Seiya Harada
Overview
Explore the profile of Seiya Harada including associated specialties, affiliations and a list of published articles.
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Articles
27
Citations
404
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0
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Recent Articles
1.
Maeda R, Mori M, Harada S, Izu I, Hirano T, Inoue Y, et al.
Emerg Infect Dis
. 2023 Sep;
29(10):2175-2177.
PMID: 37735800
In 2021, an outbreak of food poisoning caused by Clostridium botulinum type C occurred in Kumamoto, Japan. Analysis of the isolated strain revealed that it possessed the bont/C gene and...
2.
Doan Y, Yamashita Y, Shinomiya H, Motoya T, Sakon N, Suzuki R, et al.
Jpn J Infect Dis
. 2023 Apr;
76(4):255-258.
PMID: 37005271
Sapovirus (SaV) infections are a public health problem because they cause acute gastroenteritis in humans of all ages, both sporadically and as outbreaks. However, only a limited amount of SaV...
3.
Watahiki M, Kawahara R, Suzuki M, Aoki M, Uchida K, Matsumoto Y, et al.
Jpn J Infect Dis
. 2019 Dec;
73(2):166-172.
PMID: 31787735
A multiplex PCR assay in a single tube was developed for the detection of the carbapenemase genes of Enterobacteriaceae. Primers were designed to amplify the following six carbapenemase genes: bla,...
4.
Hinenoya A, Ichimura H, Yasuda N, Harada S, Yamada K, Suzuki M, et al.
Diagn Microbiol Infect Dis
. 2019 Jul;
95(2):119-124.
PMID: 31272742
Many Escherichia albertii isolates, an emerging pathogen of human and birds, might have been misidentified due to the difficulty of differentiating this bacterium from Escherichia coli and Shigella spp. by...
5.
Oka T, Iritani N, Yamamoto S, Mori K, Ogawa T, Tatsumi C, et al.
J Med Virol
. 2018 Oct;
91(3):370-377.
PMID: 30320885
Sapoviruses are associated with acute gastroenteritis. Human sapoviruses are classified into four distinct genogroups (GI, GII, GIV, and GV) based on their capsid gene sequences. A TaqMan probe-based real-time reverse...
6.
Oka T, Iritani N, Okada M, Ogawa T, Iizuka S, Tatsumi C, et al.
Genome Announc
. 2018 Mar;
6(12).
PMID: 29567738
We report here the first complete genome sequences of genotype GI.3, GI.4, GI.6, GI.7, and GII.7 sapovirus strains, detected from fecal samples of acute gastroenteritis patients. Complete or nearly complete...
7.
Hashimoto S, Gonzalez G, Harada S, Oosako H, Hanaoka N, Hinokuma R, et al.
J Med Virol
. 2018 Feb;
90(5):881-889.
PMID: 29396992
The aim of this study was to report the emergence of a recombinant human mastadenovirus (HAdV) type 85 (HAdV-85) and to describe its genomic and clinical characteristics. The strains were...
8.
Furukawa M, Minegishi Y, Izumiyama S, Yagita K, Mori H, Uemura T, et al.
Biocontrol Sci
. 2016 Jun;
21(2):131-4.
PMID: 27350431
Sarcocystis fayeri (S. fayeri) is a newly identified causative agent of foodborne disease that is associated with the consumption of raw horse meat. The testing methods prescribed by the Ministry...
9.
Ooka T, Ogura Y, Katsura K, Seto K, Kobayashi H, Kawano K, et al.
Genome Biol Evol
. 2015 Nov;
7(12):3170-9.
PMID: 26537224
Escherichia albertii is a recently recognized close relative of Escherichia coli. This emerging enteropathogen possesses a type III secretion system (T3SS) encoded by the locus of enterocyte effacement, similar to...
10.
Iyoda S, Manning S, Seto K, Kimata K, Isobe J, Etoh Y, et al.
Open Forum Infect Dis
. 2015 Mar;
1(2):ofu061.
PMID: 25734131
Background: Enterohemorrhagic Escherichia coli (EHEC) O157:H7 infection causes severe diseases such as bloody diarrhea and hemolytic uremic syndrome (HUS). Although EHEC O157:H7 strains have exhibited high genetic variability, their abilities...