Publications

Whyte, SS; Karns, R; Min, KW; Cho, JH; Lee, S; Lake, C; Bondoc, A; Yoon, JH; Shin, S. Integrated analysis using ToppMiR uncovers altered miRNA- mRNA regulatory networks in pediatric hepatocellular carcinoma-A pilot study. Cancer reports.. 2023; 6:e1685.

Lee, S; Karns, R; Shin, S. Mechanism of paracrine communications between hepatic progenitor cells and endothelial cells. Cellular Signalling. 2022; 100:110458.

Gulati, R; Johnston, M; Rivas, M; Cast, A; Kumbaji, M; Hanlon, MA; Lee, S; Zhou, P; Lake, C; Schepers, E; Geller, J; Tiao, G; Shin, S; Timchenko, N. β-catenin cancer-enhancing genomic regions axis is involved in the development of fibrolamellar hepatocellular carcinoma. Hepatology Communications. 2022; 6:2950-2963.

Holczbauer, Á; Wangensteen, KJ; Shin, S. Cellular origins of regenerating liver and hepatocellular carcinoma. JHEP Reports. 2022; 4:100416.

Lee, S; Zhou, P; Whyte, S; Shin, S. Adeno-Associated Virus Serotype 8-Mediated Genetic Labeling of Cholangiocytes in the Neonatal Murine Liver. Pharmaceutics. 2020; 12:E351.

Lee, S; Zhou, P; Gupta, A; Shin, S. Reactive Ductules Are Associated With Angiogenesis and Tumor Cell Proliferation in Pediatric Liver Cancer. Hepatology Communications. 2018; 2:1199-1212.

Shin, S; Wangensteen, KJ; Teta-Bissett, M; Wang, YJ; Mosleh-Shirazi, E; Buza, EL; Greenbaum, LE; Kaestner, KH. Genetic lineage tracing analysis of the cell of origin of hepatotoxin-induced liver tumors in mice. Hepatology. 2016; 64:1163-1177.

Shin, S; Upadhyay, N; Greenbaum, LE; Kaestner, KH. Ablation of Foxl1-Cre-labeled hepatic progenitor cells and their descendants impairs recovery of mice from liver injury. Gastroenterology. 2015; 148:192-202.e3.

Shin, S; Kaestner, KH. The origin, biology, and therapeutic potential of facultative adult hepatic progenitor cells. Current Topics in Developmental Biology. 2014; 107:269-292.

Shin, S; Walton, G; Aoki, R; Brondell, K; Schug, J; Fox, A; Smirnova, O; Dorrell, C; Erker, L; Chu, AS; Wells, RG; Grompe, M; Greenbaum, LE; Kaestner, KH. Foxl1-Cre-marked adult hepatic progenitors have clonogenic and bilineage differentiation potential. Genes and Development. 2011; 25:1185-1192.

Sackett, SD; Gao, Y; Shin, S; Esterson, YB; Tsingalia, A; Hurtt, RS; Brondell, K; Kaestner, KH; Greenbaum, LE. Foxl1 promotes liver repair following cholestatic injury in mice. Laboratory Investigation. 2009; 89:1387-1396.

Whyte, SS; Karns, R; Min, KW; Cho, JH; Lee, S; Lake, C; Bondoc, A; Yoon, JH; Shin, S. Integrated analysis using ToppMiR uncovers altered miRNA- mRNA regulatory networks in pediatric hepatocellular carcinoma-A pilot study. Cancer reports.. 2023; 6:e1685.

Lee, S; Karns, R; Shin, S. Mechanism of paracrine communications between hepatic progenitor cells and endothelial cells. Cellular Signalling. 2022; 100:110458.

Fan, L; Pan, Q; Yang, W; Koo, SC; Tian, C; Li, L; Lu, M; Brown, A; Ju, B; Easton, J; Bondoc, A; Yang, JJ; Yu, J; Zhu, L. A developmentally prometastatic niche to hepatoblastoma in neonatal liver mediated by the Cxcl1/Cxcr2 axis. Hepatology. 2022; 76:1275-1290.

Gulati, R; Johnston, M; Rivas, M; Cast, A; Kumbaji, M; Hanlon, MA; Lee, S; Zhou, P; Lake, C; Schepers, E; Geller, J; Tiao, G; Shin, S; Timchenko, N. β-catenin cancer-enhancing genomic regions axis is involved in the development of fibrolamellar hepatocellular carcinoma. Hepatology Communications. 2022; 6:2950-2963.

Holczbauer, Á; Wangensteen, KJ; Shin, S. Cellular origins of regenerating liver and hepatocellular carcinoma. JHEP Reports. 2022; 4:100416.

Rivas, M; Johnston, ME; Gulati, R; Kumbaji, M; Margues Aguiar, TF; Timchenko, L; Krepischi, A; Shin, S; Bondoc, A; Tiao, G; Geller, J; Timchenko, N. HDAC1-Dependent Repression of Markers of Hepatocytes and P21 Is Involved in Development of Pediatric Liver Cancer. CMGH Cellular and Molecular Gastroenterology and Hepatology. 2021; 12:1669-1682.

Lee, S; Zhou, P; Gupta, A; Shin, S. Reactive Ductules Are Associated With Angiogenesis and Tumor Cell Proliferation in Pediatric Liver Cancer. Hepatology Communications. 2018; 2:1199-1212.