腹腔靶向给药的生理考虑和给药策略。

IF 4.3 3区 医学 Q2 CHEMISTRY, MULTIDISCIPLINARY
Md Jobair Hossen Jony, Sheyda Ranjbar, Rama Prajapati, Seyyed Majid Eslami, Zixuan Zhen, Mittal Darji, Xueli Zhu, Xiuling Lu
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引用次数: 0

摘要

腹腔为卵巢癌、胃癌、胰腺癌和结直肠癌等恶性肿瘤的靶向治疗提供了独特的挑战和有希望的机会。与静脉给药相比,腹腔给药具有显著的药代动力学优势,可以实现较高的局部药物浓度和肿瘤特异性给药潜力,同时最大限度地减少全身毒性。尽管有这些理论上的优势,腹膜内治疗的临床实施仍受到一些障碍的限制,包括组织渗透受限、腹膜覆盖不完全、药物快速清除、导管相关并发症、治疗后腹膜粘连和腹水诱导的渗透性失调。这篇综述强调了克服这些障碍的三种先进策略:(1)基于颗粒的递送系统,如纳米颗粒,通过被动积累、主动靶向和响应内部或外部刺激的按需药物释放来增强肿瘤特异性;(2)缓释水凝胶;(3)加压腹腔喷雾化疗。尽管有临床前和临床进展,但成功的翻译需要系统地优化多个参数,如腹水动力学、肿瘤异质性和多药耐药。将先进的分娩技术与对腹膜生理学的全面理解相结合,对于实现安全有效的临床应用仍然至关重要。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
Physiological Considerations and Delivery Strategies for Targeting Tumors Through Intraperitoneal Delivery.

The peritoneal cavity presents both unique challenges and promising opportunities for targeted therapy in malignancies like ovarian, gastric, pancreatic, and colorectal cancers. Intraperitoneal drug delivery offers significant pharmacokinetic advantages over intravenous administration by achieving high local drug concentrations and tumor-specific delivery potential while minimizing systemic toxicity. Despite these theoretical advantages, the clinical implementation of intraperitoneal therapy is limited by several barriers, including restricted tissue penetration, incomplete peritoneal coverage, rapid drug clearance, catheter-related complications, posttreatment peritoneal adhesions, and ascites-induced permeability dysregulation. This review highlights three advanced strategies developed to overcome these obstacles: (1) particulate-based delivery systems, such as nanoparticles to enhance tumor specificity through passive accumulation, active targeting and on-demand drug release in response to internal or external stimuli; (2) Sustained drug release hydrogels and (3) pressurized intraperitoneal aerosol chemotherapy. Despite promising preclinical and clinical advancements, successful translation requires systematic optimization of multiple parameters, such as ascites dynamics, tumor heterogeneity, and multidrug resistance. The integration of advanced delivery technologies with a comprehensive understanding of peritoneal physiology remains crucial for achieving safe and effective clinical applications.

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来源期刊
Pharmaceutical Research
Pharmaceutical Research 医学-化学综合
CiteScore
6.60
自引率
5.40%
发文量
276
审稿时长
3.4 months
期刊介绍: Pharmaceutical Research, an official journal of the American Association of Pharmaceutical Scientists, is committed to publishing novel research that is mechanism-based, hypothesis-driven and addresses significant issues in drug discovery, development and regulation. Current areas of interest include, but are not limited to: -(pre)formulation engineering and processing- computational biopharmaceutics- drug delivery and targeting- molecular biopharmaceutics and drug disposition (including cellular and molecular pharmacology)- pharmacokinetics, pharmacodynamics and pharmacogenetics. Research may involve nonclinical and clinical studies, and utilize both in vitro and in vivo approaches. Studies on small drug molecules, pharmaceutical solid materials (including biomaterials, polymers and nanoparticles) biotechnology products (including genes, peptides, proteins and vaccines), and genetically engineered cells are welcome.
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