Surface Functionalized Lipid Nanoparticles in Promoting Therapeutic Outcomes: An Insight View of the Dynamic Drug Delivery System.

IF 2.5 4区 医学 Q2 PHARMACOLOGY & PHARMACY Current drug targets Pub Date : 2024-01-01 DOI:10.2174/0113894501285598240216065627
Namish Manchanda, Harish Vishkarma, Muskan Goyal, Saurabh Shah, Paras Famta, Sushama Talegaonkar, Saurabh Srivastava
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Abstract

Compared to the conventional approach, nanoparticles (NPs) facilitate a non-hazardous, non-toxic, non-interactive, and biocompatible system, rendering them incredibly promising for improving drug delivery to target cells. When that comes to accomplishing specific therapeutic agents like drugs, peptides, nucleotides, etc., lipidic nanoparticulate systems have emerged as even more robust. They have asserted impressive ability in bypassing physiological and cellular barriers, evading lysosomal capture and the proton sponge effect, optimizing bioavailability, and compliance, lowering doses, and boosting therapeutic efficacy. However, the lack of selectivity at the cellular level hinders its ability to accomplish its potential to the fullest. The inclusion of surface functionalization to the lipidic NPs might certainly assist them in adapting to the basic biological demands of a specific pathological condition. Several ligands, including peptides, enzymes, polymers, saccharides, antibodies, etc., can be functionalized onto the surface of lipidic NPs to achieve cellular selectivity and avoid bioactivity challenges. This review provides a comprehensive outline for functionalizing lipid-based NPs systems in prominence over target selectivity. Emphasis has been put upon the strategies for reinforcing the therapeutic performance of lipidic nano carriers' using a variety of ligands alongside instances of relevant commercial formulations.

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促进治疗效果的表面功能化脂质纳米颗粒:透视动态给药系统。
与传统方法相比,纳米颗粒(NPs)是一种无害、无毒、无交互作用、生物相容性好的系统,因此在改善靶细胞的药物输送方面具有令人难以置信的前景。当涉及到药物、肽、核苷酸等特定治疗剂时,脂质纳米颗粒系统显得更加强大。它们在绕过生理和细胞屏障、逃避溶酶体捕获和质子海绵效应、优化生物利用度和顺应性、降低剂量和提高疗效等方面的能力令人印象深刻。然而,在细胞水平上缺乏选择性阻碍了其充分发挥潜力的能力。在脂质 NPs 中加入表面官能化成分无疑有助于它们适应特定病理条件下的基本生物需求。包括肽、酶、聚合物、糖类、抗体等在内的多种配体可被功能化到脂质 NPs 表面,以实现细胞选择性并避免生物活性挑战。本综述全面概述了脂基 NPs 系统的功能化,并强调了目标选择性。重点介绍了利用各种配体和相关商业配方实例增强脂质纳米载体治疗性能的策略。
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来源期刊
Current drug targets
Current drug targets 医学-药学
CiteScore
6.20
自引率
0.00%
发文量
127
审稿时长
3-8 weeks
期刊介绍: Current Drug Targets aims to cover the latest and most outstanding developments on the medicinal chemistry and pharmacology of molecular drug targets e.g. disease specific proteins, receptors, enzymes, genes. Current Drug Targets publishes guest edited thematic issues written by leaders in the field covering a range of current topics of drug targets. The journal also accepts for publication mini- & full-length review articles and drug clinical trial studies. As the discovery, identification, characterization and validation of novel human drug targets for drug discovery continues to grow; this journal is essential reading for all pharmaceutical scientists involved in drug discovery and development.
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