A cytoderm metabolic labeling AIEgen for rapid detection and intracellular ablation of Mycobacterium tuberculosis
暂无分享,去创建一个
Yuan Luo | Hong Pan | Lintao Cai | Mingbin Zheng | Pengfei Zhang | Deliang Liu | Qianting Yang | M. Liao | Pengfei Zhao | Ting Yin | Lijun Song | Wenchang Zhao | Jianhong Liao | G. Dai | Zhengxun Zhang | Sirui Zheng | Zhuojun He
[1] Heidi Ledford. Rise of drug-resistant tuberculosis is hidden in plain sight , 2022, Nature.
[2] N. Menon,et al. Point-of-care diagnostic tests for tuberculosis disease , 2022, Science Translational Medicine.
[3] D. Sherman,et al. Early alveolar macrophage response and IL-1R-dependent T cell priming determine transmissibility of Mycobacterium tuberculosis strains , 2022, Nature Communications.
[4] Guofeng Li,et al. Cascade‐Targeting Poly(amino acid) Nanoparticles Eliminate Intracellular Bacteria via On‐Site Antibiotic Delivery , 2022, Advanced materials.
[5] Benjamin M. Swarts,et al. Chemical Reporters for Bacterial Glycans: Development and Applications. , 2021, Chemical reviews.
[6] D. Ding,et al. Aggregation-induced emission luminogens for image-guided surgery in non-human primates , 2021, Nature Communications.
[7] B. Tang,et al. Bright Bacterium for Hypoxia‐Tolerant Photodynamic Therapy Against Orthotopic Colon Tumors by an Interventional Method , 2021, Advanced science.
[8] B. Tang,et al. Good Steel Used in the Blade: Well‐Tailored Type‐I Photosensitizers with Aggregation‐Induced Emission Characteristics for Precise Nuclear Targeting Photodynamic Therapy , 2021, Advanced science.
[9] M. Bogyo,et al. Chemiluminescent Protease Probe for Rapid, Sensitive, and Inexpensive Detection of Live Mycobacterium tuberculosis , 2021, ACS central science.
[10] S. Stanley,et al. The Innate Immune Response to Mycobacterium tuberculosis Infection. , 2021, Annual review of immunology.
[11] M. M. van der Zalm,et al. Quantifying the global number of tuberculosis survivors: a modelling study. , 2021, The Lancet. Infectious diseases.
[12] Xing-jie Liang,et al. Intracellular aggregations of biological elements: From simple to complex , 2021, Aggregate.
[13] M. Tsao,et al. Early innate and adaptive immune perturbations determine long-term severity of chronic virus and Mycobacterium tuberculosis coinfection. , 2021, Immunity.
[14] Michael Y. Gerner,et al. Ultra-low Dose Aerosol Infection of Mice with Mycobacterium tuberculosis More Closely Models Human Tuberculosis. , 2020, Cell host & microbe.
[15] Guping Tang,et al. AIEgen-Lipid Conjugate for Rapid Labeling of Neutrophils and Monitoring of Their Behavior. , 2020, Angewandte Chemie.
[16] A. Koster,et al. Bioorthogonal Correlative Light-Electron Microscopy of Mycobacterium tuberculosis in Macrophages Reveals the Effect of Antituberculosis Drugs on Subcellular Bacterial Distribution , 2020, ACS central science.
[17] B. Tang,et al. Highly efficient phototheranostics of macrophage-engulfed Gram-positive bacteria using a NIR luminogen with aggregation-induced emission characteristics. , 2020, Biomaterials.
[18] M. Pai,et al. Advances in Molecular Diagnosis of Tuberculosis , 2020, Journal of Clinical Microbiology.
[19] C. Liu,et al. New insights into the evasion of host innate immunity by Mycobacterium tuberculosis , 2020, Cellular & Molecular Immunology.
[20] S. Lawn,et al. Systematic or Test-Guided Treatment for Tuberculosis in HIV-Infected Adults. , 2020, The New England journal of medicine.
[21] K. Beatty. Fluorescent probes for investigating peptidoglycan biosynthesis in mycobacteria. , 2020, Current opinion in chemical biology.
[22] Yun-Xin Fu,et al. Mycobacterium tuberculosis clinical isolates carry mutational signatures of host immune environments , 2020, Science Advances.
[23] J. Vieira,et al. Mycobacterium tuberculosis associated with severe tuberculosis evades cytosolic surveillance systems and modulates IL-1β production , 2020, Nature Communications.
[24] M. Niederweis,et al. Photoactivatable glycolipid probes for identifying mycolate-protein interactions in live mycobacteria. , 2020, Journal of the American Chemical Society.
[25] Kenry,et al. One-step in vivo metabolic labeling as a theranostic approach for overcoming drug-resistant bacterial infections , 2020, Materials Horizons.
[26] Ian D. Williams,et al. Highly efficient singlet oxygen generation, two-photon photodynamic therapy and melanoma ablation by rationally designed mitochondria-specific near-infrared AIEgens , 2020, Chemical science.
[27] J. Grenier,et al. Dual RNA-Seq of Mtb-Infected Macrophages In Vivo Reveals Ontologically Distinct Host-Pathogen Interactions , 2020, Cell reports.
[28] Z. Rao,et al. Host-mediated ubiquitination of a mycobacterial protein suppresses immunity , 2020, Nature.
[29] Charles L. Dulberger,et al. The mycobacterial cell envelope — a moving target , 2019, Nature Reviews Microbiology.
[30] Samreen Fatima,et al. Mycobacterium tuberculosis Programs Mesenchymal Stem Cells to Establish Dormancy and Persistence. , 2019, The Journal of clinical investigation.
[31] S. Mobashery,et al. Constructing and deconstructing the bacterial cell wall , 2019, Protein science : a publication of the Protein Society.
[32] W. Vollmer,et al. Cell wall peptidoglycan in Mycobacterium tuberculosis: An Achilles’ heel for the TB-causing pathogen , 2019, FEMS microbiology reviews.
[33] M. T. Gler,et al. Lipoarabinomannan in sputum to detect bacterial load and treatment response in patients with pulmonary tuberculosis: Analytic validation and evaluation in two cohorts , 2019, PLoS medicine.
[34] A. Rocker,et al. The ng_ζ1 toxin of the gonococcal epsilon/zeta toxin/antitoxin system drains precursors for cell wall synthesis , 2018, Nature Communications.
[35] F. Gao,et al. Platelet membrane coating coupled with solar irradiation endows a photodynamic nanosystem with both improved antitumor efficacy and undetectable skin damage. , 2018, Biomaterials.
[36] J. Theriot,et al. Visualization of mycobacterial membrane dynamics in live cells , 2017, Journal of the American Chemical Society.
[37] B. Meibohm,et al. Aminomethyl spectinomycins as therapeutics for drug-resistant respiratory tract and sexually transmitted bacterial infections , 2015, Science Translational Medicine.
[38] Vijay Kumar Sharma,et al. Coaxial electrohydrodynamic atomization: microparticles for drug delivery applications. , 2015, Journal of controlled release : official journal of the Controlled Release Society.
[39] Eduardo Gotuzzo,et al. Feasibility, diagnostic accuracy, and effectiveness of decentralised use of the Xpert MTB/RIF test for diagnosis of tuberculosis and multidrug resistance: a multicentre implementation study , 2011, The Lancet.
[40] J. Lambert,et al. Lifetime and diffusion of singlet oxygen in a cell. , 2005, The journal of physical chemistry. B.