Page 106 - Williams Hematology ( PDFDrive )
P. 106
82 Part II: The Organization of the Lymphohematopoietic Tissues Chapter 5: Structure of the Marrow and the Hematopoietic Microenvironment 83
420. Iguchi A, Okuyama R, Koguma M, et al: Selective stimulation of granulopoiesis in vitro 450. Gunji Y, Nakamura M, Hagiwara T, et al: Expression and function of adhesion mole-
by established bone marrow stromal cells. Cell Struct Funct 22:357, 1997. cules on human hematopoietic stem cells: CD34+ LFA-1- cells are more primitive than
421. Rettig MP, Ansstas G, DiPersio JF: Mobilization of hematopoietic stem and progenitor CD34+ LFA-1+ cells. Blood 80:429, 1992.
cells using inhibitors of CXCR4 and VLA-4. Leukemia 26:34, 2012. 451. Rao SG, Chitnis VS, Deora A, et al: An ICAM-1 like cell adhesion molecule is respon-
422. Petty JM, Lenox CC, Weiss DJ, et al: Crosstalk between CXCR4/stromal derived fac- sible for CD34 positive haemopoietic stem cells adhesion to bone-marrow stroma. Cell
tor-1 and VLA-4/VCAM-1 pathways regulates neutrophil retention in the bone mar- Biol Int 20:255, 1996.
row. J Immunol 182:604, 2009. 452. Staunton DE, Dustin ML, Springer TA: Functional cloning of ICAM-2, a cell adhesion
423. Dittel BN, LeBien TW: Reduced expression of vascular cell adhesion molecule-1 on ligand for LFA-1 homologous to ICAM-1. Nature 339:61, 1989.
bone marrow stromal cells isolated from marrow transplant recipients correlates with a 453. Fawcett J, Holness CL, Needham LA, et al: Molecular cloning of ICAM-3, a third ligand
reduced capacity to support human B lymphopoiesis in vitro. Blood 86:2833, 1995. for LFA-1, constitutively expressed on resting leukocytes. Nature 360:481, 1992.
424. Funk PE, Stephan RP, Witte PL: Vascular cell adhesion molecule 1-positive reticular 454. Campanero MR, Sánchez-Mateos P, del Pozo MA, Sánchez-Madrid F: ICAM-3 regu-
cells express interleukin-7 and stem cell factor in the bone marrow. Blood 86:2661, lates lymphocyte morphology and integrin-mediated T cell interaction with endothe-
1995. lial cell and extracellular matrix ligands. J Cell Biol 127:867, 1994.
425. Galotto M, Berisso G, Delfino L, et al: Stromal damage as consequence of high-dose 455. Nielsen M, Gerwien J, Geisler C, et al: MHC class II ligation induces CD58 (LFA-3)-
chemo/radiotherapy in bone marrow transplant recipients. Exp Hematol 27:1460, 1999. mediated adhesion in human T cells. Exp Clin Immunogenet 15:61, 1998.
426. Avecilla ST, Hattori K, Heissig B, et al: Chemokine-mediated interaction of hematopoi- 456. Le Guiner S, Le Dréan E, Labarrière N, et al: LFA-3 co-stimulates cytokine secretion
etic progenitors with the bone marrow vascular niche is required for thrombopoiesis. by cytotoxic T lymphocytes by providing a TCR-independent activation signal. Eur J
Nat Med 10:64, 2004. Immunol 28:1322, 1998.
427. Avraham H, Cowley S, Chi SY, et al: Characterization of adhesive interactions between 457. Itzhaky D, Raz N, Hollander N: The glycosylphosphatidylinositol-anchored form and
human endothelial cells and megakaryocytes. J Clin Invest 91:2378, 1993. the transmembrane form of CD58 are released from the cell surface upon antibody
428. Priestley GV, Ulyanova T, Papayannopoulou T: Sustained alterations in biodistribution binding. Cell Immunol 187:151, 1998.
of stem/progenitor cells in Tie2Cre+ alpha4(f/f) mice are hematopoietic cell autono- 458. Kirby AC, Cahen P, Porter SR, Olsen I: LFA-3 (CD58) mediates T-lymphocyte adhesion
mous. Blood 109:109, 2007. in chronic inflammatory infiltrates. Scand J Immunol 50:469, 1999.
429. Katayama Y, Hildalgo A, Peired A, Frenette PS: Integrin alpha4beta7 and its counter- 459. De Waele M, Renmans W, Jochmans K, et al: Different expression of adhesion mole-
receptor MAdCAM-1 contribute to hematopoietic progenitor recruitment into bone cules on CD34+ cells in AML and B-lineage ALL and their normal bone marrow coun-
marrow following transplantation. Blood 104:2020, 2004. terparts. Eur J Haematol 63:192, 1999.
430. Campbell ID, Humphries MJ: Integrin structure, activation, and interactions. Cold 460. Kinashi T, Springer TA: Regulation of cell-matrix adhesion by receptor tyrosine kinases.
Spring Harb Perspect Biol 3, 2011. Leuk Lymphoma 18:203, 1995.
431. Aplin AE, Howe A, Alahari SK, Juliano RL: Signal transduction and signal modulation 461. Toivanen A, Ihanus E, Mattila M, et al: Importance of molecular studies on major blood
by cell adhesion receptors: The role of integrins, cadherins, immunoglobulin-cell adhe- groups—intercellular adhesion molecule-4, a blood group antigen involved in multiple
sion molecules, and selectins. Pharmacol Rev 50:197, 1998. cellular interactions. Biochim Biophys Acta 1780:456, 2008.
432. Shen B, Delaney MK, Du X: Inside-out, outside-in, and inside–outside-in: G protein 462. McCarty JM, Yee EK, Deisher TA, et al: Interleukin-4 induces endothelial vascular cell
signaling in integrin-mediated cell adhesion, spreading, and retraction. Curr Opin Cell adhesion molecule-1 (VCAM-1) by an NF-kappa b-independent mechanism. FEBS
Biol 24:600, 2012. Lett 372:194, 1995.
433. Porter JC, Hogg N: Integrin cross talk: Activation of lymphocyte function-associated 463. Bochner BS, Klunk DA, Sterbinsky SA, et al: IL-13 selectively induces vascular cell
antigen-1 on human T cells alters alpha4beta1- and alpha5beta1-mediated function. J adhesion molecule-1 expression in human endothelial cells. J Immunol 154:799, 1995.
Cell Biol 138:1437, 1997. 464. Crocker PR, Redelinghuys P: Siglecs as positive and negative regulators of the immune
434. Shibuya K, Lanier LL, Phillips JH, et al: Physical and functional association of LFA-1 system. Biochem Soc Trans 36:1467, 2008.
with DNAM-1 adhesion molecule. Immunity 11:615, 1999. 465. Aizawa S, Tavassoli M: In vitro homing of hemopoietic stem cells is mediated by a
435. Rodriguez-Fernandez JL, Gomez M, Luque A, et al: The interaction of activated integ- recognition system with galactosyl and mannosyl specificities. Proc Natl Acad Sci U S A
rin lymphocyte function-associated antigen 1 with ligand intercellular adhesion mole- 84:4485, 1987.
cule 1 induces activation and redistribution of focal adhesion kinase and proline-rich 466. Tavassoli M, Hardy CL: Molecular basis of homing of intravenously transplanted stem
tyrosine kinase 2 in T lymphocytes. Mol Biol Cell 10:1891-1907, 1999. cells to the marrow. Blood 76:1059, 1990.
436. Leavesley DI, Oliver JM, Swart BW, et al: Signals from platelet/endothelial cell adhesion 467. Sperandio M: Selectins and glycosyltransferases in leukocyte rolling in vivo. FEBS J
molecule enhance the adhesive activity of the very late antigen-4 integrin of human 273:4377, 2006.
CD34+ hemopoietic progenitor cells. J Immunol 153:4673, 1994. 468. Chute JP: Stem cell homing. Curr Opin Hematol 13:399, 2006.
437. Vestweber D, Blanks JE: Mechanisms that regulate the function of the selectins and 469. Eto T, Winkler I, Purton LE, Lévesque J-P: Contrasting effects of P-selectin and E-
their ligands. Physiol Rev 79:181, 1999. selectin on the differentiation of murine hematopoietic progenitor cells. Exp Hematol
438. Oostendorp RA, Dörmer P: VLA-4-mediated interactions between normal human 33:232, 2005.
hematopoietic progenitors and stromal cells. Leuk Lymphoma 24:423, 1997. 470. Nielsen JS, McNagny KM: Novel functions of the CD34 family. J Cell Sci 121:3683, 2008.
439. Gotoh A, Ritchie A, Takahira H, Broxmeyer HE: Thrombopoietin and erythropoie- 471. Matsubara A, Iwama A, Yamazaki S, et al: Endomucin, a CD34-like sialomucin, marks
tin activate inside-out signaling of integrin and enhance adhesion to immobilized hematopoietic stem cells throughout development. J Exp Med 202:1483, 2005.
fibronectin in human growth-factor-dependent hematopoietic cells. Ann Hematol 472. Stockton BM, Cheng G, Manjunath N, et al: Negative regulation of T cell homing by
75:207, 1997. CD43. I Immunity. 8:373, 1998.
440. Liesveld JL, Winslow JM, Frediani KE, et al: Expression of integrins and examination 473. Matsumoto M, Shigeta A, Miyasaka M, Hirata T: CD43 plays both antiadhesive and
of their adhesive function in normal and leukemic hematopoietic cells. Blood 81:112, proadhesive roles in neutrophil rolling in a context-dependent manner. J Immunol
1993. 181:3628, 2008.
441. Ryan DH, Nuccie BL, Abboud CN: Inhibition of human bone marrow lymphoid pro- 474. Bazil V, Brandt J, Chen S, et al: A monoclonal antibody recognizing CD43 (leukosialin)
genitor colonies by antibodies to VLA integrins. J Immunol 149:3759, 1992. initiates apoptosis of human hematopoietic progenitor cells but not stem cells. Blood
442. Sugahara H, Kanakura Y, Furitsu T, et al: Induction of programmed cell death in human 87:1272, 1996.
hematopoietic cell lines by fibronectin via its interaction with very late antigen 5. J Exp 475. Forde S, Tye BJ, Newey SE, et al: Endolyn (CD164) modulates the CXCL12-mediated
Med 179:1757, 1994. migration of umbilical cord blood CD133+ cells. Blood 109:1825, 2007.
443. Oostendorp RA, Spitzer E, Reisbach G, Dörmer P: Antibodies to the beta 1-integrin 476. Jeannet R, Cai Q, Liu H, et al: Alcam Regulates Long-Term Hematopoietic Stem Cell
chain, CD44, or ICAM-3 stimulate adhesion of blast colony-forming cells and may Engraftment and Self-Renewal. Stem Cells 31:560, 2013.
inhibit their growth. Exp Hematol 25:345, 1997. 477. Ohneda O, Ohneda K, Arai F, et al: ALCAM (CD166): Its role in hematopoietic and
444. Dao MA, Nolta JA: Cytokine and integrin stimulation synergize to promote higher lev- endothelial development. Blood 98:2134, 2001.
els of GATA-2, c-myb, and CD34 protein in primary human hematopoietic progenitors 478. Chitteti B, Kobayashi M, Cheng Y, et al: CD166 regulates human and murine hemato-
from bone marrow. Blood 109:2373, 2007. poietic stem cells and the hematopoietic niche. Blood 2014.
445. Umemoto T, Yamato M, Shiratsuchi Y, et al: Expression of Integrin beta3 is correlated 479. Bowen MA, Aruffo A: Adhesion molecules, their receptors, and their regulation: Anal-
to the properties of quiescent hemopoietic stem cells possessing the side population ysis of CD6-activated leukocyte cell adhesion molecule (ALCAM/CD166) interactions.
phenotype. J Immunol 177:7733, 2006. Transplant Proc 31:795, 1999.
446. Wagers AJ, Weissman IL: Differential expression of alpha2 integrin separates long-term 480. Greenbaum AM, Link DC: Mechanisms of G-CSF-mediated hematopoietic stem and
and short-term reconstituting Lin-/loThy1.1(lo)c-kit+ Sca-1+ hematopoietic stem cells. progenitor mobilization. Leukemia 25:211, 2011.
Stem Cells 24:1087, 2006. 481. Oostendorp RA, Ghaffari S, Eaves CJ: Kinetics of in vivo homing and recruitment into
447. Makgoba MW, Sanders ME, Ginther Luce GE, et al: ICAM-1 a ligand for LFA-1-dependent cycle of hematopoietic cells are organ-specific but CD44-independent. Bone Marrow
adhesion of B, T and myeloid cells. Nature 331:86, 1988. Transplant 26:559, 2000.
448. Woodfin A, Voisin MB, Nourshargh S: PECAM-1: A multi-functional molecule in 482. Nedvetzki S, Gonen E, Assayag N, et al: RHAMM, a receptor for hyaluronan-mediated
inflammation and vascular biology. Arterioscler Thromb Vasc Biol 27:2514, 2007. motility, compensates for CD44 in inflamed CD44-knockout mice: A different inter-
449. Arkin S, Naprstek B, Guarini L, et al: Expression of intercellular adhesion molecule-1 pretation of redundancy. Proc Natl Acad Sci U S A 101:18081, 2004.
(CD54) on hematopoietic progenitors. Blood 77:948, 1991.
Kaushansky_chapter 05_p0051-0084.indd 82 9/19/15 12:11 AM

