Trypanocidal activity of the essential oils in their conventional and nanoemulsion forms: in vitro tests.
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M. Baldissera | C. B. Oliveira | S. G. Monteiro | L. Koester | A. S. Da silva | J. Santurio | A. A. Tonin | Roberto C V Santos | C. E. Zimmermann | C. B. Mattos | R. Vaucher | J. L. Giongo | V. C. Rech
[1] A. Brandelli,et al. Antimicrobial activity of Amazonian oils against Paenibacillus species. , 2012, Journal of invertebrate pathology.
[2] C. Nakamura,et al. Trypanocidal Activity of Oxoaporphine and Pyrimidine-β-Carboline Alkaloids from the Branches of Annona foetida Mart. (Annonaceae) , 2011, Molecules.
[3] C. Nakamura,et al. Leishmania amazonensis: effects of oral treatment with copaiba oil in mice. , 2011, Experimental parasitology.
[4] H. Karembé,et al. Development of a nanoparticulate formulation of diminazene to treat African trypanosomiasis , 2010, Nanotechnology.
[5] Erika Izumi. Efeitos do óleo de copaíba e constituintes em Trypanosoma cruzi , 2010 .
[6] W. A. Cañón-Franco,et al. Natural infection by Trypanosoma evansi in dog, Manizales - Colombia: case report. , 2010 .
[7] L. C. Alves,et al. Potencial acaricida do óleo de andiroba Carapa guianensis Aubl. sobre fêmeas adultas ingurgitadas de Anocentor nitens Neumann, 1897 e Rhipicephalus sanguineus Latreille, 1806 , 2009 .
[8] Â. Pinto,et al. Effect of Brazilian copaiba oils on Leishmania amazonensis. , 2008, Journal of ethnopharmacology.
[9] E. Malchiodi,et al. Trypanocidal and Leishmanicidal Activities of Sesquiterpene Lactones from Ambrosia tenuifolia Sprengel (Asteraceae) , 2008, Antimicrobial Agents and Chemotherapy.
[10] F. Fernandes,et al. Acaricidal activity of an oleoresinous extract from Copaifera reticulata (Leguminosae: Caesalpinioideae) against larvae of the southern cattle tick, Rhipicephalus (Boophilus) microplus (Acari: Ixodidae). , 2007 .
[11] S. Albuquerque,et al. Effect of extracts and isolated compounds from Chresta scapigera on viability of Leishmania amazonensis and Trypanosoma cruzi , 2007 .
[12] A. Ferrero,et al. Biological activity of Schinus molle on Triatoma infestans. , 2006, Fitoterapia.
[13] A. R. Ambrozin,et al. Limonoids from andiroba oil and Cedrela fissilis and their insecticidal activity , 2006 .
[14] M. Henriques,et al. Inhibition of allergen-induced eosinophil recruitment by natural tetranortriterpenoids is mediated by the suppression of IL-5, CCL11/eotaxin and NFkappaB activation. , 2006, International immunopharmacology.
[15] A. Sant'Ana,et al. Activities of some Brazilian plants against larvae of the mosquito Aedes aegypti. , 2005, Fitoterapia.
[16] J. Jannin,et al. Human trypanosomiasis caused by Trypanosoma evansi in India: the first case report. , 2005, The American journal of tropical medicine and hygiene.
[17] S. Monteiro,et al. Infecção natural por Trypanosoma evansi em cães , 2005 .
[18] O. Giordano,et al. THE TRYPANOCIDAL EFFECT OF SESQUITERPENE LACTONES HELENALIN AND MEXICANIN ON CULTURED EPIMASTIGOTES , 2005, The Journal of parasitology.
[19] B. Marongiu,et al. Chemical composition of the oil and supercritical CO2 extract of Schinus molle L. , 2004 .
[20] N. Lopes,et al. In vitro trypanocidal activity of triterpenes from miconia species. , 2003, Planta medica.
[21] R. A. M. S. Silva,et al. Trypanosoma evansi e trypanosoma vivax: biologia, diagnóstico e controle. , 2002 .
[22] J. Barbosa-Filho,et al. Natural products reported as potential inhibitors of uterine cervical neoplasia , 2002 .
[23] Mihail C. Roco,et al. International strategy for Nanotechnology Research , 2001 .
[24] Mihail C. Roco,et al. International strategy for nanotechnology research and development , 2001 .
[25] Sanjay Garg,et al. Current Status of Drug Delivery Technologies and Future Directions , 2001 .
[26] S. Albuquerque,et al. A study of the trypanocidal and analgesic properties from Lychnophora granmongolense (Duarte) Semir & Leitão Filho , 2000, Phytotherapy research : PTR.
[27] B. Gilbert,et al. Activities of the Pharmaceutical Technology Institute of the Oswaldo Cruz Foundation with medicinal, insecticidal and insect repellent plants. , 1999, Anais da Academia Brasileira de Ciencias.
[28] Z. Lun,et al. Trypanosoma evansi and T. equiperdum: distribution, biology, treatment and phylogenetic relationship (a review). , 1998, Veterinary parasitology.
[29] A. Romanha,et al. Trypanocidal flavonoids from Trixis vauthieri. , 1997, Journal of natural products.
[30] Y. Yongsheng,et al. Trypanocidal value of liposomal diminazene in experimental Trypanosoma brucei evansi infection in mice. , 1996, Veterinary parasitology.
[31] S. Castanys,et al. A protein secreted by Trypanosoma cruzi capable of inducing the entry of inert particles into HeLa cells. , 1995, International journal for parasitology.
[32] A. Peregrine,et al. Pharmacology of diminazene: a review. , 1993, Acta tropica.
[33] S. Castanys,et al. The invasion mechanism of the metacyclic forms of Trypanosoma cruzi in nonphagocytic host cells. , 1993, Biological Research.
[34] P. Gayral,et al. Unloaded polyisobutylcyanoacrylate nanoparticles: efficiency against bloodstream trypanosomes , 1987, The Journal of pharmacy and pharmacology.
[35] T. Baltz,et al. Cultivation in a semi‐defined medium of animal infective forms of Trypanosoma brucei, T. equiperdum, T. evansi, T. rhodesiense and T. gambiense. , 1985, The EMBO journal.
[36] M. Cini,et al. The triterpenoid acids of Schinus molle , 1978 .
[37] R. Yaeger. The Trypanosomes of Mammals. A Zoological Monograph , 1973 .