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负载吲哚菁绿的脂质体辅助光声计算机断层扫描用于评估脂质体纳米载体在体内的肿瘤渗透情况

Indocyanine Green-Loaded Liposomes-Assisted Photoacoustic Computed Tomography for Evaluating In Vivo Tumor Penetration of Liposomal Nanocarriers.

作者信息

Wu Chenjun, Sun Qi, Liu Xiangdong, Sun Xin, Chen Zeyu, Shan Han

机构信息

State Key Laboratory of Precision Manufacturing for Extreme Service Performance, College of Mechanical and Electrical Engineering, Central South University, Changsha 410083, China.

Changjun Riverside Middle School, Changsha 410023, China.

出版信息

Micromachines (Basel). 2023 Dec 30;15(1):90. doi: 10.3390/mi15010090.

Abstract

Liposomes possess the potential to enhance drug solubility, prolong the duration of circulation, and augment drug accumulation at the tumor site through passive and active targeting strategies. However, there is a lack of studies examining the in vivo tumor penetration capabilities of liposomes of varying sizes, which hampers the development of drug delivery systems utilizing liposomal nanocarriers. Here, we present an indocyanine green (ICG)-loaded liposomes-assisted photoacoustic computed tomography (PACT) for directly evaluating the tumor penetration ability of liposomal nanocarriers in vivo. Through the utilization of microfluidic mixing combined with extrusion techniques, we successfully prepare liposomes encapsulating ICG in both large (192.6 ± 8.0 nm) and small (61.9 ± 0.6 nm) sizes. Subsequently, we designed a dual-wavelength PACT system to directly monitor the in vivo tumor penetration of large- and small-size ICG-encapsulated liposomes. In vivo PACT experiments indicate that ICG-loaded liposomes of smaller size exhibit enhanced penetration capability within tumor tissues. Our work presents a valuable approach to directly assess the penetration ability of liposomal nanocarriers in vivo, thereby facilitating the advancement of drug delivery systems with enhanced tumor penetration and therapeutic efficacy.

摘要

脂质体具有通过被动和主动靶向策略提高药物溶解度、延长循环时间以及增加肿瘤部位药物蓄积的潜力。然而,缺乏对不同大小脂质体体内肿瘤渗透能力的研究,这阻碍了利用脂质体纳米载体的药物递送系统的发展。在此,我们提出一种负载吲哚菁绿(ICG)的脂质体辅助光声计算机断层扫描(PACT)技术,用于直接评估脂质体纳米载体在体内的肿瘤渗透能力。通过利用微流体混合结合挤压技术,我们成功制备了分别包裹大尺寸(192.6±8.0 nm)和小尺寸(61.9±0.6 nm)ICG的脂质体。随后,我们设计了一种双波长PACT系统,以直接监测大尺寸和小尺寸包裹ICG脂质体在体内的肿瘤渗透情况。体内PACT实验表明,较小尺寸的负载ICG脂质体在肿瘤组织内具有更强的渗透能力。我们的工作为直接评估脂质体纳米载体在体内的渗透能力提供了一种有价值的方法,从而促进具有增强肿瘤渗透和治疗效果的药物递送系统的发展。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/6a35/10820658/41b10482ceb6/micromachines-15-00090-sch001.jpg

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