I. Chelbi
Pasteur Institute
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Publication
Featured researches published by I. Chelbi.
Journal of General Virology | 2010
E. Zhioua; Gregory Moureau; I. Chelbi; Laetitia Ninove; Laurence Bichaud; M. Derbali; Mylène Champs; Saifeddine Cherni; Nicolas Salez; Shelley Cook; Xavier de Lamballerie; Rémi N. Charrel
Sandflies are widely distributed around the Mediterranean Basin. Therefore, human populations in this area are potentially exposed to sandfly-transmitted diseases, including those caused by phleboviruses. Whilst there are substantial data in countries located in the northern part of the Mediterranean basin, few data are available for North Africa. In this study, a total of 1489 sandflies were collected in 2008 in Tunisia from two sites, bioclimatically distinct, located 235 km apart, and identified morphologically. Sandfly species comprised Phlebotomus perniciosus (52.2%), Phlebotomus longicuspis (30.1%), Phlebotomus papatasi (12.0%), Phlebotomus perfiliewi (4.6%), Phlebotomus langeroni (0.4%) and Sergentomyia minuta (0.5%). PCR screening, using generic primers for the genus Phlebovirus, resulted in the detection of ten positive pools. Sequence analysis revealed that two pools contained viral RNA corresponding to a novel virus closely related to sandfly fever Naples virus. Virus isolation in Vero cells was achieved from one pool. Genetic and phylogenetic characterization based on sequences in the three genomic segments showed that it was a novel virus distinct from other recognized members of the species. This novel virus was provisionally named Punique virus. Viral sequences in the polymerase gene corresponding to another phlebovirus closely related to but distinct from sandfly fever Sicilian virus were obtained from the eight remaining positive pools.
Journal of Medical Entomology | 2009
I. Chelbi; Belhassen Kaabi; M. Béjaoui; M. Derbali; E. Zhioua
ABSTRACT The geographical distribution of Phlebotomus papatasi Scopoli, vector of Leishmania major Yakimoff and Schokhor (Kinetoplastida: Trypanosomatidae), the etiologic agent of zoonotic cutaneous leishmaniasis (ZCL), was assessed during September 2006 through a transect from the north to the south of Tunisia using CDC light traps. P. papatasi was found to be abundant in the arid and Saharan bioclimatic zones and rare in the humid, subhumid, and semiarid bioclimatic zones. Similarly, the highest incidence of ZCL was observed in the arid and Saharan bioclimatic zones and the lowest in the humid, subhumid, and semiarid bioclimatic zones. Our overall findings confirm the close spatial association between the abundance of P. papatasi and the incidence of ZCL.
Journal of Medical Entomology | 2007
I. Chelbi; M. Derbali; Z. Al-Ahmadi; B. Zaafouri; A. El Fahem; E. Zhioua
Abstract The population density of Phlebotomus papatasi Scopoli (Diptera: Psychodidae), vector of Leishmania major Yakimoff & Schokhor (Kinetoplastida: Trypanosomatidae), the etiologic agent of zoonotic cutaneous leishmaniasis (ZCL), was assessed May–November 2005 in central Tunisia by using sticky traps. The densities of P. papatasi were found to peak in early spring and again in the autumn. The lowest densities were observed in August. Prevalence of ZCL in the governorate of Sidi Bouzid peaks in December, 3 to 3.5 mo after the fall sand fly population peak, suggesting a close temporal association with the abundance of P. papatasi.
PLOS ONE | 2012
Maha Abdeladhim; Ryan C. Jochim; Melika Ben Ahmed; E. Zhioua; I. Chelbi; S. Cherni; Hechmi Louzir; José M. C. Ribeiro; Jesus G. Valenzuela
Introduction Sand fly saliva plays an important role in both blood feeding and outcome of Leishmania infection. A cellular immune response against a Phlebotomus papatasi salivary protein was shown to protect rodents against Leishmania major infection. In humans, P. papatasi salivary proteins induce a systemic cellular immune response as well as a specific antisaliva humoral immune response, making these salivary proteins attractive targets as markers of exposure for this Leishmania vector. Surprisingly, the repertoire of salivary proteins reported for P. papatasi–a model sand fly for Leishmania-vector-host molecular interactions–is very limited compared with other sand fly species. We hypothesize that a more comprehensive study of the transcripts present in the salivary glands of P. papatasi will provide better knowledge of the repertoire of proteins of this important vector and will aid in selection of potential immunogenic proteins for humans and of those proteins that are highly conserved between different sand fly strains. Methods and Findings A cDNA library from P. papatasi (Tunisian strain) salivary glands was constructed, and randomly selected transcripts were sequenced and analyzed. The most abundant transcripts encoding secreted proteins were identified and compared with previously reported sequences. Importantly, we identified salivary proteins not described before in this sand fly species. Conclusions Comparative analysis between the salivary proteins of P. papatasi from Tunisia and Israel strains shows a high level of identity, suggesting these proteins as potential common targets for markers of vector exposure or inducers of cellular immune responses in humans for different geographic areas.
Journal of Medical Entomology | 2007
I. Chelbi; E. Zhioua
Abstract Details on the productivity and developmental times of a colony of Phlebotomus papatasi Scopoli (Diptera: Psychodidae) over 14 generations are reported and compared with findings of previous studies. The average productivity (percentage of eggs laid that were reared to adults) over six generations at 26–27 and at 29–30°C was 44.08 and 59.53%, respectively. The maximum productivity was 69.5%. The average developmental time over six generations at 26–27 and at 29–30°C was 35 and 26 d, respectively. The minimum developmental time from egg to adults was 25 d. The Tunisian strain of P. papatasi can reproduce autogenously or anautogenously, depending on the availability of a suitable bloodmeal source.
Journal of Medical Entomology | 2010
S. Ben Hadj Ahmed; I. Chelbi; Belhassen Kaabi; S. Cherni; M. Derbali; E. Zhioua
ABSTRACT Preimmunization of mice with salivary gland homogenate (SGH) of long-term colonized (F29) female Phlebotomus papatasi Scopoli (Diptera: Psychodidae) induced protection against Leishmania major Yakimoff & Schokhor (Kinetoplastida: Trypanosomatidae) co-inoculated with the same type of SGH. In contrast, preimmunization of mice with SGH of wild-caught female P. papatasi did not confer protection against L. major co-inoculated with the same type of SGH. Similarly, SGH from recently colonized (F1) female P. papatasi did not protect mice against L. major. These results suggest that when developing a sand fly saliva-based vaccine, the natural vector populations should be considered.
PLOS Neglected Tropical Diseases | 2013
Sonia Sakhria; Laurence Bichaud; Mohamed Mensi; Nicolas Salez; Khalil Dachraoui; Laurence Thirion; S. Cherni; I. Chelbi; Xavier de Lamballerie; E. Zhioua; Rémi N. Charrel
Background In northern Tunisia, the co-circulation of two related sand fly-borne phleboviruses, Toscana virus (TOSV) and Punique virus (PUNV) was previously demonstrated. In contrast to TOSV, a prominent human pathogen, there is no data supporting that PUNV is capable to infect and cause disease to humans. We studied the respective involvement of TOSV and PUNV in human infections in northern Tunisia through a seroprevalence study. Methods The presence of TOSV and PUNV neutralising antibodies (NT-Ab) was tested in human sera collected from 5 districts of the governorate of Bizerte, and the titres of NT-Ab were estimated by microneutralisation (MN) assay. Principal Findings A total of 1,273 sera were processed. TOSV and PUNV NT-Ab were detected in 522 (41%) and 111 sera (8.72%) respectively. TOSV seroprevalence varied from 17.2% to 59.4% depending on the district. Analysis of TOSV geometric mean titre values demonstrated a constant increase according to the age. The vast majority of sera containing NT-Ab were found to be more reactive toward TOSV than PUNV. Indeed, past infections with PUNV and TOSV were undisputable for 5 and 414 sera, respectively. Conclusions PUNV may be capable to infect humans but at a low rate. TOSV is responsible for the vast majority of human infections by sand fly-borne phleboviruses in northern Tunisia. TOSV must be considered by physician and tested in diagnostic laboratories for patients with meningitis and unexplained fever in northern Tunisia.
Acta Tropica | 2015
W. Barhoumi; Whitney A. Qualls; Reginald S. Archer; Douglas O. Fuller; I. Chelbi; S. Cherni; M. Derbali; Kristopher L. Arheart; E. Zhioua; John C. Beier
The distribution expansion of important human visceral leishmaniasis (HVL) and sporadic cutaneous leishmaniasis (SCL) vector species, Phlebotomus perfiliewi and P. perniciosus, throughout central Tunisia is a major public health concern. This study was designed to investigate if the expansion of irrigation influences the abundance of sand fly species potentially involved in the transmission of HVL and SCL located in arid bioclimatic regions. Geographic and remote sensing approaches were used to predict the density of visceral leishmaniasis vectors in Tunisia. Entomological investigations were performed in the governorate of Sidi Bouzid, located in the arid bioclimatic region of Tunisia. In 2012, sand flies were collected by CDC light traps located at nine irrigated and nine non-irrigated sites to determine species abundance. Eight species in two genera were collected. Among sand flies of the subgenus Larroussius, P. perfiliewi was the only species collected significantly more in irrigated areas. Trap data were then used to develop Poisson regression models to map the apparent density of important sand fly species as a function of different environmental covariates including climate and vegetation density. The density of P. perfiliewi is predicted to be moderately high in the arid regions. These results highlight that the abundance of P. perfiliewi is associated with the development of irrigated areas and suggests that the expansion of this species will continue to more arid areas of the country as irrigation sites continue to be developed in the region. The continued increase in irrigated areas in the Middle East and North Africa region deserves attention, as it is associated with the spread of L. infantum vector P. perfiliewi. Integrated vector management strategies targeting irrigation structures to reduce sand fly vector populations should be evaluated in light of these findings.
Vector-borne and Zoonotic Diseases | 2008
I. Chelbi; Belhassen Kaabi; M. Derbali; Sami Ben Hadj Ahmed; Koussay Dellagi; Elyes Zhioua
Zooprophylaxis is the use of animals to deviate vectors from humans. The indoor abundance of Phlebotomus papatasi in houses with rabbit holes in the peridomestic areas are significantly lower than the indoor abundance in houses without rabbit holes in their peridomestic areas. Introduction of rabbits in artificial underground holes in peridomestic areas reduced significantly the indoor abundance of P. papatasi. Cleaning rabbit holes in peridomestic area by removing all rabbit feces induced a significant increase in the abundance of P. papatasi inside bedrooms. The ecologic niche made around houses in endemic areas by creating active rabbit holes is a major source of attractiveness of P. papatasi, and therefore it may deviate the vector from humans to rabbits. Although rabbit holes are breeding sites for P. papatasi, rabbits are not competent reservoirs for Leishmania major. Our overall findings strongly suggest that zooprophylaxis could be effective in reducing the indoor abundance of P. papatasi and subsequently may be used to control the transmission L. major in rural areas.
American Journal of Tropical Medicine and Hygiene | 2010
Sami Ben Hadj Ahmed; Belhassen Kaabi; I. Chelbi; M. Derbali; S. Cherni; Dhafer Laouini; Elyes Zhioua
Immunity to saliva of Phlebotomus papatasi protects against Leishmania major infection as determined by co-inoculation of parasites with salivary gland homogenates (SGHs) of this vector. These results were obtained with long-term colonized female P. papatasi. We investigated the effect of pre-immunization with SGH of long-term colonized P. papatasi against L. major infection co-inoculated with SGH of wild-caught P. papatasi. Our results showed that pre-exposure to SGH of long-term, colonized P. papatasi do not confer protection against infection with L. major co-inoculated with SGH of wild-caught P. papatasi. These preliminary results strongly suggest that the effectiveness of a vector saliva-based vaccine derived from colonized sand fly populations may be affected by inconsistent immune response after natural exposure.