Photoclick Reaction Constructs Glutathione-Responsive Theranostic System for Anti-Tuberculosis

Tuberculosis (TB) is a virulent form of an infectious disease that causes a global burden due to its high infectivity and fatality rate, especially the irrepressible threats of latent infection. Constructing an efficient strategy for the prevention and control of TB is of great significance. Fortuna...

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Main Authors: Judun Zheng, Xun Long, Hao Chen, Zhisheng Ji, Bowen Shu, Rui Yue, Yechun Liao, Shengchao Ma, Kun Qiao, Ying Liu, Yuhui Liao
Format: Article
Language:English
Published: Frontiers Media S.A. 2022-02-01
Series:Frontiers in Molecular Biosciences
Subjects:
Online Access:https://www.frontiersin.org/articles/10.3389/fmolb.2022.845179/full
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author Judun Zheng
Xun Long
Hao Chen
Zhisheng Ji
Bowen Shu
Rui Yue
Yechun Liao
Shengchao Ma
Kun Qiao
Ying Liu
Yuhui Liao
Yuhui Liao
Yuhui Liao
author_facet Judun Zheng
Xun Long
Hao Chen
Zhisheng Ji
Bowen Shu
Rui Yue
Yechun Liao
Shengchao Ma
Kun Qiao
Ying Liu
Yuhui Liao
Yuhui Liao
Yuhui Liao
author_sort Judun Zheng
collection DOAJ
description Tuberculosis (TB) is a virulent form of an infectious disease that causes a global burden due to its high infectivity and fatality rate, especially the irrepressible threats of latent infection. Constructing an efficient strategy for the prevention and control of TB is of great significance. Fortunately, we found that granulomas are endowed with higher reducibility levels possibly caused by internal inflammation and a relatively enclosed microenvironment. Therefore, we developed the first targeted glutathione- (GSH-) responsive theranostic system (RIF@Cy5.5-HA-NG) for tuberculosis with a rifampicin- (RIF-) loaded near-infrared emission carrier, which was constructed by photoclick reaction-actuated hydrophobic-hydrophobic interaction, enabling the early diagnosis of tuberculosis through granulomas-tracking. Furthermore, the loaded rifampicin was released through the dissociation of disulfide bond by the localized GSH in granulomas, realizing the targeted tuberculosis therapy and providing an especially accurate treatment mapping for tuberculosis. Thus, this targeted theranostic strategy for tuberculosis exhibits the potential to realize both granulomas-tracking and anti-infection of tuberculosis.
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spelling doaj.art-83cb326e87694bcb82e81bfe2b84cbaa2022-12-22T00:04:59ZengFrontiers Media S.A.Frontiers in Molecular Biosciences2296-889X2022-02-01910.3389/fmolb.2022.845179845179Photoclick Reaction Constructs Glutathione-Responsive Theranostic System for Anti-TuberculosisJudun Zheng0Xun Long1Hao Chen2Zhisheng Ji3Bowen Shu4Rui Yue5Yechun Liao6Shengchao Ma7Kun Qiao8Ying Liu9Yuhui Liao10Yuhui Liao11Yuhui Liao12Molecular Diagnosis and Treatment Center for Infectious Diseases, Dermatology Hospital, Southern Medical University, Guangzhou, ChinaDepartment of Science and Education, The Third People’s Hospital of Bijie City, Bijie, ChinaDivision of Gastrointestinal Surgery, Department of General Surgery, Nanfang Hospital, Southern Medical University, Guangzhou, ChinaDepartment of Orthopedics, The First Affiliated Hospital of Jinan University, Jinan University, Guangzhou, ChinaMolecular Diagnosis and Treatment Center for Infectious Diseases, Dermatology Hospital, Southern Medical University, Guangzhou, ChinaMolecular Diagnosis and Treatment Center for Infectious Diseases, Dermatology Hospital, Southern Medical University, Guangzhou, ChinaDepartment of Science and Education, The Third People’s Hospital of Bijie City, Bijie, ChinaNHC Key Laboratory of Metabolic Cardiovascular Diseases Research, Ningxia Key Laboratory of Vascular Injury and Repair Research, Ningxia Medical University, Yinchuan, ChinaDepartment of Thoracic Surgery, Shenzhen Third People’s Hospital, Shenzhen, ChinaDepartment of Science and Education, The Third People’s Hospital of Bijie City, Bijie, ChinaMolecular Diagnosis and Treatment Center for Infectious Diseases, Dermatology Hospital, Southern Medical University, Guangzhou, ChinaNHC Key Laboratory of Metabolic Cardiovascular Diseases Research, Ningxia Key Laboratory of Vascular Injury and Repair Research, Ningxia Medical University, Yinchuan, ChinaDepartment of Infectious Disease, The Fifth Affiliated Hospital, Sun Yat-sen University, Guangzhou, ChinaTuberculosis (TB) is a virulent form of an infectious disease that causes a global burden due to its high infectivity and fatality rate, especially the irrepressible threats of latent infection. Constructing an efficient strategy for the prevention and control of TB is of great significance. Fortunately, we found that granulomas are endowed with higher reducibility levels possibly caused by internal inflammation and a relatively enclosed microenvironment. Therefore, we developed the first targeted glutathione- (GSH-) responsive theranostic system (RIF@Cy5.5-HA-NG) for tuberculosis with a rifampicin- (RIF-) loaded near-infrared emission carrier, which was constructed by photoclick reaction-actuated hydrophobic-hydrophobic interaction, enabling the early diagnosis of tuberculosis through granulomas-tracking. Furthermore, the loaded rifampicin was released through the dissociation of disulfide bond by the localized GSH in granulomas, realizing the targeted tuberculosis therapy and providing an especially accurate treatment mapping for tuberculosis. Thus, this targeted theranostic strategy for tuberculosis exhibits the potential to realize both granulomas-tracking and anti-infection of tuberculosis.https://www.frontiersin.org/articles/10.3389/fmolb.2022.845179/fulltuberculosistheranostic systemphotoclick reactionmicroenvironmentglutathione
spellingShingle Judun Zheng
Xun Long
Hao Chen
Zhisheng Ji
Bowen Shu
Rui Yue
Yechun Liao
Shengchao Ma
Kun Qiao
Ying Liu
Yuhui Liao
Yuhui Liao
Yuhui Liao
Photoclick Reaction Constructs Glutathione-Responsive Theranostic System for Anti-Tuberculosis
Frontiers in Molecular Biosciences
tuberculosis
theranostic system
photoclick reaction
microenvironment
glutathione
title Photoclick Reaction Constructs Glutathione-Responsive Theranostic System for Anti-Tuberculosis
title_full Photoclick Reaction Constructs Glutathione-Responsive Theranostic System for Anti-Tuberculosis
title_fullStr Photoclick Reaction Constructs Glutathione-Responsive Theranostic System for Anti-Tuberculosis
title_full_unstemmed Photoclick Reaction Constructs Glutathione-Responsive Theranostic System for Anti-Tuberculosis
title_short Photoclick Reaction Constructs Glutathione-Responsive Theranostic System for Anti-Tuberculosis
title_sort photoclick reaction constructs glutathione responsive theranostic system for anti tuberculosis
topic tuberculosis
theranostic system
photoclick reaction
microenvironment
glutathione
url https://www.frontiersin.org/articles/10.3389/fmolb.2022.845179/full
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