1.
Gao, X., Xu, C., Asada, N. & & Frenette, P. S. The hematopoietic stem cell specific niche: from embryo to grownup. Advancement 145, dev139691 (2018 ).
Article
Google Scholar
2.
Hoggatt, J., Kfoury, Y. & & Scadden, D. T. Hematopoietic stem cell specific niche in health and illness. Annu. Rev. Pathol 11, 555– 581 (2016 ).
CAS
Article
Google Scholar
3.
Katayama, Y. et al. Signals from the considerate nerve system control hematopoietic stem cell egress from bone marrow. Cell 124, 407– 421 (2006 ).
CAS
Article
Google Scholar
4.
Lucas, D. et al. Chemotherapy-induced bone marrow nerve injury hinders hematopoietic regrowth. Nat. Med(* ). 19, 695– 703 (2013 ).
ADS
CAS
Article
Google Scholar 5.
Maryanovich, M. et al. Adrenergic nerve degeneration in bone marrow drives aging of the hematopoietic stem cell specific niche.
Nat. Med 24, 782– 791 (2018 ).
CAS
Article
Google Scholar 6.
Méndez-Ferrer, S. et al. Mesenchymal and haematopoietic stem cells form a distinct bone marrow specific niche.
Nature 466 , 829– 834 (2010 ).
ADS
Article
Google Scholar 7.
Bensinger, W., DiPersio, J. F. & & McCarty, J. M. Improving stem cell mobilization techniques: future instructions.
Bone Marrow Transplant 43, 181– 195 (2009 ).
CAS
Article
Google Scholar 8.
Ordovas-Montanes, J. et al. The guideline of immunological procedures by peripheral nerve cells in homeostasis and illness.
Trends Immunol 36, 578– 604 (2015 ).
CAS
Article
Google Scholar 9.
Pavlov, V. A., Chavan, S. S. & & Tracey, K. J. Molecular and practical neuroscience in resistance.
Annu. Rev. Immunol 36, 783– 812 (2018 ).
CAS
Article
Google Scholar 10.
Pinho-Ribeiro, F. A., Verri, W. A. & & Chiu, I. M. Nociceptor sensory nerve cell– immune interactions in discomfort and swelling.
Trends Immunol 38, 5– 19 (2017 ).
CAS
Article
Google Scholar 11.
Tsunokuma, N. et al. Deficiency of neural crest-derived cells results in decrease in plasma noradrenaline and modifies B lymphopoiesis.
J. Immunol 198, 156– 169 (2017 ).
CAS
Article
Google Scholar 12.
Suekane, A. et al. CGRP − CRLR/RAMP1 signal is necessary for stress-induced hematopoiesis.
Sci. Associate 9, 429 (2019 ).
ADS
Article
Google Scholar 13.
Chow, A. et al. Bone marrow CD169
+ macrophages promote the retention of hematopoietic stem and progenitor cells in the mesenchymal stem cell specific niche. J. Exp. Med 208, 261– 271 (2011 ).
CAS
Article
Google Scholar 14.
Christopher, M. J., Rao, M., Liu, F., Woloszynek, J. R. & & Link, D. C. Expression of the G-CSF receptor in monocytic cells suffices to moderate hematopoietic progenitor mobilization by G-CSF in mice.
J. Exp. Med 208, 251– 260 (2011 ).
CAS
Article
Google Scholar 15.
Winkler, I. G. et al. Bone marrow macrophages keep hematopoietic stem cell (HSC) specific niches and their deficiency sets in motion HSCs.
Blood 116 , 4815– 4828 (2010 ).
CAS
Article
Google Scholar 16.
Broxmeyer, H. E. et al. Quick mobilization of murine and human hematopoietic stem and progenitor cells with AMD3100, a CXCR4 villain.
J. Exp. Med 201, 1307– 1318 (2005 ).
CAS
Article
Google Scholar 17.
Lucas, D. et al. Norepinephrine reuptake inhibition promotes mobilization in mice: prospective effect to save low stem cell yields.
Blood 119 , 3962– 3965 (2012 ).
CAS
Article
Google Scholar 18.
Shastri, A. et al. Stimulation of adrenergic activity by desipramine improves hematopoietic stem and progenitor cell mobilization in addition to G-CSF in numerous myeloma: A pilot research study.
Am. J. Hematol 92, 1047– 1051 (2017 ).
CAS
Article
Google Scholar 19.
Ford, C. D., Green, W., Warenski, S. & & Petersen, F. B. Impact of previous chemotherapy on hematopoietic stem cell mobilization.
Bone Marrow Transplant 33, 901– 905 (2004 ).
CAS
Article
Google Scholar 20.
Adams, G. B. et al. Haematopoietic stem cells depend upon Gα
s– moderated signalling to engraft bone marrow. Nature 459 , 103– 107 (2009 ).
ADS
CAS
Article
Google Scholar 21.
Hagedorn, E. J., Durand, E. M., Quick, E. M. & & Zon, L. I. Getting more for your marrow: enhancing hematopoietic stem cell numbers with PGE2.
Exp Cell Res 329, 220– 226 (2014 ).
CAS
Article
Google Scholar 22.
Hoggatt, J. et al. Differential stem- and progenitor-cell trafficking by prostaglandin E
2 Nature 495 , 365– 369 (2013 ).
ADS
CAS
Article
Google Scholar 23.
Sands, W. A. & & Palmer, T. M. Regulating gene transcription in reaction to cyclic AMP elevation.
Cell. Signal 20, 460– 466 (2008 ).
CAS
Article
Google Scholar 24.
Pulsipher, M. A. et al. Negative occasions amongst 2408 unassociated donors of peripheral blood stem cells: outcomes of a potential trial from the National Marrow Donor Program.
Blood 113 , 3604– 3611 (2009 ).
CAS
Article
Google Scholar 25.
Schweizerhof, M. et al. Hematopoietic colony-stimulating elements moderate growth– nerve interactions and bone cancer discomfort.
Nat. Med 15, 802– 807 (2009 ).
CAS
Article
Google Scholar 26.
Charles, A. & & Pozo-Rosich, P. Targeting calcitonin gene-related peptide: a brand-new period in migraine treatment.
Lancet 394 , 1765– 1774 (2019 ).
Article
Google Scholar 27.
Cui, M., Gosu, V., Basith, S., Hong, S. & & Choi, S. Polymodal short-term receptor prospective vanilloid type 1 nocisensor: structure, modulators, and restorative applications.
Adv. Protein Chem. Struct. Biol 104, 81– 125 (2016 ).
CAS
Article
Google Scholar 28.
Asada, N. et al. Differential cytokine contributions of perivascular haematopoietic stem cell specific niches.
Nat. Cell Biol 19, 214– 223 (2017 ).
CAS
Article
Google Scholar 29.
Li, M. et al. Shortage of RAMP1 attenuates antigen-induced air passage hyperresponsiveness in mice.
PLoS ONE 9 , e102356 (2014 ).
ADS
Article
Google Scholar 30.
Fritz-Six, K. L., Dunworth, W. P., Li, M. & & Caron, K. M. Adrenomedullin signaling is required for murine lymphatic vascular advancement.
J. Clin. Invest 118, 40– 50 (2008 ).
CAS
Article
Google Scholar