4.8 Article

Endosome-triggered ion-releasing nanoparticles as therapeutics to enhance the angiogenic efficacy of human mesenchymal stem cells

期刊

JOURNAL OF CONTROLLED RELEASE
卷 324, 期 -, 页码 586-597

出版社

ELSEVIER
DOI: 10.1016/j.jconrel.2020.05.038

关键词

Angiogenesis; Cell homing; Endosome-triggered nanoparticles; Intracellular ROS control; Stem cell

资金

  1. National Research Foundation of Korea (NRF)
  2. Ministry of Science and ICT [NRF-2018M3A9E2023255, NRF-2017R1A5A1070259, NRF-2017R1A5A1015365, NRF-2019R1C1C1007384]
  3. Bio & Medical Technology Development Program of the NRF - Ministry of Science, ICT and Future Planning [NRF-2016M3A9B4919711]
  4. Korea Health Technology R&D Project through the Korea Health Industry Development Institute (KHIDI)
  5. Ministry of Health & Welfare, Republic of Korea [HI17C1728]
  6. NRF - Korean government (MSIP) [NRF-2014R1A5A1009799, NRF-2019M3E6A1103866, NRF-2016M3D1A1021140]
  7. National Research Foundation of Korea [2019M3E6A1103866] Funding Source: Korea Institute of Science & Technology Information (KISTI), National Science & Technology Information Service (NTIS)

向作者/读者索取更多资源

Here, we report that Fe ions delivered into human mesenchymal stem cells (hMSCs) by bioreducible metal nanoparticles (NPs) enhance their angiogenic and cell-homing efficacy by controlling ion-triggered intracellular reactive oxygen species (ROS) and improve cell migration, while reducing cytotoxicity. Endosome-triggered iron-ion-releasing nanoparticles (ETIN) were designed to be low-pH responsive to take advantage of the low-pH conditions (4-5) of endosomes for in situ iron-ion release. Due to the different redox potentials of Fe and Au, only Fe could be ionized and released from our novel ETIN, while Au remained intact after ETIN endocytosis. Treatment with an optimal amount of ETIN led to a mild increase in intracellular ROS levels in hMSCs, which enhanced the expression of HIF-1 alpha, a key trigger for angiogenic growth factor secretion from hMSCs. Treatmetn of hMSCs with ETIN significantly enhanced the expression of angiogenesis-and lesion-targeting-related genes and proteins. Transplantation of ETIN-treated hMSCs significantly enhanced angiogenesis and tissue regeneration in a wound-closing mouse model compared with those in untreated mice and mice that underwent conventional hMSC transplantation.

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