Adrenergic nerves activate an angio-metabolic switch in prostate cancer AH Zahalka, A Arnal-Estapé, M Maryanovich, F Nakahara, CD Cruz, ... Science 358 (6361), 321-326, 2017 | 408 | 2017 |
Adrenergic nerve degeneration in bone marrow drives aging of the hematopoietic stem cell niche M Maryanovich, AH Zahalka, H Pierce, S Pinho, F Nakahara, N Asada, ... Nature medicine 24 (6), 782-791, 2018 | 325 | 2018 |
Neural regulation of hematopoiesis, inflammation, and cancer M Hanoun, M Maryanovich, A Arnal-Estapé, PS Frenette Neuron 86 (2), 360-373, 2015 | 242 | 2015 |
An MTCH2 pathway repressing mitochondria metabolism regulates haematopoietic stem cell fate M Maryanovich, Y Zaltsman, A Ruggiero, A Goldman, L Shachnai, ... Nature communications 6 (1), 7901, 2015 | 225 | 2015 |
MTCH2/MIMP is a major facilitator of tBID recruitment to mitochondria Y Zaltsman, L Shachnai, N Yivgi-Ohana, M Schwarz, M Maryanovich, ... Nature cell biology 12 (6), 553-562, 2010 | 212 | 2010 |
A ROS rheostat for cell fate regulation M Maryanovich, A Gross Trends in cell biology 23 (3), 129-134, 2013 | 197 | 2013 |
The ATM–BID pathway regulates quiescence and survival of haematopoietic stem cells M Maryanovich, G Oberkovitz, H Niv, L Vorobiyov, Y Zaltsman, O Brenner, ... Nature cell biology 14 (5), 535-541, 2012 | 170 | 2012 |
Engineering a haematopoietic stem cell niche by revitalizing mesenchymal stromal cells F Nakahara, DK Borger, Q Wei, S Pinho, M Maryanovich, AH Zahalka, ... Nature cell biology 21 (5), 560-567, 2019 | 93 | 2019 |
Neural regulation of bone and bone marrow M Maryanovich, S Takeishi, PS Frenette Cold Spring Harbor perspectives in medicine 8 (9), a031344, 2018 | 87 | 2018 |
Niche derived netrin-1 regulates hematopoietic stem cell dormancy via its receptor neogenin-1 S Renders, AF Svendsen, J Panten, N Rama, M Maryanovich, ... Nature communications 12 (1), 608, 2021 | 60 | 2021 |
MAEA is an E3 ubiquitin ligase promoting autophagy and maintenance of haematopoietic stem cells Q Wei, S Pinho, S Dong, H Pierce, H Li, F Nakahara, J Xu, C Xu, ... Nature communications 12 (1), 2522, 2021 | 38 | 2021 |
Clinically actionable strategies for studying neural influences in cancer IE Demir, CM Reyes, W Alrawashdeh, GO Ceyhan, S Deborde, H Friess, ... Cancer Cell 38 (1), 11-14, 2020 | 34 | 2020 |
VCAM1 confers innate immune tolerance on haematopoietic and leukaemic stem cells S Pinho, Q Wei, M Maryanovich, D Zhang, JC Balandrán, H Pierce, ... Nature cell biology 24 (3), 290-298, 2022 | 26 | 2022 |
Future directions in preclinical and translational cancer neuroscience research IE Demir, C Mota Reyes, W Alrawashdeh, GO Ceyhan, S Deborde, ... Nature cancer 1 (11), 1027-1031, 2020 | 25 | 2020 |
T-regulating hair follicle stem cells M Maryanovich, PS Frenette Immunity 46 (6), 979-981, 2017 | 18 | 2017 |
The ATM–BID pathway plays a critical role in the DNA damage response by regulating mitochondria metabolism A Gross, Y Zaltsman, M Maryanovich Cell Death & Differentiation 23 (1), 182-182, 2016 | 15 | 2016 |
Dietary iron restriction protects against vaso-occlusion and organ damage in murine sickle cell disease H Li, JS Kazmi, S Lee, D Zhang, X Gao, M Maryanovich, L Torres, ... Blood 141 (2), 194-199, 2023 | 10 | 2023 |
Nestin+ NG2+ cells form a reserve stem cell population in the mouse prostate M Hanoun, A Arnal-Estapé, M Maryanovich, AH Zahalka, SK Bergren, ... Stem Cell Reports 12 (6), 1201-1211, 2019 | 9 | 2019 |
CD36-mediated fatty acid oxidation in hematopoietic stem cells Is a novel mechanism of emergency hematopoiesis in response to infection M Maryanovich, K Ito Immunometabolism 4 (2), 2022 | 5 | 2022 |
Competitive Bone-marrow Transplantations M Maryanovich, A Gross Bio-protocol 4 (11), e1145-e1145, 2014 | 3 | 2014 |