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glutathione electrochemical detection A self-calibration sensor for ultrasensitive of based on metal–organic framework-derived Cu nanoparticles/nitrogen-doped porous carbon composites A copper metal–organic framework-based electrochemical

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glutathione electrochemical detection A self-calibration sensor for ultrasensitive of based on metalorganic framework-derived Cu nanoparticles/nitrogen-doped porous carbon composites A copper metalorganic framework-based electrochemical

Replacement treatment using human adiponectin may help identify therapeutic targets for preventing and treating metabolic diseases, including insulin resistance and type 2 diabetes (194)

glutathione electrochemical detection A self-calibration sensor for ultrasensitive of based on metalorganic framework-derived Cu nanoparticles/nitrogen-doped porous carbon composites A copper metalorganic framework-based electrochemical

This work represents the first demonstration of an MSH-dependent glyoxalase system central to Mtb stress resistance, expanding our understanding of the metabolic-immune regulatory networks governing host-pathogen interactions

glutathione electrochemical detection A self-calibration sensor for ultrasensitive of based on metalorganic framework-derived Cu nanoparticles/nitrogen-doped porous carbon composites A copper metalorganic framework-based electrochemical

doi: 10.2337/db06-0080 73 XuEKumarMZhangYJuWObataTZhangNet al

glutathione electrochemical detection A self-calibration sensor for ultrasensitive of based on metalorganic framework-derived Cu nanoparticles/nitrogen-doped porous carbon composites A copper metalorganic framework-based electrochemical

[Google Scholar] Rabek J, Ranby B

glutathione electrochemical detection A self-calibration sensor for ultrasensitive of based on metalorganic framework-derived Cu nanoparticles/nitrogen-doped porous carbon composites A copper metalorganic framework-based electrochemical

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