推进脂质体技术,创新抗击疟疾战略

IF 3 3区 医学 Q2 PHARMACOLOGY & PHARMACY Saudi Pharmaceutical Journal Pub Date : 2024-04-24 DOI:10.1016/j.jsps.2024.102085
Andang Miatmoko , Rifda Tarimi Octavia , Tamasa Araki , Takeshi Annoura , Retno Sari
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引用次数: 0

摘要

这篇综述讨论了脂质体作为抗疟疾疗法给药系统的潜力。疟疾仍然是导致死亡和发病的一个重要原因,尤其是在儿童和孕妇中。患者不遵医嘱和令人头疼的副作用导致的耐药性仍是抗疟治疗面临的重大挑战。脂质体作为有针对性的高效药物载体,因其能够解决这些问题而备受关注。脂质体可包裹亲水性和/或疏水性药物,从而提供全面、合适的治疗给药。此外,脂质体还具有被动和主动给药的潜力,可将药物集中在特定的靶组织中,同时减少不良反应。然而,成功的脂质体配方受到多种因素的影响,包括药物的理化特性和给药过程中遇到的生理障碍。为了克服这些挑战,研究人员对脂质体纳米载体进行了改良,以实现高效的药物负载、控释和系统稳定性。研究人员还采用计算方法来预测脂质体系统的稳定性、膜完整性和药物-脂质体相互作用,从而提高制剂开发效率。通过利用计算方法,优化脂质体给药系统有望在疟疾治疗中提高疗效、减少副作用。本综述巩固了当前的认识,并强调了脂质体抗疟策略的潜力。
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Advancing liposome technology for innovative strategies against malaria

This review discusses the potential of liposomes as drug delivery systems for antimalarial therapies. Malaria continues to be a significant cause of mortality and morbidity, particularly among children and pregnant women. Drug resistance due to patient non-compliance and troublesome side effects remains a significant challenge in antimalarial treatment. Liposomes, as targeted and efficient drug carriers, have garnered attention owing to their ability to address these issues. Liposomes encapsulate hydrophilic and/or hydrophobic drugs, thus providing comprehensive and suitable therapeutic drug delivery.

Moreover, the potential of passive and active drug delivery enables drug concentration in specific target tissues while reducing adverse effects. However, successful liposome formulation is influenced by various factors, including drug physicochemical characteristics and physiological barriers encountered during drug delivery. To overcome these challenges, researchers have explored modifications in liposome nanocarriers to achieve efficient drug loading, controlled release, and system stability. Computational approaches have also been adopted to predict liposome system stability, membrane integrity, and drug-liposome interactions, improving formulation development efficiency. By leveraging computational methods, optimizing liposomal drug delivery systems holds promise for enhancing treatment efficacy and minimizing side effects in malaria therapy. This review consolidates the current understanding and highlights the potential of liposome strategies against malaria.

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来源期刊
Saudi Pharmaceutical Journal
Saudi Pharmaceutical Journal PHARMACOLOGY & PHARMACY-
CiteScore
6.10
自引率
2.40%
发文量
194
审稿时长
67 days
期刊介绍: The Saudi Pharmaceutical Journal (SPJ) is the official journal of the Saudi Pharmaceutical Society (SPS) publishing high quality clinically oriented submissions which encompass the various disciplines of pharmaceutical sciences and related subjects. SPJ publishes 8 issues per year by the Saudi Pharmaceutical Society, with the cooperation of the College of Pharmacy, King Saud University.
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