Lanthanide-based β-Tricalcium Phosphate Upconversion Nanoparticles as an Effective Theranostic Nonviral Vectors for Image-Guided Gene Therapy

Q1 Pharmacology, Toxicology and Pharmaceutics Nanotheranostics Pub Date : 2022-02-16 DOI:10.7150/ntno.68789
Flávia R. O. Silva, N. B. Lima, M. H. Bellini, L. Teixeira, Eric Y. Du, Niloufar Jamshidi, J. Gooding, Adam D. Martin, A. Macmillan, C. Marquis, P. Thordarson
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引用次数: 1

Abstract

Lanthanide-based beta-tricalcium phosphate (β-TCP) upconversion nanoparticles are exploited as a non-viral vector for imaging guided-gene therapy by virtue of their unique optical properties and multi-modality imaging ability, high transfection efficiency, high biocompatibility, dispersibility, simplicity of synthesis and surface modification. Ytterbium and thulium-doped β-TCP nanoparticles (βTCPYbTm) are synthesized via co-precipitation method, coated with polyethylenimine (PEI) and functionalized with a nuclear-targeting peptide (TAT). Further, in vitro studies revealed that the nanotheranostic carriers are able to transfect cells with the plasmid eGFP at a high efficiency, with approximately 60% of total cells producing the fluorescent green protein. The optimized protocol developed comprises the most efficient βTCPYbTm/PEI configuration, the amount and the order of assembly of βTCPYbTm:PEI, TAT, plasmid DNA and the culturing conditions. With having excellent dispersibility and high chemical affinity toward nucleic acid, calcium ions released from βTCPYbTm:PEI nanoparticles can participate in delivering nucleic acids and other therapeutic molecules, overcoming the nuclear barriers and improving the transfection efficacy. Equally important, the feasibility of the upconversion multifunctional nanovector to serve as an effective contrast agent for imaging modality, capable of converting low-energy light to higher-energy photons via a multi-photons mechanism, endowing greater unique luminescent properties, was successfully demonstrated.
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基于镧系元素的β-磷酸三钙上转化纳米颗粒作为图像引导基因治疗的有效非病毒载体
镧系β-磷酸三钙(β-TCP)上转化纳米粒子具有独特的光学性质和多模态成像能力、转染效率高、生物相容性好、分散性好、合成简单、表面修饰简单等优点,可作为成像引导基因治疗的非病毒载体。采用共沉淀法合成了掺镱和铥的β-TCP纳米粒子(βTCPYbTm),并包被聚乙烯亚胺(PEI)和核靶向肽(TAT)。此外,体外研究表明,纳米治疗载体能够高效地用质粒eGFP转染细胞,大约60%的细胞产生荧光绿色蛋白。优化后的方案包括最有效的βTCPYbTm/PEI构型、βTCPYbTm:PEI、TAT、质粒DNA的组装量和顺序以及培养条件。βTCPYbTm:PEI纳米颗粒具有优异的分散性和对核酸的高化学亲和力,释放的钙离子可以参与传递核酸等治疗分子,克服核屏障,提高转染效果。同样重要的是,上转换多功能纳米载体作为成像模式的有效造影剂的可行性,能够通过多光子机制将低能光转换为高能量光子,赋予更大的独特发光特性。
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来源期刊
Nanotheranostics
Nanotheranostics Pharmacology, Toxicology and Pharmaceutics-Pharmacology, Toxicology and Pharmaceutics (miscellaneous)
CiteScore
10.40
自引率
0.00%
发文量
37
审稿时长
12 weeks
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