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1 Ergebnisse
1
PEG-Capped Ceria–Zirconia Nanoparticles Improved Renal Fibr..:
Eun Kyung Kim
;
Sang-Eun Hong
;
Yi Li
...
doi:10.1021/acsanm.3c05170.s001. , 2024
Link:
https://doi.org/10.1021/acsanm.3c05170.s001
RT Journal T1
PEG-Capped Ceria–Zirconia Nanoparticles Improved Renal Fibrosis In Cellular and Animal Models of Fabry Disease
UL https://suche.suub.uni-bremen.de/peid=base-ftdeakinunifig:oai:figshare.com:article_25003707&Exemplar=1&LAN=DE A1 Eun Kyung Kim A1 Sang-Eun Hong A1 Yi Li A1 Seong-Lan Yu A1 Yun Seok Choi A1 Jaeku Kang A1 Chang Gyo Park A1 Hoi Young Lee A1 Sung-Ki Lee A1 Dong Chul Lee A1 Won Min Hwang A1 Sung-Ro Yun A1 Yohan Park A1 Moon Hyang Park A1 Kuk Ro Yoon A1 Se-Hee Yoon YR 2024 K1 Biochemistry K1 Medicine K1 Cell Biology K1 Genetics K1 Molecular Biology K1 Physiology K1 Marine Biology K1 Hematology K1 Environmental Sciences not elsewhere classified K1 Mathematical Sciences not elsewhere classified K1 Chemical Sciences not elsewhere classified K1 upper signaling pathway K1 smooth muscle actin K1 matrix metallopeptidase 9 K1 linked hereditary disorder K1 gsk3ß signaling pathway K1 decreased fibrous markers K1 causing organ damage K1 tfeb signaling pathway K1 peg – cznps K1 intracellular gb3 reduction K1 chronic kidney injury K1 αgla ) K1 leading K1 enhance autophagy flux K1 stable cellular model K1 demonstrate tfeb ' K1 kidney injury K1 coliv ) K1 autophagy flux K1 mouse model K1 kidney fibrosis K1 cellular model K1 tfeb dephosphorylation K1 successfully created K1 study aims K1 significantly influenced K1 shrna transfection K1 potential therapeutics K1 next assessed K1 crucial component K1 beneficial effect K1 autophagy regulation K1 animal models K1 48 weeks K1 4 weeks K1 10 mg JF doi:10.1021/acsanm.3c05170.s001 LK http://dx.doi.org/https://doi.org/10.1021/acsanm.3c05170.s001 DO https://doi.org/10.1021/acsanm.3c05170.s001 SF ELIB - SuUB Bremen
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