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Communications Biology|January 25, 2024
A secretory protein neudesin regulates splenic red pulp macrophages in erythrophagocytosis and iron recyclingYoshiaki Nakayama, Yuki Masuda, Takehiro Mukae, et al.Glycobiology|December 31, 2004
Structural characterization of the epitopes of the monoclonal antibodies 473HD, CS-56, and MO-225 specific for chondroitin sulfate D-type using the oligosaccharide libraryYumi Ito, Megumi Hikino, Yuki Yajima, et al.The Journal of Biological Chemistry|May 15, 2007
Functions of chondroitin sulfate/dermatan sulfate chains in brain development. Critical roles of E and iE disaccharide units recognized by a single chain antibody GD3G7Anurag Purushothaman, Junko Fukuda, Shuji Mizumoto, et al.Communications Biology|July 19, 2022
Genome-wide CRISPR screen for HSV-1 host factors reveals PAPSS1 contributes to heparan sulfate synthesisTakeshi Suzuki, Yoshitaka Sato, Yusuke Okuno, et al.Scientific Reports|August 11, 2023
Genetic manipulation resulting in decreased donor chondroitin sulfate synthesis mitigates hepatic GVHD via suppression of T cell activitySuguru Tamura, Hajime Ishiguro, Tatsuya Suwabe, et al.Experimental Hematology|February 14, 2021
Distinct effects of chondroitin sulfate on hematopoietic cells and the stromal microenvironment in bone marrow hematopoiesisTakayuki Katagiri, Shun Uemura, Takashi Ushiki, et al.The European Journal of Neuroscience|February 19, 2008
Heparan sulphate proteoglycans in glia and in the normal and injured CNS: expression of sulphotransferases and changes in sulphationFrancesca Properzi, Rachel Lin, Jessica Kwok, et al.The FEBS Journal|April 25, 2026
Neudesin modulates IGF1 and insulin signaling pathways by regulating the surface expression of IGF1R through a conserved WPE motifYoshiaki Nakayama, Motohiro Nonaka, Yuki Masuda, et al.Iscience|April 10, 2024
Reduced chondroitin sulfate content prevents diabetic neuropathy through transforming growth factor-β signaling suppressionHajime Ishiguro, Takashi Ushiki, Atsuko Honda, et al.Pageof 4