Bromelain: biochemistry, pharmacology and medical use
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[1] E. Ferrari,et al. [Venous thromboembolism and cancer]. , 2001, Archives des maladies du coeur et des vaisseaux.
[2] Y. Hokama,et al. Chromatographic fractionation and characterization of the active platelet aggregation inhibitory factor from bromelain. , 1979, Archives internationales de pharmacodynamie et de therapie.
[3] S. Baqar,et al. Oral cytokine administration. , 1996, Immunology today.
[4] D. Bovbjerg,et al. Selective modulation of cell adhesion molecules on lymphocytes by bromelain protease 5. , 1996, Pathobiology : journal of immunopathology, molecular and cellular biology.
[5] Y. Honma,et al. Bromelain induces the differentiation of leukemic cells in vitro: an explanation for its cytostatic effects? , 1988, Planta Medica.
[6] E. Munzig,et al. Bromelain protease F9 reduces the CD44 mediated adhesion of human peripheral blood lymphocytes to human umbilical vein endothelial cells , 1994, FEBS letters.
[7] H. Dvorak. Thrombosis and cancer. , 1987, Human pathology.
[8] S. Kumakura,et al. Effect of bromelain on kaolin-induced inflammation in rats. , 1988, European Journal of Pharmacology.
[9] G. C. Tassman,et al. A DOUBLE-BLIND CROSSOVER STUDY OF A PLANT PROTEOLYTIC ENZYME IN ORAL SURGERY. , 1965, The Journal of dental medicine.
[10] B. Haynes,et al. Bromelain treatment of human T cells removes CD44, CD45RA, E2/MIC2, CD6, CD7, CD8, and Leu 8/LAM1 surface molecules and markedly enhances CD2-mediated T cell activation. , 1992, Journal of immunology.
[11] C. Metzig,et al. Bromelain proteases reduce human platelet aggregation in vitro, adhesion to bovine endothelial cells and thrombus formation in rat vessels in vivo. , 1999, In vivo.
[12] J. Olsen,et al. The risk of a diagnosis of cancer after primary deep venous thrombosis or pulmonary embolism. , 1998, The New England journal of medicine.
[13] R. D. Smyth,et al. Effects of bromelain anti-edema therapy on coagulation, bleeding, and prothrombin times. , 1963, The Journal of new drugs.
[14] K. Honn,et al. Platelets and Cancer Metastasis: More Than an Epiphenomenon , 1992, Seminars in thrombosis and hemostasis.
[15] T. Edmunds,et al. Complete amino acid sequence of ananain and a comparison with stem bromelain and other plant cysteine proteases. , 1997, The Biochemical journal.
[16] H. Lotz-Winter. On the Pharmacology of Bromelain: An Update with Special Regard to Animal Studies on Dose-Dependent Effects , 1990, Planta medica.
[17] Martin Gj,et al. BROMELAINS. THE PHARMACOLOGY OF THE ENZYMES. , 1963 .
[18] B. Lenarčič,et al. Characterization and structure of pineapple stem inhibitor of cysteine proteinases. , 1992, Biological chemistry Hoppe-Seyler.
[19] G. Klein,et al. Isolation of an effective debriding agent from the stems of pineapple plants. , 1983, International journal of tissue reactions.
[20] H. Hirt,et al. Mechanosensors in plants , 1996, Nature.
[21] S J Taussig,et al. Bromelain, the enzyme complex of pineapple (Ananas comosus) and its clinical application. An update. , 1988, Journal of ethnopharmacology.
[22] M. Hamlet,et al. Enzymatic frostbite eschar debridement by bromelain. , 1987, Annals of emergency medicine.
[23] D. Grunow,et al. Isolation and partial characterization of basic proteinases from stem bromelain , 1995, Journal of protein chemistry.
[24] Klaus Eckert,et al. Isolation and Characterization of Two Forms of an Acidic Bromelain Stem Proteinase , 1998, Journal of protein chemistry.
[25] A. Rehberger,et al. Proteolytic enzymes and amylase induce cytokine production in human peripheral blood mononuclear cells in vitro. , 1994, Cancer biotherapy.
[26] D. Buttle,et al. [38] Pineapple cysteine endopeptidases , 1994 .
[27] D. Desideri,et al. Possible involvement of eicosanoids in the pharmacological action of bromelain. , 1986, Arzneimittel-Forschung.
[28] A. Rehberger,et al. Induction of tumor necrosis factor in human peripheral-blood mononuclear cells by proteolytic enzymes. , 1990, Oncology.
[29] K. Eckert,et al. Bromelain proteinases modulate the cd44 expression on human molt-4/8 leukemia and sk-mel-28 melanoma-cells in-vitro. , 1994, International Journal of Oncology.
[30] R. Neubauer. A plant protease for potentiation of and possible replacement of antibiotics. , 1961, Experimental medicine and surgery.
[31] A. Rehberger,et al. Cytokine synthesis in human peripheral blood mononuclear cells after oral administration of polyenzyme preparations. , 1993, Oncology.
[32] C. Lehr,et al. Oral bioavailability of proteolytic enzymes , 1996 .
[33] P. Mehta. Potential role of platelets in the pathogenesis of tumor metastasis. , 1984, Blood.
[34] E. Weiderpass,et al. Venous thromboembolism and cancer , 1998, The Lancet.
[35] J. Castell. Intestinal Absorption of Undegraded Bromelain in Humans , 1995 .
[36] M. Katori,et al. Bromelain, a thilprotease from pineapple stem, depletes high molecular weight kininogen by activation of Hageman factor (factor XII) , 1979 .
[37] R. Mansel,et al. Progress in anti-invasion and anti-metastasis research and treatment. , 1996, International Journal of Oncology.
[38] C. Engwerda,et al. Bromelain, from pineapple stems, proteolytically blocks activation of extracellular regulated kinase-2 in T cells. , 1999, Journal of immunology.
[39] T. Mohr,et al. Stimulation of reactive oxygen species production and cytotoxicity in human neutrophils in vitro and after oral administration of a polyenzyme preparation. , 1995, Cancer biotherapy.
[40] K. Eckert,et al. Bromelain proteinase-f9 augments human lymphocyte-mediated growth-inhibition of various tumor-cells in-vitro. , 1994, International journal of oncology.
[41] R. Ryan. A DOUBLE‐BLIND CLINICAL EVALUATION OF BROMELAINS IN THE TREATMENT OF ACUTE SINUSITIS , 1967, Headache.
[42] M. Sy,et al. CD44 as a marker in human cancers. , 1997, Current opinion in oncology.
[43] H. Ako,et al. Isolation of a fibrinolysis enzyme activator from commercial bromelain. , 1981, Archives internationales de pharmacodynamie et de therapie.
[44] D. Gallie,et al. Signal Transduction in the Carnivorous Plant Sarracenia purpurea (Regulation of Secretory Hydrolase Expression during Development and in Response to Resources) , 1997, Plant Physiology.
[45] C. Soria,et al. The effect of platelets on invasiveness and protease production of human mammary tumor cells , 1995, International journal of cancer.
[46] I. Fichtner,et al. Bromelain proteases suppress growth, invasion and lung metastasis of B16F10 mouse melanoma cells. , 1997, International journal of oncology.
[47] G. Kelly,et al. Bromelain: A Literature Review and Discussion of its Therapeutic Applications , 1996 .
[48] B. Micheel,et al. Proteolytic enzymes modulate the adhesion molecule CD44 on malignant cells in vitro , 1997 .
[49] M J Leonard,et al. Purification and characterization of multiple forms of the pineapple-stem-derived cysteine proteinases ananain and comosain. , 1994, The Biochemical journal.
[50] G. Martin,et al. Systemic biochemical changes following the oral administration of a proteolytic enzyme, bromelain. , 1962, Archives internationales de pharmacodynamie et de therapie.
[51] A. Ordinas,et al. Platelet contribution to the formation of metastatic foci: the role of cancer cell-induced platelet activation. , 1988, Haemostasis.