A systematic review of photodynamic therapy as an antiviral treatment: Potential guidance for dealing with SARS-CoV-2

被引:37
作者
Conrado, Pollyanna C. V. [1 ]
Sakita, Karina M. [1 ]
Arita, Glaucia S. [1 ]
Galinari, Camila B. [1 ]
Goncalves, Renato S. [2 ]
Lopes, Luciana D. G. [1 ]
Lonardoni, Maria V. C. [1 ]
Teixeira, Jorge J. V. [1 ]
Bonfim-Mendonca, Patricia S. [1 ]
Kioshima, Erika S. [1 ]
机构
[1] Univ Estadual Maringa, Dept Anal Clin & Biomed, Maringa, Parana, Brazil
[2] Univ Estadual Maringa, Dept Chem, Maringa, Parana, Brazil
关键词
Photodynamic therapy; Photosensitizers; Photoinactivation; Viruses; SARS-CoV-2; HUMAN-IMMUNODEFICIENCY-VIRUS; INACTIVATION; PHOTOINACTIVATION; PLASMA; PHTHALOCYANINES; AMOTOSALEN; PATHOGENS; CURCUMIN;
D O I
10.1016/j.pdpdt.2021.102221
中图分类号
R73 [肿瘤学];
学科分类号
100214 ;
摘要
Background: SARS-CoV-2, which causes the coronavirus disease (COVID-19), presents high rates of morbidity and mortality around the world. The search to eliminate SARS-CoV-2 is ongoing and urgent. This systematic review seeks to assess whether photodynamic therapy (PDT) could be effective in SARS-CoV-2 inactivation. Methods: The focus question was: Can photodynamic therapy be used as potential guidance for dealing with SARS-CoV-2?". A literature search, according to PRISMA statements, was conducted in the electronic databases PubMed, EMBASE, SCOPUS, Web of Science, LILACS, and Google Scholar. Studies published from January 2004 to June 2020 were analyzed. In vitro and in vivo studies were included that evaluated the effect of PDT mediated by several photosensitizers on RNA and DNA enveloped and non-enveloped viruses. Results: From 27 selected manuscripts, 26 publications used in vitro studies, 24 were exclusively in vitro, and two had in vitro/in vivo parts. Only one analyzed publication was exclusively in vivo. Meta-analysis studies were unfeasible due to heterogeneity of the data. The risk of bias was analyzed in all studies. Conclusion: The in vitro and in vivo studies selected in this systematic review indicated that PDT is capable of photoinactivating enveloped and non-enveloped DNA and RNA viruses, suggesting that PDT can potentially photoinactivate SARS-CoV-2.
引用
收藏
页数:22
相关论文
共 64 条
[51]   Photochemical treatment of plasma with amotosalen and long-wavelength ultraviolet light inactivates pathogens while retaining coagulation function [J].
Singh, Yasmin ;
Sawyer, Lynette S. ;
Pinkoski, Linda S. ;
Dupuis, Kent W. ;
Hsu, Jocelyn C. ;
Lin, Lily ;
Corash, Laurence .
TRANSFUSION, 2006, 46 (07) :1168-1177
[52]   Synthesis of neutral and cationic tripyridylporphyrin-D-galactose conjugates and the photoinactivation of HSV-1 [J].
Tome, Joao P. C. ;
Silva, Eduarda M. P. ;
Pereira, Ana M. V. M. ;
Alonso, Cristina M. A. ;
Faustino, Maria. A. F. ;
Neves, Maria G. P. M. S. ;
Tome, Augusto C. ;
Cavaleiro, Jose A. S. ;
Tavares, Sabina A. P. ;
Duarte, Ricardo R. ;
Caeiro, Maria F. ;
Valdeira, Maria L. .
BIOORGANIC & MEDICINAL CHEMISTRY, 2007, 15 (14) :4705-4713
[53]   Differential sensitivities of pathogens in red cell concentrates to Tri-P(4)-photoinactivation [J].
Trannoy, L. L. ;
Terpstra, F. G. ;
de Korte, D. ;
Lagerberg, J. W. M. ;
Verhoeven, A. J. ;
Brand, A. ;
van Engelenburg, F. A. C. .
VOX SANGUINIS, 2006, 91 (02) :111-118
[54]   Comparative antiviral (HIV) photoactivity of metalized meso-tetraphenylsulfonated porphyrins [J].
Vargas, Franklin ;
Rivas, Carlos ;
Zoltan, Tamara ;
Padron, Liliana ;
Izzo, Carla ;
Lopez, Veronica ;
Gomez, Lubmir ;
Pujol, Flor ;
Rangel, Hector ;
Garzaro, Domingo ;
Fabbro, Rona .
MEDICINAL CHEMISTRY, 2008, 4 (02) :138-145
[55]   A Mechanistic Paradigm for Broad-Spectrum Antivirals that Target Virus-Cell Fusion [J].
Vigant, Frederic ;
Lee, Jihye ;
Hollmann, Axel ;
Tanner, Lukas B. ;
Ataman, Zeynep Akyol ;
Yun, Tatyana ;
Shui, Guanghou ;
Aguilar, Hector C. ;
Zhang, Dong ;
Meriwether, David ;
Roman-Sosa, Gleyder ;
Robinson, Lindsey R. ;
Juelich, Terry L. ;
Buczkowski, Hubert ;
Chou, Sunwen ;
Castanho, Miguel A. R. B. ;
Wolf, Mike C. ;
Smith, Jennifer K. ;
Banyard, Ashley ;
Kielian, Margaret ;
Reddy, Srinivasa ;
Wenk, Markus R. ;
Selke, Matthias ;
Santos, Nuno C. ;
Freiberg, Alexander N. ;
Jung, Michael E. ;
Lee, Benhur .
PLOS PATHOGENS, 2013, 9 (04)
[56]   Human papillomavirus DNA detection-guided ALA-photodynamic therapy for anogenital condyloma acuminata: A report of two cases [J].
Wang, Jingying ;
Li, Songshan ;
Li, Zhijia ;
Li, Junpeng ;
Peng, Xiaoming ;
Li, Shujiao ;
Jiang, Lifen ;
Liu, Hui ;
Zeng, Kang .
PHOTODIAGNOSIS AND PHOTODYNAMIC THERAPY, 2019, 25 :460-462
[57]   Trends and targets in antiviral phototherapy [J].
Wiehe, Arno ;
O'Brien, Jessica M. ;
Senge, Mathias O. .
PHOTOCHEMICAL & PHOTOBIOLOGICAL SCIENCES, 2019, 18 (11) :2565-2612
[58]   Genome Composition and Divergence of the Novel Coronavirus (2019-nCoV) Originating in China [J].
Wu, Aiping ;
Peng, Yousong ;
Huang, Baoying ;
Ding, Xiao ;
Wang, Xianyue ;
Niu, Peihua ;
Meng, Jing ;
Zhu, Zhaozhong ;
Zhang, Zheng ;
Wang, Jiangyuan ;
Sheng, Jie ;
Quan, Lijun ;
Xia, Zanxian ;
Tan, Wenjie ;
Cheng, Genhong ;
Jiang, Taijiao .
CELL HOST & MICROBE, 2020, 27 (03) :325-328
[59]   Virucidal efficacy of treatment with photodynamically activated curcumin on murine norovirus bio-accumulated in oysters [J].
Wu, Juan ;
Hou, Wei ;
Cao, Binbin ;
Zuo, Tao ;
Xue, Changhu ;
Leung, Albert Wingnang ;
Xu, Chuanshan ;
Tang, Qing-Juan .
PHOTODIAGNOSIS AND PHOTODYNAMIC THERAPY, 2015, 12 (03) :385-392
[60]   Hypericin-photodynamic therapy inhibits the growth of adult T-cell leukemia cells through induction of apoptosis and suppression of viral transcription [J].
Xu, Lingling ;
Zhang, Xueqing ;
Cheng, Wenzhao ;
Wang, Yong ;
Yi, Kaining ;
Wang, Zhilong ;
Zhang, Yiling ;
Shao, Linxiang ;
Zhao, Tiejun .
RETROVIROLOGY, 2019, 16 (1)