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Individualized treatment based on CYP3A5 single-nucleotide polymorphisms with tacrolimus in ulcerative colitis |
Shinji Okabayashi, Taku Kobayashi, Eiko Saito, Takahiko Toyonaga, Ryo Ozaki, Shintaro Sagami, Masaru Nakano, Junichi Tanaka, Keiji Yagisawa, Satoshi Kuronuma, Osamu Takeuchi, Toshifumi Hibi |
Intest Res. 2019;17(2):218-226. Published online February 7, 2019 DOI: https://doi.org/10.5217/ir.2018.00117 |
Individualized treatment based on CYP3A5 single-nucleotide polymorphisms with tacrolimus in ulcerative colitis ABCB1 Single-Nucleotide Polymorphisms Determine Tacrolimus Response in Patients With Ulcerative Colitis Impact of CYP3A5 genetic polymorphisms on the pharmacokinetics and short-term remission in patients with ulcerative colitis treated with tacrolimus CYP3A5 polymorphisms in renal transplant recipients: influence on tacrolimus treatment Frequency of single nucleotide polymorphisms in NOD1gene of ulcerative colitis patients: a case-control study in the Indian population Detection of single-nucleotide polymorphisms in the intron 9 region of the nucleotide oligomerization domain-1 gene in ulcerative colitis patients of North India Association Of Interleukin-23 Receptor Single Nucleotide Polymorphisms With Ulcerative Colitis Tacrolimus dose could be individualized according to CYP3A5 genotype Effect of oral tacrolimus (FK 506) on steroid-refractory moderate/severe ulcerative colitis P011 Signalling and transcriptional network propagation uncovers novel ulcerative colitis pathogenetic pathways from single-nucleotide polymorphisms |