医学
治疗指标
脑脊液
髓母细胞瘤
全身给药
药物输送
替莫唑胺
药理学
鞘内
药品
耐受性
微泡
化疗
癌症研究
病理
内科学
外科
化学
纳米技术
体内
材料科学
不利影响
小RNA
生物
生物化学
生物技术
基因
作者
Minsoo Khang,Ju-Hyun Lee,Teresa Lee,Hee‐Won Suh,Supum Lee,Alessandra Cavaliere,Amy S Rushing,Luiz Henrique Geraldo,Erika Belitzky,Samantha Rossano,Henk M. De Feyter,Kwangsoo Shin,Anita Hüttner,Martine F. Roussel,Jean‐Léon Thomas,Richard E. Carson,Bernadette Marquez‐Nostra,Ranjit S. Bindra,W. Mark Saltzman
出处
期刊:Science Translational Medicine
[American Association for the Advancement of Science (AAAS)]
日期:2023-11-01
卷期号:15 (720)
被引量:3
标识
DOI:10.1126/scitranslmed.adi1617
摘要
The morbidity associated with pediatric medulloblastoma, in particular in patients who develop leptomeningeal metastases, remains high in the absence of effective therapies. Administration of substances directly into the cerebrospinal fluid (CSF) is one approach to circumvent the blood-brain barrier and focus delivery of drugs to the site of tumor. However, high rates of CSF turnover prevent adequate drug accumulation and lead to rapid systemic clearance and toxicity. Here, we show that PLA-HPG nanoparticles, made with a single-emulsion, solvent evaporation process, can encapsulate talazoparib, a PARP inhibitor (BMN-673). These degradable polymer nanoparticles improve the therapeutic index when delivered intrathecally and lead to sustained drug retention in the tumor as measured with PET imaging and fluorescence microscopy. We demonstrate that administration of these particles into the CSF, alone or in combination with systemically administered temozolomide, is a highly effective therapy for tumor regression and prevention of leptomeningeal spread in xenograft mouse models of medulloblastoma. These results provide a rationale for harnessing nanoparticles for the delivery of drugs limited by brain penetration and therapeutic index and demonstrate important advantages in tolerability and efficacy for encapsulated drugs delivered locoregionally.
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