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基于脂质的纳米级载体作为骨并发症的一种有前景的策略:综述

Lipid-Based Nano-Sized Cargos as a Promising Strategy in Bone Complications: A Review.

作者信息

Hallan Supandeep Singh, Amirian Jhaleh, Brangule Agnese, Bandere Dace

机构信息

Department of Pharmaceutical Chemistry, Riga Stradins University, Dzirciema 16, LV-1007 Riga, Latvia.

Baltic Biomaterials Centre of Excellence, Headquarters at Riga Technical University, Kalku Street 1, LV-1658 Riga, Latvia.

出版信息

Nanomaterials (Basel). 2022 Mar 30;12(7):1146. doi: 10.3390/nano12071146.

Abstract

Bone metastasis has been considered the fatal phase of cancers, which remains incurable and to be a challenge due to the non-availability of the ideal treatment strategy. Unlike bone cancer, bone metastasis involves the spreading of the tumor cells to the bones from different origins. Bone metastasis generally originates from breast and prostate cancers. The possibility of bone metastasis is highly attributable to its physiological milieu susceptible to tumor growth. The treatment of bone-related diseases has multiple complications, including bone breakage, reduced quality of life, spinal cord or nerve compression, and pain. However, anticancer active agents have failed to maintain desired therapeutic concentrations at the target site; hence, uptake of the drug takes place at a non-target site responsible for the toxicity at the cellular level. Interestingly, lipid-based drug delivery systems have become the center of interest for researchers, thanks to their biocompatible and bio-mimetic nature. These systems possess a great potential to improve precise bone targeting without affecting healthy tissues. The lipid nano-sized systems are not only limited to delivering active agents but also genes/peptide sequences/siRNA, bisphosphonates, etc. Additionally, lipid coating of inorganic nanomaterials such as calcium phosphate is an effective approach against uncontrollable rapid precipitation resulting in reduced colloidal stability and dispersity. This review summarizes the numerous aspects, including development, design, possible applications, challenges, and future perspective of lipid nano-transporters, namely liposomes, exosomes, solid lipid nanoparticles (SLN), nanostructured lipid carriers (NLC), and lipid nanoparticulate gels to treat bone metastasis and induce bone regeneration. Additionally, the economic suitability of these systems has been discussed and different alternatives have been discussed. All in all, through this review we will try to understand how far nanomedicine is from clinical and industrial applications in bone metastasis.

摘要

骨转移一直被认为是癌症的致命阶段,由于缺乏理想的治疗策略,它仍然无法治愈且极具挑战性。与骨癌不同,骨转移涉及肿瘤细胞从不同原发部位扩散至骨骼。骨转移通常起源于乳腺癌和前列腺癌。骨转移的可能性很大程度上归因于其易于肿瘤生长的生理环境。骨相关疾病的治疗存在多种并发症,包括骨折、生活质量下降、脊髓或神经受压以及疼痛。然而,抗癌活性剂未能在靶部位维持所需的治疗浓度;因此,药物在非靶部位摄取,导致细胞水平的毒性。有趣的是,基于脂质的药物递送系统因其生物相容性和仿生特性,已成为研究人员关注的焦点。这些系统具有在不影响健康组织的情况下改善精确骨靶向的巨大潜力。脂质纳米系统不仅限于递送活性剂,还可递送基因/肽序列/siRNA、双膦酸盐等。此外,对无机纳米材料(如磷酸钙)进行脂质包衣是一种有效的方法,可防止不可控的快速沉淀,从而降低胶体稳定性和分散性。本综述总结了脂质纳米转运体(即脂质体、外泌体、固体脂质纳米粒(SLN)、纳米结构脂质载体(NLC)和脂质纳米颗粒凝胶)在治疗骨转移和诱导骨再生方面的众多方面,包括开发、设计、可能的应用、挑战和未来展望。此外,还讨论了这些系统的经济适用性以及不同的替代方案。总而言之,通过本综述,我们将试图了解纳米医学在骨转移的临床和工业应用方面的进展情况。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/1af1/9000285/65f973373e31/nanomaterials-12-01146-g001.jpg

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