利用即插即用胆固醇锚定靶向癌细胞的人源化抗体功能化脂质纳米乳。

IF 4.6 3区 材料科学 Q2 CHEMISTRY, MULTIDISCIPLINARY
Valeria Jose Boide-Trujillo, Vincent Mittelheisser, Fei Liu, Olivier Lefebvre, Bohdan Andreiuk, Nicolas Anton, Jacky G Goetz, Andrey S Klymchenko
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引用次数: 0

摘要

脂质纳米乳(NEs)是一种很有前途的绿色纳米载体,可用于诊断和治疗,但由于其核心的液体性质,其与生物分子(如抗体)的功能化仍然是一个挑战。在这里,我们开发了一种原始的即插即用策略,将抗体(曲妥珠单抗)移植到NEs表面,使用通常被认为是安全的成分(GRAS)。我们合成了活性的4-硝基苯基碳酸酯胆固醇(NPC-Chol)和生物素- peg3000 -赖氨酸连接剂,它们可以在一锅内反应形成两亲性氨基甲酸酯生物素- peg3000 -胆固醇。胆固醇确保了连接物的锚定,这有效地暴露了生物素在NEs表面的部分,以便使用生物素-中性偶联进一步进行抗体嫁接。生物素- peg3000 -赖氨酸连接剂与NPC-Chol之间的反应经1H-NMR和吸收光谱证实。所获得的生物素化的50纳米NEs负载了近红外染料,成功地靶向到中性生物素涂覆的玻璃表面,并在单液滴水平上成像。与对照的MDA-MB-231 (HER2-low)细胞相比,携带曲妥珠单抗抗体的生物素化NEs特异性靶向her2扩增的乳腺癌模型HCC-1954和SKBR3。总之,我们的研究提出了一种有效的将抗体接枝到NEs表面的方法,为这些绿色纳米载体在生物医学上的应用提供了新的机会。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
Functionalization of lipid nanoemulsions with humanized antibodies using plug-and-play cholesterol anchor for targeting cancer cells.

Lipid nanoemulsions (NEs) are promising green nanocarriers for diagnostic and therapeutic applications, but their functionalization with biomolecules, such as antibodies, remains a challenge due to liquid nature of their core. Here, we developed an original plug-and-play strategy to graft an antibody (trastuzumab) at the surface of NEs, using components generally recognized as safe (GRAS). We synthesized a reactive 4-nitrophenyl carbonate of cholesterol (NPC-Chol) and a Biotin-PEG3000-Lysine linker, which can react within one-pot formulation to form an amphiphilic carbamate Biotin-PEG3000-Cholesterol. The cholesterol ensures anchorage of the linker, which effectively exposes biotin moiety at the surface of NEs for further antibody grafting using a biotin-neutravidin coupling. The reaction between the Biotin-PEG3000-Lysine linker and NPC-Chol was confirmed by 1H-NMR and absorption spectroscopy. The obtained biotinylated 50-nm NEs loaded with a near-infrared dye were successfully targeted to neutravidin-coated glass surfaces and imaged at the single-droplet level. The biotinylated NEs bearing the trastuzumab antibody targeted specifically HER2-amplified breast cancer models HCC-1954 and SKBR3, in contrast to control MDA-MB-231 (HER2-low) cells. Altogether, our study proposes an efficient methodology for grafting antibodies to the surface of NEs, which offers new opportunities of application of these green nanocarriers in biomedicine.

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来源期刊
Nanoscale Advances
Nanoscale Advances Multiple-
CiteScore
8.00
自引率
2.10%
发文量
461
审稿时长
9 weeks
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