材料科学技术(英文版)2021,Vol.86Issue(27) :139-150.

Mitochondria-targeting multi-metallic ZnCuO nanoparticles and IR780 for efficient photodynamic and photothermal cancer treatments

Hima Bindu Ruttala Thiruganesh Ramasamy Raghu Ram Teja Ruttala Tuan Hiep Tran Jee-Heon Jeong Han-Gon Choi Sae Kwang Ku Chul Soon Yong Jong Oh Kim
材料科学技术(英文版)2021,Vol.86Issue(27) :139-150.

Mitochondria-targeting multi-metallic ZnCuO nanoparticles and IR780 for efficient photodynamic and photothermal cancer treatments

Hima Bindu Ruttala 1Thiruganesh Ramasamy 2Raghu Ram Teja Ruttala 3Tuan Hiep Tran 4Jee-Heon Jeong 5Han-Gon Choi 6Sae Kwang Ku 7Chul Soon Yong 5Jong Oh Kim5
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作者信息

  • 1. College of Pharmacy,Yeungnam University,214-1,Dae-dong,Gyeongsan,712-749,Republic of Korea;Magee-Women's Research Institute,University of Pittsburgh,Pittsburgh,PA,15213,USA
  • 2. Center for Ultrasound Molecular Imaging and Therapeutics,University of Pittsburgh Medical Center(UPMC),Pittsburgh,PA,15213,USA
  • 3. Sri Vasavi Institute of Pharmaceutical Sciences,West Godavari,Andhra Pradesh,India
  • 4. Faculty of Pharmacy,PHENIKAA University,Yen Nghia,Ha Dong,Hanoi,12116,Viet Nam;PHENIKAA Research and Technology Institute(PRATI),A&A Green Phoenix Group JSC,No.167 Hoang Ngan,Trung Hoa,Cau Giay,Hanoi,11313,Viet Nam
  • 5. College of Pharmacy,Yeungnam University,214-1,Dae-dong,Gyeongsan,712-749,Republic of Korea
  • 6. College of Pharmacy,Hanyang University,Ansan,426-791,Republic of Korea
  • 7. College of Korean Medicine,Daegu Haany University,Gyeongsan,712-715,Republic of Korea
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Abstract

Chemo-resistance has pushed cancer treatment to the boundary of failure.This challenge has encouraged scientists to look for nanotechnological solutions.In this study,we have taken this goal one step further without depending on chemotherapy.Specifically,hybrid metal,polymer,and lipid nanoparticles that formed an IR780-a photosensitizer and Zinc copper oxide incorporated nanoparticle(ZCNP)nanoparti-cles were utilized in a combined photothermal and photodynamic therapy.Through the mediation of triphenylphosphonium(TPP)as a mitochondria-targeting moiety,TPP-conjugated polymer-lipid hybrid nanoparticles containing ZCNP/IR-780 significantly enhanced cellular uptake by cancer cells and selec-tively targeted the mitochondria,which improved the induction of apoptosis.In tumor-bearing mice,the nanoparticles were detected predominantly in tumors rather than in the other principle organs,which did not show notable signs of toxicity.Both in vitro and in vivo results demonstrated a great improvement in photothermal and photodynamic efficacy in combination when compared to either one individually,and a significant inhibition of tumor growth was observed with the combined therapies.In summary,this study describes an effective mitochondria-targeting nanocarrier for the treatment of cancer using combined photothermal and photodynamic therapies.

Key words

Zinc-doped copper/Nanoparticles/Mitochondria/Cancer/Photothermal/Photodynamic

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基金项目

This research was supported by the National Research Founda-tion of Korea(NRF)grant funded by the Korea government(MSIP)(2018R1A2A2A05021143)

and by the Medical Research Center Program(2015R1A5A2009124)

authors thank the Core Research Support Center for Natu-ral Products and Medical Materials(CRCNM)for technical support regar()

出版年

2021
材料科学技术(英文版)
中国金属学会 中国材料研究学会 中国科学院金属研究所

材料科学技术(英文版)

CSTPCDCSCDSCI
影响因子:0.657
ISSN:1005-0302
参考文献量36
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