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1.
Braz. j. med. biol. res ; 45(11): 1002-1010, Nov. 2012. ilus
Article in English | LILACS | ID: lil-650578

ABSTRACT

Ricinus communis L. is of great economic importance due to the oil extracted from its seeds. Castor oil has been used for pharmaceutical and industrial applications, as a lubricant or coating agent, as a component of plastic products, as a fungicide or in the synthesis of biodiesel fuels. After oil extraction, a castor cake with a large amount of protein is obtained. However, this by-product cannot be used as animal feed due to the presence of toxic (ricin) and allergenic (2S albumin) proteins. Here, we propose two processes for detoxification and allergen inactivation of the castor cake. In addition, we establish a biological test to detect ricin and validate these detoxification processes. In this test, Vero cells were treated with ricin, and cell death was assessed by cell counting and measurement of lactate dehydrogenase activity. The limit of detection of the Vero cell assay was 10 ng/mL using a concentration of 1.6 x 10(5) cells/well. Solid-state fermentation (SSF) and treatment with calcium compounds were used as cake detoxification processes. For SSF, Aspergillus niger was grown using a castor cake as a substrate, and this cake was analyzed after 24, 48, 72, and 96 h of SSF. Ricin was eliminated after 24 h of SSF treatment. The cake was treated with 4 or 8% Ca(OH)2 or CaO, and both the toxicity and the allergenic properties were entirely abolished. A by-product free of toxicity and allergens was obtained.


Subject(s)
Animals , Allergens/drug effects , Aspergillus niger/growth & development , Calcium Compounds/pharmacology , Castor Bean/drug effects , Inactivation, Metabolic , Allergens/toxicity , Aspergillus niger/drug effects , Chlorocebus aethiops , Castor Bean/toxicity , Cell Death/drug effects , Cell Degranulation/drug effects , Enzyme Activation , Fermentation , L-Lactate Dehydrogenase/metabolism , Mast Cells/drug effects , Ricin/isolation & purification , Ricin/toxicity , Time Factors , Toxicity Tests , /isolation & purification , /toxicity , Vero Cells
2.
Braz. j. med. biol. res ; 43(2): 139-149, Feb. 2010. ilus, tab, graf
Article in English | LILACS | ID: lil-538236

ABSTRACT

Toxoplasma, which infects all eukaryotic cells, is considered to be a good system for the study of drug action and of the behavior of infected host cells. In the present study, we asked if thiosemicarbazone derivatives can be effective against tachyzoites and which morphological and ultrastructural features of host cells and parasites are associated with the destruction of Toxoplasma. The compounds were tested in infected Vero cell culture using concentration screens (0.1 to 20 mM). The final concentration of 1 mM was chosen for biological assay. The following results were obtained: 1) These new derivatives decreased T. gondii infection with an in vitro parasite IC50 percent of 0.2-0.7 mM, without a significant effect on host cells and the more efficient compounds were 2, 3 (thiosemicarbazone derivatives) and 4 (thiazolidinone derivative); 2) The main feature observed during parasite elimination was continuous morphological disorganization of the tachyzoite secretory system, progressive organelle vesiculation, and then complete disruption; 3) Ultrastructural assays also revealed that progressive vesiculation in the cytoplasm of treated parasites did not occur in the host cell; 4) Vesiculation inside the parasite resulted in death, but this feature occurred asynchronously in different intracellular tachyzoites; 5) The death and elimination of T. gondii was associated with features such as apoptosis-like stage, acidification and digestion of parasites into parasitophorous vacuoles. Our results suggest that these new chemical compounds are promising for the elimination of intracellular parasites by mainly affecting tachyzoite development at 1 mM concentration for 24 h of treatment.


Subject(s)
Animals , Antiprotozoal Agents/pharmacology , Thiazoles/pharmacology , Thiosemicarbazones/pharmacology , Toxoplasma/drug effects , Antiprotozoal Agents/chemistry , Chlorocebus aethiops , Host-Parasite Interactions , Microscopy, Electron, Transmission , Parasitic Sensitivity Tests , Thiazoles/chemistry , Thiosemicarbazones/chemistry , Toxoplasma/ultrastructure , Vero Cells/parasitology
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