基于脂质纳米粒子的 siRNA 制剂在乳腺癌治疗中的应用综述

Q2 Pharmacology, Toxicology and Pharmaceutics
Phool Chandra, Vaibhav Rastogi, Mayur Porwal, Himanshu Sharma, Anurag Verma, Neetu Sachan
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引用次数: 0

摘要

乳腺癌由于其固有的治疗困难而构成了一个巨大的挑战。认识到迫切需要新的治疗方法,本研究侧重于一项具有重塑乳腺癌治疗潜力的突破性技术:基于脂质纳米颗粒(LNPs)的siRNA配方。这种新方法有望改变乳腺癌治疗的前景。本研究的主要目的是对该领域的现状进行全面评估,特别是探索LNPs封装的siRNA治疗乳腺癌的潜在应用。研究方法包括详细的文献综述,涵盖乳腺癌、siRNA治疗和脂质纳米颗粒。该研究调查了siRNA治疗的基本原理,强调了其选择性沉默对乳腺癌发展至关重要的基因的能力。此外,还探讨了LNPs在递送治疗性siRNA有效载荷中的应用,重点介绍了LNPs的益处,包括它们的生物相容性和有效的siRNA结合。还评估了基于lnp的siRNA制剂的安全性和有效性特征,为潜在的治疗应用铺平了道路。研究结果阐明了LNP-siRNA制剂在乳腺癌治疗中的前景。该研究为靶向策略提供了见解,例如增强渗透性和保留性(EPR)效应和配体共轭纳米颗粒的利用。该研究概述了治疗用途的潜在途径,引起人们对lnp基siRNA制剂的安全性和有效性的关注。总之,本研究旨在揭示基于脂质纳米颗粒的siRNA制剂与乳腺癌治疗之间复杂的相互作用,通过强调当前发展、未来趋势和下一代基于lnp的siRNA制剂的创新策略,促进该领域的转型。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
A Critical Review on Lipid Nanoparticle-based siRNA Formulations for Breast Cancer Management.

Breast cancer poses a formidable challenge due to its inherent difficulty in treatment. Recognizing the imperative need for new therapeutic approaches, this study focuses on a groundbreaking technique that has the potential to reshape breast cancer treatment: siRNA formulations based on lipid nanoparticles (LNPs). This novel method holds promise for transforming the landscape of breast cancer therapy. The primary objective of this research is to conduct a comprehensive assessment of the current state of the art in the field, specifically exploring the potential applications of siRNA treatments encapsulated in LNPs for breast cancer. The research methodology involves a detailed literature review covering breast cancer, siRNA therapy, and lipid nanoparticles. The study investigates the fundamental principles of siRNA therapy, highlighting its capacity to selectively silence genes critical to breast cancer development. Additionally, the application of LNPs in delivering therapeutic siRNA payloads is explored, with an emphasis on the benefits of LNPs, including their biocompatibility and effective siRNA incorporation. Safety and effectiveness characteristics of LNP-based siRNA formulations are also assessed to pave the way for potential therapeutic applications. Findings from the study illuminate the promising characteristics of LNP-siRNA formulations in the treatment of breast cancer. The investigation provides insights into targeting strategies, such as the enhanced permeability and retention (EPR) effect and the utilization of ligand-conjugated nanoparticles. The study outlines potential avenues for therapeutic use, drawing attention to the safety and effectiveness of LNP-based siRNA formulations. In summary, this study aims to reveal intricate interactions between lipid nanoparticle-based siRNA formulations and breast cancer treatment, fostering a transformation in the field by highlighting current developments, future trends, and innovative strategies for next-gen LNP-based siRNA formulations.

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来源期刊
Pharmaceutical nanotechnology
Pharmaceutical nanotechnology Pharmacology, Toxicology and Pharmaceutics-Pharmaceutical Science
CiteScore
4.20
自引率
0.00%
发文量
46
期刊介绍: Pharmaceutical Nanotechnology publishes original manuscripts, full-length/mini reviews, thematic issues, rapid technical notes and commentaries that provide insights into the synthesis, characterisation and pharmaceutical (or diagnostic) application of materials at the nanoscale. The nanoscale is defined as a size range of below 1 µm. Scientific findings related to micro and macro systems with functionality residing within features defined at the nanoscale are also within the scope of the journal. Manuscripts detailing the synthesis, exhaustive characterisation, biological evaluation, clinical testing and/ or toxicological assessment of nanomaterials are of particular interest to the journal’s readership. Articles should be self contained, centred around a well founded hypothesis and should aim to showcase the pharmaceutical/ diagnostic implications of the nanotechnology approach. Manuscripts should aim, wherever possible, to demonstrate the in vivo impact of any nanotechnological intervention. As reducing a material to the nanoscale is capable of fundamentally altering the material’s properties, the journal’s readership is particularly interested in new characterisation techniques and the advanced properties that originate from this size reduction. Both bottom up and top down approaches to the realisation of nanomaterials lie within the scope of the journal.
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