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Rongyu Shi, Leiming Wang, Chengcheng Zhong
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Activation of the HIF prolyl hydroxylase by the iron chaperones PCBP1 and PCBP2
10.1016/j.cmet.2011.08.015 · doi-reference
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10.1038/nrc1187 · doi-reference
Genomic and biochemical insights into the specificity of ETS transcription factors
10.1146/annurev.biochem.79.081507.103945 · doi-reference
Transcriptional control of endothelial cell development
10.1016/j.devcel.2009.01.014 · doi-reference
The role of PLVAP in endothelial cells
10.1007/s00441-023-03741-1 · doi-reference
PV-1 is a component of the fenestral and stomatal diaphragms in fenestrated endothelia
10.1073/pnas.96.23.13203 · doi-reference
Single-cell dissection of the multicellular ecosystem and molecular features underlying microvascular invasion in HCC
10.1097/hep.0000000000000673 · doi-reference
SCANPY: large-scale single-cell gene expression data analysis
10.1186/s13059-017-1382-0 · doi-reference
Single-cell landscape of the ecosystem in early-relapse hepatocellular carcinoma
10.1016/j.cell.2020.11.041 · doi-reference
Landscape and dynamics of single immune cells in hepatocellular carcinoma
10.1016/j.cell.2019.10.003 · doi-reference
Eleven grand challenges in single-cell data science
10.1186/s13059-020-1926-6 · doi-reference
mRNA-Seq whole-transcriptome analysis of a single cell
10.1038/nmeth.1315 · doi-reference
Scara5 is a ferritin receptor mediating non-transferrin iron delivery
10.1016/j.devcel.2008.12.002 · doi-reference
Dysregulation of iron metabolism in cancer stem cells
10.1016/j.freeradbiomed.2018.07.015 · doi-reference
Recent molecular discoveries in angiogenesis and antiangiogenic therapies in cancer
10.1172/jci70212 · doi-reference
Molecular regulation of vessel maturation
10.1038/nm0603-685 · doi-reference
An integrated gene expression landscape profiling approach to identify lung tumor endothelial cell heterogeneity and angiogenic candidates
10.1016/j.ccell.2019.12.001 · doi-reference
The structure of the vascular network of tumors
10.1016/j.canlet.2006.06.007 · doi-reference
Microenvironmental regulation of tumour angiogenesis
10.1038/nrc.2017.51 · doi-reference
Basic and therapeutic aspects of angiogenesis
10.1016/j.cell.2011.08.039 · doi-reference
The role of ferroptosis in endothelial cell dysfunction
10.1080/15384101.2022.2079054 · doi-reference
The activation of endothelial cells relies on a ferroptosis-like mechanism: novel perspectives in management of angiogenesis and cancer therapy
10.3389/fonc.2021.656229 · doi-reference
Iron and cancer: more ore to be mined
10.1038/nrc3495 · doi-reference
Ferroptosis: past, present and future
10.1038/s41419-020-2298-2 · doi-reference
Broadening horizons: the role of ferroptosis in cancer
10.1038/s41571-020-00462-0 · doi-reference
Ferroptosis: a regulated cell death nexus linking metabolism, redox biology, and disease
10.1016/j.cell.2017.09.021 · doi-reference
Ferroptosis: an iron-dependent form of nonapoptotic cell death
10.1016/j.cell.2012.03.042 · doi-reference
Microvascular invasion in patients with hepatocellular carcinoma and its predictable clinicopathological factors
10.1245/s10434-008-9846-9 · doi-reference
Microvascular invasion is a better predictor of tumor recurrence and overall survival following surgical resection for hepatocellular carcinoma compared to the Milan criteria
10.1097/sla.0b013e31821ad884 · doi-reference
Prognostic and Therapeutic Implications of Microvascular Invasion in Hepatocellular Carcinoma
10.1245/s10434-019-07227-9 · doi-reference
A systematic review of microvascular invasion in hepatocellular carcinoma: diagnostic and prognostic variability
10.1245/s10434-012-2513-1 · doi-reference
Hepatocellular carcinoma
10.1016/s0140-6736(22)01200-4 · doi-reference
Hepatocellular carcinoma
10.1016/s0140-6736(18)30010-2 · doi-reference
Hepatocellular carcinoma
10.1038/s41572-020-00240-3 · doi-reference