1.Viscerotropic growth pattern of Leishmania tropica in BALB/c mice is suggestive of a murine model for human viscerotropic leishmaniasis.
Hamid MAHMOUDZADEH-NIKNAM ; Simin Sadat KIAEI ; Davood IRAVANI
The Korean Journal of Parasitology 2007;45(4):247-253
Leishmania (L.) tropica is a causative agent of cutaneous leishmaniasis, and occasionally of visceral or viscerotropic leishmaniasis in humans. Murine models of Leishmania infection have been proven to be useful for elucidation of mechanisms for pathogenesis and immunity in leishmaniasis. The aim of this study was to establish a murine model for human viscerotropic leishmaniasis, and the growth pattern of L. tropica was studied in different tissues of BALB/c mice in order to find out whether the parasite visceralizes in this murine model. L. major was used as a control as this species is known to cause a progressive infection in BALB/c mice. L. tropica or L. major was injected into the footpad of mice, and thickness of footpad, parasite loads in different tissues, and the weight of the spleen and lymph node were determined at different intervals. Results showed that L. tropica visceralizes to the spleen and grows there while its growth is controlled in footpad tissues. Dissemination of L. tropica to visceral organs in BALB/c mice was similar to the growth patterns of this parasite in human viscerotropic leishmaniasis. The BALB/c model of L. tropica infection may be considered as a good experimental model for human diseases.
Animals
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*Disease Models, Animal
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Female
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Foot/parasitology
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Humans
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Leishmania major/growth & development
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Leishmania tropica/*growth & development
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Leishmaniasis/*parasitology
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Lymph Nodes/parasitology/pathology
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Mice
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Mice, Inbred BALB C
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Organ Size
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Spleen/parasitology/pathology
2.Purification and biochemical characterization of two novel antigens from Leishmania major promastigotes.
Majid ZEINALI ; Sussan K ARDESTANI ; Amina KARIMINIA
The Korean Journal of Parasitology 2007;45(4):287-293
The identification and characterization of antigens that elicit human T cell responses is an important step toward understanding of Leishmania major infection and ultimately in the development of a vaccine. Micropreparative SDS-PAGE followed by electrotransfer to a PVDF membrane and elution of proteins from the PVDF, was used to separate 2 novel proteins from L. major promastigotes, which can induce antibodies of the IgG2a isotype in mice and also are recognized by antisera of recovered human cutaneous leishmaniasis subjects. Fractionation of the crude extract of L. major revealed that all detectable proteins of interest were present within the soluble Leishmania antigens (SLA). Quantitation of these proteins showed that their expression in promastigotes is relatively very low. Considering the molecular weight, immunoreactivity, chromatographic and electrophoretic behavior in reducing and non-reducing conditions, these proteins are probably 2 isoforms of a single protein. A digest of these proteins was resolved on Tricine-SDS-PAGE and immunoreactive fragments were identified by human sera. Two immunoreactive fragments (36.4 and 34.8 kDa) were only generated by endoproteinase Glu-C treatment. These immunoreactive fragments or their parent molecules may be ideal candidates for incorporation in a cocktail vaccine against cutaneous leishmaniasis.
Animals
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Antigens, Protozoan/*chemistry/*isolation & purification
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Blotting, Western
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Chromatography, High Pressure Liquid
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Electrophoresis, Polyacrylamide Gel/methods
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Humans
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Leishmania major/growth & development/*immunology
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Protein Isoforms/chemistry/isolation & purification
3.In Vitro Infectivity Assessment by Drug Susceptibility Comparison of Recombinant Leishmania major Expressing Enhanced Green Fluorescent Protein or EGFP-Luciferase Fused Genes with Wild-Type Parasite.
Somayeh SADEGHI ; Negar SEYED ; Mohammad Hossein ETEMADZADEH ; Saeid ABEDIANKENARI ; Sima RAFATI ; Tahereh TAHERI
The Korean Journal of Parasitology 2015;53(4):385-394
Leishmaniasis is a worldwide uncontrolled parasitic disease due to the lack of effective drug and vaccine. To speed up effective drug development, we need powerful methods to rapidly assess drug effectiveness against the intracellular form of Leishmania in high throughput assays. Reporter gene technology has proven to be an excellent tool for drug screening in vitro. The effects of reporter proteins on parasite infectivity should be identified both in vitro and in vivo. In this research, we initially compared the infectivity rate of recombinant Leishmania major expressing stably enhanced green fluorescent protein (EGFP) alone or EGFP-luciferase (EGFP-LUC) with the wild-type strain. Next, we evaluated the sensitivity of these parasites to amphotericin B (AmB) as a standard drug in 2 parasitic phases, promastigote and amastigote. This comparison was made by MTT and nitric oxide (NO) assay and by quantifying the specific signals derived from reporter genes like EGFP intensity and luciferase activity. To study the amastigote form, both B10R and THP-1 macrophage cell lines were infected in the stationary phase and were exposed to AmB at different time points. Our results clearly revealed that the 3 parasite lines had similar in vitro infectivity rates with comparable parasite-induced levels of NO following interferon-gamma/lipopolysaccharide induction. Based on our results we proposed the more reporter gene, the faster and more sensitive evaluation of the drug efficiency.
Amphotericin B/*pharmacology
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Animals
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Antiprotozoal Agents/*pharmacology
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Drug Evaluation, Preclinical/instrumentation/*methods
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Female
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Gene Expression
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Genes, Reporter
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Green Fluorescent Proteins/genetics/*metabolism
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Humans
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Leishmania major/*drug effects/genetics/growth & development/physiology
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Leishmaniasis, Cutaneous/*parasitology
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Luciferases/genetics/*metabolism
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Mice