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用于胶质母细胞瘤治疗的血脑屏障光学调制

Optical Modulation of the Blood-Brain Barrier for Glioblastoma Treatment.

作者信息

Cai Qi, Fan Hanwen, Li Xiaoqing, Giannotta Monica, Bachoo Robert, Qin Zhenpeng

机构信息

Department of Mechanical Engineering, The University of Texas at Dallas, Richardson, TX, 75080, USA.

Department of Biological and Agricultural Engineering, Louisiana State University, Baton Rouge, LA, 70803, USA.

出版信息

Bio Protoc. 2024 Jan 20;14(2):e4920. doi: 10.21769/BioProtoc.4920.

Abstract

The blood-brain barrier (BBB) is a major obstacle to the diagnostics and treatment of many central nervous system (CNS) diseases. A prime example of this challenge is seen in glioblastoma (GBM), the most aggressive and malignant primary brain tumor. The BBB in brain tumors, or the blood-brain-tumor barrier (BBTB), prevents the efficient delivery of most therapeutics to brain tumors. Current strategies to overcome the BBB for therapeutic delivery, such as using hyperosmotic agents (mannitol), have impeded progress in clinical translation limited by the lack of spatial resolution, high incidences of complications, and potential for toxicity. Focused ultrasound combined with intravenously administered microbubbles enables the transient disruption of the BBB and has progressed to early-phase clinical trials. However, the poor survival with currently approved treatments for GBM highlights the compelling need to develop and validate treatment strategies as well as the screening for more potent anticancer drugs. In this protocol, we introduce an optical method to open the BBTB (OptoBBTB) for therapeutic delivery via ultrashort pulse laser stimulation of vascular targeting plasmonic gold nanoparticles (AuNPs). Specifically, the protocol includes the synthesis and characterization of vascular-targeting AuNPs and a detailed procedure of optoBBTB. We also report the downstream characterization of the drug delivery and tumor treatment efficacy after BBB modulation. Compared with other barrier modulation methods, our optical approach has advantages in high spatial resolution and minimally invasive access to tissues. Overall, optoBBTB allows for the delivery of a variety of therapeutics into the brain and will accelerate drug delivery and screening for CNS disease treatment. Key features • Pulsed laser excitation of vascular-targeting gold nanoparticles non-invasively and reversibly modulates the blood-brain barrier permeability. • OptoBBTB enhances drug delivery in clinically relevant glioblastoma models. • OptoBBTB has the potential for drug screening and evaluation for superficial brain tumor treatment.

摘要

血脑屏障(BBB)是许多中枢神经系统(CNS)疾病诊断和治疗的主要障碍。这种挑战的一个典型例子是胶质母细胞瘤(GBM),这是最具侵袭性和恶性的原发性脑肿瘤。脑肿瘤中的血脑屏障,即血脑肿瘤屏障(BBTB),阻碍了大多数治疗药物有效递送至脑肿瘤。目前用于克服血脑屏障以实现治疗药物递送的策略,如使用高渗剂(甘露醇),由于缺乏空间分辨率、并发症发生率高以及潜在的毒性,限制了临床转化的进展。聚焦超声联合静脉注射微泡能够短暂破坏血脑屏障,并且已经进入早期临床试验阶段。然而,目前批准的GBM治疗方法生存率较低,这凸显了开发和验证治疗策略以及筛选更有效的抗癌药物的迫切需求。在本方案中,我们介绍一种光学方法来打开血脑肿瘤屏障(OptoBBTB),通过超短脉冲激光刺激血管靶向等离子体金纳米颗粒(AuNPs)实现治疗药物递送。具体而言,该方案包括血管靶向AuNPs的合成与表征以及OptoBBTB的详细操作步骤。我们还报告了血脑屏障调节后药物递送和肿瘤治疗效果的下游表征。与其他屏障调节方法相比,我们的光学方法在高空间分辨率和对组织的微创性方面具有优势。总体而言,OptoBBTB能够将多种治疗药物递送至脑内,将加速中枢神经系统疾病治疗的药物递送和筛选。关键特性 • 血管靶向金纳米颗粒的脉冲激光激发可无创且可逆地调节血脑屏障通透性。 • OptoBBTB在临床相关的胶质母细胞瘤模型中增强了药物递送。 • OptoBBTB具有用于浅表脑肿瘤治疗的药物筛选和评估潜力。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/81be/10804243/feca8b9fe4c3/BioProtoc-14-2-4920-g001.jpg

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