Enhanced delivery of paclitaxel liposomes using focused ultrasound with microbubbles for treating nude mice bearing intracranial glioblastoma xenografts.
Authors: Shen Y, Pi Z, Yan F, Yeh CK, Zeng X, Diao X, Hu Y, Chen S, Chen X, Zheng H
Paclitaxel liposomes (PTX-LIPO) are a clinically promising antineoplastic drug formulation for the treatment of various extracranial cancers, excluding glioblastoma. A main reason for this is the presence of the blood-brain barrier (BBB) or blood-tumor barrier (BTB), preventing liposomal drugs from crossing at a therapeutically meaningful level. Focused ultrasound (FUS) in conjunction with microbubbles (MBs) has been suggested in many studies to be an effective approach to increase the BBB or BTB permeability. In this study, we investigated the feasibility of enhancing the delivery of PTX-LIPO in intracranial glioblastoma-bearing nude mice using pulsed low-intensity FUS exposure in the presence of MBs. Our results showed that the delivery efficiency of PTX-LIPO could be effectively improved in terms of the penetration of both the BBB in vitro and BTB in vivo by pulsed FUS sonication with a 10 ms pulse length and 1 Hz pulse repetition frequency at 0.64 MPa peak-rarefactional pressure in the presence of MBs. Quantitative analysis showed that a 2-fold higher drug concentration had accumulated in the glioblastoma 3 h after FUS treatment, with 7.20±1.18 µg PTX per g glioma tissue. Longitudinal magnetic resonance imaging analysis illustrated that the intracranial glioblastoma progression in nude mice treated with PTX-LIPO delivered via FUS with MBs was suppressed consistently for 4 weeks compared to the untreated group. The medium survival time of these tumor-bearing nude mice was significantly prolonged by 20.8%, compared to the untreated nude mice. Immunohistochemical analysis further confirmed the antiproliferation effect and cell apoptosis induction. Our study demonstrated that noninvasive low-intensity FUS with MBs can be used as an effective approach to deliver PTX-LIPO in order to improve their chemotherapy efficacy toward glioblastoma.
Introduction
Purpose
Drug delivery with BBB opening
Study Objective
To investigate whether pulsed low-intensity focused ultrasound with microbubbles can enhance delivery and therapeutic efficacy of paclitaxel liposomes to intracranial glioblastoma in nude mice.
Animal model / Human subject
Mouse (nude mice/athymic), age None, sex None
Disease model
glioblastoma
Targeted brain region(s)
Glioblastoma
Cargo name and characteristics
Paclitaxel liposomes (PTX-LIPO): paclitaxel, a small-molecule chemotherapeutic, encapsulated in liposomal nanoparticles (liposomal drug formulation); reported accumulation ~7.20 ± 1.18 µg PTX per g glioma tissue 3 h after FUS-enhanced delivery.
Outcomes and Safety
Summary of Outcomes
Pulsed low‑intensity focused ultrasound (FUS) with microbubbles substantially enhanced delivery of paclitaxel‑liposomes to intracranial U87 gliomas (reaching 7.20±1.18 µg/g at 3 h, ~2‑fold versus liposomes alone), resulting in suppressed tumor growth over 4 weeks, increased tumor apoptosis and decreased proliferation, and a 20.8% prolongation of median survival. Effective FUS parameters were 10 ms pulse length, 1 Hz pulse repetition frequency, ~0.64 MPa peak‑rarefactional pressure applied in the presence of circulating microbubbles.
Duration of biological effect
4 weeks
Safety-related matter
The paper notes known PTX formulation toxicities (neurotoxicity and hypersensitivity) and reports nonspecific PTX accumulation principally in liver and lungs (with FUS+MBs reducing liver/kidney uptake and a nonsignificant lung increase); prior studies show pulsed FUS+MBs can affect neurons/microglia and induce cytokines, so effects on healthy brain tissue require further investigation. The authors did not report overt adverse effects in their treated mice in this study.
Brain Region
Ultrasound Parameters
FUS Pressure
0.64 MPa
FUS Mode
pulsed
Pulse duration
10 ms
Focal Characteristics
Focal depth: None; Focal length: None; Aperture size: None
Treatment frequency
single
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