Tadashi Matsunaga
Overview
Explore the profile of Tadashi Matsunaga including associated specialties, affiliations and a list of published articles.
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Articles
192
Citations
2152
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Recent Articles
1.
Uno H, Takeuchi H, Abe I, Yoshino T, Taguchi T, Hirakawa Y, et al.
Biotechnol Bioeng
. 2024 Oct;
122(1):159-166.
PMID: 39397338
Detection of microRNAs (miRNAs) in the serum is an effective liquid biopsy technique for cancer diagnosis. However, conventional diagnostic methods are time-consuming and complex. Therefore, in this study, we established...
2.
Yoshino T, Shimojo A, Maeda Y, Matsunaga T
Appl Environ Microbiol
. 2024 Jan;
90(2):e0180623.
PMID: 38289095
No abstract available.
3.
Tago H, Maeda Y, Tanaka Y, Kohketsu H, Lim T, Harada M, et al.
Biosens Bioelectron
. 2024 Jan;
249:116006.
PMID: 38199081
The rapid identification of pathogenic bacteria is crucial across various industries, including food or beverage manufacturing. Bacterial microcolony image-based classification has emerged as a promising approach to expedite identification, automate...
4.
Arai K, Murata S, Wang T, Yoshimura W, Oda-Tokuhisa M, Matsunaga T, et al.
Int J Mol Sci
. 2022 May;
23(10).
PMID: 35628364
Biomineralization is an elaborate process that controls the deposition of inorganic materials in living organisms with the aid of associated proteins. Magnetotactic bacteria mineralize magnetite (FeO) nanoparticles with finely tuned...
5.
Negishi R, Yamakawa H, Kobayashi T, Horikawa M, Shimoyama T, Koizumi F, et al.
Commun Biol
. 2022 Jan;
5(1):20.
PMID: 35017627
Transcriptome analysis of circulating tumor cells (CTCs), which migrate into blood vessels from primary tumor tissues, at the single-cell level offers critical insights into the biology of metastasis and contributes...
6.
Uno H, Takeuchi H, Yoshino T, Tadenuma T, Hirakawa Y, Maeda Y, et al.
J Biosci Bioeng
. 2021 Nov;
133(2):133-139.
PMID: 34838451
DNA microarrays are useful to detect microorganisms for various purposes including clinical testing and food safety. However, conventional DNA microarrays need complicated operations such as amplification, fluorescence labeling, and washing...
7.
Maeda Y, Yoshino T, Kogiso A, Negishi R, Takabayashi T, Tago H, et al.
Analyst
. 2021 Nov;
146(23):7327-7335.
PMID: 34766603
Circulating tumour cells (CTCs) are recognized as important markers for cancer research. Nonetheless, the extreme rarity of CTCs in blood samples limits their availability for multiple characterization. The cultivation of...
8.
Taguchi T, Ishikawa M, Ichikawa M, Tadenuma T, Hirakawa Y, Yoshino T, et al.
Biosens Bioelectron
. 2021 Sep;
194:113659.
PMID: 34571443
In this study, we developed a novel DNA microarray system that does not require fluorophore-labeling, amplification, or washing of the target nucleic acid fragments. Two types of DNA probes (so-called...
9.
Arakaki A, Goto M, Maruyama M, Yoda T, Tanaka M, Yamagishi A, et al.
Biotechnol J
. 2020 Aug;
15(12):e2000278.
PMID: 32846013
Integration of a large-sized DNA fragment into a chromosome is an important strategy for characterization of cellular functions in microorganisms. Magnetotactic bacteria synthesize intracellular organelles comprising membrane-bound single crystalline magnetite,...
10.
Saito E, Saito K, Hishiki T, Takenouchi A, Saito T, Sato Y, et al.
Pediatr Surg Int
. 2020 Jul;
36(10):1173-1180.
PMID: 32696122
Purpose: Oncolytic viral therapy for neuroblastoma (NB) cells with Sindbis virus (SINV) is a promising strategy for treating high-risk NB. Here, we evaluated the possibility of using SINV structural proteins...