Hydrogen sulfide (HS) plays an important role in regulating various pathological processes such as protecting mammalian cell from harmful injuries, promoting tissue regeneration, and regulating the process of various diseases caused by physiological disorders. Studies have revealed that the physiological effects of HS are highly associated with its concentrations. At relatively low concentration, HS shows beneficial functions. However, long-time and high-dose donation of HS would inhibit regular biological process, resulting in cell dysfunction and apoptosis. To regulate the dosage of HS delivery for precision medicine, HS delivery systems with intelligent characteristics were developed and a variety of biocompatibility polymers have been utilized to establish intelligent polymeric HS delivery systems, with the abilities to specifically target the lesions, smartly respond to pathological microenvironments, as well as real-timely monitor HS delivery and lesion conditions by incorporating imaging-capable moieties. In this review, we focus on the design, preparation, and therapeutic applications of intelligent polymeric HS delivery systems in cardiovascular therapy, inflammatory therapy, tissue regenerative therapy, cancer therapy and bacteria-associated therapy. Strategies for precise HS therapies especially imaging-guided HS theranostics are highlighted. Since HS donors with stimuli-responsive characters are vital components for establishing intelligent HS delivery systems, the development of HS donors is also briefly introduced.
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http://dx.doi.org/10.1016/j.bioactmat.2022.03.043 | DOI Listing |
Future Med Chem
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School of Pharmacy, Key Laboratory of Molecular Pharmacology and Drug Evaluation, Yantai University, Yantai, China.
Front Biosci (Landmark Ed)
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Department of Translational Medicine Center, The First Affiliated Hospital of Zhengzhou University, 450052 Zhengzhou, Henan, China.
Front Biosci (Landmark Ed)
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Institute of Translational Medicine, Shanghai University, 200444 Shanghai, China.
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Laboratory of Infectious Diseases, College of Veterinary Medicine, Chungnam National University, Daejeon 34134, Republic of Korea.
Self-assembling ferritin nanoparticle technology is a widely used vaccine development platform for enhancing the efficacy of subunit vaccines by displaying multiple antigens on nanocages. The dengue virus (DENV) envelope domain III (EDIII) protein, the most promising antigen for DENV, has been applied in vaccine development, and it is essential to evaluate the relative immunogenicity of the EDIII protein and EDIII-conjugated ferritin to show the efficiency of the ferritin delivery system compared with EDIII. In this study, we optimized the conditions for the expression of the EDIII protein in , protein purification, and refolding, and these optimization techniques were applied for the purification of EDIII ferritin nanoparticles.
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Division of Plant Pathology, Indian Agricultural Research Institute, New Delhi 110012, India.
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