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Alan T Tang, MD PhD
Alan T Tang, MD PhD
Verified email at pennmedicine.upenn.edu
Title
Cited by
Cited by
Year
Cerebral cavernous malformations arise from endothelial gain of MEKK3–KLF2/4 signalling
Z Zhou, AT Tang, WY Wong, S Bamezai, LM Goddard, R Shenkar, S Zhou, ...
Nature 532 (7597), 122-126, 2016
2842016
Endothelial TLR4 and the microbiome drive cerebral cavernous malformations
AT Tang, JP Choi, JJ Kotzin, Y Yang, CC Hong, N Hobson, R Girard, ...
Nature 545 (7654), 305-310, 2017
2822017
PIK3CA and CCM mutations fuel cavernomas through a cancer-like mechanism
AA Ren, DA Snellings, YS Su, CC Hong, M Castro, AT Tang, MR Detter, ...
Nature 594 (7862), 271-276, 2021
1202021
Familial cerebral cavernous malformations
A Zafar, SA Quadri, M Farooqui, A Ikram, M Robinson, BL Hart, ...
Stroke 50 (5), 1294-1301, 2019
1092019
Distinct cellular roles for PDCD10 define a gut-brain axis in cerebral cavernous malformation
AT Tang, KR Sullivan, CC Hong, LM Goddard, A Mahadevan, A Ren, ...
Science translational medicine 11 (520), eaaw3521, 2019
622019
Vascular anomalies caused by abnormal signaling within endothelial cells: targets for novel therapies
HL Nguyen, LM Boon, M Vikkula
Seminars in interventional radiology 34 (03), 233-238, 2017
582017
Inhibition of carcinoma cell motility by epoxyeicosatrienoic acid (EET) antagonists
K Nithipatikom, DM Brody, AT Tang, VL Manthati, JR Falck, CL Williams, ...
Cancer science 101 (12), 2629-2636, 2010
542010
Comprehensive transcriptome analysis of cerebral cavernous malformation across multiple species and genotypes
J Koskimäki, R Girard, Y Li, L Saadat, HA Zeineddine, R Lightle, T Moore, ...
JCI insight 4 (3), 2019
442019
ROCK1 feedback regulation of the upstream small GTPase RhoA
AT Tang, WB Campbell, K Nithipatikom
Cellular signalling 24 (7), 1375-1380, 2012
432012
Cannabinoid receptor type 1 (CB1) activation inhibits small GTPase RhoA activity and regulates motility of prostate carcinoma cells
K Nithipatikom, AD Gomez-Granados, AT Tang, AW Pfeiffer, CL Williams, ...
Endocrinology 153 (1), 29-41, 2012
432012
Genetic blockade of lymphangiogenesis does not impair cardiac function after myocardial infarction
TCS Keller, L Lim, SV Shewale, K McDaid, Í Martí-Pàmies, AT Tang, ...
The Journal of Clinical Investigation 131 (20), 2021
352021
Cerebral cavernous malformations are driven by ADAMTS5 proteolysis of versican
CC Hong, AT Tang, MR Detter, JP Choi, R Wang, X Yang, AA Guerrero, ...
Journal of Experimental Medicine 217 (10), e20200140, 2020
312020
Permissive microbiome characterizes human subjects with a neurovascular disease cavernous angioma
SP Polster, A Sharma, C Tanes, AT Tang, P Mericko, Y Cao, ...
Nature communications 11 (1), 2659, 2020
302020
Micro-computed tomography in murine models of cerebral cavernous malformations as a paradigm for brain disease
R Girard, HA Zeineddine, C Orsbon, H Tan, T Moore, N Hobson, ...
Journal of neuroscience methods 271, 14-24, 2016
292016
Transcriptome clarifies mechanisms of lesion genesis versus progression in models of Ccm3 cerebral cavernous malformations
J Koskimäki, D Zhang, Y Li, L Saadat, T Moore, R Lightle, SP Polster, ...
Acta Neuropathologica Communications 7, 1-15, 2019
282019
Phenotypic characterization of murine models of cerebral cavernous malformations
HA Zeineddine, R Girard, L Saadat, L Shen, R Lightle, T Moore, Y Cao, ...
Laboratory Investigation 99 (3), 319-330, 2019
242019
Cerebral cavernous malformations arise independent of the heart of glass receptor
X Zheng, F Riant, F Bergametti, CD Myers, AT Tang, B Kleaveland, W Pan, ...
Stroke 45 (5), 1505-1509, 2014
222014
RGS10 shapes the hemostatic response to injury through its differential effects on intracellular signaling by platelet agonists
P Ma, S Gupta, S Sampietro, D DeHelian, V Tutwiler, A Tang, TJ Stalker, ...
Blood Advances 2 (16), 2145-2155, 2018
192018
Mouse placenta fetal macrophages arise from endothelial cells outside the placenta
X Chen, AT Tang, J Tober, J Yang, NA Leu, S Sterling, M Chen, Y Yang, ...
Developmental cell 57 (23), 2652-2660. e3, 2022
62022
SARS-CoV-2 infection of olfactory epithelial cells and neurons drives acute lung injury and lethal COVID-19 in mice
AT Tang, DW Buchholz, KM Szigety, B Imbhiaka, S Gao, M Frankfurter, ...
bioRxiv, 2021.12. 04.471245, 2021
62021
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