Fuminori Tanihara
Overview
Explore the profile of Fuminori Tanihara including associated specialties, affiliations and a list of published articles.
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83
Citations
471
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Recent Articles
1.
Wittayarat M, Kawanishi K, Ohata H, Nagahara M, Sambuu R, Sambuu O, et al.
Animals (Basel)
. 2025 Mar;
15(5).
PMID: 40075943
Although yaks and cattle belong to the same subfamily and have the same number of chromosomes, hybrid males are sterile because of the inactivation or abnormality of gene expression related...
2.
Torigoe N, Lin Q, Liu B, Nakayama Y, Nakai A, Nagahara M, et al.
Reprod Domest Anim
. 2025 Feb;
60(2):e70011.
PMID: 39901848
Pig genome editing using the oviductal nucleic acid delivery (GONAD) method with electroporation would allow the efficient obtention of genetically modified pigs. However, oocytes and zygotes at various stages after...
3.
Lin Q, Torigoe N, Liu B, Nakayama Y, Nakai A, Namula Z, et al.
Vet World
. 2025 Jan;
17(11):2701-2707.
PMID: 39829671
Background And Aim: Mosaicism, which is characterized by the presence of wild-type and more than one mutant allele, poses a serious problem in zygotic gene modification through the clustered regularly...
4.
Takebayashi K, Wittayarat M, Hirata M, Lin Q, Namula Z, Torigoe N, et al.
In Vitro Cell Dev Biol Anim
. 2024 Oct;
PMID: 39446279
No abstract available.
5.
Nagahara M, Namula Z, Lin Q, Takebayashi K, Torigoe N, Liu B, et al.
Vet World
. 2024 Sep;
17(8):1748-1752.
PMID: 39328438
Background And Aim: The antioxidant effects of ergothioneine (EGT) on culture of porcine zygote are not well established. The study investigated the impact of EGT supplementation on meiotic competence and...
6.
Lin Q, Takebayashi K, Torigoe N, Liu B, Namula Z, Hirata M, et al.
J Reprod Dev
. 2024 Sep;
70(6):356-361.
PMID: 39218670
CRISPR/Cas9-based multiplex genome editing via electroporation is relatively efficient; however, lipofection is versatile because of its ease of use and low cost. Here, we aimed to determine the efficiency of...
7.
Liu B, Wittayarat M, Takebayashi K, Lin Q, Torigoe N, Namula Z, et al.
In Vitro Cell Dev Biol Anim
. 2024 Jun;
60(7):732-739.
PMID: 38833208
Genetic mosaicism, characterized by multiple genotypes within an individual, is considered an obstacle to CRISPR/Cas9 genome editing in animal models. Despite the various strategies for minimizing mosaic mutations, no definitive...
8.
Lin Q, Takebayashi K, Torigoe N, Liu B, Namula Z, Hirata M, et al.
In Vitro Cell Dev Biol Anim
. 2024 Apr;
60(7):725-731.
PMID: 38664280
The delivery of CRISPR/Cas ribonucleoprotein (RNP) complexes is gaining attention owing to its high cleavage efficiency and reduced off-target effects. Although RNPs can be delivered into porcine zygotes via electroporation...
9.
Nguyen T, Do L, Lin Q, Nagahara M, Namula Z, Wittayarat M, et al.
In Vitro Cell Dev Biol Anim
. 2024 Mar;
60(7):716-724.
PMID: 38485817
Programmed cell death-1 (PD-1) is an immunoinhibitory receptor required to suppress inappropriate immune responses such as autoimmunity. Immune checkpoint antibodies that augment the PD-1 pathway lead to immune-related adverse events...
10.
Nguyen T, Takebayashi K, Do L, Namula Z, Wittayarat M, Nagahara M, et al.
In Vitro Cell Dev Biol Anim
. 2024 Feb;
60(7):708-715.
PMID: 38379097
The generation of genetically engineered pig models that develop pancreas-specific tumors has the potential to advance studies and our understanding of pancreatic cancer in humans. TP53 mutation causes organ-nonspecific cancers,...