Application and Importance of Theranostics in the Diagnosis and Treatment of Cancer

被引:39
作者
Jeyamogan, Shareni [1 ]
Khan, Naveed Ahmed [2 ]
Siddiqui, Ruqaiyyah [3 ]
机构
[1] Sunway Univ, Dept Biol Sci, Bandar Sunway, Malaysia
[2] Univ Sharjah, Coll Med, Dept Basic Med Sci, POB 27272, University City, Sharjah, U Arab Emirates
[3] Amer Univ Sharjah, Coll Arts & Sci, University City, Sharjah, U Arab Emirates
关键词
Cancer; Theranostics; Treatment; Diagnosis; Nanomedicines; IRINOTECAN PLUS 5-FLUOROURACIL; NECROSIS TARGETED RADIOTHERAPY; CELL LUNG-CANCER; POLYMERIC MICELLES; QUANTUM DOTS; MULTIFUNCTIONAL NANOPLATFORM; PANCREATIC-CANCER; DELIVERY-SYSTEM; DRUG-DELIVERY; IN-VITRO;
D O I
10.1016/j.arcmed.2020.10.016
中图分类号
R-3 [医学研究方法]; R3 [基础医学];
学科分类号
1001 ;
摘要
The number of cancer cases worldwide in terms of morbidity and mortality is a serious concern, despite the presence of therapeutic interventions and supportive care. Limitations in the current available diagnosis methods and treatments methods may contribute to the increase in cancer mortality. Theranostics, is a novel approach that has opened avenues for the simultaneous precise diagnosis and treatment for cancer patients. Although still in the early development stage, theranostic agents such as quantum dots, radioisotopes, liposomes and plasmonic nanobubbles can be bound to anticancer drugs, cancer cell markers and imaging agents, with the support of available imaging techniques, provide the potential to facilitate diagnosis, treatment and management of cancer patients. Herein, we discuss the potential benefits of several theranostic tools for the management of cancer. Specifically, quantum dots, radio-labelled isotopes, liposomes and plasmonic nanobubbles coupled with targeting agents and/or anticancer molecules and imaging agents as theranostic agents are deliberated upon in this review. Overall, the use of theranostic agents shows promise in cancer management. Nevertheless, intensive research is required to realize these expectations. (C) 2021 IMSS. Published by Elsevier Inc.
引用
收藏
页码:131 / 142
页数:12
相关论文
共 75 条
[11]   Near-infrared quantum dots labelled with a tumor selective tetrabranched peptide for in vivo imaging [J].
Brunetti, Jlenia ;
Riolo, Giulia ;
Gentile, Mariangela ;
Bernini, Andrea ;
Paccagnini, Eugenio ;
Falciani, Chiara ;
Lozzi, Luisa ;
Scali, Silvia ;
Depau, Lorenzo ;
Pini, Alessandro ;
Lupetti, Pietro ;
Bracci, Luisa .
JOURNAL OF NANOBIOTECHNOLOGY, 2018, 16
[12]   Tumor-selective peptide-carrier delivery of Paclitaxel increases in vivo activity of the drug [J].
Brunetti, Jlenia ;
Pillozzi, Serena ;
Falciani, Chiara ;
Depau, Lorenzo ;
Tenori, Eleonora ;
Scali, Silvia ;
Lozzi, Luisa ;
Pini, Alessandro ;
Arcangeli, Annarosa ;
Menichetti, Stefano ;
Bracci, Luisa .
SCIENTIFIC REPORTS, 2015, 5
[13]  
Chang Sam S, 2004, Rev Urol, V6 Suppl 10, pS13
[14]   Survival with nal-IRI (liposomal irinotecan) plus 5-fluorouracil and leucovorin versus 5-fluorouracil and leucovorin in per-protocol and non-per-protocol populations of NAPOLI-1: Expanded analysis of a global phase 3 trial [J].
Chen, Li-Tzong ;
Siveke, Jens T. ;
Wang-Gillam, Andrea ;
Li, Chung-Pin ;
Bodoky, Gyorgy ;
Dean, Andrew P. ;
Shan, Yan-Shen ;
Jameson, Gayle S. ;
Macarulla, Teresa ;
Lee, Kyung-Hun ;
Cunningham, David ;
Blanc, Jean-Frederic ;
Chiu, Chang-Fang ;
Schwartsmann, Gilberto ;
Braiteh, Fadi S. ;
Mamlouk, Khalid ;
Belanger, Bruce ;
de Jong, Floris A. ;
Hubner, Richard A. .
EUROPEAN JOURNAL OF CANCER, 2018, 105 :71-78
[15]   The in vitro and in vivo toxicity of graphene quantum dots [J].
Chong, Yu ;
Ma, Yufei ;
Shen, He ;
Tu, Xiaolong ;
Zhou, Xuan ;
Xu, Jiaying ;
Dai, Jianwu ;
Fan, Saijun ;
Zhang, Zhijun .
BIOMATERIALS, 2014, 35 (19) :5041-5048
[16]   Comprehensive Effects of Near-Infrared Multifunctional Liposomes on Cancer Cells [J].
Deng, Yiqing ;
Huang, Huaying ;
Chen, Mengxiao ;
Chen, Gang ;
Zou, Wangcai ;
Zhao, Yanqing ;
Zhao, Qiang .
MOLECULES, 2020, 25 (05)
[17]   Quantitative assessment of Zirconium-89 labeled cetuximab using PET/CT imaging in patients with advanced head and neck cancer: a theragnostic approach [J].
Even, Aniek J. G. ;
Hamming-Vrieze, Olga ;
van Elmpt, Wouter ;
Winnepenninckx, Veronique J. L. ;
Heukelom, Jolien ;
Tesselaar, Margot E. T. ;
Vogel, Wouter V. ;
Hoeben, Ann ;
Zegers, Catharina M. L. ;
Vugts, Danielle J. ;
van Dongen, Guus A. M. S. ;
Bartelink, Harry ;
Mottaghy, Felix M. ;
Hoebers, Frank ;
Lambin, Philippe .
ONCOTARGET, 2017, 8 (03) :3870-3880
[18]   Theranostic Magnetic Core-Plasmonic Shell Star Shape Nanoparticle for the Isolation of Targeted Rare Tumor Cells from Whole Blood, Fluorescence Imaging, and Photothermal Destruction of Cancer [J].
Fan, Zhen ;
Senapati, Dulal ;
Singh, Anant Kumar ;
Ray, Paresh Chandra .
MOLECULAR PHARMACEUTICS, 2013, 10 (03) :857-866
[19]   Assessment of 68Ga-PSMA-11 PET Accuracy in Localizing Recurrent Prostate Cancer: A Prospective Single-Arm Clinical Trial [J].
Fendler, Wolfgang P. ;
Calais, Jeremie ;
Eiber, Matthias ;
Flavell, Robert R. ;
Mishoe, Ashley ;
Feng, Felix Y. ;
Nguyen, Hao G. ;
Reiter, Robert E. ;
Rettig, Matthew B. ;
Okamoto, Shozo ;
Emmett, Louise ;
Zacho, Helle D. ;
Ilhan, Harun ;
Wetter, Axel ;
Rischpler, Christoph ;
Schoder, Heiko ;
Burger, Irene A. ;
Gartmann, Jeannine ;
Smith, Raven ;
Small, Eric J. ;
Slavik, Roger ;
Carroll, Peter R. ;
Herrmann, Ken ;
Czernin, Johannes ;
Hope, Thomas A. .
JAMA ONCOLOGY, 2019, 5 (06) :856-863
[20]  
Ferlay J, Global cancer observatory: Cancer today