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94  Part II:  The Organization of the Lymphohematopoietic Tissues  Chapter 6:  The Organization and Structure of Lymphoid Tissues  95




                    8.  Hasselbalch H, Jeppesen DL, Engelmann MD, et al: Decreased thymus size in formu-    46.  Kumpel BM, De Haas M, Koene HR, et al: Clearance of red cells by monoclonal IgG3
                     la-fed infants compared with breastfed infants. Acta Paediatr 85:1029–1032, 1996.  anti-D in vivo is affected by the VF polymorphism of Fcgamma RIIIa (CD16). Clin Exp
                    9.  Watanabe N, Wang YH, Lee HK, et al: Hassall’s corpuscles instruct dendritic cells to   Immunol 132:81–86, 2003.
                     induce CD4+CD25+ regulatory T cells in human thymus. Nature 436:1181–1185, 2005.    47.  Smith NC, Fell A, Good MF: The immune response to asexual blood stages of malaria
                    10.  Rezzani R, Bonomini F, Rodella LF: Histochemical and molecular overview of the thy-  parasites. Chem Immunol 70:144–162, 1998.
                     mus as site for T-cells development. Prog Histochem Cytochem 43:73–120, 2008.    48.  Bakovic D, Eterovic D, Saratlija-Novakovic Z, et al: Effect of human splenic contraction
                    11.  Alves NL, Richard-Le Goff O, Huntington ND, et al: Characterization of the thymic   on variation in circulating blood cell counts. Clin Exp Pharmacol Physiol 32:944–951,
                     IL-7 niche in vivo. Proc Natl Acad Sci U S A 106:1512–1517, 2009.  2005.
                    12.  Fujihara C, Williams JA, Watanabe M, et al: T cell-B cell thymic cross-talk: Mainte-    49.  Palada I, Eterovic D, Obad A, et al: Spleen and cardiovascular function during short
                     nance and function of thymic B cells requires cognate CD40-CD40 ligand interaction.    apneas in divers. J Appl Physiol 103:1958–1963, 2007.
                     J Immunol 193:5534–5544, 2014.                       50.  Hamza SM, Kaufman S: Role of spleen in integrated control of splanchnic vascular
                    13.  Walters SN, Webster KE, Daley S, Grey ST: A role for intrathymic B cells in the genera-  tone: Physiology and pathophysiology. Can J Physiol Pharmacol 87:1–7, 2009.
                     tion of natural regulatory T cells. J Immunol 193:170–176, 2014.    51.  Forster R, Davalos-Misslitz AC, Rot A: CCR7 and its ligands: Balancing immunity and
                    14.  Ayala A, Herdon CD, Lehman DL, et al: Differential induction of apoptosis in lymphoid   tolerance. Nat Rev Immunol 8:362–371, 2008.
                     tissues during sepsis: Variation in onset, frequency, and the nature of the mediators.     52.  Rizzo LV, Secord EA, Tsiagbe VK, et al: Components essential for the generation of
                     Blood 87:4261–4275, 1996.                             germinal centers. Dev Immunol 6:325–330, 1998.
                    15.  Rijhsinghani AG, Thompson K, Bhatia SK, Waldschmidt TJ: Estrogen blocks early       53.  Hollowood K, Goodlad JR: Germinal centre cell kinetics. J Pathol 185:229–233, 1998.
                     T cell development in the thymus. Am J Reprod Immunol 36:269–277, 1996.    54.  Klein U, Dalla-Favera R: Germinal centres: Role in B-cell physiology and malignancy.
                    16.  Sullivan KE: Chromosome 22q11.2 deletion syndrome: Digeorge syndrome/velocar-  Nat Rev Immunol 8:22–33, 2008.
                     diofacial syndrome. Immunol Allergy Clin North Am 28:353–366, 2008.    55.  Dunn-Walters DK, Isaacson PG, Spencer J: Analysis of mutations in immunoglobu-
                    17.  Hale LP: Histologic and molecular assessment of human thymus. Ann Diagn Pathol   lin heavy chain variable region genes of microdissected marginal zone (MGZ) B cells
                     8:50–60, 2004.                                        suggests that the MGZ of human spleen is a reservoir of memory B cells. J Exp Med
                    18.  Kronenberg M, Siu G, Hood LE, Shastri N: The molecular genetics of the T-cell antigen   182:559–566, 1995.
                     receptor and T-cell antigen recognition. Annu Rev Immunol 4:529–591, 1986.    56.  Tarlinton D: Germinal centers: Form and function. Curr Opin Immunol 10:245–251,
                    19.  Kwan J, Killeen N: CCR7 directs the migration of thymocytes into the thymic medulla.   1998.
                     J Immunol 172:3999–4007, 2004.                       57.  Burton GF, Masuda A, Heath SL, et al: Follicular dendritic cells (FDC) in retroviral
                    20.  Starr TK, Jameson SC, Hogquist KA: Positive and negative selection of T cells. Annu   infection: Host/pathogen perspectives. Immunol Rev 156:185–197, 1997.
                     Rev Immunol 21:139–176, 2003.                        58.  Gulbranson-Judge A, Casamayor-Palleja M, MacLennan IC: Mutually dependent T and
                    21.  Laufer TM, Glimcher LH, Lo D: Using thymus anatomy to dissect T cell repertoire   B cell responses in germinal centers. Ann N Y Acad Sci 815:199–210, 1997.
                     selection. Semin Immunol 11:65–70, 1999.             59.  Cooper MA, Fehniger TA, Turner SC, et al: Human natural killer cells: A unique innate
                    22.  Blackman M, Kappler J, Marrack P: The role of the T cell receptor in positive and nega-  immunoregulatory role for the CD56(bright) subset. Blood 97:3146–3151, 2001.
                     tive selection of developing T cells. Science 248:1335–1341, 1990.    60.  Fehniger TA, Cooper MA, Nuovo GJ, et al: CD56bright natural killer cells are present
                    23.  Muller-Hermelink HK, Wilisch A, Schultz A, Marx A: Characterization of the human   in human lymph nodes and are activated by T cell-derived IL-2: A potential new link
                     thymic microenvironment: Lymphoepithelial interaction in normal thymus and thy-  between adaptive and innate immunity. Blood 101:3052–3057, 2003.
                     moma. Arch Histol Cytol 60:9–28, 1997.               61.  Cooper MA, Fehniger TA, Caligiuri MA: The biology of human natural killer-cell sub-
                    24.  Nikolich-Zugich J, Slifka MK, Messaoudi I: The many important facets of T-cell reper-  sets. Trends Immunol 22:633–640, 2001.
                     toire diversity. Nat Rev Immunol 4:123–132, 2004.    62.  Ferlazzo G, Thomas D, Lin SL, et al: The abundant NK cells in human secondary lym-
                    25.  Mathis D, Benoist C: Aire. Annu Rev Immunol 27:287–312, 2009.  phoid tissues require activation to express killer cell Ig-like receptors and become cyto-
                    26.  De Martino L, Capalbo D, Improda N, et al: APECED: A paradigm of complex inter-  lytic. J Immunol 172:1455–1462, 2004.
                     actions between genetic background and susceptibility factors. Front Immunol 4:331,     63.  Huntington ND, Legrand N, Alves NL, et al: IL-15 trans-presentation promotes human
                     2013.                                                 NK cell development and differentiation in vivo. J Exp Med 206:25–34, 2009.
                    27.  Vogel A, Strassburg CP, Obermayer-Straub P, et al: The genetic background of auto-    64.  Romagnani C, Juelke K, Falco M, et al: CD56brightCD16- killer Ig-like receptor- NK
                     immune polyendocrinopathy-candidiasis-ectodermal dystrophy and its autoimmune   cells display longer telomeres and acquire features of CD56dim NK cells upon activa-
                     disease components. J Mol Med (Berl) 80:201–211, 2002.  tion. J Immunol 178:4947–4955, 2007.
                    28.  Mathis D, Benoist C: Back to central tolerance. Immunity 20:509–516, 2004.    65.  Freud AG, Becknell B, Roychowdhury S, et al: A human CD34(+) subset resides in
                    29.  Romero-Torres R: The true splenic blood supply and its surgical applications. Hepato-  lymph nodes and differentiates into CD56bright natural killer cells.  Immunity 22:
                     gastroenterology 45:885–888, 1998.                    295–304, 2005.
                    30.  Paul R, Bielmeier J, Breul J, et al: [Accessory spleen of the spermatic cord] [in German].     66.  Freud AG, Yokohama A, Becknell B, et al: Evidence for discrete stages of human natural
                     Urologe A 36:262–264, 1997.                           killer cell differentiation in vivo. J Exp Med 203:1033–1043, 2006.
                    31.  Lauffer JM, Baer HU, Maurer CA, et al: Intrapancreatic accessory spleen. A rare cause     67.  Freud AG, Yu J, Caligiuri MA: Human natural killer cell development in secondary
                     of a pancreatic mass. Int J Pancreatol 25:65–68, 1999.  lymphoid tissues. Semin Immunol 26:132–137, 2014.
                    32.  Sprogoe-Jakobsen S, Sprogoe-Jakobsen U: The weight of the normal spleen. Forensic Sci     68.  Butcher EC, Williams M, Youngman K, et al: Lymphocyte trafficking and regional
                     Int 88:215–223, 1997.                                 immunity. Adv Immunol 72:209–253, 1999.
                    33.  Watanabe Y, Todani T, Noda T, Yamamoto S: Standard splenic volume in children and     69.  Warnock RA, Askari S, Butcher EC, von Andrian UH. Molecular mechanisms of lym-
                     young adults measured from CT images. Surg Today 27:726–728, 1997.  phocyte homing to peripheral lymph nodes. J Exp Med 187:205–216, 1998.
                    34.  Prassopoulos P, Daskalogiannaki M, Raissaki M, et al: Determination of normal splenic     70.  Greenfield EA, Nguyen KA, Kuchroo VK: CD28/B7 costimulation: A review. Crit Rev
                     volume on computed tomography in relation to age, gender and body habitus.  Eur   Immunol 18:389–418, 1998.
                     Radiol 7:246–248, 1997.                              71.  Schwartz RH: T cell anergy. Annu Rev Immunol 21:305–334, 2003.
                    35.  Rodrigues Junior AJ, Rodrigues CJ, Germano MA, et al: Sonographic assessment of     72.  Malvey EN, Telander DG, Vanasek TL, Mueller DL: The role of clonal anergy in the
                     normal spleen volume. Clin Anat 8:252–255, 1995.      avoidance of autoimmunity: Inactivation of autocrine growth without loss of effector
                    36.  Steiniger B, Ruttinger L, Barth PJ: The three-dimensional structure of human splenic   function. Immunol Rev 165:301–318, 1998.
                     white pulp compartments. J Histochem Cytochem 51:655–664, 2003.    73.  Van Parijs L, Abbas AK: Homeostasis and self-tolerance in the immune system: Turn-
                    37.  Muller G, Hopken UE, Lipp M: The impact of CCR7 and CXCR5 on lymphoid organ   ing lymphocytes off. Science 280:243–248, 1998.
                     development and systemic immunity. Immunol Rev 195:117–135, 2003.    74.  Seder RA, Gazzinelli RT: Cytokines are critical in linking the innate and adaptive immune
                    38.  Schneider K, Potter KG, Ware CF: Lymphotoxin and light signaling pathways and target   responses to bacterial, fungal, and parasitic infection. Adv Intern Med 44:353–388, 1999.
                     genes. Immunol Rev 202:49–66, 2004.                  75.  Grewal IS, Flavell RA: CD40 and CD154 in cell-mediated immunity. Annu Rev Immu-
                    39.  Mebius RE, Nolte MA, Kraal G: Development and function of the splenic marginal   nol 16:111–135, 1998.
                     zone. Crit Rev Immunol 24:449–464, 2004.             76.  Ranheim EA, Kipps TJ: Activated T cells induce expression of B7/BB1 on normal or
                    40.  Steiniger B, Timphus EM, Barth PJ: The splenic marginal zone in humans and rodents:   leukemic B cells through a CD40-dependent signal. J Exp Med 177:925–935, 1993.
                     An enigmatic compartment and its inhabitants. Histochem Cell Biol 126:641–648, 2006.    77.  Vora KA, Ravetch JV, Manser T: Insights into the mechanisms of antibody-affinity mat-
                    41.  Weill JC, Weller S, Reynaud CA: Human marginal zone B cells. Annu Rev Immunol   uration and the generation of the memory B-cell compartment using genetically altered
                     27:267–285, 2009.                                     mice. Dev Immunol 6:305–316, 1998.
                    42.  Kraus MD: Splenic histology and histopathology: An update.  Semin  Diagn  Pathol     78.  Liu YJ, de Bouteiller O, Fugier-Vivier I. Mechanisms of selection and differentiation in
                     20:84–93, 2003.                                       germinal centers. Curr Opin Immunol 9:256–262, 1997.
                    43.  Stewart IB, McKenzie DC: The human spleen during physiological stress. Sports Med     79.  Callan MF, Annels N, Steven N, et al: T cell selection during the evolution of CD8+
                     32:361–369, 2002.                                     T cell memory in vivo. Eur J Immunol 28:4382–4390, 1998.
                    44.  Chotivanich K, Udomsangpetch R, McGready R, et al: Central role of the spleen in     80.  Doherty PC, Topham DJ, Tripp RA: Establishment and persistence of virus-specific
                     malaria parasite clearance. J Infect Dis 185:1538–1541, 2002.  CD4+ and CD8+ T cell memory. Immunol Rev 150:23–44, 1996.
                    45.  Suwanarusk R, Cooke BM, Dondorp AM, et al: The deformability of red blood cells     81.  Liu YJ, Grouard G, de Bouteiller O, Banchereau J: Follicular dendritic cells and germi-
                     parasitized by Plasmodium falciparum and P. vivax. J Infect Dis 189:190–194, 2004.  nal centers. Int Rev Cytol 166:139–179, 1996.







          Kaushansky_chapter 06_p0085-0096.indd   95                                                                    17/09/15   5:54 pm
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