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光敏纳米载体,用于将货物特异性递送到细胞内。

Photosensitive nanocarriers for specific delivery of cargo into cells.

机构信息

Max Planck Tandem Group in Nanobioengineering, Universidad de Antioquia, Calle 67 N° 52-20, Complejo Ruta N, Medellín, 050010, Colombia.

Departamento de Ingeniería, Pontificia Universidad Católica del Perú, Av. Universitaria 1801, Lima, Peru.

出版信息

Sci Rep. 2020 Feb 7;10(1):2110. doi: 10.1038/s41598-020-58865-z.

Abstract

Nanoencapsulation is a rapidly expanding technology to enclose cargo into inert material at the nanoscale size, which protects cargo from degradation, improves bioavailability and allows for controlled release. Encapsulation of drugs into functional nanocarriers enhances their specificity, targeting ability, efficiency, and effectiveness. Functionality may come from cell targeting biomolecules that direct nanocarriers to a specific cell or tissue. Delivery is usually mediated by diffusion and erosion mechanisms, but in some cases, this is not sufficient to reach the expected therapeutic effects. This work reports on the development of a new photoresponsive polymeric nanocarrier (PNc)-based nanobioconjugate (NBc) for specific photo-delivery of cargo into target cells. We readily synthesized the PNcs by modification of chitosan with ultraviolet (UV)-photosensitive azobenzene molecules, with Nile red and dofetilide as cargo models to prove the encapsulation/release concept. The PNcs were further functionalized with the cardiac targeting transmembrane peptide and efficiently internalized into cardiomyocytes, as a cell line model. Intracellular cargo-release was dramatically accelerated upon a very short UV-light irradiation time. Delivering cargo in a time-space controlled fashion by means of NBcs is a promising strategy to increase the intracellular cargo concentration, to decrease dose and cargo side effects, thereby improving the effectiveness of a therapeutic regime.

摘要

纳米封装是一种将货物封装在惰性纳米级材料中的快速发展技术,可保护货物免受降解,提高生物利用度,并允许控制释放。将药物封装到功能性纳米载体中可增强其特异性、靶向能力、效率和效果。功能可能来自于靶向特定细胞或组织的细胞靶向生物分子。递送通常通过扩散和侵蚀机制介导,但在某些情况下,这不足以达到预期的治疗效果。本工作报道了一种新的光响应性聚合物纳米载体(PNc)基纳米生物缀合物(NBc)的开发,用于将货物特异性递送到靶细胞。我们通过用紫外线(UV)光敏性偶氮苯分子修饰壳聚糖来容易地合成 PNcs,并以尼罗红和多非利特作为货物模型来证明封装/释放概念。PNcs 进一步用心脏靶向跨膜肽功能化,并有效内化到心肌细胞中,作为细胞系模型。在非常短的紫外线照射时间下,细胞内货物释放显著加速。通过 NBcs 以时空控制方式递送货物是一种很有前途的策略,可以增加细胞内货物浓度,降低剂量和货物副作用,从而提高治疗方案的效果。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/ad17/7005817/d3a5648ce662/41598_2020_58865_Fig1_HTML.jpg

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