Publications by authors named "Nadia Haddad"

Wild animals in general, birds in particular, play a key role in transporting ticks and propagating tick-borne pathogens. Several studies have confirmed the infection of birds with Anaplasma phagocytophilum, with overall prevalence varying widely from country to country and/or study to study. This zoonotic bacterium, transmitted mainly by ticks of the genus Ixodes, is responsible for granulocytic anaplasmosis in humans (HGA) and domestic animals (cats, dogs, horses).

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In Europe, tick-borne diseases (TBDs) cause significant morbidity and mortality, affecting both human and animal health. Ticks can transmit a wide variety of pathogens (bacteria, viruses, and parasites) and feed on many vertebrate hosts. The incidence and public health burden of TBDs are tending to intensify in Europe due to various factors, mainly anthropogenic and often combined.

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A. phagocytophilum is a zoonotic and tick-borne bacterium, threatening human and animal health. Many questions persist concerning the variability of strains and the mechanisms governing the interactions with its different hosts.

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Study Objectives: Sleep disturbances are an underrecognized public health issue that results in various adverse outcomes and disturbed quality of life. Blood pressure variability (BPV) is an emerging entity in assessing cardiovascular disease risk and accumulating evidence suggests that BPV is closely associated with end-organ damage. This review aims to explore the association between sleep disturbances and BPV.

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Article Synopsis
  • * Researchers conducted a study involving 40 European experts to identify and evaluate 59 potential drivers of TBE's emergence and rising incidence, categorizing them into eight domains.
  • * The top drivers identified include changes in human behavior, eating habits, landscape alterations, environmental factors like humidity and temperature, and the presence of various tick species and wildlife reservoirs.
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Article Synopsis
  • The COVID-19 pandemic, caused by SARS-CoV-2, has significantly disrupted society since late 2019, affecting economic and social activities globally.
  • To return to normalcy, it's vital to keep enclosed spaces like classrooms and offices open, which requires understanding how the virus spreads in these environments.
  • A systematic review outlines factors influencing airborne transmission indoors and proposes infection risk assessment methods and effective mitigation strategies such as improved ventilation, mask usage, and managing room occupancy.
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The high failure rate of the in vitro aptamer selection process by SELEX (Systematic Evolution of Ligands by EXponential enrichment) limits the production of these innovative oligonucleotides and, consequently, limits their potential applications. The generation of single-stranded DNA (ssDNA) is a critical step of SELEX, directly affecting the enrichment and the selection of potential binding sequences. The main goal of this study was to confirm the best method for generating ssDNA by comparing the purification of ssDNA, using streptavidin-coated beads, and lambda exonuclease digestion, and by improving ssDNA recovery through protocol improvements.

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Monkeypox (MPX) is a zoonotic infectious disease caused by (MPXV), an enveloped DNA virus belonging to the family and the genus. Since early May 2022, a growing number of human cases of Monkeypox have been reported in non-endemic countries, with no history of contact with animals imported from endemic and enzootic areas, or travel to an area where the virus usually circulated before May 2022. This qualitative risk assessment aimed to investigate the probability that MPXV transmission occurs through food during its handling and consumption.

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The Monkeypox virus belongs to the Orthopoxvius genus, as does the specifically human smallpox virus. It is zoonotic and had never previously been considered as capable of human-to-human transmission over more than nine viral generation cycles. While relevant animal reservoirs have yet to be identified, non-human primates (NHP) are only accidental hosts.

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Tick-borne encephalitis virus (TBEV), a member of the family, genus, is responsible for neurological symptoms that may cause permanent disability or death. With an incidence on the rise, it is the major arbovirus affecting humans in Central/Northern Europe and North-Eastern Asia. Neuronal death is a critical feature of TBEV infection, yet little is known about the type of death and the molecular mechanisms involved.

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The ongoing coronavirus disease 19s pandemic has yet again demonstrated the importance of the human-animal interface in the emergence of zoonotic diseases, and in particular the role of wildlife and livestock species as potential hosts and virus reservoirs. As most diseases emerge out of the human-animal interface, a better understanding of the specific drivers and mechanisms involved is crucial to prepare for future disease outbreaks. Interactions between wildlife and livestock systems contribute to the emergence of zoonotic diseases, especially in the face of globalization, habitat fragmentation and destruction and climate change.

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This review aims to explore the burden of hypertension among refugees in the Middle East by reporting its prevalence, risk factors and access to care. A comprehensive literature search was performed using Web of Science, Ovid MEDLINE, PubMed, SCOPUS, CINHAL+, WHO Regional Office for the Eastern Mediterranean (EMRO) and United Nations High Commissioner for Refugees (UNHCR) on articles spanning from 1948 until 2020. Most studies were cross-sectional in design.

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Arthropod-borne hemoparasites represent a serious health problem in livestock, causing significant production losses. Currently, the evidence of spp., spp.

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Bartonella genus includes an increasing number of species and subspecies, especially among wild felids, the positioning of which, with regards to the zoonotic species Bartonella henselae, is important to determine. The aim of this study was to test the ability of a molecular typing technique to distinguish between various Bartonella isolates obtained from four different species of free-ranging and captive wild felids and to identify key profiles or markers allowing differentiating them from each other and/or from B. henselae or B.

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Microvascular endothelial cells constitute potential targets for exogenous microorganisms, in particular for vector-borne pathogens. Their phenotypic and functional variations according to the organs they are coming from provide an explanation of the organ selectivity expressed in vivo by pathogens. In order to make available relevant tools for in vitro studies of infection mechanisms, our aim was to immortalize bovine organospecific endothelial cells but also to assess their permissivity to viral infection.

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Article Synopsis
  • - The study investigates potential factors influencing the emergence of COVID-19 in domestic pets like cats, dogs, and ferrets, identifying 46 possible drivers grouped into eight categories such as disease characteristics, human activity, and climate impacts.
  • - Experts evaluated these drivers using a scoring system, leading to a ranking that highlighted five key factors: availability of diagnostic tools, human density near pets, preventive measures, species specificity of the virus, and current knowledge about the pathogen.
  • - Given the limited scientific understanding of COVID-19 in pets, the study emphasizes the need for further research, with the top-ranked drivers serving as priority areas for future investigation.
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Background: Tick-borne encephalitis virus (TBEV) is a member of the Flaviviridae family, Flavivirus genus, which includes several important human pathogens. It is responsible for neurological symptoms that may cause permanent disability or death, and, from a medical point of view, is the major arbovirus in Central/Northern Europe and North-Eastern Asia. TBEV tropism is critical for neuropathogenesis, yet little is known about the molecular mechanisms that govern the susceptibility of human brain cells to the virus.

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Zoonoses related to leisure activities. Many zoonoses can be contracted by humans during recreational activities. In the context of a walk, some of them, such as Lyme disease, are transmissible by biological vectors, particularly ticks, or by aerosol (Q fever, hantavirose), whereas others can be contracted in case of aquatic activities (leptospirosis), hunting (tularaemia), and visits to pet farms or fairs (especially the hemolytic uremic syndrome).

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Necrobiosis lipoidica is a rare granulomatous dermatosis. It occurs in 0.3-1.

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Background: Anaplasma phagocytophilum is a zoonotic tick-borne intracellular alpha-proteobacterium causing tick-borne fever, which leads to significant economic losses in domestic ruminants in Europe. Its epidemiological cycles are complex and reservoir host species of bovine strains have not yet been identified. Given that little genetic information is available on strains circulating within a defined bovine environment, our objective was to assess the genetic diversity of A.

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Background: Anaplasma phagocytophilum is a zoonotic tick-borne pathogen responsible for granulocytic anaplasmosis, a mild to a severe febrile disease that affects man and several animal species, including cows and horses. In Europe, I. ricinus is the only proven vector for this pathogen, but studies suggest that other tick genera and species could be involved in its transmission.

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is the main causative agent of cat scratch disease. In this report, we present the draft genome sequences of 12 strains of originating from the United States, Denmark, and France. These strains were isolated from cats and belonged to either 16S rRNA genotype I or 16S rRNA genotype II.

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Anaplasma phagocytophilum is a zoonotic tick-borne intracellular bacterium responsible for granulocytic anaplasmosis. As it is difficult to isolate and cultivate, only 20 A. phagocytophilum genomes have been sequenced to date.

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Background: Anaplasma phagocytophilum is the causative agent of tick-borne fever, a disease with high economic impact for domestic ruminants in Europe. Epidemiological cycles of this species are complex, and involve different ecotypes circulating in various host species. To date, these epidemiological cycles are poorly understood, especially in Europe, as European reservoir hosts (i.

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