The dual role of reactive oxygen and nitrogen species(RONS)in physiological and pathological processes in biological systems has been widely reported.It has been recently suggested that the regulation of RONS levels u...The dual role of reactive oxygen and nitrogen species(RONS)in physiological and pathological processes in biological systems has been widely reported.It has been recently suggested that the regulation of RONS levels under physiological and pathological conditions is a potential therapy to promote health and treat diseases,respectively.Injectable hydrogels have been emerging as promising biomaterials for RONS-related biomedical applications owing to their excellent biocompatibility,three-dimensional and extracellular matrix-mimicking structures,tunable properties and easy functionalization.These hydrogels have been developed as advanced injectable platforms for locally generating or scavenging RONS,depending on the specific conditions of the target disease.In this review article,the design principles and mechanism by which RONS are generated/scavenged from hydrogels are outlined alongside a discussion of their in vitro and in vivo evaluations.Additionally,we highlight the advantages and recent developments of these injectable RONS-controlling hydrogels for regenerativemedicines and tissue engineering applications.展开更多
Oxidative stress leads to chondrocyte apoptosis and extracellular matrix(ECM)degradation,thus contributing to the pathogenesis of osteoarthritis(OA).Herein,curcumin with remarkable antioxidant and anti-inflammatory ac...Oxidative stress leads to chondrocyte apoptosis and extracellular matrix(ECM)degradation,thus contributing to the pathogenesis of osteoarthritis(OA).Herein,curcumin with remarkable antioxidant and anti-inflammatory activities has been employed as an organic ligand to coordinate ferric ions for enhancing the water-solubility and biocompatibility of natural product curcumin.The obtained iron-curcumin-based coordination nanoparticles(Fe-Cur NPs)exhibit great water-solubility and efficient reactive oxygen/nitrogen species(ROS/RNS)scavenging ability.In vitro chondrocyte evaluation experiments indicated that the intracellular ROS/RNS induced by interleukin 1β(IL-1β)could be efficiently scavenged by these Fe-Cur NPs and oxidative-stressinduced cell death could be preserved as well.In addition,post intra-articular(i.a.)injection into OA rat joints,Fe-Cur NPs could greatly inhibit OA progression via activating the nuclear factor-erythroid 2 related factor-2(Nrf2)and inhibiting nod-like receptor protein-3(NLRP3)inflammasome activation in primary rat chondrocytes,as well as decrease the production of matrix degrading proteases and other inflammatory mediators.The efficient antioxidation and anti-inflammation performance of Fe-Cur NPs endow them as a promising nanoplatform for treatment of various inflammatory diseases,and more detailed researches will be conducted in the future.展开更多
The title compound biaquo (1.12-diaza-3, 4 : 9 . 10-dibenzos-5, 8-dioxacyclopentadecane-N-acetate) copper nitrate dihydrate. [Cu (C21H25O4N2) ( H2O)2].NO3·2H2O, Mr= 567. 05 . has been prepared. It crystallizes in...The title compound biaquo (1.12-diaza-3, 4 : 9 . 10-dibenzos-5, 8-dioxacyclopentadecane-N-acetate) copper nitrate dihydrate. [Cu (C21H25O4N2) ( H2O)2].NO3·2H2O, Mr= 567. 05 . has been prepared. It crystallizes in the monoclinic system. space group P21/a with a 12. 302(4) - b 13. 244(4), c= 15. 774(6)A . g=98. 59', V 2541 (l)\, Z 4. A(MoKα) = 0. 71069 A . D. l. 48 gcm-3. The structure was solved by direct methods with the final R 0. 060, R. 0. 081 for 3305observed reflections (I> 3a (I) ). The copper atom is surrounded by two nitrogen atoms and one oxygen atom from the carboxyl of the ligand and two oxygen atoms of coordinated water in a distorted square pyramidal arrangement. However, the two'ether oxygen atoms of the macrocyclic ligand are uncoordinated.展开更多
基金supported by a grant from Priority Research Centers Program(2019R1A6A1A11051471)funded by the National Research Foundation of Korea(NRF)and Korea Medical Device Development Fund grant funded by the Korea government(the Ministry of Science and ICT,the Ministry of Trade,Industry and Energy,the Ministry of Health&Welfare and the Ministry of Food and Drug Safety)(Project Number:RS-2020-KD000033)Korea Evaluation Institute of Industrial Technology(KEIT 20018560,NTIS 1415180625)funded by the Ministry of Trade,Industry&Energy(MOTIE,Korea).
文摘The dual role of reactive oxygen and nitrogen species(RONS)in physiological and pathological processes in biological systems has been widely reported.It has been recently suggested that the regulation of RONS levels under physiological and pathological conditions is a potential therapy to promote health and treat diseases,respectively.Injectable hydrogels have been emerging as promising biomaterials for RONS-related biomedical applications owing to their excellent biocompatibility,three-dimensional and extracellular matrix-mimicking structures,tunable properties and easy functionalization.These hydrogels have been developed as advanced injectable platforms for locally generating or scavenging RONS,depending on the specific conditions of the target disease.In this review article,the design principles and mechanism by which RONS are generated/scavenged from hydrogels are outlined alongside a discussion of their in vitro and in vivo evaluations.Additionally,we highlight the advantages and recent developments of these injectable RONS-controlling hydrogels for regenerativemedicines and tissue engineering applications.
基金This research was supported by the National Research Program of China(No.2016YFA0201200)the National Natural Science Foundation of China(Nos.U20A20254 and 52072253)+2 种基金the China Postdoctoral Science Foundation(No.2021TQ0229)the Collaborative Innovation Center of Suzhou Nano Science and Technology,the Preponderant Discipline Supporting Project of the Second Affiliated Hospital of Soochow University(No.XKTJXK202003)the Suzhou Special Foundation for the Key Diseases Diagnosis and Treatment(Nos.LCZX201904 and LCZX201708).
文摘Oxidative stress leads to chondrocyte apoptosis and extracellular matrix(ECM)degradation,thus contributing to the pathogenesis of osteoarthritis(OA).Herein,curcumin with remarkable antioxidant and anti-inflammatory activities has been employed as an organic ligand to coordinate ferric ions for enhancing the water-solubility and biocompatibility of natural product curcumin.The obtained iron-curcumin-based coordination nanoparticles(Fe-Cur NPs)exhibit great water-solubility and efficient reactive oxygen/nitrogen species(ROS/RNS)scavenging ability.In vitro chondrocyte evaluation experiments indicated that the intracellular ROS/RNS induced by interleukin 1β(IL-1β)could be efficiently scavenged by these Fe-Cur NPs and oxidative-stressinduced cell death could be preserved as well.In addition,post intra-articular(i.a.)injection into OA rat joints,Fe-Cur NPs could greatly inhibit OA progression via activating the nuclear factor-erythroid 2 related factor-2(Nrf2)and inhibiting nod-like receptor protein-3(NLRP3)inflammasome activation in primary rat chondrocytes,as well as decrease the production of matrix degrading proteases and other inflammatory mediators.The efficient antioxidation and anti-inflammation performance of Fe-Cur NPs endow them as a promising nanoplatform for treatment of various inflammatory diseases,and more detailed researches will be conducted in the future.
文摘The title compound biaquo (1.12-diaza-3, 4 : 9 . 10-dibenzos-5, 8-dioxacyclopentadecane-N-acetate) copper nitrate dihydrate. [Cu (C21H25O4N2) ( H2O)2].NO3·2H2O, Mr= 567. 05 . has been prepared. It crystallizes in the monoclinic system. space group P21/a with a 12. 302(4) - b 13. 244(4), c= 15. 774(6)A . g=98. 59', V 2541 (l)\, Z 4. A(MoKα) = 0. 71069 A . D. l. 48 gcm-3. The structure was solved by direct methods with the final R 0. 060, R. 0. 081 for 3305observed reflections (I> 3a (I) ). The copper atom is surrounded by two nitrogen atoms and one oxygen atom from the carboxyl of the ligand and two oxygen atoms of coordinated water in a distorted square pyramidal arrangement. However, the two'ether oxygen atoms of the macrocyclic ligand are uncoordinated.