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首页> 外文期刊>ACS nano >Transferrin Functionization Elevates Transcytosis of Nanogranules across Epithelium by Triggering Polarity-Associated Transport Flow and Positive Cellular Feedback Loop
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Transferrin Functionization Elevates Transcytosis of Nanogranules across Epithelium by Triggering Polarity-Associated Transport Flow and Positive Cellular Feedback Loop

机译:转铁蛋白功能通过触发极性相关的运输流程和正蜂窝反馈回路通过上皮升高纳米甘蔗的转红菌菌

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摘要

Overcoming the epithelial barriers to enhance drug transport is a focused topic for gastrointestinal, intratracheal, intranasal, vaginal, and intrauterine delivery. Nanomedicines with targeting functionization promote such a process owing to specific ligand receptor interaction. However, compared to the cell uptake of targeting nanotherapies, currently few studies concentrate on their transcytosis including endocytosis for "in" and exocytosis for "out". In fact, the cellular regulatory mechanism for these pathways as well as the principle of ligand's effect on the transcytosis are almost ignored. Here, we fabricated transferrin (Tf) functionalized nanogranules (Tf-NG) as the nanomedicine model and confirmed the difference in polar distributions of Tf receptors (TfRs) between two epithelium models (bipolarity for Caco-2 and unipolarity for MDCK cells). Compared to the nonspecific reference, Tf-conjugation boosted the endocytosis by different pathways in two cell models and transformed the intracellular route of Tf-NG in both cells differently, affecting exocytosis, recycling, and degradation but not the secretion pathway. Only bipolar cells could establish a complete transport flow from "in" to "out", leading to the enhanced transcytosis of Tf-NG. Importantly, epithelia could make responses to Tf-NG transcytosis. Based on the quantitative proteomics, the intracellular trafficking of TING altered the protein expression profiles, in which the endocytosis-and transcytosis-related proteins were specifically upregulated. Particularly, only bipolar cells could positively feed back to such trafficking via accelerating the subsequent Tf-NG transcytosis. Here, all the cell transport of Tf-NG was polarity associated. In summary, Tf modification elevated the transcytosis of Tf-NG across the epithelium by triggering the polarity-associated transport flow and positive cell feedback loop. These findings provided an insight into the targeting nanodelivery for efficient transport th
机译:克服了增强药物运输的上皮障碍是胃肠,腹腔内,鼻内,阴道和宫内递送的重点题目。具有靶向功能的纳米胺促进了由于特定配体受体相互作用的这种过程。然而,与靶向纳米疗法的细胞摄取相比,目前少数研究浓缩它们的转胞增多症,包括内吞作用“in”和外毒性的“Out”。事实上,这些途径的细胞调节机制以及配体对转红枯病的影响的原理几乎忽略了。这里,我们制造了转铁蛋白(TF)官能化的纳米格伦(TF-NG)作为纳米胺模型,并确认了两个上皮模型(用于MDCK细胞的Caco-2的双极性的TF受体(TFR)的极性分布差异。与非特异性参考相比,TF-缀合在两种细胞模型中的不同途径提高了内吞作用,并在两种细胞中转化了TF-NG的细胞内途径,影响了外尿精,再循环和降解但不是分泌途径。只有双极细胞可以建立完全的运输流动从“在”到“OUT”中,导致TF-NG的增强转红菌症。重要的是,上皮细胞可以反应TF-NG转胞增多症。基于定量蛋白质组学,TING的细胞内运输改变了蛋白质表达谱,其中特异性上调了内吞作用和转胞病相关蛋白质。特别地,只有双极细胞可以通过加速随后的TF-NG转胞增多症来积极地送回这些贩运。这里,TF-NG的所有细胞传输是相关的极性。总之,TF修饰通过触发极性相关的传输流程和正电池反馈回路来升高在上皮细胞上的TF-NG的转胞增多率。这些调查结果提供了对靶向纳秒的洞察力,以便有效运输

著录项

  • 来源
    《ACS nano》 |2019年第5期|共19页
  • 作者单位

    Peking Univ Sch Pharmaceut Sci Beijing Key Lab Mol Pharmaceut &

    New Drug Deliver Beijing 100191 Peoples R China;

    Peking Univ Sch Pharmaceut Sci Beijing Key Lab Mol Pharmaceut &

    New Drug Deliver Beijing 100191 Peoples R China;

    Peking Univ Sch Pharmaceut Sci Beijing Key Lab Mol Pharmaceut &

    New Drug Deliver Beijing 100191 Peoples R China;

    Peking Univ Sch Pharmaceut Sci Beijing Key Lab Mol Pharmaceut &

    New Drug Deliver Beijing 100191 Peoples R China;

    Peking Univ Sch Pharmaceut Sci Beijing Key Lab Mol Pharmaceut &

    New Drug Deliver Beijing 100191 Peoples R China;

    Peking Univ Ctr Med &

    Hlth Anal Beijing 100191 Peoples R China;

    Peking Univ Ctr Med &

    Hlth Anal Beijing 100191 Peoples R China;

    Peking Univ Canc Hosp &

    Inst Minist Educ Dept Med Oncol Key Lab Carcinogenesis &

    Translat Beijing 100142 Peoples R China;

    Peking Univ Canc Hosp &

    Inst Minist Educ Dept Med Oncol Key Lab Carcinogenesis &

    Translat Beijing 100142 Peoples R China;

    Peking Univ Sch Pharmaceut Sci Beijing Key Lab Mol Pharmaceut &

    New Drug Deliver Beijing 100191 Peoples R China;

    Peking Univ Sch Pharmaceut Sci Beijing Key Lab Mol Pharmaceut &

    New Drug Deliver Beijing 100191 Peoples R China;

    Peking Univ Sch Pharmaceut Sci Beijing Key Lab Mol Pharmaceut &

    New Drug Deliver Beijing 100191 Peoples R China;

    Peking Univ Sch Pharmaceut Sci Beijing Key Lab Mol Pharmaceut &

    New Drug Deliver Beijing 100191 Peoples R China;

    Shenyang Pharmaceut Univ Sch Pharm Shenyang 110016 Peoples R China;

    Peking Univ Sch Pharmaceut Sci Beijing Key Lab Mol Pharmaceut &

    New Drug Deliver Beijing 100191 Peoples R China;

  • 收录信息
  • 原文格式 PDF
  • 正文语种 eng
  • 中图分类 分子物理学、原子物理学;
  • 关键词

    transcytosis; transferrin functionalized nanogranules; polarity; cell response; proteomics; nano systematic biology;

    机译:转胞增多症;转铁蛋白官能化纳米甘蔗;极性;细胞反应;蛋白质组学;纳米系统生物学;

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