20 citations
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March 2013 in “Journal of Lipid Research” This study examined the structural and biochemical mechanisms of human lipocalin prostaglandin D synthase, detailing substrate and product binding processes at the catalytic site and suggesting potential for drug delivery targeting hydrophobic molecules.
This study found that targeting peroxisomal dysfunction with catalytic nanozymes enhanced hair follicle regeneration and outperformed minoxidil in promoting hair growth and maintaining efficacy in immunodeficient mice.
May 2024 in “The Journal of Immunology” This study found that in mice, perforin-mediated cytolysis by CD8 T cells is not necessary for the autoimmune attack on hair follicles in alopecia areata, suggesting other mechanisms are responsible for disease progression.
54 citations
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October 2024 in “Nature Communications” In this study, researchers developed a method to control the valence states of Mo in nanozymes, optimizing their activity for ROS-related therapies, particularly acute kidney injury treatment, and enabling real-time monitoring with photoacoustic imaging.
January 2024 in “Research Square (Research Square)” This study reports that adjusting the valence states of Mo in Pluronic F127-coated MoO3-x nanozymes enhances their selective H2O2-related catalytic activity, showing promise in acute kidney injury treatment and enabling real-time monitoring of therapy effectiveness through ROS-responsive photoacoustic imaging.