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红细胞磁 HA 病毒体:一种用于肺部主动靶向药物的仿生药物传递系统。

Erythro-Magneto-HA-Virosome: A Bio-Inspired Drug Delivery System for Active Targeting of Drugs in the Lungs.

机构信息

Institute of Organic Synthesis and Photoreactivity (ISOF), National Research Council of Italy, Via Gobetti 101, 40129 Bologna, Italy.

The BioRobotics Institute, Scuola Superiore Sant'Anna, Piazza Martiri della Libertà 33, 56127 Pisa, Italy.

出版信息

Int J Mol Sci. 2022 Aug 31;23(17):9893. doi: 10.3390/ijms23179893.

Abstract

Over the past few decades, finding more efficient and selective administration routes has gained significant attention due to its crucial role in the bioavailability, absorption rate and pharmacokinetics of therapeutic substances. The pulmonary delivery of drugs has become an attractive target of scientific and biomedical interest in the health care research area, as the lung, thanks to its high permeability and large absorptive surface area and good blood supply, is capable of absorbing pharmaceuticals either for local deposition or for systemic delivery. Nevertheless, the pulmonary drug delivery is relatively complex, and strategies to mitigate the effects of mechanical, chemical and immunological barriers are required. Herein, engineered erythrocytes, the Erythro-Magneto-Hemagglutinin (HA)-virosomes (EMHVs), are used as a novel strategy for efficiently delivering drugs to the lungs. EMHV bio-based carriers exploit the physical properties of magnetic nanoparticles to achieve effective targeting after their intravenous injection thanks to an external magnetic field. In addition, the presence of hemagglutinin fusion proteins on EMHVs' membrane allows the DDS to anchor and fuse with the target tissue and locally release the therapeutic compound. Our results on the biomechanical and biophysical properties of EMHVs, such as the membrane robustness and deformability and the high magnetic susceptibility, as well as their in vivo biodistribution, highlight that this bio-inspired DDS is a promising platform for the controlled and lung-targeting delivery of drugs, and represents a valuable alternative to inhalation therapy to fulfill unmet clinical needs.

摘要

在过去的几十年中,由于其在治疗物质的生物利用度、吸收速率和药代动力学中的关键作用,寻找更有效和更具选择性的给药途径引起了人们的极大关注。药物的肺部给药已成为医疗保健研究领域中科学和生物医学关注的一个有吸引力的目标,因为肺具有高通透性、大吸收表面积和良好的血液供应,能够吸收局部沉积或全身递送的药物。然而,肺部药物输送相对复杂,需要采取策略来减轻机械、化学和免疫屏障的影响。在此,工程红细胞,即 Erythro-Magneto-Hemagglutinin (HA)-病毒体 (EMHV),被用作将药物高效递送至肺部的一种新策略。EMHV 基于生物的载体利用磁性纳米粒子的物理特性,在静脉注射后通过外部磁场实现有效靶向。此外,EMHV 膜上存在血凝素融合蛋白,允许 DDS 与靶组织锚定并融合,并局部释放治疗化合物。我们对 EMHV 的生物力学和生物物理特性的研究结果,例如膜的坚固性和可变形性以及高磁化率,以及它们的体内分布,突出表明这种受生物启发的 DDS 是一种有前途的平台,可用于控制和靶向肺部的药物输送,并代表了一种有价值的替代吸入疗法的选择,以满足未满足的临床需求。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/2335/9455992/014199ff8eb0/ijms-23-09893-g001.jpg

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