Page 190 - Hematology_ Basic Principles and Practice ( PDFDrive )
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144.e4 Part II Cellular Basis of Hematology
143. Berlin C, Bargatze RF, von Andrian UH, et al: a4 integrins mediate 169. Schofield R: The relationship between the spleen colony-forming cell
lymphocyte attachment and rolling under physiologic flow. Cell and the haemopoietic stem cell. Blood Cells 4(1-2):7–25, 1978.
80:413–422, 1995. 170. McCulloch EA, Siminovitch L, Till JE, et al: The cellular basis of the
144. Berg EL, McEvoy LM, Berlin C, et al: L-selectin-mediated lymphocyte genetically determined hemopoietic defect in anemic mice of genotype
d
rolling on MAdCAM-1. Nature 366:695–698, 1993. Sl/Sl . Blood 26:399–410, 1965.
145. Berlin C, Berg EL, Briskin MJ, et al: a4 b7 integrin mediates lym- 171. Calvi LM, Adams GB, Weibrecht KW, et al: Osteoblastic cells regulate
phocyte binding to the mucosal vascular addressin MAdCAM-1. Cell the haematopoietic stem cell niche. Nature 425(6960):841–846, 2003.
74:185–195, 1993. 172. Cheng T, Rodrigues N, Shen H, et al: Hematopoietic stem cell qui-
146. Mora JR, von Andrian UH: T-cell homing specificity and plasticity: escence maintained by p21cip1/waf1. Science 287(5459):1804–1808,
new concepts and future challenges. Trends Immunol 27(5):235–243, 2000.
2006. 173. Adams GB, Chabner KT, Alley IR, et al: Stem cell engraftment at the
147. McEver RP: Selectins: lectins that initiate cell adhesion under flow. Curr endosteal niche is specified by the calcium-sensing receptor. Nature
Opin Cell Biol 14(5):581–586, 2002. 439(7076):599–603, 2006.
148. Zarbock A, Muller H, Kuwano Y, et al: PSGL-1-dependent myeloid 174. Scadden DT: The stem-cell niche as an entity of action. Nature
leukocyte activation. J Leukoc Biol 86(5):1119–1124, 2009. 441(7097):1075–1079, 2006.
149. Rosen SD: Ligands for L-selectin: homing, inflammation, and beyond. 175. Hidalgo A, Weiss LA, Frenette PS: Functional selectin ligands mediat-
Annu Rev Immunol 22:129–156, 2004. ing human CD34(+) cell interactions with bone marrow endothelium
150. Sperandio M, Frommhold D, Babushkina I, et al: Alpha are enhanced postnatally. J Clin Invest 110(4):559–569, 2002.
2,3-sialyltransferase-IV is essential for L-selectin ligand function in 176. Frenette PS, Subbarao S, Mazo IB, et al: Endothelial selectins and
inflammation. Eur J Immunol 36(12):3207–3215, 2006. vascular cell adhesion molecule-1 promote hematopoietic progenitor
151. Ley K, Kansas GS: Selectins in T-cell recruitment to non-lymphoid homing to bone marrow [see comments]. Proc Natl Acad Sci USA
tissues and sites of inflammation. Nat Rev Immunol 4(5):325–335, 95(24):14423–14428, 1998.
2004. 177. Peled A, Kollet O, Ponomaryov T, et al: The chemokine SDF-1 activates
152. Leon B, Ardavin C: Monocyte migration to inflamed skin and lymph the integrins LFA-1, VLA-4, and VLA-5 on immature human CD34(+)
nodes is differentially controlled by L-selectin and PSGL-1. Blood cells: role in transendothelial/stromal migration and engraftment of
111(6):3126–3130, 2008. NOD/SCID mice. Blood 95(11):3289–3296, 2000.
153. Sperandio M, Smith ML, Forlow SB, et al: P-selectin glycoprotein 178. Grabovsky V, Feigelson S, Chen C, et al: Subsecond induction of alpha4
ligand-1 mediates L-selectin-dependent leukocyte rolling in venules. integrin clustering by immobilized chemokines stimulates leukocyte
J Exp Med 197(10):1355–1363, 2003. tethering and rolling on endothelial vascular cell adhesion molecule 1
154. Martinez M, Joffraud M, Giraud S, et al: Regulation of PSGL-1 under flow conditions. J Exp Med 192(4):495–506, 2000.
interactions with L-selectin, P-selectin, and E-selectin: role of human 179. Peled A, Petit I, Kollet O, et al: Dependence of human stem cell
fucosyltransferase-IV and -VII. J Biol Chem 280(7):5378–5390, 2005. engraftment and repopulation of NOD/SCID mice on CXCR4. Science
155. Porter JC, Hall A: Epithelial ICAM-1 and ICAM-2 regulate the 283:845–848, 1999.
egression of human T cells across the bronchial epithelium. FASEB J 180. Katayama Y, Hidalgo A, Peired A, et al: Integrin alpha4beta7 and
23(2):492–502, 2009. its counterreceptor MAdCAM-1 contribute to hematopoietic pro-
156. Zabel BA, Zuniga L, Ohyama T, et al: Chemoattractants, extracel- genitor recruitment into bone marrow following transplantation. Blood
lular proteases, and the integrated host defense response. Exp Hematol 104(7):2020–2026, 2004.
34(8):1021–1032, 2006. 181. Narasipura SD, Wojciechowski JC, Charles N, et al: P-Selectin
157. Luster AD: The role of chemokines in linking innate and adaptive coated microtube for enrichment of CD34+ hematopoietic stem and
immunity. Curr Opin Immunol 14(1):129–135, 2002. progenitor cells from human bone marrow. Clin Chem 54(1):77–85,
158. Campbell DJ, Butcher EC: Rapid acquisition of tissue-specific homing 2008.
phenotypes by CD4(+) T cells activated in cutaneous or mucosal lym- 182. Lapidot T, Dar A, Kollet O: How do stem cells find their way home?
phoid tissues. J Exp Med 195(1):135–141, 2002. Blood 106(6):1901–1910, 2005.
159. Mora JR, Bono MR, Manjunath N, et al: Selective imprinting of gut- 183. Qian H, Tryggvason K, Jacobsen SE, et al: Contribution of alpha6
homing T cells by Peyer’s patch dendritic cells. Nature 424(6944):88–93, integrins to hematopoietic stem and progenitor cell homing to bone
2003. marrow and collaboration with alpha4 integrins. Blood 107(9):3503–
160. Mora JR, von Andrian UH: Specificity and plasticity of memory lym- 3510, 2006.
phocyte migration. Curr Top Microbiol Immunol 308:83–116, 2006. 184. Avigdor A, Goichberg P, Shivtiel S, et al: CD44 and hyaluronic acid
161. Iwata M, Hirakiyama A, Eshima Y, et al: Retinoic acid imprints gut- cooperate with SDF-1 in the trafficking of human CD34+ stem/
homing specificity on T cells. Immunity 21(4):527–538, 2004. progenitor cells to bone marrow. Blood 103(8):2981–2989, 2004.
162. Mora JR, Iwata M, Eksteen B, et al: Generation of gut-homing IgA- 185. Arcangeli ML, Frontera V, Bardin F, et al: JAM-B regulates main-
secreting B cells by intestinal dendritic cells. Science 314(5802):1157– tenance of hematopoietic stem cells in the bone marrow. Blood
1160, 2006. 118(17):4609–4619, 2011.
163. Sigmundsdottir H, Pan J, Debes GF, et al: DCs metabolize sunlight- 186. Mendez-Ferrer S, Frenette PS: Hematopoietic stem cell trafficking:
induced vitamin D3 to ‘program’ T cell attraction to the epidermal regulated adhesion and attraction to bone marrow microenvironment.
chemokine CCL27. Nat Immunol 8(3):285–293, 2007. Ann N Y Acad Sci 1116:392–413, 2007.
164. Kunkel EJ, Kim CH, Lazarus NH, et al: CCR10 expression is 187. Mikkola HK, Orkin SH: The journey of developing hematopoietic
a common feature of circulating and mucosal epithelial tissue IgA stem cells. Development 133(19):3733–3744, 2006.
Ab-secreting cells. J Clin Invest 111(7):1001–1010, 2003. 188. Velders GA, Pruijt JF, Verzaal P, et al: Enhancement of G-CSF-induced
165. Lazarus NH, Kunkel EJ, Johnston B, et al: A common mucosal che- stem cell mobilization by antibodies against the beta 2 integrins LFA-1
mokine (mucosae-associated epithelial chemokine/CCL28) selectively and Mac-1. Blood 100(1):327–333, 2002.
attracts IgA plasmablasts. J Immunol 170(7):3799–3805, 2003. 189. Hidalgo A, Peired AJ, Weiss LA, et al: The integrin alphaMbeta2
166. Pan J, Kunkel EJ, Gosslar U, et al: A novel chemokine ligand for anchors hematopoietic progenitors in the bone marrow during enforced
CCR10 and CCR3 expressed by epithelial cells in mucosal tissues. J mobilization. Blood 104(4):993–1001, 2004.
Immunol 165(6):2943–2949, 2000. 190. Papayannopoulou T, Priestley GV, Nakamoto B, et al: Synergistic
167. Oh IH, Kwon KR: Concise review: multiple niches for hematopoietic mobilization of hemopoietic progenitor cells using concurrent beta1
stem cell regulations. Stem Cells 28(7):1243–1249, 2010. and beta2 integrin blockade or beta2-deficient mice. Blood 97(5):1282–
168. Carlesso N, Cardoso AA: Stem cell regulatory niches and their role in 1288, 2001.
normal and malignant hematopoiesis. Curr Opin Hematol 17(4):281– 191. Schajnovitz A, Itkin T, D’Uva G, et al: CXCL12 secretion by bone
286, 2010. marrow stromal cells is dependent on cell contact and mediated by

