Artigo Revisado por pares

QUANTITATIVE STUDIES WITH MAST CELLS

1963; Wiley; Volume: 103; Issue: 1 Linguagem: Inglês

10.1111/j.1749-6632.1963.tb53693.x

ISSN

1749-6632

Autores

Jacques Padawer,

Tópico(s)

RNA modifications and cancer

Resumo

Annals of the New York Academy of SciencesVolume 103, Issue 1 p. 87-138 QUANTITATIVE STUDIES WITH MAST CELLS Jacques Padawer, Jacques Padawer Departments of Anatomy and Biochemistry, Albert Einstein College of Medicine, Yeshiva University, New York, N.Y. Established Investigator, American Heart Association. Work supported by Grants-in-aid from The American Heart Association and the Leukemia Society.Search for more papers by this author Jacques Padawer, Jacques Padawer Departments of Anatomy and Biochemistry, Albert Einstein College of Medicine, Yeshiva University, New York, N.Y. Established Investigator, American Heart Association. Work supported by Grants-in-aid from The American Heart Association and the Leukemia Society.Search for more papers by this author First published: February 1963 https://doi.org/10.1111/j.1749-6632.1963.tb53693.xCitations: 53 AboutPDF ToolsRequest permissionExport citationAdd to favoritesTrack citation ShareShare Give accessShare full text accessShare full-text accessPlease review our Terms and Conditions of Use and check box below to share full-text version of article.I have read and accept the Wiley Online Library Terms and Conditions of UseShareable LinkUse the link below to share a full-text version of this article with your friends and colleagues. Learn more.Copy URL Share a linkShare onEmailFacebookTwitterLinkedInRedditWechat References 1 Albrecht, M. 1955. Untersuchungen uber die mitosehemmende Wirkung von Demecolcin auf menschliches Knochenmark in vitro. Acta Haematol. 13: 8–13. 10.1159/000204918 CASPubMedGoogle Scholar 2 Allen, A. M. 1961. The occurrence and demonstration of spontaneous and experimentally-induced mitosis in mast cells of the rat. Doctorate Thesis. Univ. of Wisconsin. Ann Arbor , Mich . Google Scholar 3 Allen, A. M. 1961. Mitosis in mast cells of a rat. Anat. Record. 139: 13–21. 10.1002/ar.1091390103 PubMedWeb of Science®Google Scholar 4 Allen, A. M. 1962. Deoxyribonucleic acid synthesis and mitosis in mast cells of the rat. Lab. Invest. 11: 188–191. CASPubMedWeb of Science®Google Scholar 5 Allen, L. 1945. A quantitative study of tissue fluid-lymph cellular ratios. Anat. Record. 92: 279–288. 10.1002/ar.1090920309 Web of Science®Google Scholar 6 Allen, L. 1956. On the penetrability of the lymphatics of the diaphragm. Anat. Record. 124: 639–658. 10.1002/ar.1091240404 CASPubMedWeb of Science®Google Scholar 7 Altman, J. 1962. Are new neurons formed in the brains of adult mammals Science. 135: 1127–1128. 10.1126/science.135.3509.1127 CASPubMedWeb of Science®Google Scholar 8 Archer, G. T. 1959. The release of histamine from the mast cells of the rat. Australian J. Exptl. Biol. Med. Sci. 37: 383–390. 10.1038/icb.1959.40 CASPubMedGoogle Scholar 9 Arvy, L. 1956. Les labrocytes, l'héparine et I'histamine. Ann. Biol. 32: 169–202. Google Scholar 10 Baker, B. L. 1953. Mast cells of the omentum in relation to states of adrenocortical deficiency and excess. Ann. N. Y. Acad. Sci. 56: 684–692. 10.1111/j.1749-6632.1953.tb27390.x CASPubMedWeb of Science®Google Scholar 11 Baratta, P. F., E. Mari, G. Angeli & A. Perlini. 1953. Comportamento delle cellule granulose basofile (mastzellen) nella linfa peritoneale di ratti a dieta ipercolesterolica. Haematol. Latina (Milan). 37: 711–720. CASPubMedGoogle Scholar 12 Bélancer, L. F. & C. Bélancer. 1960. Alpharadiography: a simple method for determination of mass concentration in cells and tissues. Anat. Record. 136: 329. Google Scholar 13 Bélanger, L. F. & B. B. Migicovsky. 1961. Osteoclast formation in the chick as visualized by H3 thymidine autoradiography. Anat. Record. 139: 207. Web of Science®Google Scholar 14 Benditt-, E. P. & J. E. French. 1953. Histochemistry of connective tissue: I. The use of enzymes as specific histochemical reagents. J. Histochem. Cytochem. 1: 315–320. 10.1177/1.5.315 CASPubMedWeb of Science®Google Scholar 15 Benditt, E. P., R. L. Wong, M. Arase & E. Roeper. 1955. 5-Hydroxytryptamine in mast cells. Proc. Soc. Exptl. Biol. Med. 90: 303–304. 10.3181/00379727-90-22016 CASPubMedWeb of Science®Google Scholar 16 Bensley, S. H. 1952. On the origin of mast cells. Anat. Record. 112: 310. Web of Science®Google Scholar 17 Bergeron, J. A. & M. Singer. 1958. Metachromasy: an experimental and theoretical reevaluation. J. Biophys. Biochem. Cytol. 4: 433–457. 10.1083/jcb.4.4.433 CASPubMedWeb of Science®Google Scholar 18 Bloom, G. & N. R. Ringertz. 1960. Acid polysaccharides of peritoneal mast cells of the rat and mouse. Arkiv Kemi. 16: 51–56. Web of Science®Google Scholar 19 Bloom, G. & E. Valmet. 1960. A density gradient centrifugation technique for large scale separation of rat peritoneal mast cells. Acta Morphol. Neerl.-Scand. 3: 229–234. Google Scholar 20 Bosworth, N. & G. T. Archer. 1961. The eosinophil content of the peritoneal cavity of the rat. Australian J. Exptl. Biol. Med. Sci. 39: 165–170. 10.1038/icb.1961.16 Web of Science®Google Scholar 21 Bullough, W. S. 1950. Mitotic activity in the tissues of dead mice, and in tissues kept in physiological salt solutions. Exptl. Cell Res. 1: 410–420. 10.1016/0014-4827(50)90019-X Web of Science®Google Scholar 22 Burke, W. T., G. Brotherston & C. IIarris. 1955. An improved technic for obtaining bone marrow smears from the rat. Am. J. Clin. Pathol. 25: 1226–1228. CASPubMedGoogle Scholar 23 Burton, A. L. 1960. The fate of normal mast cells studied in tissue culture by means of time lapse cinephotomicrography. Anat. Record. 136: 407–412. 10.1002/ar.1091360307 CASPubMedWeb of Science®Google Scholar 24 Cardinali, G., G. Cardinali, A. H. Handler & M. F. Agrifoglio. 1961. Comparative effects of colchicine and vincaleukoblastine on bone marrow mitotic activity in Syrian hamster. Proc. Soc. Exptl. Biol. Med. 107: 891–892. 10.3181/00379727-107-26786 CASPubMedWeb of Science®Google Scholar 25 Chu, C. H. U. 1960. A study of the subcutaneous connective tissue of the mouse, with special reference to nuclear type, nuclear division and mitotic rhythm. Anat. Record. 138: 11–26. 10.1002/ar.1091380104 CASPubMedWeb of Science®Google Scholar 26 Cifonelli, J. A. & A. Dorfman. 1961. Structural studies on heparin and heparitin sulfate. Biochem. Biophys. Res. Commun. 4: 328–331. 10.1016/0006-291X(61)90212-1 CASPubMedWeb of Science®Google Scholar 27 Cifonelli, J. A. & A. Dorfman. 1962. The uronic acid of heparin. Biochem. Biophys. Res. Commun. 7: 41–45. 10.1016/0006-291X(62)90141-9 CASPubMedWeb of Science®Google Scholar 28 Cole, K. S. 1932. Surface forces of the Arbacia egg. J. Cellular Comp. Physiol. 1: 1–9. 10.1002/jcp.1030010102 PubMedGoogle Scholar 29 Courtice, F. C. & W. J. Simmonds. 1954. Physiological significance of lymph drainage of the serous cavities and lungs. Physiol. Rev. 34: 419–448. 10.1152/physrev.1954.34.3.419 CASPubMedWeb of Science®Google Scholar 30 Cunningham, D. J. 1951. Textbook of Anatomy. J. C. Brash, Ed. Oxford Univ. Press. London , England . Google Scholar 31 Cutts, J. H. 1961. The effect of vincaleukoblastine on dividing cells in vivo. Cancer Res. 21: 168–172. CASPubMedWeb of Science®Google Scholar 32 Danishefsky, I., H. B. Eiber & E. Langholz. 1962. Investigations on the chemistry of heparin. J. Biol. Chem. 237: 1413–1417. CASWeb of Science®Google Scholar 33 Douglas, W. W. & A. M. Poisner. 1961. Stimulation of uptake of calcium-45 in the adrenal gland by acetylcholine. Nature. 192: 1299. 10.1038/1921299a0 CASPubMedWeb of Science®Google Scholar 34 Douglas, W. W. & R. P. Rubin. 1961. The role of calcium in the secretory response of the adrenal medulla to acetylcholine. J. Physiol. 159: 40–57. 10.1113/jphysiol.1961.sp006791 CASPubMedWeb of Science®Google Scholar 35 Dunn, T. B. 1954. Normal and pathologic anatomy of the reticular tissue in laboratory mice: with a classification and discussion of neoplasms. J. Natl. Cancer Inst. 14: 1281–1433. PubMedWeb of Science®Google Scholar 36 Dunn, T. B. 1958. Morphology and pathology of reticular neoplasms in the mouse: relationship to man. Ann. N. Y. Acad. Sci. 76: 619–629. 10.1111/j.1749-6632.1958.tb54880.x CASPubMedWeb of Science®Google Scholar 37 Dunn, T. B. & M. Potter. 1957. A transplantable mast-cell neoplasm in the mouse. J. Natl. Cancer Inst. 18: 587–601. CASPubMedWeb of Science®Google Scholar 38 Eigsti, O. J. & P. Dustin, Jr. 1955. Colchicine in Agriculture, Medicine, Biology and Chemistry. Iowa State Coll Press. Ames , Ia . Google Scholar 39 Fawcett, D. W. 1953. Experimental studies on the regeneration of mast cells. Anat. Record. 115: 305. Web of Science®Google Scholar 40 Fawcett, D. W. 1955. An experimental study of mast cell degranulation and regeneration. Anat. Record. 121: 29–52. 10.1002/ar.1091210104 PubMedWeb of Science®Google Scholar 41 Fodor, J., P. Fábry & Z. Lojda. 1958. High fat diet and mast cell count in rat mesenterium. Experientia. 14: 184–186. 10.1007/BF02158655 CASPubMedWeb of Science®Google Scholar 42 Fodor, J. & Z. Lojda. 1956. On the relationship of heparinocytes to the transport of fats. Physiol. Bohemoslov. 5: 275–282. CASPubMedGoogle Scholar 43 French, J. E. & E. P. Benditt. 1953. The histochemistry of connective tissue: II. the effect of proteins on the selective staining of mucopolysaccharides by basic dyes.. J. Histochem. Cytochem. 1: 321–325. 10.1177/1.5.321 CASPubMedWeb of Science®Google Scholar 44 Fruhman, G. J. 1959. Mobilization of neutrophils into peritoneal fluid following intraperitoneal injection of bacterial endotoxins. Proc. Soc. Exptl. Biol. Med. 102: 423–425. 10.3181/00379727-102-25272 CASPubMedWeb of Science®Google Scholar 45 Furth, J., P. Hagen & E. I. Hirsch. 1957. Transplantable mastocytoma in the mouse containing histamine, heparin, 5-hydroxytryptamine. Proc. Soc. Exptl. Biol. Med. 95: 824–828. 10.3181/00379727-95-23375 CASPubMedWeb of Science®Google Scholar 46 Garber, B. 1953. Quantitative studies on the dependence of cell morphology and motility upon the fine structure of the medium in tissue culture. Exptl. Cell Res. 5: 132–146. 10.1016/0014-4827(53)90099-8 CASPubMedWeb of Science®Google Scholar 47 Glick, D., S. L. Bonting & D. DenBoer. 1956. Histochemistry XLIV. Use of density gradient for isolation of mast cells. Proc. Soc. Exptl. Biol. Med. 92: 357–359. 10.3181/00379727-92-22476 CASPubMedWeb of Science®Google Scholar 48 Goldie, H., T. Turner, G. Faustina, A. Davis & E. Greene. 1962. Inhibition by peritoneal tumor growth of mast cell invasion in the peritoneal fluid of normal mice. Federation Proc. 21: 165. Web of Science®Google Scholar 49 Gorman, M., N. Neuss & G. H. Svoboda. 1959. Vinca alkaloids. IV. Structural features of leurosine and vincaleukoblastine, representatives of a new type of indole-indoline alkaloids. J. Am. Chem. Soc. 81: 4745–4746. 10.1021/ja01526a075 CASWeb of Science®Google Scholar 50 Green, J. P. & M. Day. 1960. Heparin, 5-hydroxytryptamine, and histamine in neoplastic mast cells. Biochem. Pharmacol. 3: 190–205. 10.1016/0006-2952(60)90107-6 CASPubMedWeb of Science®Google Scholar 51 Grunbaum, B. W., J. R. Geary, Jr., F. Grande, J. T. Anderson & D. Click. Effect of dietary lipid on rat serum and liver cholesterol and tissue mast cells. Proc. Soc. Exptl. Biol. Med. 94: 613–617. Google Scholar 52 Harvey, E. N. 1954. Tension at the cell surface. In Protoplasmatologia.. Vol. 2: Part E5: 1–30. E. V. Heilbrunn, Ed. Springer. Vienna , Austria . Google Scholar 53 Hellström, B. & H. J. Holmgren. 1950. Numerical distribution of mast cells in the human skin and heart. Acta Anat. 10: 81–107. 10.1159/000140456 PubMedWeb of Science®Google Scholar 54 Higginbotham, R. D. & T. F. Dougherty. 1956. Mechanism of heparin protection against a histamine releasor (48/80). Proc. Soc. Exptl. Biol. Med. 92: 493–498. 10.3181/00379727-92-22522 CASPubMedWeb of Science®Google Scholar 55 Hill, M. 1957. Secretion of heparin by mast cells. Nature. 180: 654–655. 10.1038/180654a0 CASPubMedWeb of Science®Google Scholar 56 Hilliard, G. W. & H. E. Nash. 1951. Cellular composition of the peritoneal fluid in DBA mice after intraperitoneal injection of normal or malignant human cells. J. Lab. Clin. Med. 38: 846–849. CASPubMedWeb of Science®Google Scholar 57 Hoffman, J. G. 1953. The Size and Growth of Tissue Cells. Thomas. Springfield , Ill . Google Scholar 58 Högberg, B. & B. Uvnäs. 1960. Further observations on the disruption of rat mesentery mast cells caused by compound 48/80, antigen-antibody reaction, lecithinase A and decylamine. Acta Physiol. Scand. 48: 133–145. 10.1111/j.1748-1716.1960.tb01853.x CASPubMedGoogle Scholar 59 Hunt, T. E. & E. A. Hunt. 1957. Mitotic activity of mast cells. Proc. Soc. Exptl. Biol. Med. 94: 166–169. 10.3181/00379727-94-22887 CASPubMedWeb of Science®Google Scholar 60 Iennings, M. A., H. W. Florey & D. S. Robinson. 1960. Observations on the mast cells with special reference to fat transport. Quart. J. Exptl. Physiol. 45: 298–311. 10.1113/expphysiol.1960.sp001475 Google Scholar 61 Kelényi, G. 1954. Effect of cytotoxic agents on tissue mast cells. Acta Morphol. Acad. Sci. Hung. 4: 345–351. CASPubMedGoogle Scholar 62 Kelsall, M. A. & E. D. Crabb. Increased mast cells in the thymus of X-irradiated hamsters. Science. 115: 123–124. Google Scholar 63 Klein, G. & L. Révéz. 1953. Quantitative studies on the multiplication of neoplastic cells in vivo. I, Growth curves of the Ehrlich and MCIM ascites tumors. J. Natl. Cancer Inst. 14: 229–277. 10.1093/jnci/14.2.229 CASPubMedWeb of Science®Google Scholar 64 Klotz, I. M. 1957. Interaction of organic molecules with proteins. In Molecular Structure and Biological Specificity, pp. 91–112. L. Pauling and H. A. Itano, Eds. American Institute of Biological Sciences. Publ. #2. Washington , D.C. . Google Scholar 65 Korn, E. D. 1959. The synthesis of heparin by slices of mouse mast cell tumor,. J. Biol. Chem. 234: 1321–1324. CASPubMedWeb of Science®Google Scholar 66 Korn, E. D. 1959. The isolation of heparin from mouse mast cell tumor. J. Biol. Chem. 234: 1325–1329. CASPubMedWeb of Science®Google Scholar 67 Lagunoff, D. and E. P. Benditt. 1959. 5-Hydroxytryptophan decarboxylase activity in rat mast cells. Am. J. Physiol. 196: 993–997. CASPubMedWeb of Science®Google Scholar 68 Landsmeer, J. M. F. 1951. Some colloid chemical aspects of metachromasia; influence of pH and salts on metachromatic phenomena evoked by toluidine blue in animal tissue. Acta Physiol. Pharmacol. Neerl. 2: 112–128. CASPubMedWeb of Science®Google Scholar 69 Lehner, J. 1924. Das Mastzellen-Problem und die Metachromasie-Frage. Ergeb. Anat. Entwicklungsgeschichte. 25: 67–184. Google Scholar 70 Lettré, H. 1956. Resistance to colchicine, trypaflavine, and radiation in selected sublines of the Ehrlich Ascites Tumor. Ann. N. Y. Acad. Sci. 63: 1022–1030. 10.1111/j.1749-6632.1956.tb50910.x PubMedWeb of Science®Google Scholar 71 Lettré, H. 1958. Assay of mitotic poisons on the hyperdiploid Ehrlich Ascites Carcinoma. Ann. N. Y. Acad. Sci. 76: 556–571. 10.1111/j.1749-6632.1958.tb54874.x PubMedWeb of Science®Google Scholar 72 Lettré, H. & W. Kramer. 1952. Eine gegen Colchicin resistente Abart des Mäuse-Ascites-Tumors. Naturwiss. 39: 117. 10.1007/BF00590413 Web of Science®Google Scholar 73 Lewis, M. R. 1925. The formation of macrophages, epithelioid cells and giant cells from leukocytes in incubated blood. Am. J. Pathol. 1: 91–100. CASPubMedWeb of Science®Google Scholar 74 Lillie, R. D. 1954. Histopathologic Technic and Practical Histochemistry. Blakiston. New York , N. Y. . Google Scholar 75 Lillie, R. D. & H. J. Burtner. 1953. Stable sudanophilia of human neutrophil leucocytes in relation to peroxidase and oxidase. J. Histochem. Cytochem. 1: 8–26. 10.1177/1.1.8 CASPubMedWeb of Science®Google Scholar 76 Lison, L. 1936. Histochimie Anhale. Gauthier-Villars. Paris , France . Google Scholar 77 Lison, L. 1960. Histochimie et Cytochimie Animales. Vol. I. Gauthier-Villars. Paris , France . Google Scholar 78 Lombard, L. S. & J. B. Moloney. 1959. Experimental transmission of mast cell sarcoma in dogs. Federation Proc. 18: 490. Web of Science®Google Scholar 79 Marsland, D. 1956. Protoplasmic contractility in relation to gel structure: temperature-pressure experiments on cytokinesis and amoeboid movement. Intern. Rev. Cytol. 5: 199–227. 10.1016/S0074-7696(08)62571-1 CASWeb of Science®Google Scholar 80 Meggers, D. E. & A. M. Allen. 1962. Feulgen reaction-Bismarck brown; a stain for mast cells in mitosis. Stain Technol. 37: 221–224. 10.3109/10520296209117740 CASPubMedWeb of Science®Google Scholar 81 Michels, N. A. 1938. The mast cells. In Handbook of Hematology. 1: 232–372. H. Downey, Ed. Hoeber, New York , N. Y . Google Scholar 82 Midgley, A. R., B. Pierce & F. J. Dixon. 1959. Nature of colchicine resistance in golden hamster. Science. 130: 40–41. 10.1126/science.130.3366.40 CASPubMedWeb of Science®Google Scholar 83 Montagna, W. 1955. Ciba Found. Colloq. on Aging. 2: 252. Google Scholar 84 Oberling, C. & W. Bernhard. 1961. The morphology of the cancer cells. In The Cell. J. Brachet and A. E. Mirsky, Eds. 5: 405–496. Academic Press. New York , N. Y. . Google Scholar 85 Olmstead, P. S. & J. W. Tukey. 1947. A corner test for association. Ann. Math. Statist. 18: 495–513. 10.1214/aoms/1177730341 Web of Science®Google Scholar 86 Orsini, M. W. & B. Pansky. 1952. The natural resistance of the golden hamster to colchicine. Science. 115: 88–89. 10.1126/science.115.2978.88 PubMedWeb of Science®Google Scholar 87 Padawer, J. 1954. Studies of endocrine influences upon the cellular components of peritoneal fluid. Doctorate Thesis. Grad. Schl. Arts and Sci. New York Univ. New York , N. Y. . Google Scholar 88 Padawer, J. 1957. Studies on mammalian mast cells. Trans. N. Y. Acad. Sci. 19: 690–713. 10.1111/j.2164-0947.1957.tb00562.x PubMedGoogle Scholar 89 Padawer, J. 1959. A stain for mast cells and its application in various vertebrates and in a mastocytoma. J. Histochem. Cytochem. 7: 352–353. 10.1177/7.5.352 CASPubMedWeb of Science®Google Scholar 90 Padawer, J. 1960. Effect of colchicine and related substances on the morphology of peritoneal mast cells. J. Natl. Cancer Inst. 25: 731–747. 10.1093/jnci/25.4.731 PubMedWeb of Science®Google Scholar 91 Padawer, J. 1961. Autoradiographic studies with mast cells. Anat. Record. 139: 343. Google Scholar 92 Padawer, J. 1961. Autoradiography of mast cells incubated with tritiated histidine, cytidine or thymidine. Angiology. 12: 538–545. 10.1177/000331976101201017 CASPubMedWeb of Science®Google Scholar 93 Padawer, J. 1961. Effect of podophyllin lignans on mast cell morphology in rat peritoneal fluid. Am. J. Physiol. 200: 1340–1344. CASPubMedWeb of Science®Google Scholar 94 Padawer, J. & A. S. Gordon. 1952. A mechanism for the eosinopenia induced by cortisone and by epinephrine. Endocrinology. 51: 52–58. 10.1210/endo-51-1-52 CASPubMedWeb of Science®Google Scholar 95 Padawer, J. & A. S. Gordon. 1955. Mammalian mast cells and histamine liberators. Anat. Record. 121: 411. Web of Science®Google Scholar 96 Padawer, J. & A. S. Gordon. 1955. Isolation of mast cells from other cellular elements of rat peritoneal fluid. Proc. Soc. Exptl. Biol. Med. 88: 29–31. 10.3181/00379727-88-21483 CASPubMedWeb of Science®Google Scholar 97 Padawer, J. & A. S. Gordon. 1955. Effects of colchicine on mast cells of the rat. Proc. Soc. Exptl. Biol. Med. 88: 522–525. 10.3181/00379727-88-21639 CASPubMedWeb of Science®Google Scholar 98 Padawer, J. & A. S. Gordon. 1956. Studies on peritoneal fluid in the pregnant rat. Am. J. Obstet. Gynecol. 72: 79–83. 10.1016/S0002-9378(16)37516-0 CASPubMedWeb of Science®Google Scholar 99 Padawer, J. & A. S. Gordon. 1956. Cellular elements in the peritoneal fluid of some mammals. Anat. Record. 124: 209–222. 10.1002/ar.1091240206 CASPubMedWeb of Science®Google Scholar 100 Padawer, J. & A. S. Gordon. 1956. Endocrine influences on the mast cells of the rat. Anat. Record. 124: 65–78. 10.1002/ar.1091240405 Web of Science®Google Scholar 101 Padawer, J. & A. S. Gordon. 1956. Peritoneal fluid mast cells: Their numbers and morphology in rats of various body weights (ages). J. Gerontol. 11: 268–272. 10.1093/geronj/11.3.268 CASPubMedWeb of Science®Google Scholar 102 Padawer, J., D. Marsland & J. I. Pankove. 1960. Return to sphericity following centrifugal elongation of rat mast cells. I. Population studies with rats of different ages. Exptl. Cell Res. 21: 316–325. 10.1016/0014-4827(60)90263-9 CASPubMedWeb of Science®Google Scholar 103 Padawer, J., D. Marsland & J. I. Pankove. 1961. Return to sphericity following centrifugal elongation of rat mast cells. 11. Studies with individual cells. Exptl. Cell Res. 25: 65–79. 10.1016/0014-4827(61)90307-X CASPubMedWeb of Science®Google Scholar 104 Padawer, J., A. Hi. Zimmerman, W. Auclair & D. Marsland. 1958. Pressure—centrifuge studies on the mast cells of peritoneal fluid in rats of various ages. Exptl. Cell Res. 15: 570–580. 10.1016/0014-4827(58)90105-8 CASPubMedWeb of Science®Google Scholar 105 Padawer, J., A. Hl. Zimmerman, A. s. Gordon & D. Marsland. 1956. Effect of high hydrostatic pressures on colchicine-damaged mast cells of peritoneal fluid. Proc. Soc. Exptl. Biol. Med. 92: 328–331. 10.3181/00379727-92-22467 CASPubMedWeb of Science®Google Scholar 106 Palmer, C. C., D. Livengood, A. K. Warren, P. J. Simpson & I. S. Johnson. 1960. The action of vincaleukoblastine on mitosis in vitro. Exptl. Cell Res. 20: 198–205. 10.1016/0014-4827(60)90234-2 CASPubMedWeb of Science®Google Scholar 107 Palmer, C. G. & A. K. Warren. 1962. The cytological action of alkaloids of Vinca rosea. Proc. Am. Assoc. Cancer Res. 3: 350. Google Scholar 108 Parekh, A. C. & D. Click. 1962. Heparin and hexosamine in isolated mast cells: determination, intracellular distribution, and effects of biological state. J. Biol. Chem. 237: 280–286. CASPubMedWeb of Science®Google Scholar 109 Radden, B. G. 1961. An investigation of the factors influencing the metachromatic staining of mast cell granules. J. Histochem. Cytochem. 9: 165–170. 10.1177/9.2.165 CASPubMedWeb of Science®Google Scholar 110 Radden, B. G. 1962. Cytochemical variations in the granules of the rat mast cells, and their relation to mast cell maturation. Australian J. Exptl. Biol. Med. Sci. 40: 9–16. 10.1038/icb.1962.2 CASPubMedWeb of Science®Google Scholar 111 Randolph, T. C. 1949. Differentiation and enumeration of eosinophils in the counting chamber with a glycol stain; a valuable technique in appraising ACTH dosage. J. Lab. Clin. Med. 34: 1696–1701. Web of Science®Google Scholar 112 Rigal, W. M. 1961. Uptake and incorporation of tritiated thymidine in in vitro culture. Nature. 192: 768. 10.1038/192768a0 CASPubMedWeb of Science®Google Scholar 113 Riley, J. F. 1959. The Mast Cells. Livingstone. Edinburgh , Scotland . 10.5962/bhl.title.6423 Google Scholar 114 Riley, J. F. & C. B. West. 1956. A binding site for histamine in hog pyloric niucosa. Experientia. 12: 153–157. 10.1007/BF02170609 CASPubMedWeb of Science®Google Scholar 115 Ringertz, N. R. 1960. Acid polysaccharides of two mast cell tumors in mice. Acta Chem. Scand. 14: 312–320. 10.3891/acta.chem.scand.14-0312 CASWeb of Science®Google Scholar 116 Ringertz, N. R. & P. Reichard. 1960. Chromatography on ECTEOLA of sulfate containing mucopolysaccharides. Acta Chem. Scand. 14: 303–311. 10.3891/acta.chem.scand.14-0303 CASWeb of Science®Google Scholar 117 Ris, H. 1955. Cell division. In, Analysis of Development. pp. 91–125. B. H. Willier, P. A. Weiss and V. Hamburger, Eds. W. B. Saunders Co. Phila , Pa . Google Scholar 118 Rowley, D. A. & E. P. Benditt. 1956. 5-Hydroxytryptamine and histamine as mediators of the vascular injury produced by agents which damage mast cells in rats. J. Exptl. Med. 103: 399–414. 10.1084/jem.103.4.399 CASPubMedWeb of Science®Google Scholar 119 Saunders, A. Hl.. 1962. Acridine orange staining for the identification of acid mucopolysaccharides. J. Histochem. Cytochem. 10: 683. Web of Science®Google Scholar 120 Schiller, S. & A. Dorfman. 1959. The isolation of heparin from mast cells of the normal rat. Biochim. Biophys. Acta. 31: 278–280. 10.1016/0006-3002(59)90478-0 CASPubMedWeb of Science®Google Scholar 121 Schindler, R., M. Day & G. A. Fischer. 1959. Culture of neoplastic mast cells and their synthesis of 5-hydroxytryptamine and histamine in vitro. Cancer Res. 19: 47–51. CASPubMedWeb of Science®Google Scholar 122 Schubert, M. & D. Hamerman. 1956. Metachromasia; chemical theory and histochemical use. J. Histochem. Cytochem. 4: 159–189. 10.1177/4.2.159 CASPubMedWeb of Science®Google Scholar 123 Scott, G. H. 1933. The localization of mineral salts in cells of some mammalian tissues by micro-incineration. Am. J. Anat. 53: 243–288. 10.1002/aja.1000530205 CASWeb of Science®Google Scholar 124 Scott, K. G., R. R. Scheline & R. S. Stone. 1958. Mast cells and sarcoma growth in the rat. Cancer. Res. 18: 927–931. CASPubMedWeb of Science®Google Scholar 125 Seeley, S. F., G. M. Higgins & F. C. Mann. 1937. The cytologic response of the peritoneal fluid to certain substances. Surgery. 2: 862–876. Web of Science®Google Scholar 126 Sheehan, H. L. 1939. The staining of leucocyte granules by Sudan black B. J. Pathol. Bacteriol. 49: 580–581. 10.1002/path.1700490316 Google Scholar 127 Sjoerdsma, A., T. P. Waalkes & H. Weissbach. 1957. Serotonin and histamine in mast cells. Science. 125: 1202–1203. 10.1126/science.125.3259.1202 CASPubMedWeb of Science®Google Scholar 128 Smart, I. & C. P. Leblond. 1951. Evidence for division and transformations of neuroglia cells in the mouse brain, as derived from radioautography after injection of thymidine-H3. J. Comp. Neurol. 116: 349–367. 10.1002/cne.901160307 Web of Science®Google Scholar 129 Smith, D. E. & Y. S. Lewis. 1957. Electron microscopy of the tissue mast cell. J. Biophys. Biochem. Cytol. 3: 9–14. 10.1083/jcb.3.1.9 CASPubMedWeb of Science®Google Scholar 130 Suzuki, S. & J. L. Strominger. 1960. Enzymatic sulfation of mucopolysaccharides in hen oviduct. III. Mechanism of sulfation of chondroitin and chondroitin sulfate A. J. Biol. Chem. 235: 274–276. CASPubMedWeb of Science®Google Scholar 131 Tonna, E. A. 1961. Use of tritiated thymidine for the study of the origin of the osteoclast. Nature. 190: 459–460. 10.1038/190459a0 CASPubMedWeb of Science®Google Scholar 132 Turbyfill, C. L. & A. L. Soderwall. 1957. Sensitivity of hamster to colchicine. Science. 126: 749. 10.1126/science.126.3277.749 PubMedWeb of Science®Google Scholar 133 Uvnäs, B. & I. L. Thon. 1959. Isolation of "biologically intact" mast cells. Exptl. Cell Res. 18: 512–520. 10.1016/0014-4827(59)90316-7 CASPubMedWeb of Science®Google Scholar 134 Valtonen, E. J. 1961. The effect of ultra-violet radiation of some spectral wavebands on the mast cell count in the skin. Acta Pathol. Microbiol. Scand. Suppl. 151. PubMedGoogle Scholar 135 Walker, B. E. 1961. Mast cell turn-over in adult mice. Nature. 192: 980–981. 10.1038/192980a0 CASPubMedWeb of Science®Google Scholar 136 Weiss, L. P. & D. W. Fawcett. 1953. Cytochemical observations on chicken monocytes macrophages and giant cells in tissue culture. J. Histochem. Cytochem. 1: 47–65. 10.1177/1.1.47 CASPubMedWeb of Science®Google Scholar 137 Weiss, P. & B. Carber. 1952. Shape and movement of mesenchyme cells as functions of the physical structure of the medium. Contributions to a quantitative morphology. Proc. Natl. Acad. Sci. 38: 264–280. 10.1073/pnas.38.3.264 CASPubMedWeb of Science®Google Scholar 138 Wilson, J. W. & E. H. Leduc. 1948. The occurrence and formation of binucleate and multinucleate cells and polyploid nuclei in the mouse liver. Am. J. Anat. 82: 353–392. 10.1002/aja.1000820302 CASPubMedWeb of Science®Google Scholar 139 Yoffey, J. M. & F. C. Courtice. 1956. Lymphatics Lymph and Lymphoid Tissue. Harvard Univ. Press. Cambridge , Mass . Google Scholar Citing Literature Volume103, Issue1Mast Cells and BasophilsFebruary 1963Pages 87-138 ReferencesRelatedInformation

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