Page 62 - Haematologica April 2020
P. 62

M.G. Gorelashvili et al.
mice: from host bone marrow engraftment to bioengineering approaches. J Exp Med. 2018;215(3):729-743.
10. Summers C, Rankin SM, Condliffe AM, et al. Neutrophil kinetics in health and disease. Trends Immunol. 2010;31(8):318-324.
11. Christopher MJ, Link DC. Regulation of neutrophil homeostasis. Curr Opin Hematol. 2007;14(1):3-8.
12. Furze RC, Rankin SM. Neutrophil mobiliza- tion and clearance in the bone marrow. Immunology. 2008;125(3):281-288.
13. Machlus KR, Italiano JE Jr. The incredible journey: from megakaryocyte development to platelet formation. J Cell Biol. 2013;201(6):785-796.
14. Lichtman MA, Chamberlain JK, Simon W, Santillo PA. Parasinusoidal location of megakaryocytes in marrow: a determinant of platelet release. Am J Hematol. 1978;4(4):303-312.
15. Stegner D, van Eeuwijk JMM, Angay O, et al. Thrombopoiesis is spatially regulated by the bone marrow vasculature. Nat Commun. 2017;8(1):127.
16. Bruns I, Lucas D, Pinho S, et al. Megakaryocytes regulate hematopoietic stem cell quiescence through CXCL4 secre- tion. Nat Med. 2014;20(11):1315-1320.
17. Zhao M, Perry JM, Marshall H, et al. Megakaryocytes maintain homeostatic qui- escence and promote post-injury regenera- tion of hematopoietic stem cells. Nat Med. 2014;20(11):1321-1326.
18. Nakamura-Ishizu A, Takubo K, Fujioka M, Suda T. Megakaryocytes are essential for HSC quiescence through the production of thrombopoietin. Biochem Biophys Res Commun. 2014;454(2):353-357.
19. Heazlewood SY, Neaves RJ, Williams B, et al. Megakaryocytes co-localise with hemo- poietic stem cells and release cytokines that up-regulate stem cell proliferation. Stem Cell Res. 2013;11(2):782-792.
20. Pinho S, Marchand T, Yang E, et al. Lineage- biased hematopoietic stem cells are regulat- ed by distinct niches. Dev Cell. 2018;44(5):634-641.
21. Olson TS, Caselli A, Otsuru S, et al.
Megakaryocytes promote murine osteoblas- tic HSC niche expansion and stem cell engraftment after radioablative condition- ing. Blood. 2013;121(26):5238-5249.
22. Decker M, Leslie J, Liu Q, Ding L. Hepatic thrombopoietin is required for bone mar- row hematopoietic stem cell maintenance. Science. 2018;360(6384):106-10.
23. Schulze H, Stegner D. Imaging platelet bio- genesis in vivo. Res Pract Thromb Haemost. 2018;2(3):461-468.
24. Rastogi V, Puri N, Arora S, et al. Artefacts: a diagnostic dilemma - a review. J Clin Diagn Res. 2013;7(10):2408-2413.
25. Sommer C, Straehle C, Köthe U, Hamprecht FA. Ilastik: interactive learning and segmen- tation toolkit. IEEE International Symposium on Biomedical Imaging: From Nano to Macro. 2011;230-233.
26. Arganda-Carreras I, Kaynig V, Rueden C, et al. Trainable Weka Segmentation: a machine learning tool for microscopy pixel classifica- tion. Bioinformatics. 2017;33(15): 2424- 2426.
27. Hoehme S, Drasdo D. A cell-based simula- tion software for multi-cellular systems. Bioinformatics. 2010;26(20):2641-2642.
28. Friebel A, Neitsch J, Johann T, et al. TiQuant: software for tissue analysis, quantification and surface reconstruction. Bioinformatics. 2015;31(19):3234-3236.
29. Icha J, Weber M, Waters JC, Norden C. Phototoxicity in live fluorescence microscopy, and how to avoid it. Bioessays. 2017;39(8).
30. Masedunskas A, Milberg O, Porat-Shliom N, et al. Intravital microscopy: a practical guide on imaging intracellular structures in live animals. Bioarchitecture. 2012;2(5): 143- 157.
31. Medyukhina A, Timme S, Mokhtari Z, Figge MT. Image-based systems biology of infec- tion. Cytometry A. 2015;87(6):462-470.
32. Yankeelov TE, Atuegwu N, Hormuth D, et al. Clinically relevant modeling of tumor growth and treatment response. Sci Transl Med. 2013;5(187):187ps9.
33. Vandenberghe F, Saigi-Morgui N, Delacretaz A, et al. Prediction of early weight gain dur-
ing psychotropic treatment using a combi- natorial model with clinical and genetic markers. Pharmacogenet Genomics. 2016;26(12):547-557.
34. Faust N, Varas F, Kelly L, Heck S, Graf T. Insertion of enhanced green fluorescent pro- tein into the lysozyme gene creates mice with green fluorescent granulocytes and macrophages. Blood. 2000;96(2):719-726.
35. Elzey BD, Tian J, Jensen RJ, et al. Platelet- mediated modulation of adaptive immunity A communication link between innate and adaptive immune compartments. Immunity. 2003;19(1):9-19.
36. Schindelin J, Arganda-Carreras I, Frise E, et al. Fiji: an open-source platform for biologi- cal-image analysis. Nat Methods. 2012;9 (7):676-682.
37. Zuba-Surma EK, Kucia M, Abdel-Latif A, et al. Morphological characterization of very small embryonic-like stem cells (VSELs) by ImageStream system analysis. J Cell Mol Med. 2008;12(1):292-303.
38. Boxio R, Bossenmeyer-Pourié C, Steinckwich N, Dournon C, Nüße O. Mouse bone marrow contains large num- bers of functionally competent neutrophils. J Leukoc Biol. 2004;75(4):604-611.
39. Qian H, Sheetz MP, Elson EL. Single particle tracking. Analysis of diffusion and flow in two-dimensional systems. Biophys J. 1991;60(4):910-921.
40. Logan DJ, Shan J, Bhatia SN, Carpenter AE. Quantifying co-cultured cell phenotypes in high-throughput using pixel-based classifi- cation. Methods. 2016;96:6-11.
41. Chen J, Zhou W, Jia Q, et al. Efficient extravasation of tumor-repopulating cells depends on cell deformability. Sci Rep. 2016;6:19304.
42. Schnoor M, Alcaide P, Voisin MB, van Buul JD. Crossing the vascular wall: common and unique mechanisms exploited by different leukocyte subsets during extravasation. Mediators Inflamm. 2015;2015: 946509.
43. Xiao LL, Liu Y, Chen S, Fu BM. Numerical simulation of a single cell passing through a narrow slit. Biomech Model Mechanobiol. 2016;15(6):1655-1667.
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