活性可以在移植到NPS上时保留下来,并且对于提供具有针对肿瘤脉管系统的复杂生物学功能的颗粒至关重要。

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