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1.
Parasit Vectors ; 15(1): 27, 2022 Jan 20.
Artigo em Inglês | MEDLINE | ID: mdl-35057826

RESUMO

BACKGROUND: A number of tick-borne pathogens circulate in the Belgian tick population in addition to the causative agent of Lyme borreliosis. However, so far, only a few patients with tick-borne diseases other than Lyme borreliosis have been reported in Belgium. The aim of this study was to investigate the occurrence of other human tick-borne infections in Belgium and their possible clinical manifestation. METHODS: Patients with fever (> 37.5 °C) after a tick bite or those with erythema migrans (EM) were included in the study. EDTA-blood samples were screened for the presence of DNA from Borrelia burgdorferi sensu lato, Borrelia miyamotoi, Anaplasma phagocytophilum, Neoehrlichia mikurensis, spotted fever group rickettsiae (genus Rickettsia), Babesia spp., Bartonella spp., Spiroplasma ixodetis and tick-borne encephalitis virus, using multiplex PCR methods. A questionnaire on, among others, demographics and clinical symptoms, was also filled in. RESULTS: Over a period of 3 years, 119 patients with EM and 14 patients with fever after a recent tick bite were enrolled in the study. Three samples initially tested positive for N. mikurensis by quantitative PCR (qPCR), but the results could not be confirmed by other PCR methods, and repetition of the DNA extraction procedure and qPCR test was not successful. The qPCR test results for the other tick-borne pathogens were negative. CONCLUSIONS: In general, only a few patients with fever after a tick bite could be identified. Although no tick-borne pathogens were detected, their occurrence cannot be excluded based on the limited number of patients and the limitations inherent to current methodologies. This study underscores the possibility of false-positive PCR results and the necessity for the development of multiple independent tools for the sensitive and specific detection of emerging tick-borne pathogens.


Assuntos
Eritema/epidemiologia , Doenças Transmitidas por Carrapatos/sangue , Doenças Transmitidas por Carrapatos/epidemiologia , Carrapatos/microbiologia , Carrapatos/parasitologia , Adolescente , Adulto , Idoso , Idoso de 80 Anos ou mais , Animais , Babesia/genética , Babesia/patogenicidade , Bélgica/epidemiologia , Borrelia/genética , Borrelia/patogenicidade , Eritema/classificação , Feminino , Febre/diagnóstico , Febre/epidemiologia , Febre/etiologia , Humanos , Masculino , Pessoa de Meia-Idade , Rickettsia/genética , Rickettsia/patogenicidade , Picadas de Carrapatos/epidemiologia , Carrapatos/patogenicidade , Adulto Jovem
2.
Trends Parasitol ; 37(8): 734-746, 2021 08.
Artigo em Inglês | MEDLINE | ID: mdl-34162522

RESUMO

Although Rickettsia species are molecularly detected among a wide range of arthropods, vector competence becomes an imperative aspect of understanding the ecoepidemiology of these vector-borne diseases. The synergy between vector homeostasis and rickettsial invasion, replication, and release initiated within hours (insects) and days (ticks) permits successful transmission of rickettsiae. Uncovering the molecular interplay between rickettsiae and their vectors necessitates examining the multifaceted nature of rickettsial virulence and vector infection tolerance. Here, we highlight the biological differences between tick- and insect-borne rickettsiae and the factors facilitating the incidence of rickettsioses. Untangling the complex relationship between rickettsial genetics, vector biology, and microbial interactions is crucial in understanding the intricate association between rickettsiae and their vectors.


Assuntos
Vetores Artrópodes/microbiologia , Interações Hospedeiro-Patógeno/fisiologia , Rickettsia/fisiologia , Animais , Rickettsia/patogenicidade
3.
mBio ; 12(3)2021 05 11.
Artigo em Inglês | MEDLINE | ID: mdl-33975935

RESUMO

Spotted fever group rickettsioses (SFRs) are devastating human infections. Vascular endothelial cells (ECs) are the primary targets of rickettsial infection. Edema resulting from EC barrier dysfunction occurs in the brain and lungs in most cases of lethal SFR, but the underlying mechanisms remain unclear. The aim of the study was to explore the potential role of Rickettsia-infected, EC-derived exosomes (Exos) during infection. Using size exclusion chromatography (SEC), we purified Exos from conditioned, filtered, bacterium-free media collected from Rickettsia parkeri-infected human umbilical vein ECs (HUVECs) (R-ECExos) and plasma of Rickettsia australis- or R. parkeri-infected mice (R-plsExos). We observed that rickettsial infection increased the release of heterogeneous plsExos, but endothelial exosomal size, morphology, and production were not significantly altered following infection. Compared to normal plsExos and ECExos, both R-plsExos and R-ECExos induced dysfunction of recipient normal brain microvascular ECs (BMECs). The effect of R-plsExos on mouse recipient BMEC barrier function is dose dependent. The effect of R-ECExos on human recipient BMEC barrier function is dependent on the exosomal RNA cargo. Next-generation sequencing analysis and stem-loop quantitative reverse transcription-PCR (RT-qPCR) validation revealed that rickettsial infection triggered the selective enrichment of endothelial exosomal mir-23a and mir-30b, which potentially target the endothelial barrier. To our knowledge, this is the first report on the functional role of extracellular vesicles following infection by obligately intracellular bacteria.IMPORTANCE Spotted fever group rickettsioses are devastating human infections. Vascular endothelial cells are the primary targets of infection. Edema resulting from endothelial barrier dysfunction occurs in the brain and lungs in most cases of lethal rickettsioses, but the underlying mechanisms remain unclear. The aim of the study was to explore the potential role of Rickettsia-infected, endothelial cell-derived exosomes during infection. We observed that rickettsial infection increased the release of heterogeneous plasma Exos, but endothelial exosomal size, morphology, and production were not significantly altered following infection. Rickettsia-infected, endothelial cell-derived exosomes induced dysfunction of human recipient normal brain microvascular endothelial cells. The effect is dependent on the exosomal RNA cargo. Next-generation sequencing analysis revealed that rickettsial infection triggered the selective enrichment of endothelial exosomal mir-23a and mir-30b, which potentially target the endothelial barrier. To our knowledge, this is the first report on the functional role of extracellular vesicles following infection by obligately intracellular bacteria.


Assuntos
Exossomos/genética , Exossomos/fisiologia , Células Endoteliais da Veia Umbilical Humana/microbiologia , Infecções por Rickettsia/microbiologia , Animais , Células Endoteliais da Veia Umbilical Humana/patologia , Humanos , Masculino , Camundongos , Camundongos Endogâmicos C57BL , MicroRNAs/genética , Rickettsia/patogenicidade , Infecções por Rickettsia/patologia
4.
mSphere ; 6(3)2021 05 05.
Artigo em Inglês | MEDLINE | ID: mdl-33952661

RESUMO

Species of Rickettsia (Alphaproteobacteria: Rickettsiales) are obligate intracellular parasites of a wide range of eukaryotes, with recognized arthropod-borne human pathogens belonging to the transitional group (TRG), typhus group (TG), and spotted fever group (SFG) rickettsiae. Growing in the host cytosol, rickettsiae pilfer numerous metabolites to make a typical Gram-negative bacterial cell envelope. The O-antigen of rickettsial lipopolysaccharide (LPS) is immunogenic and has been shown to tether the S-layer to the rickettsial surface; however, little is known about the structure and immunogenicity of the Rickettsia lipid A moiety. The structure of lipid A, the membrane anchor of LPS, affects the ability of this molecule to interact with components of the host innate immune system, specifically the MD-2/TLR4 receptor complex. To dissect the host responses that can occur during Rickettsia in vitro and in vivo infection, structural analysis of Rickettsia lipid A is needed. Lipid A was extracted from four Rickettsia species and structurally analyzed. R. akari (TRG), R. typhi (TG), and R. montanensis (SFG) produced a similar structure, whereas R. rickettsii (SFG) altered the length of a secondary acyl group. While all structures have longer acyl chains than known highly inflammatory hexa-acylated lipid A structures, the R. rickettsii modification should differentially alter interactions with the hydrophobic internal pocket in MD2. The significance of these characteristics toward inflammatory potential as well as membrane dynamics between arthropod and vertebrate cellular environments warrants further investigation. Our work adds lipid A to the secretome and O-antigen as variable factors possibly correlating with phenotypically diverse rickettsioses.IMPORTANCE Spikes in rickettsioses occur as deforestation, urbanization, and homelessness increase human exposure to blood-feeding arthropods. Still, effective Rickettsia vaccines remain elusive. Recent studies have determined that Rickettsia lipopolysaccharide anchors the protective S-layer to the bacterial surface and elicits bactericidal antibodies. Furthermore, growing immunological evidence suggests vertebrate sensors (MD-2/TLR4 and noncanonical inflammasome) typically triggered by the lipid A portion of lipopolysaccharide are activated during Rickettsia infection. However, the immunopotency of Rickettsia lipid A is unknown due to poor appreciation for its structure. We determined lipid A structures for four distinct rickettsiae, revealing longer acyl chains relative to highly inflammatory bacterial lipid A. Surprisingly, lipid A of the Rocky Mountain spotted fever agent deviates in structure from other rickettsiae. Thus, lipid A divergence may contribute to variable disease phenotypes, sounding an alarm for determining its immunopotency and possible utility (i.e., as an adjuvant or anti-inflammatory) for development of more prudent rickettsiacidal therapies.


Assuntos
Lipídeo A/química , Rickettsia/química , Rickettsia/classificação , Humanos , Lipídeo A/classificação , Rickettsia/patogenicidade , Infecções por Rickettsia/microbiologia
5.
Parasit Vectors ; 14(1): 275, 2021 May 22.
Artigo em Inglês | MEDLINE | ID: mdl-34022939

RESUMO

BACKGROUND: Currently, various zoonotic diseases are classified as emerging or reemerging. Because equids have a direct relationship with various vectors, they are possibly more frequently exposed to zoonotic agents than are humans. The undeniable importance of diseases such as human granulocytic anaplasmosis, spotted fever, and leishmaniasis for both public and animal health, as well as the possibility of equids acting as sources, reservoirs, or even sentinels for these pathogens, justifies the detection of their frequency and factors associated with infection in equids from northeastern Brazil. METHODS: Blood samples were collected from 569 equids (528 horses, 33 donkeys, and 8 mules), 516 from a rural area and 53 from an urban area. Pathogen detection was carried out as follows: Borrelia spp. and Rickettsia spp., serological analysis; Leishmania spp., serological analysis and polymerase chain reaction (PCR); Anaplasma phagocytophilum, PCR. Determination of associated factors was carried out through generalized linear models. RESULTS: The frequencies of positivity for the pathogens observed in equids were as follows: Borrelia spp., 13.9% (79/569); Leishmania spp., 3.5% (20/569); Rickettsia spp. 33.4% (190/569). Regarding factors associated with infection, male sex was associated with protection against Borrelia spp.; donkeys and mules were associated with protection against Rickettsia spp., while a younger age was a risk factor. The infection of A. phagocytophilum was not detected in the sampled population. Co-infection was detected in 5.1% (29/569) of the animals. CONCLUSIONS: Most of the studied pathogenic agents are present in the prospected area, indicating a possible risk for both human and animal health. This demonstrates that equids can be considered important sentinels in the assessment of pathogens with zoonotic potential in the region.


Assuntos
Equidae/parasitologia , Leishmaniose/veterinária , Doença de Lyme/veterinária , Infecções por Rickettsia/veterinária , Zoonoses/epidemiologia , Zoonoses/parasitologia , Anaplasma/isolamento & purificação , Anaplasma/patogenicidade , Anaplasmose/epidemiologia , Animais , Borrelia/isolamento & purificação , Borrelia/patogenicidade , Brasil/epidemiologia , Feminino , Leishmania/isolamento & purificação , Leishmania/patogenicidade , Leishmaniose/epidemiologia , Doença de Lyme/epidemiologia , Masculino , Rickettsia/isolamento & purificação , Rickettsia/patogenicidade , Infecções por Rickettsia/epidemiologia
6.
Virchows Arch ; 479(6): 1091-1094, 2021 Dec.
Artigo em Inglês | MEDLINE | ID: mdl-33851237

RESUMO

Granulomatous mastitis is a rare inflammatory disease of varying etiology. Tuberculosis and cystic neutrophilic granulomatous mastitis caused by Corynebacterium are the best-established infectious examples. Despite the increasing incidence of Rickettsia-related diseases worldwide, granulomatous inflammation of breast parenchyma caused by Rickettsia has not yet been reported. We present a unique case of bilateral granulomatous mastitis documented with mammography, magnetic resonance imaging and core-needle biopsy. The rickettsial etiology of the disease was proved with specific immunohistochemistry and confirmed with DNA extraction, PCR and serology. The lesions completely resolved after a full-course tetracycline treatment. This case report widens the knowledge about the possible clinical manifestations of Rickettsia infection and adds a new bacterium to the list of etiological factors causing granulomatous mastitis.


Assuntos
Mastite Granulomatosa/microbiologia , Infecções por Rickettsia/microbiologia , Rickettsia/patogenicidade , Antibacterianos/uso terapêutico , Técnicas Bacteriológicas , Biópsia com Agulha de Grande Calibre , Feminino , Mastite Granulomatosa/diagnóstico , Mastite Granulomatosa/tratamento farmacológico , Humanos , Imageamento por Ressonância Magnética , Mamografia , Pessoa de Meia-Idade , Rickettsia/efeitos dos fármacos , Infecções por Rickettsia/complicações , Infecções por Rickettsia/diagnóstico , Infecções por Rickettsia/tratamento farmacológico , Tetraciclina/uso terapêutico , Resultado do Tratamento
7.
Pathog Dis ; 79(5)2021 05 10.
Artigo em Inglês | MEDLINE | ID: mdl-33908603

RESUMO

Rickettsia amblyommatis belongs to the spotted fever group of Rickettsia and infects Amblyomma americanum (Lone Star ticks) for transmission to offspring and mammals. Historically, the geographic range of A. americanum was restricted to the southeastern USA. However, recent tick surveys identified the progressive northward invasion of A. americanum, contributing to the increased number of patients with febrile illnesses of unknown etiology after a tick bite in the northeastern USA. While serological evidence strongly suggests that patients are infected with R. amblyommatis, the virulence potential of R. amblyommatis is not well established. Here, we performed a bioinformatic analysis of three genome sequences of R. amblyommatis and identified the presence of multiple putative virulence genes whose products are implicated for spotted fever pathogenesis. Similar to other pathogenic spotted fever rickettsiae, R. amblyommatis replicated intracellularly within the cytoplasm of tissue culture cells. Interestingly, R. amblyommatis displayed defective attachment to microvascular endothelial cells. The attachment defect and slow growth rate of R. amblyommatis required relatively high intravenous infectious doses to produce dose-dependent morbidity and mortality in C3H mice. In summary, our results corroborate clinical evidence that R. amblyommatis can cause mild disease manifestation in some patients.


Assuntos
Genoma Bacteriano/genética , Rickettsia/genética , Rickettsia/patogenicidade , Rickettsiose do Grupo da Febre Maculosa/microbiologia , Animais , Linhagem Celular , Chlorocebus aethiops , Modelos Animais de Doenças , Células Endoteliais/microbiologia , Genômica , Humanos , Camundongos , Camundongos Endogâmicos C3H , Células Vero , Virulência
8.
Parasit Vectors ; 14(1): 191, 2021 Apr 07.
Artigo em Inglês | MEDLINE | ID: mdl-33827669

RESUMO

BACKGROUND: Rickettsial diseases associated with the spotted fever group constitute a growing number of newly identified Rickettsia pathogens and their tick vectors in various parts of the world. At least 15 distinct tick species belonging to six genera have shown the presence of Rickettsia raoultii. Herein, we report the detection of R. raoultii in ticks from the Republic of Korea (ROK). METHODS: Thirty-five ticks were collected from 29 patients with tick bites in Gwangju Metropolitan City, Jeollanam Province, ROK. The ticks were identified using molecular, morphological, and taxonomic characteristics. All samples were screened for presence of Rickettsia species using nested polymerase chain reactions of their outer membrane protein (ompA) and citrate synthase (gltA) genes. The amplified products were sequenced for subsequent phylogenetic analyses. RESULTS: Sequencing data showed the DNA sequences of R. raoultii in three Haemaphysalis longicornis ticks. All three tick samples were 99.4-100% similar to previously reported partial sequences of ompA of R. raoultii strains CP019435 and MF002523, which formed a single clade with the reference strains. CONCLUSIONS: We provide the first description and molecular identification of R. raoultii detected in H. longicornis ticks in the ROK. This observation extends the geographical distribution of R. raoultii. Screening of human samples for this pathogen will provide information about the prevalence of rickettsial infections in this region.


Assuntos
Ixodidae/microbiologia , Rickettsia/genética , Animais , Proteínas da Membrana Bacteriana Externa/genética , Mordeduras e Picadas , Feminino , Humanos , Ixodidae/anatomia & histologia , Patologia Molecular , Filogenia , Reação em Cadeia da Polimerase , República da Coreia , Rickettsia/classificação , Rickettsia/isolamento & purificação , Rickettsia/patogenicidade , Infecções por Rickettsia/microbiologia , Análise de Sequência de DNA
9.
Pathog Dis ; 79(4)2021 04 09.
Artigo em Inglês | MEDLINE | ID: mdl-33784388

RESUMO

Rickettsiae are obligate intracellular bacteria that can cause life-threatening illnesses and are among the oldest known vector-borne pathogens. Members of this genus are extraordinarily diverse and exhibit a broad host range. To establish intracellular infection, Rickettsia species undergo complex, multistep life cycles that are encoded by heavily streamlined genomes. As a result of reductive genome evolution, rickettsiae are exquisitely tailored to their host cell environment but cannot survive extracellularly. This host-cell dependence makes for a compelling system to uncover novel host-pathogen biology, but it has also hindered experimental progress. Consequently, the molecular details of rickettsial biology and pathogenesis remain poorly understood. With recent advances in molecular biology and genetics, the field is poised to start unraveling the molecular mechanisms of these host-pathogen interactions. Here, we review recent discoveries that have shed light on key aspects of rickettsial biology. These studies have revealed that rickettsiae subvert host cells using mechanisms that are distinct from other better-studied pathogens, underscoring the great potential of the Rickettsia genus for revealing novel biology. We also highlight several open questions as promising areas for future study and discuss the path toward solving the fundamental mysteries of this neglected and emerging human pathogen.


Assuntos
Proteínas de Bactérias/genética , Genoma Bacteriano , Especificidade de Hospedeiro/genética , Estágios do Ciclo de Vida/genética , Infecções por Rickettsia/microbiologia , Rickettsia/genética , Animais , Proteínas de Bactérias/classificação , Proteínas de Bactérias/metabolismo , Elementos de DNA Transponíveis , Regulação Bacteriana da Expressão Gênica , Humanos , Doenças Negligenciadas/microbiologia , Doenças Negligenciadas/patologia , Mapeamento de Interação de Proteínas , Rickettsia/crescimento & desenvolvimento , Rickettsia/metabolismo , Rickettsia/patogenicidade , Infecções por Rickettsia/patologia , Sistemas de Secreção Tipo IV/genética , Sistemas de Secreção Tipo IV/metabolismo
10.
Parasit Vectors ; 14(1): 136, 2021 Mar 05.
Artigo em Inglês | MEDLINE | ID: mdl-33673864

RESUMO

BACKGROUND: Tick-borne diseases are common throughout Europe. Ticks transmit pathogens to the host while feeding and together with mosquitoes, they are major vectors of infectious agents worldwide. In recent years, there has been a marked increase in the incidence of tick-bite events and tick-borne disease in northwest Italy, but information on the prevalence of tick-borne pathogens in ticks removed from humans remains scarce. To fill this gap, we report here the prevalence of tick bites and tick-borne pathogens documented for humans in Piedmont, northwest Italy, in the 3-year period 2017-2019. METHODS: Ticks attached to humans during 2017-2019 were collected from residents of urban and rural area by physicians and veterinarians working with local veterinary agencies. All ticks (n = 1290) were morphologically identified to the species level. A subset of ticks removed from children (age 0-18 years) and the elderly (> 70 years), both age groups considered to be at-risk populations, was screened by biomolecular analysis to detect pathogens (e.g. Rickettsia spp., Borrelia spp., Anaplasma spp.). Pathogen identity was confirmed by Sanger sequencing. RESULTS: Ticks were taxonomically assigned to ten species of six genera (Amblyomma, Dermacentor, Haemaphysalis, Hyalomma, Ixodes and Rhipicephalus). Most belonged to the genus Ixodes: 1009 ticks (78.22%) were classified as Ixodes ricinus. A subset of 500 ticks collected from the two at-risk populations were subjected to PCR assay to determine the presence of Rickettsia spp., Borrelia spp., and Anaplasma spp. The overall prevalence of infection was 22.8% (n = 114; 95% confidence interval [CI]: 19.19-26.73%), meaning that at least one pathogen was detected: Rickettsia spp. (prevalence 15%, n = 76; 95% CI 12.17-18.65%); Borrelia spp. (prevalence 6.4%, n = 32; 95% CI 4.42-8.92%); and Anaplasma spp. (prevalence 1.2%, n = 6; 95% CI 0.44-2.6%). CONCLUSIONS: Our data underline the importance of surveillance in the epidemiology of tick-borne diseases and the implementation of strategies to control tick infestation and associated pathogens.


Assuntos
Anaplasma/isolamento & purificação , Borrelia/isolamento & purificação , Ixodes/genética , Ixodes/microbiologia , Rickettsia/isolamento & purificação , Infestações por Carrapato/epidemiologia , Doenças Transmitidas por Carrapatos/epidemiologia , Adolescente , Idoso , Idoso de 80 Anos ou mais , Anaplasma/genética , Anaplasma/patogenicidade , Animais , Mordeduras e Picadas , Borrelia/genética , Borrelia/patogenicidade , Criança , Pré-Escolar , Estudos Transversais , Vetores de Doenças , Feminino , Humanos , Lactente , Recém-Nascido , Itália/epidemiologia , Ixodes/classificação , Masculino , Rickettsia/genética , Rickettsia/patogenicidade , Doenças Transmitidas por Carrapatos/microbiologia , Doenças Transmitidas por Carrapatos/transmissão
11.
Pathog Dis ; 79(4)2021 04 05.
Artigo em Inglês | MEDLINE | ID: mdl-33705517

RESUMO

Bacterial infection is a highly complex biological process involving a dynamic interaction between the invading microorganism and the host. Specifically, intracellular pathogens seize control over the host cellular processes including membrane dynamics, actin cytoskeleton, phosphoinositide metabolism, intracellular trafficking and immune defense mechanisms to promote their host colonization. To accomplish such challenging tasks, virulent bacteria deploy unique species-specific secreted effectors to evade and/or subvert cellular defense surveillance mechanisms to establish a replication niche. However, despite superficially similar infection strategies, diverse Rickettsia species utilize different effector repertoires to promote host colonization. This review will discuss our current understandings on how different Rickettsia species deploy their effector arsenal to manipulate host cellular processes to promote their intracytosolic life within the mammalian host.


Assuntos
Vetores Artrópodes/microbiologia , Interações Hospedeiro-Patógeno , Infecções por Rickettsia/microbiologia , Rickettsia/classificação , Rickettsia/patogenicidade , Citoesqueleto de Actina/metabolismo , Citoesqueleto de Actina/microbiologia , Animais , Especificidade de Hospedeiro , Humanos , Redes e Vias Metabólicas , Ácaros/microbiologia , Fosfatidilinositóis/metabolismo , Ftirápteros/microbiologia , Filogenia , Rickettsia/crescimento & desenvolvimento , Rickettsia/metabolismo , Infecções por Rickettsia/genética , Infecções por Rickettsia/patologia , Sifonápteros/microbiologia , Especificidade da Espécie , Carrapatos/microbiologia
12.
Am J Trop Med Hyg ; 104(4): 1582-1585, 2021 03 01.
Artigo em Inglês | MEDLINE | ID: mdl-33646978

RESUMO

Bloodstream infections cause substantial morbidity and mortality. However, despite clinical suspicion of such infections, blood cultures are often negative. We investigated blood cultures that were negative after 5 days of incubation for the presence of bacterial pathogens using specific (Rickettsia spp. and Leptospira spp.) and a broad-range 16S rRNA PCR. From 190 samples, 53 (27.9%) were positive for bacterial DNA. There was also a high background incidence of dengue (90/112 patient serum positive, 80.4%). Twelve samples (6.3%) were positive for Rickettsia spp., including two Rickettsia typhi. The 16S rRNA PCR gave 41 positives; Escherichia coli and Klebsiella pneumoniae were identified in 11 and eight samples, respectively, and one Leptospira species was detected. Molecular investigation of negative blood cultures can identify potential pathogens that will otherwise be missed by routine culture. Patient management would have been influenced in all 53 patients for whom a bacterial organism was identified, and 2.3-6.1% of patients would likely have had an altered final outcome. These findings warrant further study, particularly to determine the cost-benefit for routine use, ways of implementation, and timing of PCR for organisms such as Rickettsia and Leptospira, which are important pathogens in rural Asia.


Assuntos
Hemocultura/estatística & dados numéricos , DNA Bacteriano/análise , DNA Bacteriano/genética , Escherichia coli/genética , Escherichia coli/patogenicidade , Humanos , Laos/epidemiologia , Leptospira/genética , Leptospira/patogenicidade , Patologia Molecular , Reação em Cadeia da Polimerase , RNA Ribossômico 16S/genética , Rickettsia/genética , Rickettsia/patogenicidade , Rickettsia typhi/genética , Rickettsia typhi/patogenicidade
14.
Sci Rep ; 11(1): 2595, 2021 01 28.
Artigo em Inglês | MEDLINE | ID: mdl-33510192

RESUMO

Japanese spotted fever, a tick-borne disease caused by Rickettsia japonica, was firstly described in southwestern Japan. There was a suspicion of Rickettsia japonica infected ticks reaching the non-endemic Niigata Prefecture after a confirmed case of Japanese spotted fever in July 2014. Therefore, from 2015 to 2017, 38 sites were surveyed and rickettsial pathogens were investigated in ticks from north to south of Niigata Prefecture including Sado island. A total of 3336 ticks were collected and identified revealing ticks of three genera and ten species: Dermacentor taiwanensis, Haemaphysalis flava, Haemaphysalis hystricis, Haemaphysalis longicornis, Haemaphysalis megaspinosa, Ixodes columnae, Ixodes monospinosus, Ixodes nipponensis, Ixodes ovatus, and Ixodes persulcatus. Investigation of rickettsial DNA showed no ticks infected by R. japonica. However, three species of spotted fever group rickettsiae (SFGR) were found in ticks, R. asiatica, R. helvetica, and R. monacensis, confirming Niigata Prefecture as a new endemic area to SFGR. These results highlight the need for public awareness of the occurrence of this tick-borne disease, which necessitates the establishment of public health initiatives to mitigate its spread.


Assuntos
Rickettsia/patogenicidade , Rickettsiose do Grupo da Febre Maculosa/parasitologia , Rickettsiose do Grupo da Febre Maculosa/transmissão , Doenças Transmitidas por Carrapatos/parasitologia , Doenças Transmitidas por Carrapatos/transmissão , Carrapatos/metabolismo , Animais , Humanos , Japão , Filogenia , Rickettsia/isolamento & purificação , Rickettsiose do Grupo da Febre Maculosa/microbiologia , Doenças Transmitidas por Carrapatos/microbiologia
15.
Parasit Vectors ; 14(1): 65, 2021 Jan 20.
Artigo em Inglês | MEDLINE | ID: mdl-33472659

RESUMO

BACKGROUND: Rickettsia spp. are human pathogens that cause a number of diseases and are transmitted by arthropods, such as ixodid ticks. Estonia is one of few regions where the distribution area of two medically important tick species, Ixodes persulcatus and I. ricinus, overlaps. The nidicolous rodent-associated Ixodes trianguliceps has also recently been shown to be present in Estonia. Although no data are available on human disease(s) caused by tick-borne Rickettsia spp. in Estonia, the presence of three Rickettsia species in non-nidicolous ticks has been previously reported. The aim of this study was to detect, identify and partially characterize Rickettsia species in nidicolous and non-nidicolous ticks attached to rodents in Estonia. RESULTS: Larvae and nymphs of I. ricinus (n = 1004), I. persulcatus (n = 75) and I. trianguliceps (n = 117), all removed from rodents and shrews caught in different parts of Estonia, were studied for the presence of Rickettsia spp. by nested PCR. Ticks were collected from 314 small animals of five species [Myodes glareolus (bank voles), Apodemus flavicollis (yellow necked mice), A. agrarius (striped field mice), Microtus subterranius (pine voles) and Sorex araneus (common shrews)]. Rickettsial DNA was detected in 8.7% (103/1186) of the studied ticks. In addition to identifying R. helvetica, which had been previously found in questing ticks, we report here the first time that the recently described I. trianguliceps-associated Candidatus Rickettsia uralica has been identified west of the Ural Mountains.


Assuntos
Ixodes/microbiologia , Rickettsia/classificação , Rickettsia/isolamento & purificação , Roedores/microbiologia , Animais , Arvicolinae/microbiologia , Estônia , Europa (Continente) , Camundongos/microbiologia , Estudos Retrospectivos , Rickettsia/genética , Rickettsia/patogenicidade , Roedores/classificação , Musaranhos/microbiologia , Rickettsiose do Grupo da Febre Maculosa
16.
Adv Med Sci ; 66(1): 113-118, 2021 Mar.
Artigo em Inglês | MEDLINE | ID: mdl-33461099

RESUMO

PURPOSE: Dermacentor reticulatus is the second most common tick species in Poland after Ixodes ricinus. The aim of the study was to analyze the presence of pathogen DNA in D. reticulatus. MATERIALS AND METHODS: Ticks were collected in The Protected Landscape Area of the Bug and Nurzec Valley (52°40' N and 22°28' E) between 2016 and 2017. End-point PCR for Borrelia burgdorferi sensu lato, Anaplasma phagocytophilum, Babesia spp., Rickettsia spp., Bartonella spp. and Coxiella burnetii detection was performed. RESULTS: Tick-borne pathogens' DNA was detected in 11.3% of 301 ticks: B. burgdorferi s.l. in 3.6%, Babesia spp. in 6.3%, A. phagocytophilum in 0.7% and B. burgdorferi s.l.-Babesia spp. co-infection in 0.7%. In all 21 Babesia spp. positive samples, sequence analysis confirmed the presence of Babesia canis with an 80.3%-98.3% homology with the B. canis sequences in GenBank. C. burnetii, Bartonella spp., and Rickettsia spp. DNA were not detected. CONCLUSIONS: Dermacentor reticulatus from north-eastern Poland were found to carry three of the most common tick-borne pathogens (B. burgdorferi s.l., Babesia canis, A. phagocytophilum) which lead to single and mixed infections. Babesia canis was the most prevalent pathogen identified in D. reticulatus.


Assuntos
Anaplasma phagocytophilum/patogenicidade , Bartonella/patogenicidade , Borrelia burgdorferi/patogenicidade , Coxiella burnetii/patogenicidade , Dermacentor/microbiologia , Rickettsia/patogenicidade , Doenças Transmitidas por Carrapatos/epidemiologia , Anaplasma phagocytophilum/isolamento & purificação , Animais , Bartonella/isolamento & purificação , Infecções por Bartonella/microbiologia , Borrelia burgdorferi/isolamento & purificação , Coxiella burnetii/isolamento & purificação , Ehrlichiose/microbiologia , Humanos , Doença de Lyme/microbiologia , Polônia/epidemiologia , Febre Q/microbiologia , Rickettsia/isolamento & purificação , Infecções por Rickettsia/microbiologia , Doenças Transmitidas por Carrapatos/microbiologia
17.
Sci China Life Sci ; 64(7): 1174-1186, 2021 Jul.
Artigo em Inglês | MEDLINE | ID: mdl-33021711

RESUMO

Endosymbiont transmission via eggs to future host generations has been recognized as the main strategy for its persistence in insect hosts; however, the mechanisms for transmission have yet to be elucidated. Here, we describe the dynamic locations of Rickettsia in the ovarioles and eggs during oogenesis and embryogenesis in a globally significant pest whitefly Bemisia tabaci. Field populations of the whitefly have a high prevalence of Rickettsia, and in all Rickettsia-infected individuals, the bacterium distributes in the body cavity of the host, especially in the midgut, fat body, hemocytes, hemolymph, and near bacteriocytes. The distribution of Rickettsia was subjected to dynamic changes in the ovary during oogenesis, and our ultrastructural observations indicated that the bacteria infect host ovarioles during early developmental stages via two routes: (i) invasion of the tropharium by endocytosis and then transmission into vitellarium via nutritive cord and (ii) entry into vitellarium by hijacking bacteriocyte translocation. Most of the Rickettsia are degraded in the oocyte cytoplasm in late-stage oogenesis. However, a few reside beneath the vitelline envelope of mature eggs, spread into the embryo, and proliferate during embryogenesis to sustain high-fidelity transmission to the next generation. Our findings provide novel insights into the maternal transmission underpinning the persistence and spread of insect symbionts.


Assuntos
Hemípteros/microbiologia , Oócitos/microbiologia , Rickettsia/patogenicidade , Animais , Transmissão de Doença Infecciosa , Transmissão Vertical de Doenças Infecciosas , Oogênese , Simbiose
18.
BMC Genomics ; 21(1): 665, 2020 Sep 25.
Artigo em Inglês | MEDLINE | ID: mdl-32977742

RESUMO

BACKGROUND: Pathogenic Rickettsia species belonging to the spotted fever group are arthropod-borne, obligate intracellular bacteria which exhibit preferential tropism for host microvascular endothelium in the mammalian hosts, resulting in disease manifestations attributed primarily to endothelial damage or dysfunction. Although rickettsiae are known to undergo evolution through genomic reduction, the mechanisms by which these pathogens regulate their transcriptome to ensure survival in tick vectors and maintenance by transovarial/transstadial transmission, in contrast to their ability to cause debilitating infections in human hosts remain unknown. In this study, we compare the expression profiles of rickettsial sRNAome/transcriptome and determine the transcriptional start sites (TSSs) of R. conorii transcripts during in vitro infection of human and tick host cells. RESULTS: We performed deep sequencing on total RNA from Amblyomma americanum AAE2 cells and human microvascular endothelial cells (HMECs) infected with R. conorii. Strand-specific RNA sequencing of R. conorii transcripts revealed the expression 32 small RNAs (Rc_sR's), which were preferentially expressed above the limit of detection during tick cell infection, and confirmed the expression of Rc_sR61, sR71, and sR74 by quantitative RT-PCR. Intriguingly, a total of 305 and 132 R. conorii coding genes were differentially upregulated (> 2-fold) in AAE2 cells and HMECs, respectively. Further, enrichment for primary transcripts by treatment with Terminator 5'-Phosphate-dependent Exonuclease resulted in the identification of 3903 and 2555 transcription start sites (TSSs), including 214 and 181 primary TSSs in R. conorii during the infection to tick and human host cells, respectively. Seventy-five coding genes exhibited different TSSs depending on the host environment. Finally, we also observed differential expression of 6S RNA during host-pathogen and vector-pathogen interactions in vitro, implicating an important role for this noncoding RNA in the regulation of rickettsial transcriptome depending on the supportive host niche. CONCLUSIONS: In sum, the findings of this study authenticate the presence of novel Rc_sR's in R. conorii, reveal the first evidence for differential expression of coding transcripts and utilization of alternate transcriptional start sites depending on the host niche, and implicate a role for 6S RNA in the regulation of coding transcriptome during tripartite host-pathogen-vector interactions.


Assuntos
Amblyomma/microbiologia , Células Endoteliais/microbiologia , Insetos Vetores/microbiologia , Rickettsia/genética , Transcriptoma , Animais , Linhagem Celular , Células Cultivadas , Endotélio Vascular/citologia , Regulação Bacteriana da Expressão Gênica , Interações Hospedeiro-Patógeno , Humanos , Fases de Leitura Aberta , Rickettsia/metabolismo , Rickettsia/patogenicidade , Sítio de Iniciação de Transcrição
19.
Int J Mol Sci ; 21(15)2020 Jul 30.
Artigo em Inglês | MEDLINE | ID: mdl-32751625

RESUMO

Many pathogens are transmitted by tick bites, including Anaplasma spp., Ehrlichia spp., Rickettsia spp., Babesia and Theileria sensu stricto species. These pathogens cause infectious diseases both in animals and humans. Different types of immune effector mechanisms could be induced in hosts by these microorganisms, triggered either directly by pathogen-derived antigens or indirectly by molecules released by host cells binding to these antigens. The components of innate immunity, such as natural killer cells, complement proteins, macrophages, dendritic cells and tumor necrosis factor alpha, cause a rapid and intense protection for the acute phase of infectious diseases. Moreover, the onset of a pro-inflammatory state occurs upon the activation of the inflammasome, a protein scaffold with a key-role in host defense mechanism, regulating the action of caspase-1 and the maturation of interleukin-1ß and IL-18 into bioactive molecules. During the infection caused by different microbial agents, very similar profiles of the human innate immune response are observed including secretion of IL-1α, IL-8, and IFN-α, and suppression of superoxide dismutase, IL-1Ra and IL-17A release. Innate immunity is activated immediately after the infection and inflammasome-mediated changes in the pro-inflammatory cytokines at systemic and intracellular levels can be detected as early as on days 2-5 after tick bite. The ongoing research field of "inflammasome biology" focuses on the interactions among molecules and cells of innate immune response that could be responsible for triggering a protective adaptive immunity. The knowledge of the innate immunity mechanisms, as well as the new targets of investigation arising by bioinformatics analysis, could lead to the development of new methods of emergency diagnosis and prevention of tick-borne infections.


Assuntos
Imunidade Inata , Insetos Vetores/imunologia , Doenças Transmitidas por Carrapatos/imunologia , Carrapatos/patogenicidade , Anaplasma/patogenicidade , Animais , Babesia/patogenicidade , Ehrlichia/patogenicidade , Humanos , Insetos Vetores/patogenicidade , Rickettsia/patogenicidade , Theileria/patogenicidade , Doenças Transmitidas por Carrapatos/transmissão , Carrapatos/microbiologia
20.
Future Microbiol ; 15: 753-765, 2020 06.
Artigo em Inglês | MEDLINE | ID: mdl-32691620

RESUMO

Infections caused by pathogenic Rickettsia species continue to scourge human health across the globe. From the point of entry at the site of transmission by arthropod vectors, hematogenous dissemination of rickettsiae occurs to diverse host tissues leading to 'rickettsial vasculitis' as the salient feature of pathogenesis. This perspective article accentuates recent breakthrough developments in the context of host-pathogen-vector interactions during rickettsial infections. The subtopics include potential exploitation of circulating macrophages for spread, identification of new entry mechanisms and regulators of actin-based motility, appreciation of metabolites acquired from and effectors delivered into the host, importance of the toxin-antitoxin module in host-cell interactions, effects of the vector microbiome on rickettsial transmission, and niche-specific riboregulation and adaptation. Further research on these aspects will advance our understanding of the biology of rickettsiae as intracellular pathogens and should enable design and development of new approaches to counter rickettsioses in humans and other hosts.


Assuntos
Infecções por Rickettsia/imunologia , Infecções por Rickettsia/microbiologia , Infecções por Rickettsia/transmissão , Rickettsia/patogenicidade , Fatores de Virulência , Animais , Modelos Animais de Doenças , Vetores de Doenças , Interações Hospedeiro-Patógeno , Humanos , Rickettsia/imunologia , Rickettsia/fisiologia , Simbiose
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