Mark A. LaBarge, Ph.D.

Affiliations: 
2004 Stanford University, Palo Alto, CA 
Area:
Cell Biology
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"Mark LaBarge"
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SNBCP

Parents

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Helen M. Blau grad student 2004 Stanford
 (Bone marrow-derived myogenesis.)
Mina J. Bissell post-doc (Chemistry Tree)

Collaborators

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DUSTIN E SCHONES collaborator
Parijat Senapati collaborator
BETA: Related publications

Publications

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LaBarge MA, Binder AM. (2025) Tissue specificity of ageing in cancer risk prediction. Nature Reviews. Cancer
Kang H, Hoang DH, Valerio M, et al. (2025) Pharmacological activity of OST-01, a natural product from baccharis coridifolia, on breast cancer cells. Journal of Hematology & Oncology. 18: 16
Angarola BL, Sharma S, Katiyar N, et al. (2024) Comprehensive single-cell aging atlas of healthy mammary tissues reveals shared epigenomic and transcriptomic signatures of aging and cancer. Nature Aging
Sayaman RW, Miyano M, Carlson EG, et al. (2024) Luminal epithelial cells integrate variable responses to aging into stereotypical changes that underlie breast cancer susceptibility. Elife. 13
Lai A, Hinz S, Dong A, et al. (2024) Multi-Zone Visco-Node-Pore Sensing: A Microfluidic Platform for Multi-Frequency Viscoelastic Phenotyping of Single Cells. Advanced Science (Weinheim, Baden-Wurttemberg, Germany). e2406013
Miyano M, LaBarge MA. (2024) ELF5: A Molecular Clock for Breast Aging and Cancer Susceptibility. Cancers. 16
Angarola BL, Sharma S, Katiyar N, et al. (2023) Comprehensive single cell aging atlas of mammary tissues reveals shared epigenomic and transcriptomic signatures of aging and cancer. Biorxiv : the Preprint Server For Biology
Jokela TA, Dane MA, Smith RL, et al. (2023) Functional delineation of the luminal epithelial microenvironment in breast using cell-based screening in combinatorial microenvironments. Cellular Signalling. 110958
Senapati P, Miyano M, Sayaman RW, et al. (2023) Loss of epigenetic suppression of retrotransposons with oncogenic potential in aging mammary luminal epithelial cells. Genome Research
Srivastava V, Hu JL, Garbe JC, et al. (2023) Configurational entropy is an intrinsic driver of tissue structural heterogeneity. Biorxiv : the Preprint Server For Biology
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