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Monocytic Cell-Induced Phase Transformation of Circulating Lipid-Based Liquid Crystalline Nanosystems

机译:单核细胞诱导的循环脂质基液晶纳米系统的相变

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摘要

Both lamellar and non-lamellar configurations are naturally present in bio-membranes, and the synthetic lipid-based liquid crystalline nano-assemblies, mimicking these unique structures, (including liposomes, cubosomes and hexosomes) are applicable in the controlled delivery of bioactives. However, it remains uncertain whether these nanosystems retain their original phase identity upon contact with blood circulating cells. This study highlights a novel biological cell flow-through approach at the synchrotron-based small angle X-ray scattering facility (bio-SAXS) to unravel their real-time phase evolution when incubated with human monocytic cells (THP-1) in suspension. Phytantriol-based cubosomes were identified to undergo monocytic cell-induced phase transformation from cubic to hexagonal phase periodicity. On the contrary, hexosomes exhibited time-dependent growth of a swollen hexagonal phase (i.e., larger lattice parameters) without displaying alternative phase characteristics. Similarly, liposomes remained undetectable for any newly evolved phase identity. Consequently, this novel in situ bio-SAXS study concept is valuable in delivering new important insights into the bio-fates of various lipid-based nanosystems under simulated human systemic conditions.
机译:层状和非层状构型都自然存在于生物膜中,模仿这些独特结构的合成脂质基液晶纳米组件(包括脂质体,立方脂质体和六脂质体)可用于生物活性物质的受控递送。然而,仍然不确定这些纳米系统在与血液循环细胞接触后是否保留其原始相身份。这项研究着重介绍了一种新的生物细胞流通方法,该方法在基于同步加速器的小角度X射线散射设施(bio-SAXS)上与人单核细胞(THP-1)悬浮培养时揭示其实时相演化。确定了基于植物三醇的立方糖体经历了单核细胞诱导的从立方到六方相周期性的相变。相反,六倍体表现出时间依赖性的六方相溶胀生长(即较大的晶格参数),而没有显示出可替代的相特征。类似地,对于任何新近发展的相身份,脂质体仍然是不可检测的。因此,这种新颖的原位生物SAXS研究概念对于在模拟人类系统性条件下为各种基于脂质的纳米系统的生物命运提供新的重要见解方面具有重要价值。

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