Toru Igarashi
Nippon Medical School
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Featured researches published by Toru Igarashi.
Scientific Reports | 2016
Tsutomu Igarashi; Ikuroh Ohsawa; Maika Kobayashi; Toru Igarashi; Hisaharu Suzuki; Masumi Iketani; Hiroshi Takahashi
In phacoemulsification, ultrasound induces hydroxyl radical (·OH) formation, damaging corneal endothelium. Whether H2 can prevent such oxidative damage in phacoemulsification was examined by in vitro and in vivo studies. H2 was dissolved in a commercial irrigating solution. The effects of H2 against ·OH generation were first confirmed in vitro by electron-spin resonance (ESR) and hydroxyphenyl fluorescein (HPF). ESR showed a significantly decreased signal magnitude, and fluorescence intensity by oxidized HPF was significantly less in the H2-dissolved solution. The effects of H2 in phacoemulsification were evaluated in rabbits, comparing H2-dissolved and control solutions. Five hours after the procedure, the whole cornea was excised and subjected to image analysis for corneal edema, real-time semiquantitative PCR (qPCR) for heme oxygenase (HO)-1, catalase (CAT), superoxide dismutase 1 (SOD1), and SOD2 mRNA, and immunohistochemistry. Corneal edema was significantly less and the increases in anti-oxidative HO-1, CAT and SOD2 mRNA expressions were significantly suppressed in the H2 group. In addition, corneal endothelial cell expressions of two oxidative stress markers, 4-HNE and 8-OHdG, were significantly lower in the H2 group. In conclusion, H2 dissolved in the ocular irrigating solution protected corneal endothelial cells from phacoemulsification-induced oxidative stress and damage.
Molecular Genetics & Genomic Medicine | 2017
Kandai Nozu; Kazumoto Iijima; Toru Igarashi; Shiro Yamada; Jana Kralovicova; Yoshimi Nozu; Tomohiko Yamamura; Shogo Minamikawa; Ichiro Morioka; Takeshi Ninchoji; Hiroshi Kaito; Koichi Nakanishi; Igor Vorechovsky
Disease‐causing mutations that activate transposon‐derived exons without creating a new splice‐site consensus have been reported rarely, but they provided unique insights into our understanding of structural motifs required for inclusion of intronic sequences in mature transcripts.
Journal of The American Society of Nephrology | 2018
Tomoko Horinouchi; Kandai Nozu; Tomohiko Yamamura; Shogo Minamikawa; Takashi Omori; Keita Nakanishi; Junya Fujimura; Akira Ashida; Mineaki Kitamura; Mitsuhiro Kawano; Wataru Shimabukuro; Chizuko Kitabayashi; Aya Imafuku; Keiichi Tamagaki; Koichi Kamei; Kenjirou Okamoto; Shuichiro Fujinaga; Masafumi Oka; Toru Igarashi; Akinori Miyazono; Emi Sawanobori; Rika Fujimaru; Koichi Nakanishi; Yuko Shima; Masafumi Matsuo; Ming Juan Ye; Yoshimi Nozu; Naoya Morisada; Hiroshi Kaito; Kazumoto Iijima
BACKGROUND X-linked Alport syndrome (XLAS) is a progressive hereditary nephropathy caused by mutations in the COL4A5 gene. Genotype-phenotype correlation in male XLAS is relatively well established; relative to truncating mutations, nontruncating mutations exhibit milder phenotypes. However, transcript comparison between XLAS cases with splicing abnormalities that result in a premature stop codon and those with nontruncating splicing abnormalities has not been reported, mainly because transcript analysis is not routinely conducted in patients with XLAS. METHODS We examined transcript expression for all patients with suspected splicing abnormalities who were treated at one hospital between January of 2006 and July of 2017. Additionally, we recruited 46 males from 29 families with splicing abnormalities to examine genotype-phenotype correlation in patients with truncating (n=21, from 14 families) and nontruncating (n=25, from 15 families) mutations at the transcript level. RESULTS We detected 41 XLAS families with abnormal splicing patterns and described novel XLAS atypical splicing patterns (n=14) other than exon skipping caused by point mutations in the splice consensus sequence. The median age for developing ESRD was 20 years (95% confidence interval, 14 to 23 years) among patients with truncating mutations and 29 years (95% confidence interval, 25 to 40 years) among patients with nontruncating mutations (P=0.001). CONCLUSIONS We report unpredictable atypical splicing in the COL4A5 gene in male patients with XLAS and reveal that renal prognosis differs significantly for patients with truncating versus nontruncating splicing abnormalities. Our results suggest that splicing modulation should be explored as a therapy for XLAS with truncating mutations.
Journal of Human Genetics | 2018
Ai Unzaki; Naoya Morisada; Kandai Nozu; Ming Juan Ye; Shuichi Ito; Tatsuo Matsunaga; Kenji Ishikura; Shihomi Ina; Koji Nagatani; Takayuki Okamoto; Yuji Inaba; Naoko Ito; Toru Igarashi; Shoichiro Kanda; Ken Ito; Kohei Omune; Takuma Iwaki; Kazuyuki Ueno; Mayumi Yahata; Yasufumi Ohtsuka; Eriko Nishi; Nobuya Takahashi; Tomoaki Ishikawa; Shunsuke Goto; Nobuhiko Okamoto; Kazumoto Iijima
Branchio-oto-renal (BOR) syndrome is a rare autosomal dominant disorder characterized by branchiogenic anomalies, hearing loss, and renal anomalies. The aim of this study was to reveal the clinical phenotypes and their causative genes in Japanese BOR patients. Patients clinically diagnosed with BOR syndrome were analyzed by direct sequencing, multiplex ligation-dependent probe amplification (MLPA), array-based comparative genomic hybridization (aCGH), and next-generation sequencing (NGS). We identified the causative genes in 38/51 patients from 26/36 families; EYA1 aberrations were identified in 22 families, SALL1 mutations were identified in two families, and SIX1 mutations and a 22q partial tetrasomy were identified in one family each. All patients identified with causative genes suffered from hearing loss. Second branchial arch anomalies, including a cervical fistula or cyst, preauricular pits, and renal anomalies, were frequently identified (>60%) in patients with EYA1 aberrations. Renal hypodysplasia or unknown-cause renal insufficiency was identified in more than half of patients with EYA1 aberrations. Even within the same family, renal phenotypes often varied substantially. In addition to direct sequencing, MLPA and NGS were useful for the genetic analysis of BOR patients.
Modern Rheumatology | 2008
Tomoko Sugiura; Yasushi Kawaguchi; Satoru Fujikawa; Yukiko Hirano; Toru Igarashi; Manabu Kawamoto; Kae Takagi; Masako Hara; Naoyuki Kamatani
Journal of Nippon Medical School | 2012
Toru Igarashi; Yasuhiko Itoh; Akira Shimizu; Tsutomu Igarashi; Kaoru Yoshizaki; Yoshitaka Fukunaga
Journal of Nippon Medical School | 2013
Toru Igarashi; Akira Shimizu; Tsutomu Igarashi; Kazunari Hanaoka; Kaoru Yoshizaki; Tomoko Shigemori; Shuji Shimizu; Hirokazu Komeichi; Yasuhiko Itoh
Journal of Nippon Medical School | 2015
Tsutomu Igarashi; Miho Fujita; Yumi Yamada; Maika Kobayashi; Chiaki Fujimoto; H. Takahashi; Toru Igarashi; Yuichiro Nakano; Hisaharu Suzuki; Hiroshi Takahashi
Journal of Nippon Medical School | 2012
Toru Igarashi; Yasuhiko Itoh; Miho Maeda; Tsutomu Igarashi; Yoshitaka Fukunaga
Molecular Vision | 2016
Tsutomu Igarashi; Koichi Miyake; Maika Kobayashi; Shuhei Kameya; Chiaki Fujimoto; Kenji Nakamoto; H. Takahashi; Toru Igarashi; Noriko Miyake; Osamu Iijima; Yukihiko Hirai; Takashi Shimada; Takashi Okada; Hiroshi Takahashi