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血小板在癌症先进药物传递中的应用。

Platelets for advanced drug delivery in cancer.

机构信息

Department of Hematology and Oncology, Stavanger University Hospital, Stavanger, Norway.

Irish Blood Transfusion Service, Dublin, Ireland.

出版信息

Expert Opin Drug Deliv. 2023 May;20(5):673-688. doi: 10.1080/17425247.2023.2217378. Epub 2023 May 26.

Abstract

INTRODUCTION

Cancer-related drug expenses are rising with the increasing cancer incidence and cost may represent a severe challenge for drug access for patients with cancer. Consequently, strategies for increasing therapeutic efficacy of already available drugs may be essential for the future health-care system.

AREAS COVERED

In this review, we have investigated the potential for the use of platelets as drug-delivery systems. We searched PubMed and Google Scholar to identify relevant papers written in English and published up to January 2023. Papers were included at the authors' discretion to reflect an overview of state of the art.

EXPERT OPINION

It is known that cancer cells interact with platelets to gain functional advantages including immune evasion and metastasis development. This platelet-cancer interaction has been the inspiration for numerous platelet-based drug delivery systems using either drug-loaded or drug-bound platelets, or platelet membrane-containing hybrid vesicles combining platelet membranes with synthetic nanocarriers. Compared to treatment with free drug or synthetic drug vectors, these strategies may improve pharmacokinetics and selective cancer cell targeting. There are multiple studies showing improved therapeutic efficacy using animal models, however, no platelet-based drug delivery systems have been tested in humans, meaning the clinical relevance of this technology remains uncertain.

摘要

简介

随着癌症发病率的增加,癌症相关药物费用不断上升,对于癌症患者来说,药物费用可能是药物可及性的一个严峻挑战。因此,提高现有药物治疗效果的策略对于未来的医疗保健系统可能至关重要。

涵盖领域

在这篇综述中,我们研究了血小板作为药物传递系统的应用潜力。我们在 PubMed 和 Google Scholar 上搜索了截至 2023 年 1 月发表的英文相关论文。根据作者的判断,选择了这些论文,以反映该领域的最新研究进展。

专家意见

众所周知,癌细胞与血小板相互作用,以获得功能优势,包括免疫逃逸和转移发展。这种血小板-癌症相互作用激发了许多基于血小板的药物传递系统的发展,这些系统使用载药或载药的血小板,或含有血小板膜与合成纳米载体的混合囊泡。与使用游离药物或合成药物载体相比,这些策略可以改善药代动力学和选择性的癌细胞靶向。有多项研究表明,在动物模型中使用这些策略可以提高治疗效果,然而,还没有基于血小板的药物传递系统在人体中进行测试,这意味着该技术的临床相关性尚不确定。

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