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用于增强治疗活性的近红外活性卟啉修饰脂质微泡,其通过光动力效应和超声在乳腺癌细胞系和斑马鱼幼虫的三维肿瘤模型中实现。

NIR-Active Porphyrin-Decorated Lipid Microbubbles for Enhanced Therapeutic Activity Enabled by Photodynamic Effect and Ultrasound in 3D Tumor Models of Breast Cancer Cell Line and Zebrafish Larvae.

作者信息

Guduru Aditya Teja K V V N S K, Manav Neha, Mansuri Abdulkhalik, Gupta Iti, Bhatia Dhiraj, Kumar Ashutosh, Dalvi Sameer V

机构信息

Department of Chemical Engineering, Indian Institute of Technology─Gandhinagar, Palaj, Gandhinagar 382355, Gujarat, India.

Department of Chemistry, Indian Institute of Technology─Gandhinagar, Palaj, Gandhinagar 382355, Gujarat, India.

出版信息

ACS Appl Bio Mater. 2022 Aug 12. doi: 10.1021/acsabm.2c00483.

Abstract

Porphyrin is known to enable the photodynamic effect during cancer drug delivery and molecular imaging. However, its hydrophobicity and tendency to aggregate in an aqueous medium create a significant hurdle for its use as an anticancer drug. Loading porphyrin onto biocompatible delivery vehicles can enhance its efficacy. This can be achieved by using gas-filled microbubbles that can be administered intravenously. This study aimed at developing near-infrared (NIR)-active porphyrin-loaded lipid microbubbles with anticancer activity enhanced by sonodynamic and photodynamic effects. The porphyrin-loaded microbubbles were studied for their cell toxicity, cellular uptake of porphyrin, and effect on cellular three-dimensional (3D) invasion of breast cancer cells (MDA-MB-231) in cellulo. Toxicity studies in zebrafish larvae () in the presence and absence of photodynamic and sonodynamic therapy were also conducted. The results suggest that with a higher concentration of porphyrin loaded on microbubbles, the porphyrin-loaded microbubbles display a higher therapeutic effect facilitated by photodynamic and sonodynamic therapy, which results in enhanced cellular uptake and cellular toxicity. A lower concentration of loaded porphyrin microbubbles exhibits high cellular viability and good fluorescence intensity in the NIR region, which can be exploited for bioimaging applications.

摘要

已知卟啉在癌症药物递送和分子成像过程中能够实现光动力效应。然而,其疏水性以及在水性介质中聚集的倾向,为其作为抗癌药物的应用带来了重大障碍。将卟啉负载到生物相容性递送载体上可提高其疗效。这可以通过使用可静脉给药的充气微泡来实现。本研究旨在开发具有声动力和光动力效应增强的抗癌活性的近红外(NIR)活性负载卟啉脂质微泡。对负载卟啉的微泡进行了细胞毒性、卟啉的细胞摄取以及对乳腺癌细胞(MDA-MB-231)在细胞内三维(3D)侵袭的影响研究。还在有和没有光动力和声动力疗法的情况下,对斑马鱼幼虫进行了毒性研究。结果表明,随着负载在微泡上的卟啉浓度升高,负载卟啉的微泡在光动力和声动力疗法的促进下显示出更高的治疗效果,这导致细胞摄取和细胞毒性增强。较低浓度的负载卟啉微泡在近红外区域表现出高细胞活力和良好的荧光强度,可用于生物成像应用。

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