University of Virginia/Tumor Microenvironment & Angiogenesis Lab; co-EIC @ Angiogenesis

Joined September 2016
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DrewDudleyLab retweeted
Components of normal tissue architecture maintain structure ( fxn) & serve as barriers to tumor progression…but how? We report a 🧩 in our new preprint. Congrats to 1st author @kathrinaonate & thx to collabs @MSKCancerCenter @OHSUKnight @StanfordMed! 1/ biorxiv.org/content/10.1101/…
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DrewDudleyLab retweeted
12/ HUGE shout out to our incredible team led by @KWhately @snisitha Lincy Edatt @Sonal__2405 👏 Fantastic collaborators @DrewDudleyLab @AmelioLab Appreciate the reviewers' efforts and the editorial staff at @JCI_insight who were great! @LC_Initiative_ @NCICancerBio @lcrf_org
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DrewDudleyLab retweeted
Our latest @Nature paper is out! We show that transplanting mitochondria into endothelial cells boosts their ability to form blood vessels in ischemic tissues, with mitophagy as the key mechanism. A potential game-changer for vascular cell therapies. nature.com/articles/s41586-0…
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RT @Aiims1742: More evidence that the liver & pancreas are in active communication in the setting of #PancreaticCancer. There is published…

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DrewDudleyLab retweeted
New resource report in the January 15th issue— Integration of #PanCancer #SingleCell and Spatial Transcriptomics Reveals Stromal Cell Features and Therapeutic Targets in Tumor Microenvironment, by Yanhua Du et al. bit.ly/3S8d3j5
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DrewDudleyLab retweeted
It has been a long journey but our perspective "Linking cell mechanical memory and cancer metastasis" is finally out! Many thanks to my co-authors, my mentor @RogerDKamm1, and the incredible team of @NatureRevCancer for contributing to bringing this article to light.
18 Jan 2024
🔥 Hot off the press 🔥 We are excited to share our @SpringerNature @NatureRevCancer perspective on the role of cell mechanical memory in cancer metastasis, led by @MITdeptofBE postdoc @Elena_Cambria! Link: rdcu.be/dwlLA
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DrewDudleyLab retweeted
My emotional COI here is taller than the Burj Khalifa. With that disclosure: nature.com/articles/s41587-0… behold beautiful work by the brilliant @JRo_Hamilton @doudna_lab @igisci on what I personally think will be THE paradigm for immune system genome editing for both oncology and other disease indications.
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DrewDudleyLab retweeted
Thanks for including me on this wonderful paper @lab_marine, examining the melanoma cell states that confer intrinsic resistance to immunotherapies. sciencedirect.com/science/ar… @CellCellPress @yalederm @YaleMed
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RT @EricTopol: While not adequately acknowledged, the dysregulated extracellular matrix plays a pivotal role in cancer. Here's a new, brill…
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Nice work from our recent MD/PhD student who shows how melanoma cells travel along blood vessels within the brain microenvironment. Congrats to Sarah! nature.com/articles/s41416-0…

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DrewDudleyLab retweeted
New #OpenAccess @trendscancer review from @ErezNeta @LMonteran @YaelZait It’s all about the base: stromal cells are central orchestrators of metastasis cell.com/trends/cancer/fullt… The trinity of fibroblasts, osteoblasts and astrocytes play pivotal roles in each step of the metastatic cascade in their respective organ sites. This review summarizes them wonderfully - pay special attention to the tables that highlights the evidence for each of the steps of the metastatic process (including therapy resistance) across different tumors subdivided by the three host cell types.
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DrewDudleyLab retweeted
Temporal genomic analysis of melanoma rejection identifies regulators of tumor immune evasion biorxiv.org/cgi/content/shor… #biorxiv_cancer

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DrewDudleyLab retweeted
'Cancer-associated fibroblasts actively compress cancer cells and modulate mechanotransduction' nature.com/articles/s41467-0…
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DrewDudleyLab retweeted
ICYMI: Spatial Positioning and Matrix Programs of Cancer-Associated Fibroblasts Promote T-cell Exclusion in Human Lung Tumors by @HeleneSalmon featuring #TumourLandscape23 speaker @MiriamMerad-out in @CD_AACR doi.org/10.1158/2159-8290.CD…
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DrewDudleyLab retweeted
Our new #preprint is out on #bioRxiv! Applying #spatial transcriptomics at subcellular resolution to 95 ovarian #cancer tumors, followed by high content #CRISPR screens, we identified immune evasion drivers at the genetic, cellular, and tissue level doi.org/10.1101/2023.10.16.5… (1/13)
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DrewDudleyLab retweeted
10 Oct 2023
Cancer cell-intrinsic mechanisms driving acquired immune tolerance: Immune evasion is a hallmark of cancer. Ghorani, Swanton, and Quezada discuss the mechanisms whereby cancer cells avoid immune recognition and destruction and present a conceptual framework that places these immune evasion mechanisms in the context of pathways used to maintain physiological tolerance to self. authors.elsevier.com/sd/arti…
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