Bioengineered miR-148a-3p suppresses glycolysis and amino acid homeostasis in hepatocellular carcinoma cells by regulating multiple solute carrier transportersOA
Bioengineered miR-148a-3p suppresses glycolysis and amino acid homeostasis in hepatocellular carcinoma cells by regulating multiple solute carrier transporters
Su Guan;Xin Li;Yimei Wang;Mei-Juan Tu;Ai-Ming Yu
Department of Biochemistry and Molecular Medicine,University of California at Davis,School of Medicine,Sacramento,CA,USADepartment of Biochemistry and Molecular Medicine,University of California at Davis,School of Medicine,Sacramento,CA,USADepartment of Biochemistry and Molecular Medicine,University of California at Davis,School of Medicine,Sacramento,CA,USADepartment of Biochemistry and Molecular Medicine,University of California at Davis,School of Medicine,Sacramento,CA,USADepartment of Biochemistry and Molecular Medicine,University of California at Davis,School of Medicine,Sacramento,CA,USA
Hepatocellular carcinoma(HCC)MicroRNA-148a-3p(miR-148a-3p)Cell metabolismGlucoseAmino acids
Hepatocellular carcinoma(HCC)MicroRNA-148a-3p(miR-148a-3p)Cell metabolismGlucoseAmino acids
《肝脏研究(英文)》 2026 (2)
166-176,11
This work was supported by the National Cancer Institute(R01CA291771 and R01CA225958)and National Institute of Gen-eral Medical Sciences(R35GM140835),National Institutes of Health(NIH).The authors appreciate the access to the Molecular Pharmacology Shared Resources funded by the UC Davis Comprehensive Cancer Center Support Grant awarded by the Na-tional Cancer Institute(P30CA093373),NIH.
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