Calcium phosphates enhanced with liposomes - the future of bone regeneration and drug delivery.

IF 3.6 4区 医学 Q2 BIOCHEMISTRY & MOLECULAR BIOLOGY Journal of Liposome Research Pub Date : 2024-09-01 Epub Date: 2023-12-07 DOI:10.1080/08982104.2023.2285973
Marite Skrinda-Melne, Janis Locs, Andra Grava, Arita Dubnika
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Abstract

Effective healing and regeneration of various bone defects is still a major challenge and concern in modern medicine. Calcium phosphates have emerged as extensively studied bone substitute materials due to their structural and chemical resemblance to the mineral phase of bone, along with their versatile properties. Calcium phosphates present promising biological characteristics that make them suitable for bone substitution, but a critical limitation lies in their low osteoinductivity. To supplement these materials with properties that promote bone regeneration, prevent infections, and cure bone diseases locally, calcium phosphates can be biologically and therapeutically modified. A promising approach involves combining calcium phosphates with drug-containing liposomes, renowned for their high biocompatibility and ability to provide controlled and sustained drug delivery. Surprisingly, there is a lack of research focused on liposome-calcium phosphate composites, where liposomes are dispersed within a calcium phosphate matrix. This raises the question of why such studies are limited. In order to provide a comprehensive overview of existing liposome and calcium phosphate composites as bioactive substance delivery systems, the authors review the literature exploring the interactions between calcium phosphates and liposomes. Additionally, it seeks to identify potential interactions between calcium ions and liposomes, which may impact the feasibility of developing liposome-containing calcium phosphate composite materials. Liposome capacity to protect bioactive compounds and facilitate localized treatment can be particularly valuable in scenarios involving bone regeneration, infection prevention, and the management of bone diseases. This review explores the implications of liposomes and calcium phosphate material containing liposomes on drug delivery, bioavailability, and stability, offering insights into their advantages.

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脂质体增强磷酸钙-骨再生和药物输送的未来。
各种骨缺损的有效愈合和再生仍然是现代医学面临的主要挑战和关注的问题。磷酸钙由于其结构和化学性质与骨的矿物相相似,以及其多功能特性,已成为广泛研究的骨替代材料。磷酸钙具有良好的生物学特性,使其适合于骨替代,但一个关键的限制在于其低成骨性。为了使这些材料具有促进骨再生、预防感染和局部治疗骨病的特性,磷酸钙可以进行生物和治疗修饰。一种很有前景的方法是将磷酸钙与含药脂质体结合,脂质体以其高生物相容性和提供可控和持续的药物输送能力而闻名。令人惊讶的是,缺乏对脂质体-磷酸钙复合材料的研究,其中脂质体分散在磷酸钙基质中。这就提出了一个问题,为什么这样的研究是有限的。为了全面概述现有的脂质体和磷酸钙复合材料作为生物活性物质传递系统,作者回顾了探讨磷酸钙和脂质体之间相互作用的文献。此外,它试图确定钙离子和脂质体之间潜在的相互作用,这可能会影响开发含脂质体磷酸钙复合材料的可行性。脂质体保护生物活性化合物和促进局部治疗的能力在涉及骨再生、感染预防和骨疾病管理的情况下尤其有价值。本文综述了脂质体和含脂质体的磷酸钙材料对药物传递、生物利用度和稳定性的影响,并阐述了它们的优势。
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来源期刊
Journal of Liposome Research
Journal of Liposome Research 生物-生化与分子生物学
CiteScore
10.50
自引率
2.30%
发文量
24
审稿时长
3 months
期刊介绍: The Journal of Liposome Research aims to publish original, high-quality, peer-reviewed research on the topic of liposomes and related systems, lipid-based delivery systems, lipid biology, and both synthetic and physical lipid chemistry. Reviews and commentaries or editorials are generally solicited and are editorially reviewed. The Journal also publishes abstracts and conference proceedings including those from the International Liposome Society. The scope of the Journal includes: Formulation and characterisation of systems Formulation engineering of systems Synthetic and physical lipid chemistry Lipid Biology Biomembranes Vaccines Emerging technologies and systems related to liposomes and vesicle type systems Developmental methodologies and new analytical techniques pertaining to the general area Pharmacokinetics, pharmacodynamics and biodistribution of systems Clinical applications. The Journal also publishes Special Issues focusing on particular topics and themes within the general scope of the Journal.
期刊最新文献
Design and preparation of pH-sensitive cytotoxic liposomal formulations containing antitumor colchicine analogues for target release. Impact of micelle characteristics on cholesterol absorption and ezetimibe inhibition: Insights from Niemann-Pick C1-like 1 binding and molecular structure. Antibacterial effect of protease-responsive cationic eugenol liposomes modified by gamma-polyglutamic acid against Staphylococcus aureus. Calcium phosphates enhanced with liposomes - the future of bone regeneration and drug delivery. Process development of inhalation powders containing simvastatin loaded liposomes using spray drying technology.
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