Rujira Wanotayan
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Explore the profile of Rujira Wanotayan including associated specialties, affiliations and a list of published articles.
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10
Citations
45
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Recent Articles
1.
Yasom S, Watcharanurak P, Bhummaphan N, Thongsroy J, Puttipanyalears C, Settayanon S, et al.
FASEB Bioadv
. 2022 Jun;
4(6):408-434.
PMID: 35664831
The endogenous DNA damage triggering an aging progression in the elderly is prevented in the youth, probably by naturally occurring DNA gaps. Decreased DNA gaps are found during chronological aging...
2.
Saimuang K, Suttisintong K, Kaewchangwat N, Thanayupong E, Wongngam Y, Charoenphun P, et al.
RSC Adv
. 2022 Apr;
11(41):25199-25206.
PMID: 35478920
Iodine-131 -iodobenzylguanidine (I-IBG) has been utilized as a standard treatment to minimize adverse side effects by targeting therapies to bind to the norepinephrine transporter (NET) expressed on 90% of neuroblastoma...
3.
Petisiwaveth P, Wanotayan R, Damrongkijudom N, Ninlaphruk S, Kladsomboon S
Nanomaterials (Basel)
. 2022 Apr;
12(7).
PMID: 35407206
A colorimetric liquid sensor based on a poly(vinyl alcohol)/silver nanoparticle (PVA/AgNPs) hybrid nanomaterial was developed for gamma radiation in the range of 0−100 Gy. In this study, gamma rays (Cobalt-60...
4.
A deep learning model (FociRad) for automated detection of γ-H2AX foci and radiation dose estimation
Wanotayan R, Chousangsuntorn K, Petisiwaveth P, Anuttra T, Lertchanyaphan W, Jaikuna T, et al.
Sci Rep
. 2022 Apr;
12(1):5527.
PMID: 35365702
DNA double-strand breaks (DSBs) are the most lethal form of damage to cells from irradiation. γ-H2AX (phosphorylated form of H2AX histone variant) has become one of the most reliable and...
5.
Wanotayan R, Wongsanit S, Boonsirichai K, Sukapirom K, Buppaungkul S, Charoenphun P, et al.
PLoS One
. 2022 Mar;
17(3):e0265643.
PMID: 35320288
A quick, reliable, and reproducible biological assay to distinguish individuals with possible life-threatening risk following radiological or nuclear incidents remains a quest in biodosimetry. In this paper, we examined the...
6.
Yasom S, Khumsri W, Boonsongserm P, Kitkumthorn N, Ruangvejvorachai P, Sooksamran A, et al.
Front Cell Dev Biol
. 2022 Feb;
9:802024.
PMID: 35127718
Alu (B1 in rodents) hypomethylation, commonly found in diabetes mellitus patients, increases DNA damage and, consequently, delays the healing process. Alu siRNA increases Alu methylation, reduces DNA damage, and promotes...
7.
Asa A, Wanotayan R, Sharma M, Tsukada K, Shimada M, Matsumoto Y
J Radiat Res
. 2021 Apr;
62(3):380-389.
PMID: 33842963
Non-homologous end joining is one of the main pathways for DNA double-strand break (DSB) repair and is also implicated in V(D)J recombination in immune system. Therefore, mutations in non-homologous end-joining...
8.
Fukuchi M, Wanotayan R, Liu S, Imamichi S, Sharma M, Matsumoto Y
Biochem Biophys Res Commun
. 2015 May;
461(4):687-94.
PMID: 25934149
XRCC4 and DNA Ligase IV (LIG4) cooperate to join two DNA ends at the final step of DNA double-strand break (DSB) repair through non-homologous end-joining (NHEJ). However, it is not...
9.
Wanotayan R, Fukuchi M, Imamichi S, Sharma M, Matsumoto Y
Biochem Biophys Res Commun
. 2015 Jan;
457(4):526-31.
PMID: 25597996
XRCC4 is one of the crucial proteins in the repair of DNA double-strand break (DSB) through non-homologous end-joining (NHEJ). As XRCC4 consists of 336 amino acids, N-terminal 200 amino acids...
10.
Liu S, Liu X, Kamdar R, Wanotayan R, Sharma M, Adachi N, et al.
Biochem Biophys Res Commun
. 2013 Sep;
439(2):173-8.
PMID: 23994631
DNA ligase IV (LIG4) and XRCC4 form a complex to ligate two DNA ends at the final step of DNA double-strand break (DSB) repair through non-homologous end-joining (NHEJ). It is...