aPKC controls endothelial growth by modulating c-Myc via FoxO1 DNA

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Frontiers MicroRNA Signature in Melanoma: Biomarkers and Therapeutic Targets

Numerical evaluation reveals the effect of branching morphology on vessel transport properties during angiogenesis

aPKC controls endothelial growth by modulating c-Myc via FoxO1 DNA-binding ability

Insights into the Role of Oxidative Stress in Hepatocellular Carcinoma Development

Human VE-Cadherin Antibody AF938: R&D Systems

Frontiers SGK1 in Human Cancer: Emerging Roles and Mechanisms

Publikationen & CV

Protein kinase C-iota-mediated glycolysis promotes non-small-cell lung

Mouse Podocalyxin Antibody AF1556: R&D Systems

Positive and negative feedback mechanisms controlling tip/stalk cell identity during sprouting angiogenesis

The apicobasal polarity kinase aPKC functions as a nuclear determinant and regulates cell proliferation and fate during Xenopus primary neurogenesis. - Abstract - Europe PMC

aPKC controls endothelial growth by modulating c-Myc via FoxO1 DNA-binding ability

aPKC and miR-34c control angiosarcoma proliferation. a Western blot

Loss of cell polarity regulators initiates pyroptosis in trophoblasts at the human maternal fetal interface

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