Toward a theranostic device for gliomas

替莫唑胺 细胞毒性 微气泡 化学 药物输送 体内 癌症研究 体外 生物医学工程 生物物理学 胶质母细胞瘤 超声波 医学 生物化学 有机化学 生物技术 放射科 生物
作者
Gaio Paradossi,Rachel Grossman,Francesco Riccitelli,Federica Todaro,Zvi Ram,Sara Schioppa,Fabio Domenici
出处
期刊:Biochemical and Biophysical Research Communications [Elsevier BV]
卷期号:671: 124-131 被引量:1
标识
DOI:10.1016/j.bbrc.2023.05.089
摘要

In the surgical management of glioblastoma, a highly aggressive and incurable type of brain cancer, identification and treatment of residual tissue is the most common site of disease recurrence. Monitoring and localized treatment are achieved with engineered microbubbles (MBs) by combining ultrasound and fluorescence imaging with actively targeted temozolomide (TMZ) delivery. The MBs were conjugated with a near-infrared fluorescence probe CF790, cyclic pentapeptide bearing the RGD sequence and a carboxyl-temozolomide, TMZA. The efficiency of adhesion to HUVEC cells was assessed in vitro in realistic physiological conditions of shear rate and vascular dimensions. Cytotoxicity of TMZA-loaded MBs on U87 MG cells and IC50 were assessed by MTT tests. We report on the design of injectable poly(vinyl alcohol) echogenic MBs designed as a platform with active targeting ability to tumor tissues, by tethering on the surface a ligand having the tripeptide sequence, RGD. The biorecognition of RGD-MBs onto HUVEC cells is quantitatively proved. Efficient NIR emission from the CF790-decorated MBs was successfully detected. The conjugation on the MBs surface of a specific drug as TMZ is achieved. The pharmacological activity of the coupled-to-surface drug is preserved by controlling the reaction conditions. We present an improved formulation of PVA-MBs to achieve a multifunctional device with adhesion ability, cytotoxicity on glioblastoma cells and supporting imaging.

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