Spatial and molecular organization of lymph node T cell cortex: a labyrinthine cavity bounded by an epithelium-like monolayer of fibroblastic reticular cells anchored to basement membrane-like extracellular matrix.
暂无分享,去创建一个
J. E. Gretz | Eric P Kaldjian | Arthur Anderson | Stephen Shaw | Yinghui Shi | Eric P. Kaldjian | Arthur O. Anderson
[1] X. Xu,et al. Undesirable cytokeratin immunoreactivity of native nonepithelial cells in sentinel lymph nodes from patients with breast carcinoma. , 2009, Archives of pathology & laboratory medicine.
[2] Stephen Shaw,et al. Lymph-Borne Chemokines and Other Low Molecular Weight Molecules Reach High Endothelial Venules via Specialized Conduits While a Functional Barrier Limits Access to the Lymphocyte Microenvironments in Lymph Node Cortex , 2000, The Journal of experimental medicine.
[3] E. Bröcker,et al. Antigen presentation in extracellular matrix: interactions of T cells with dendritic cells are dynamic, short lived, and sequential. , 2000, Immunity.
[4] L. Koss,et al. Tenascin expression in intraepithelial neoplasia and invasive carcinoma of the uterine cervix. , 2000, Archives of pathology & laboratory medicine.
[5] R. Schwartz,et al. Epithelial Cell-Specific Laminin 5 Is Required for Survival of Early Thymocytes1 , 2000, The Journal of Immunology.
[6] P. Yurchenco,et al. Form and function: The laminin family of heterotrimers , 2000, Developmental dynamics : an official publication of the American Association of Anatomists.
[7] R. Steinman,et al. Trance, a Tumor Necrosis Factor Family Member, Enhances the Longevity and Adjuvant Properties of Dendritic Cells in Vivo , 2000, The Journal of experimental medicine.
[8] P. Friedl,et al. The biology of cell locomotion within three-dimensional extracellular matrix , 2000, Cellular and Molecular Life Sciences CMLS.
[9] T. Sakakura,et al. Involvement of tenascin-C in proliferation and migration of laryngeal carcinoma cells , 1999, Virchows Archiv.
[10] Y. Nagashima,et al. Overexpression of Laminin γ2 Chain Monomer in Invading Gastric Carcinoma Cells , 1999 .
[11] J. Cawley,et al. The role of hyaluronan and interleukin 8 in the migration of chronic lymphocytic leukemia cells within lymphoreticular tissues. , 1999, Cancer research.
[12] D. Vestweber,et al. Molecular mechanisms that control leukocyte extravasation: the selectins and the chemokines. , 1999, Histochemistry and cell biology.
[13] V. Quaranta,et al. Laminin 5 in the Human Thymus: Control of T Cell Proliferation via α6β4 Integrins , 1999, The Journal of cell biology.
[14] E. Ingulli,et al. Visualization of specific B and T lymphocyte interactions in the lymph node. , 1998, Science.
[15] P. Wilkinson,et al. Assays of leukocyte locomotion and chemotaxis. , 1998, Journal of immunological methods.
[16] E. Ingulli,et al. VISUALIZATION OF ANTIGEN-SPECIFIC CD4+ T CELL-B CELL INTERACTION DURING A PRIMARY IMMUNE RESPONSE IN VIVO , 1998 .
[17] I. Virtanen,et al. Tenascin is increased in airway basement membrane of asthmatics and decreased by an inhaled steroid. , 1997, American journal of respiratory and critical care medicine.
[18] R. Parwaresch,et al. Sinus-lining cells of the lymph nodes recognized as a dendritic cell type by the new monoclonal antibody Ki-M9. , 1997, The American journal of pathology.
[19] Stephen Shaw,et al. Cords, channels, corridors and conduits: critical architectural elements facilitating cell interactions in the lymph node cortex , 1997, Immunological reviews.
[20] A. Sonnenberg,et al. Distribution of laminin variants and their integrin receptors in human secondary lymphoid tissue. Colocalization suggests that the alpha 6 beta 4-integrin is a receptor for laminin-5 in lymphoid follicles. , 1996, Cell adhesion and communication.
[21] K. Yancey,et al. Passive transfer of anti-laminin 5 antibodies induces subepidermal blisters in neonatal mice. , 1996, The Journal of clinical investigation.
[22] R. Clark,et al. CD44 and hyaluronan-dependent rolling interactions of lymphocytes on tonsillar stroma , 1996, The Journal of cell biology.
[23] J. Davies. Mesenchyme to epithelium transition during development of the mammalian kidney tubule. , 1996, Acta anatomica.
[24] I. Thesleff,et al. Basal layer of epithelium expresses tenascin mRNA during healing of incisional skin wounds. , 1996, Journal of periodontal research.
[25] W. Carter,et al. Cloning of the LamA3 gene encoding the alpha 3 chain of the adhesive ligand epiligrin. Expression in wound repair. , 1994, The Journal of biological chemistry.
[26] K. Stefansson,et al. Inhibition of T cell activation by the extracellular matrix protein tenascin. , 1994, Journal of immunology.
[27] S. Je. Keratan sulphate--a 'reserve' polysaccharide? , 1994 .
[28] G. Gong,et al. Extrafollicular reticulum cells in pathologic lymph nodes. , 1994, Journal of Korean medical science.
[29] P. Friedl,et al. Lymphocyte locomotion in three-dimensional collagen gels. Comparison of three quantitative methods for analysing cell trajectories. , 1993, Journal of immunological methods.
[30] T. K. van den Berg,et al. Localization of beta 1 integrins and their extracellular ligands in human lymphoid tissues. , 1993, The American journal of pathology.
[31] R. Fässler,et al. Expression of tenascin in developing and adult mouse lymphoid organs. , 1993, The journal of histochemistry and cytochemistry : official journal of the Histochemistry Society.
[32] C. Meijer,et al. Monoclonal antibody 4C7 recognizes an endothelial basement membrane component that is selectively expressed in capillaries of lymphoid follicles , 1993, The Journal of pathology.
[33] K. Takaya,et al. The enveloping of intercellular collagenous fibrils by reticular cell processes in postnatal development of rat lymph nodes. , 1992, Archives of histology and cytology.
[34] A. Gearing,et al. Expression and cell distribution of the intercellular adhesion molecule, vascular cell adhesion molecule, endothelial leukocyte adhesion molecule, and endothelial cell adhesion molecule (CD31) in reactive human lymph nodes and in Hodgkin's disease. , 1992, The American journal of pathology.
[35] J. Kupiec-Weglinski,et al. Recognition of self within self: specific lymphocyte positioning and the extracellular matrix. , 1991, Immunology today.
[36] W. Carter,et al. Epiligrin, a new cell adhesion ligand for integrin α3β1 in epithelial basement membranes , 1991, Cell.
[37] C. Rüegg,et al. Tenascin, an extracellular matrix protein, exerts immunomodulatory activities. , 1989, Proceedings of the National Academy of Sciences of the United States of America.
[38] J. Risteli,et al. Immunoelectron microscopic localization of laminin, type IV collagen, and type III pN-collagen in reticular fibers of human lymph nodes. , 1989, The journal of histochemistry and cytochemistry : official journal of the Histochemistry Society.
[39] M. Kobayashi,et al. Direct contact between reticular fibers and migratory cells in the paracortex of mouse lymph nodes: a morphological and quantitative study. , 1988, Archives of histology and cytology.
[40] R. Moll,et al. Cytoskeletal components of lymphoid organs , 1987 .
[41] J. Levick,et al. An analysis of the permeability of a fenestra. , 1987, Microvascular research.
[42] M. Kowala,et al. The popliteal lymph node of the mouse: internal architecture, vascular distribution and lymphatic supply. , 1986, Journal of anatomy.
[43] T. Karttunen,et al. Distribution of basement membrane laminin and type IV collagen in human reactive lymph nodes , 1986, Histopathology.
[44] J. Foidart,et al. Reticular fibroblasts in peripheral lymphoid organs identified by a monoclonal antibody. , 1986, The journal of histochemistry and cytochemistry : official journal of the Histochemistry Society.
[45] D. Drenckhahn,et al. Stress fibers in the splenic sinus endothelium in situ: molecular structure, relationship to the extracellular matrix, and contractility , 1986, The Journal of cell biology.
[46] J. Couchman,et al. Production and characterization of monoclonal antibodies directed against connective tissue proteoglycans. , 1985, Federation proceedings.
[47] Y. He,et al. Scanning electron microscope studies of the rat mesenteric lymph node with special reference to high-endothelial venules and hitherto unknown lymphatic labyrinth. , 1985, Archivum histologicum Japonicum = Nihon soshikigaku kiroku.
[48] W. Haston,et al. Invasion of collagen gels by mouse lymphoid cells. , 1984, Immunology.
[49] T. Allen,et al. Lymphocyte migration into three-dimensional collagen matrices: a quantitative study , 1983, The Journal of cell biology.
[50] A. Farr,et al. The structure of the sinus wall of the lymph node relative to its endocytic properties and transmural cell passage. , 1980, The American journal of anatomy.
[51] P. Rácz,et al. The "mosaic" structure of the sinuses in the hilar lymph node complex of the lungs in rabbits undergoing a pulmonary cell-mediated reaction: an electron microscopic study. , 1978, Journal of the Reticuloendothelial Society.
[52] A. Vaheri,et al. Distribution of a major connective tissue protein, fibronectin, in normal human tissues , 1978, The Journal of experimental medicine.
[53] A. Anderson,et al. Specialized structure and metabolic activities of high endothelial venules in rat lymphatic tissues. , 1976, Immunology.
[54] A. Anderson,et al. Studies on the structure and permeability of the microvasculature in normal rat lymph nodes. , 1975, The American journal of pathology.
[55] A. Stuart,et al. The human reticular cell: Morphology and cytochemistry , 1971, The Journal of pathology.
[56] C. Barker,et al. THE ROLE OF AFFERENT LYMPHATICS IN THE REJECTION OF SKIN HOMOGRAFTS , 1968, The Journal of experimental medicine.
[57] R. Moe. Fine structure of the reticulum and sinuses of lymph nodes , 1963 .
[58] S. L. Clark. The reticulum of lymph nodes in mice studied with the electron microscope. , 1962, The American journal of anatomy.
[59] J. Gowans. The recirculation of lymphocytes from blood to lymph in the rat , 1959, The Journal of physiology.
[60] E. Butcher,et al. Lymphocyte trafficking and regional immunity. , 1999, Advances in immunology.
[61] H. Erickson,et al. Tenascin: an extracellular matrix protein prominent in specialized embryonic tissues and tumors. , 1989, Annual review of cell biology.
[62] H. Konomi,et al. IMMUNOHISTOCHEMICAL LOCALIZATION OF TYPES I, III AND IV (BASEMENT MEMBRANE) COLLAGENS IN THE LYMPH NODE: CO-DISTRIBUTION OF TYPES I AND III COLLAGENS IN THE RETICULAR FIBERS , 1981 .
[63] T. Ogata,et al. A scanning electron microscopic study on the lymphatic microcirculation of the rabbit mesenteric lymph node. A corrosion cast study. , 1980, Acta anatomica.