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Nobuhiro Takada

Publications and source records attributed to Nobuhiro Takada.

13 recordsLinked to original sources

Rickettsia tamurae sp. nov., isolated from Amblyomma testudinarium ticks.

Rickettsia sp. strain AT-1(T) was isolated from Amblyomma testudinarium ticks in Japan in 1993. Comparative analysis of sequences obtained from 16S rRNA, gltA, ompA, ompB and sca4 gene fragments demonstrated those from AT-1(T) to be markedly different from those of other members of the spotted fever group. Using mouse serotyping, it was also observed that Rickettsia sp. strain AT-1(T) was different from other Rickettsia species with validly published names. Such genotypic and phenotypic characteristics warrant its classification as a representative of a novel species, for which the name Rickettsia tamurae sp. nov. is proposed, with the type strain AT-1(T) (=CSUR R1(T)).

Bacterial Outer Membrane Proteins↗

Rickettsia asiatica sp. nov., isolated in Japan.

The characterization of a novel Rickettsia species, first isolated from Ixodes ovatus ticks in Japan in 1993, is described for which the name Rickettsia asiatica sp. nov. is proposed. Using multilocus sequence comparison, five rickettsial isolates from I. ovatus collected at various locations in Japan were found to be identical but belonged to a novel species. Serotyping also demonstrated this rickettsia to be distinct from previously described Rickettsia species. The type strain of Rickettsia asiatica sp. nov. is IO-1(T) (=CSUR R2(T)). Following discussions held at the meeting of the International Committee on Systematics of Prokaryotes (ICSP) and its Judicial Commission (JC) in San Francisco, 2005, and in anticipation of the published minutes of the JC and ICSP, a committee consisting of the chairman of the ICSP, the chairman of the Judicial Commission of the ICSP and the Editor of the IJSEM has granted an exception in this case to the Rule governing the deposit of type material in two different collections in two different countries.

Animals↗

Characterization of Borrelia burgdorferi sensu lato isolated in Moscow province--a sympatric region for Ixodes ricinus and Ixodes persulcatus.

The relationships between Borrelia species and the vector ticks, Ixodes persulcatus and Ixodes ricinus were examined in a molecular epidemiological study. We conducted a survey in the Moscow region which is a sympatric region for both species of tick. We examined 630 unfed I. ricinus and I. persulcatus, ticks collected from four different regions around Moscow within an area of 250 km2. Eighty-four ticks were culture positive (13.3%) and the prevalence rate varied in each region from 5.7% to 42.3%. No difference was found between the total prevalence rate for both species. Eight Borrelia afzelii-like variant isolates from I. ricinus and Clethrionomys glareolus were identified as B. afzelii by flagellin gene and 16S rDNA sequence analyses. Most isolates from I. ricinus were identified as Borrelia garinii type 20047 and B. afzelii. Two isolates were identified as Borrelia burgdorferi sensu stricto (s.s.) and Borrelia valaisiana, respectively, but no B. garinii type NT29 was found. In contrast, isolates from I. persulcatus were identified as both types 20047 and NT29 of B. garinii, and B. afzelii. No B. burgdorferi s.s. isolate was found among isolates from I. persulcatus.

Animals↗

Japanese Babesia microti cytologically detected in salivary glands of naturally infected tick Ixodes ovatus.

Babesia microti protozoa were detected by light and electron microscopy in the salivary glands of field-collected Ixodes ovatus ticks; 6 of 85 adult ticks were demonstrated to be positive for B. microti DNA by polymerase chain reaction assays. In the salivary glands of unfed ticks, B. microti existed in the sporoblast stage in the granular acinus cells, and developed into the sporozoite stage during feeding on the host for 2 days. The present results indicated for the first time that I. ovatus can indeed carry B. microti and is not infected mechanically with the parasites by blood-sucking. This frequent infection of I. ovatus with B. microti demonstrates the significance of such a vector-pathogen relationship in Japan, and strongly suggests that I. ovatus is involved in the maintenance of B. microti in the fauna of Japanese rodents.

Animals↗

The first reported case of spotted fever in Fukui Prefecture, the northern part of central Japan.

A 53-year-old man visited Mt. Arashima-dake in Fukui Prefecture, and was infested by a tick-like organism. He visited a local clinic on July 12, 2004, complaining of high fever, general fatigue and rash. After several days without definite diagnosis, he was admitted to the Fukui Prefectural Hospital, where he was treated with minocycline hydrochloride for 10 days until recovery. His clinical symptoms on admission were high fever (39.6 degrees C), erythematous eruption, eschar on the right upper arm, and regional lymphoadenopathy. The epidemiological status and some clinical findings strongly suggested spotted fever (SF), and SF was confirmed based on the finding that his sera were reactive only to antigens of the SF group rickettsiae in the indirect immunoperoxidase analysis. This case is the first official report of SF rickettsiosis in Fukui Prefecture, the northern part of central Japan.

Anti-Bacterial Agents↗

Molecular evidence of the dispersal of Lyme disease Borrelia from the Asian Continent to Japan via migratory birds.

Based on specific sequencing, we found that a Borrelia garinii strain from a rodent in Fukui Prefecture, Japan was highly similar to the unique Borrelia strains (pattern R'/R) isolated in northeastern China and Korea, and to strains from ticks feeding on migratory birds in Fukui Prefecture. These findings indicate that the Borrelia with this unique pattern may be locally naturalized to the epizootic transmission cycle in Japan, and that Borrelia is dispersed from the Asian Continent to Japan via migratory birds.

Animals↗

Ultrastructure of a Japanese Rickettsial strain genetically identified as Rickettsia helvetica which was originally found in Europe.

A rickettsial strain IO-1 has been isolated from a tick, Ixodes ovatus, in Japan and genetically identified as Rickettsia helvetica, a member of the spotted fever group rickettsiae. Ultrastructural observations were made on the microorganism. The ultrastructure of R. helvetica IO-1 appeared to be generally the same as that previously shown for other rickettsiae of the spotted fever and typhus groups. The rickettsiae were primarily found free in the cytoplasm of L929 cultured cells. Occasionally, the rickettsiae may also invade the host cell nucleus; however, the frequency of the nuclear localization was very low.

Animals↗

First isolation and characterization of Borrelia burgdorferi sensu lato strains from Ixodes ricinus ticks in Turkey.

In order to investigate the presence and prevalence of Lyme borreliosis (Lyme disease) Borrelia species, 312 unfed ticks were collected by flagging at a woodland area in Trakya, in the European side of Turkey, in May 2002. Twelve of 299 Ixodes ricinus ticks were infected with Borrelia spp., as determined by cultivation in BSK medium (prevalence rate 4.0 %). Ten pure cultures were subjected to further characterization by sequencing analysis of the 5S-23S rDNA intergenic spacer, 16S rDNA and flagellin gene. One isolate of Borrelia burgdorferi sensu stricto, two of Borrelia garinii (Eurasian type), two of Borrelia afzelii, four of Borrelia lusitaniae and one of Borrelia valaisiana were identified. However, no Asian-type B. garinii was found. Interestingly, all Borrelia species that are known to be carried by I. ricinus were discovered among the 10 isolates. These results provide the first evidence for the existence of the Lyme borreliosis agent in Turkey.

Animals↗

[Babesiosis].

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Animals↗

Genetic identification of rickettsiae isolated from ticks in Japan.

Following the description in Japan of Japanese spotted fever, caused by Rickettsia japonica, a search for the vector of this disease led to the isolation of several rickettsiae from various tick species. Sixty-three rickettsial isolates were obtained from six different tick species, and six type strains were described by PCR and monoclonal antibody testing. We identified these six strains by amplification and sequencing of the genes encoding 16S rRNA and citrate synthase. We confirmed that the isolates from Dermacentor taiwanensis and Haemaphysalis flava ticks were R. japonica isolates. In Ixodes ovatus, Ixodes persulcatus, and Ixodes monospinosus, we identified a Rickettsia identical or closely related to Rickettsia helvetica, a species that is pathogenic for humans and that to date has only been found in Europe. Finally, we identified a new genotype of unknown pathogenicity, genotype AT, that was isolated from Amblyomma testudinarium ticks and that is closely related to a Slovakian genotype obtained from Ixodes ricinus ticks.

Animals↗