研究者詳細

顔写真

タグチ ヒロキ
田口 央基
Hiroki Taguchi
所属
大学院医学系研究科 公衆衛生学専攻 公共健康医学講座(環境医学分野)
職名
助教
学位
  • 博士(薬学) (徳島文理大学)

経歴 3

  • 2026年6月 ~ 継続中
    東北大学大学院医学系研究科 環境医学分野 助教

  • 2026年6月 ~ 継続中
    東北大学大学院薬学研究科 代謝制御薬学分野 分野研究員

  • 2025年4月 ~ 2026年5月
    東北大学大学院薬学研究科 代謝制御薬学分野 特任研究員(日本学術振興会特別研究員PD)

学歴 2

  • 徳島文理大学 大学院 (4年制博士課程) 薬学研究科

    2021年4月 ~ 2025年3月

  • 徳島文理大学 薬学部 薬学科(6年制)

    2015年4月 ~ 2021年3月

所属学協会 2

  • 日本薬学会

  • 日本毒性学会

研究キーワード 4

  • セレノプロテインP

  • シスプラチン

  • ヒ素

  • 腎毒性

研究分野 1

  • ライフサイエンス / 薬系衛生、生物化学 /

受賞 13

  1. ポスター発表優秀賞

    2026年5月 第52回 生体分子科学討論会・第5回 生命金属科学シンポジウム 中枢神経系へのセレン輸送体 Selenoprotein P のドミナントネガティブを用いたグリオブラストーマに対する新規フェロトーシス誘導法の開発

  2. 若手優秀研究賞

    2025年9月 第3回付加体科学部会シンポジウム セレノプロテインPによるシスプラチンとの付加体形成を介した腎障害防御機構の検討

  3. 学生優秀発表賞

    2025年3月 日本薬学会第145年会

  4. 優秀研究発表賞

    2024年7月 第51回日本毒性学会学術年会

  5. 大塚芳満記念財団助成金(医学・歯学・薬学・栄養学分野)

    2024年6月 公益財団法人 大塚芳満記念財団

  6. 奨励賞

    2023年12月 第28回ヒ素シンポジウム

  7. 生命金属科学推進賞

    2023年10月 メタルバイオサイエンス研究会2023

  8. 学生ポスター賞

    2023年6月 第50回日本毒性学会学術年会

  9. ASIATOX-X 参加奨励賞

    2023年5月 日本毒性学会

  10. 長井記念薬学研究奨励支援事業

    2023年3月 日本薬学会

  11. 学生発表奨励賞

    2021年10月 第60回日本薬学会・日本薬剤師会 中国四国支部学術大会

  12. 学生奨励賞

    2021年8月 第22回日本亜鉛治療研究会学術集会

  13. 優秀卒業論文・研究賞

    2021年3月 徳島文理大学

︎全件表示 ︎最初の5件までを表示

論文 16

  1. Promotion of Lead-induced Cytotoxicity in Differentiating Neural Cells and Protective Effects of Selenium. 国際誌 査読有り

    Satoru Shiina, Hayato Takashima, Hiroki Taguchi, Takayuki Kaneko, Kota Noritsugu, Takashi Toyama, Yoshiro Saito

    Biological trace element research 2026年8月10日

    DOI: 10.1007/s12011-026-05285-1  

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    Lead (Pb) exposure remains a global health concern, particularly because of its adverse effects on neurodevelopment during fetal development and childhood. Early-life exposure to Pb during neuronal differentiation can impair neurodevelopment, although the underlying molecular mechanisms remain unclear. In this study, we investigated the cellular and molecular mechanisms underlying Pb-induced neurotoxicity during neural differentiation using SH-SY5Y cells. Our results demonstrated that Pb exposure caused severe injury to differentiating neural cells, leading to cell death with membrane disruption. This form of cell death was resistant to inhibitors of major regulated cell death pathways but was markedly suppressed by selenium supplementation with selenite or by the addition of selenoprotein P, a selenium transport protein. Transcriptome and protein expression analyses revealed that Pb induced endoplasmic reticulum (ER) stress responses. However, individual knockdown of selected ER-resident selenoproteins, including SELENOK, SELENOS, and SELENOT, did not abolish the protective effect of selenium, indicating that none of these proteins is individually indispensable for protection under the present experimental conditions. Peroxiredoxin 6 (PRDX6) knockout SH-SY5Y cells, which exhibit reduced selenium metabolic activity, remained responsive to the protective effect of selenium against Pb-induced cytotoxicity. Moreover, the glutathione peroxidase (GPx) mimetic ebselen also alleviated Pb toxicity under these conditions. These findings indicate that selenium protects differentiating neural cells against Pb-induced injury through mechanisms involving peroxide-reducing activity as well as additional selenium-dependent pathways. Collectively, our findings provide new insights into the molecular basis of Pb-induced neurotoxicity and support a protective role for selenium-dependent stress resistance against Pb-induced cellular injury.

  2. Increase in Sialylated EGFR Levels by Arsenite Enhances EGF-Dependent EGFR Phosphorylation. 国際誌 査読有り

    Daigo Sumi, Saho Nakahira, Hiroki Taguchi, Ayako Nakayama, Rina Nakayama, Hitomi Fujishiro

    Journal of applied toxicology : JAT 2026年6月21日

    DOI: 10.1002/jat.70308  

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    Although the carcinogenicity of arsenic compounds is well established, the underlying mechanisms remain poorly understood. Cancer cells are known to evade natural killer (NK) cell-mediated cytotoxicity by presenting sialic acids at the termini of cell-surface glycans, and aberrant sialylation of specific proteins has been implicated in cancer progression. In this study, building on our previous finding that arsenite (As(III)) exposure increases cell-surface sialic acid levels, we investigated whether As(III) exposure alters the levels of sialylated epidermal growth factor receptor (EGFR) and whether these changes affect downstream signal transduction. We first confirmed that EGFR expressed in A431 cells is modified with α2-6-linked sialic acid. When A431 cells were exposed to As(III), sialylated EGFR levels increased markedly. Treatment of A431 cells with sialidase significantly suppressed EGF-dependent EGFR phosphorylation, indicating that sialylated EGFR positively regulates EGF-induced EGFR phosphorylation in A431 cells. Exposure to As(III) markedly enhanced EGF-dependent phosphorylation of EGFR and showed a tendency to increase phosphorylation of the downstream signaling molecule ERK; however, sialidase treatment completely abolished this enhancement. Taken together, these results demonstrate that As(III) activates the EGF-induced phosphorylation cascade by promoting EGFR sialylation.

  3. Electrophilic monocarbonyl curcumin derivatives reveal differential vulnerabilities in the selenium metabolic network. 国際誌 査読有り

    Wang Yinuo, Takashi Toyama, Hiroyuki Yamakoshi, Hiroki Taguchi, Hayato Takashima, Ryo Watanabe, Yuichiro Mita, Junya Ito, Eikan Mishima, Yasutoshi Akiyama, Hiroyuki Shibata, Noriko Noguchi, Toshinari Takamura, Marcus Conrad, Yoshihisa Tomikoka, Yoshiharu Iwabuchi, Yoshiro Saito

    Free radical biology & medicine 253 487-499 2026年6月2日

    DOI: 10.1016/j.freeradbiomed.2026.06.004  

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    Selenium is an essential trace element whose biological functions are exerted through selenoproteins, synthesized by a highly coordinated and redox-regulated network. How this network responds to electrophilic stimulus, however, remains incompletely understood. Here, we employed a focused library of monocarbonyl curcumin derivatives as electrophilic chemical tools to interrogate the selenium metabolic network. Screening based on intracellular selenoprotein P abundance identified GO-Y015 as a potent and low-toxicity compound capable of strongly changing expression of selenoprotein P and glutathione peroxidase. In cultured hepatocytes, GO-Y015 suppressed selenoprotein expression by inhibiting de novo selenoprotein synthesis, rather than promoting lysosomal degradation. Biochemical analyses revealed that GO-Y015 covalently modified multiple selenium-handling enzymes, including PRDX6, SCLY, and SEPHS2, and impaired selenium incorporation into Sec-tRNA, indicating broader alternation of selenium metabolism. Short-term administration of GO-Y015 in mice resulted in a selective reduction of circulating selenoprotein P, with limited effects on other selenoproteins and no overt hepatotoxicity. Under these conditions, no body-weight loss and hepatotoxicity was observed, supporting the interpretation that the observed molecular effects reflect acute metabolic alteration. Together, these findings establish electrophilic monocarbonyl curcumin derivatives as chemical tools that reveal differential vulnerabilities within the selenium metabolic network, with selenoprotein P serving as a particularly sensitive indicator of selenium metabolic modulation.

  4. Nrf2 activation by the monocarbonyl curcumin derivative GO-Y015 confers cellular protection against arsenite toxicity by reducing intracellular arsenic levels. 国際誌 査読有り

    Md Tanvir Islam, Hiroki Taguchi, Hiroyuki Yamakoshi, Wang Yinuo, Hiroyuki Shibata, Yoshiharu Iwabuchi, Takashi Toyama, Yoshiro Saito

    Scientific reports 2026年4月18日

    DOI: 10.1038/s41598-026-49334-0  

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    Curcumin, a bioactive phenolic compound derived from turmeric, attenuates heavy metal toxicity, including inorganic arsenite (As(III)), via activation of the Nrf2-Keap1 signaling pathway; however, its low solubility and stability limit its bioactivity. To address these limitations, we synthesized curcumin derivatives and investigated the cytoprotective effects of a monocarbonyl analog, GO-Y015. GO-Y015 exhibited cytotoxicity comparable to curcumin at concentrations below 8 µM but significantly reduced As(III)-induced cytotoxicity. Pretreatment with GO-Y015 markedly improved cell viability under cytotoxic As(III) exposure, whereas curcumin showed minimal protective effects. Mechanistically, GO-Y015 induced robust Nrf2 activation in a concentration- and time-dependent manner, resulting in increased expression of downstream targets, including HO-1, GCLC, and MRP2. Pharmacological inhibition of Nrf2 (ML385), GSH synthesis (BSO), or MRP transporters (MK571) abolished the cytoprotective effects, indicating dependence on the Nrf2-GSH-MRP axis. Furthermore, ICP-MS analysis demonstrated that GO-Y015 significantly reduced intracellular arsenic accumulation after 2 h exposure. These findings indicate that GO-Y015 enhances arsenic detoxification and reduces cytotoxicity by promoting GSH-dependent conjugation and MRP-mediated efflux.

  5. In Vitro Evaluation of Cadmium-Induced Phosphate Reabsorption Impairment. 国際誌 査読有り

    Hitomi Fujishiro, Rina Nakayama, Miku Takahashi, Arisa Tamoto, Hiroki Taguchi, Kumiko Takeuchi, Seiichiro Himeno, Daigo Sumi

    Journal of applied toxicology : JAT 2026年3月5日

    DOI: 10.1002/jat.70134  

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    Cadmium (Cd) accumulates in the renal cortex and impairs phosphate reabsorption in the proximal tubules, leading to increased urinary phosphate excretion and hypophosphatemia. However, the molecular mechanisms underlying Cd-induced phosphate reabsorption dysfunction remain unclear. In this study, we developed an in vitro evaluation system using an immortalized rat proximal tubule cell line (NRK-52E) to assess cellular phosphate uptake and examine the effects of Cd. Exposure to subtoxic concentrations of Cd significantly decreased phosphate uptake, while neither cisplatin nor gentamicin did as nephrotoxicants. Cd exposure did not reduce Npt2a or Npt2c expression. Cd exposure caused a marked reduction in mitochondrial membrane potential, ATP production, and the expression of mitochondrial fusion-related factor OPA1 and respiratory chain components, along with prominent mitochondrial fragmentation. Treatment with inhibitors of OPA1 and the electron transport chain similarly impaired mitochondrial function and reduced phosphate uptake. These findings suggest that Cd-induced dysfunction of phosphate reabsorption involves OPA1-dependent mitochondrial fusion defects and mitochondrial dysfunction. This study provides new insights into the molecular mechanisms of Cd nephrotoxicity and demonstrates the potential of this in vitro model for evaluating reabsorption defects akin to Fanconi syndrome.

  6. A novel ICP-MS strategy identifies arsenite as an inhibitor of selenocysteine-tRNASec charging. 査読有り

    Hayato Takashima, Reiko Makino, Hiroki Taguchi, Yoshika Takenaka, Yasutoshi Akiyama, Yoshihisa Tomikoka, Daigo Sumi, Takashi Toyama, Yoshiro Saito

    The Journal of toxicological sciences 51 (6) 331-338 2026年

    DOI: 10.2131/jts.51.331  

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    Arsenite (As(III)) is a widespread environmental contaminant that increases susceptibility to oxidative stress. We recently reported that As(III) suppresses the induction of glutathione peroxidases (GPx) by various selenium sources in cultured cells; however, its underlying mechanism remains unclear. GPx contains a selenocysteine (Sec) residue essential for catalytic activity, and Sec biosynthesis requires multiple steps of selenium metabolism. Selenite is directly incorporated into the Sec biosynthetic pathway via selenophosphate synthetase 2 (SEPHS2) and utilized for Sec-tRNASec formation. Because Sec-tRNASec decodes UGA codons, impaired synthesis of Sec-tRNASec leads to nonsense-mediated decay or truncated translation of selenoprotein mRNAs. Here, we developed an inductively coupled plasma (ICP)-MS based method to evaluate Sec-tRNASec and found that As(III) inhibits Sec charging of tRNA. As(III) markedly suppressed GPx protein induction with minimal effects on mRNA abundance. As(III) did not affect total tRNASec levels; however, As(III) significantly decreased RNA-bound selenium released by deacylation, indicating reduced Sec-tRNASec formation. These results suggest that As(III) impairs selenoprotein translation by inhibiting Sec charging of tRNA.

  7. Arsenite sensitizes to ferroptosis by disrupting selenium metabolism and reducing GPx4 expression 査読有り

    Hayato Takashima, Reiko Makino, Hiroki Taguchi, Junya Ito, Eikan Mishima, Yoshika Takenaka, Yasutoshi Akiyama, Daigo Sumi, Marcus Conrad, Yoshihisa Tomikoka, Takashi Toyama, Yoshiro Saito

    Toxicology 154409-154409 2026年1月

    出版者・発行元: Elsevier BV

    DOI: 10.1016/j.tox.2026.154409  

    ISSN:0300-483X

  8. Discovery of a Selective Inhibitor of ZIP14 with Therapeutic Potential for Cancer-associated Cachexia. 国際誌

    Takafumi Hara, Gen Tanaka, Tomonori Tamura, Masaomi Terajima, Kengo Hamamura, Yuya Yoshida, Toru Kimura, Yusuke Kasai, Yuta Nakayama, Takumi Umeyama, Kohei Hosoi, Ayaka Noguchi, Yasuno Nakai, Atsushi Hijikata, Koji Matsukawa, Satoru Ujihara, Tetsuhiro Kawabe, Hiroki Taguchi, Hitomi Fujishiro, Supak Jenkitkasemwong, Kazuto Nunomura, Bangzhong Lin, Ayako Fukunaka, Emi Yoshigai, Kenji Mishima, Shinsaku Nakagawa, Michell D Knutson, Hiroshi Imagawa, Naoya Matsunaga, Shigehiro Ohdo, Itaru Hamachi, Hiroyuki Sakurai, Toshiyuki Fukada

    bioRxiv : the preprint server for biology 2025年10月23日

    DOI: 10.1101/2025.10.23.682519  

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    ZIP14/SLC39A14, a membrane-bound metal transporter, is essential for systemic metal homeostasis and has been implicated in inflammatory and metabolic disorders, including cancer-associated cachexia. Despite its biological and therapeutic significance, no selective inhibitors have been identified. Here, we identify 1-phenyl-8-(2-phenylethyl)-1,3,8-triazaspiro[4.5]decan-4-one (PPTD) as the first selective small-molecule inhibitor of ZIP14. PPTD efficiently blocks ZIP14-mediated uptake of zinc, iron, manganese, and cadmium, while sparing the closely related transporter ZIP8/SLC39A8. Mechanistically, PPTD binds specifically to a pocket formed at the dimer interface of ZIP14, as revealed by AlphaFold3 structural prediction, ligand-interaction profiling, structure-activity analyses, and site-directed mutagenesis, providing direct evidence for a targeted inhibition mechanism. ZIP14-driven metal influx promotes reactive oxygen species and lipid peroxidation, leading to cytotoxicity, which PPTD effectively reverses. In vivo , PPTD ameliorates major features of cancer cachexia in mice, including weight loss, reduced survival, muscle wasting, impaired locomotor activity, and disease progression. PPTD thus provides both a chemical probe to dissect ZIP14 function and a potential therapeutic candidate for cancer cachexia, establishing a foundation for the development of therapies targeting ZIP14-mediated metal dysregulation.

  9. Phosphorus and potassium distributions in the kidneys of mice administered with renal tubular invasion heavy metals by micro-PIXE 査読有り

    Shino Homma-Takeda, Hitomi Fujishiro, Izumi Tanaka, Haruko Yakumaru, Hiroki Taguchi, Kyoko Ayama, Masakazu Oikawa, Seiichiro Himeno

    The European Physical Journal Plus 140 (9) 2025年9月13日

    出版者・発行元: Springer Science and Business Media LLC

    DOI: 10.1140/epjp/s13360-025-06819-7  

    eISSN:2190-5444

  10. The selenoprotein P/ApoER2 axis facilitates selenium accumulation in selenoprotein P-accepting cells and confers prolonged resistance to ferroptosis 査読有り

    Atsuya Ichikawa, Takashi Toyama, Hiroki Taguchi, Satoru Shiina, Hayato Takashima, Kazuaki Takahashi, Yasumitsu Ogra, Ayako Mizuno, Kotoko Arisawa, Yoshiro Saito

    Redox Biology 103664-103664 2025年5月

    出版者・発行元: Elsevier BV

    DOI: 10.1016/j.redox.2025.103664  

    ISSN:2213-2317

  11. Cisplatin caused highly delayed cytotoxicity in the immortalized cells derived from S3 segment of mouse kidney proximal tubules 査読有り

    Hiroki Taguchi, Daigo Sumi, Ayumi Uemura, Kanako Matsumoto, Hitomi Fujishiro

    Toxicology and Applied Pharmacology 494 117171-117171 2025年1月

    出版者・発行元: Elsevier BV

    DOI: 10.1016/j.taap.2024.117171  

    ISSN:0041-008X

  12. Arsenite increases sialic acid levels on the cellular surface through the inhibition of sialidase activity. 国際誌 査読有り

    Hiroki Taguchi, Hitomi Fujishiro, Daigo Sumi

    Biochemical and biophysical research communications 739 150973-150973 2024年12月20日

    DOI: 10.1016/j.bbrc.2024.150973  

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    Chronic exposure to arsenic has been shown to induce carcinogenesis in multiple organs, but the mechanisms underlying the multi-organ carcinogenicity of arsenic remain unknown. We here examined whether arsenic affects the amount of sialic acid on the cellular surface of immortalized HaCaT cells rather than cancerous cells to clarify the process of arsenic-induced carcinogenesis, since sialic acid is known to assist cancer cells in suppressing attacks by natural killer (NK) cells. Our results indicated that exposure to arsenite (As(III)) increases the amounts of sialic acid on the cell surface of HaCaT cells. To elucidate the mechanisms underlying the increase in the levels of sialic acid on the cell surface by As(III) exposure, we measured the activities of sialyltransferase and sialidase in HaCaT cells exposed to As(III). The results showed there was no significant change in the silalyltransferase activity, and the sialidase activity was significantly inhibited by As(III) exposure. When we examined the mRNA levels of NEU1-4, the four types of sialidases identified in mammals after exposure to As(III), no significant change was observed. Furthermore, sialidase activity was significantly reduced in NEU1 siRNA-transfected HaCaT cells, which showed the highest mRNA levels among NEU1-4 in HaCaT cells. These results suggest that inhibition of NEU1-derived sialidase activity by exposure to As(III) resulted in an increase in the amounts of sialic acid on the cell surface.

  13. Ferroptosis is involved in cisplatin sensitivity of the S3 segment of immortalized proximal tubule cells. 国際誌 査読有り

    Hiroki Taguchi, Daigo Sumi, Seiichiro Himeno, Hitomi Fujishiro

    Toxicology 506 153840-153840 2024年8月

    DOI: 10.1016/j.tox.2024.153840  

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    Cisplatin (CDDP) is administered as an anticancer drug across a broad spectrum of cancer treatments, but it causes severe renal damage. Several studies have attempted to elucidate the cause of CDDP-induced renal injury, but the detailed mechanism remains unclear. We previously found that S3 cells are more sensitive to CDDP than S1 and S2 cells by using immortalized cells derived from S1, S2, and S3 segments of proximal tubules. In this study, we investigated the potential contribution of reactive oxygen species (ROS) to the sensitivity of S3 cells to CDDP. The results showed that S3 cells have high sensitivity to CDDP, paraquat (PQ) and three ROS substances. To examine the mechanisms underlying the sensitivity to ROS in S3 cells, we compared the cellular responses of CDDP- and PQ-exposed S3 cells. The results indicated that the levels of intracellular ROS and lipid peroxides were increased in S3 cells after CDDP and PQ exposure. The intracellular levels of antioxidant proteins such as thioredoxin, thioredoxin reductase 1 and glutathione peroxidase 4 were also increased by exposure to PQ, but these proteins were decreased by CDDP exposure in S3 cells. Furthermore, the levels of intracellular free Fe2+ were increased by CDDP exposure only in S3 cells but not S1 or S2 cells, and cytotoxicity by exposure to CDDP in S3 cells was suppressed by ferroptosis inhibitors. These results suggested that the induction of ferroptosis due to the ROS production through attenuation of the antioxidant system and elevated free Fe2+ is partly responsible for the sensitivity of S3 cells to CDDP.

  14. Effects of methylation of arginine residue 83 on the enzymatic activity of human arsenic (+3 oxidation state) methyltransferase. 国際誌 査読有り

    Daigo Sumi, Yuuri Nakamura, Hiroki Taguchi, Yasuko Okamoto, Hitomi Fujishiro

    Toxicology in vitro : an international journal published in association with BIBRA 93 105707-105707 2023年12月

    DOI: 10.1016/j.tiv.2023.105707  

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    Arsenic (+3 oxidation state) methyltransferase is an enzyme responsible for arsenic methylation, and it requires S-adenosyl-methionine (SAM) as a coenzyme. We here generated two mutants to clarify the role of the highly conserved 83rd arginine residue (Arg83) in Motif I, the SAM-binding domain, of human AS3MT. When the AS3MT activity was compared between the mutants and the wild type (WT) recombinant protein, little activity was detected in the glycine mutant (Arg83Gly) or lysine mutant (Arg83Lys). When we examined the ability of transfected HEK293 cells exposed to arsenite to methylate arsenic, the methylation ability was significantly reduced in Arg83Gly compared to the WT, but was not significantly different between Arg83Lys and WT. Western blot analysis of the recombinant WT and Arg83Gly with an antibody that recognizes methylated Arg showed that an Arg residue in the WT was mono- and di-methylated, but not in Arg83Gly. Furthermore, a peptide containing dimethylated Arg83 was detected by MALDI-TOF/MS of the WT digested with chymotrypsin. These results indicate that AS3MT maintains its enzymatic activity through the methyl modification of Arg83.

  15. CHAC1 exacerbates arsenite cytotoxicity by lowering intracellular glutathione levels. 査読有り

    Daigo Sumi, Hiroki Taguchi, Kumiko Takeuchi, Hitomi Fujishiro

    The Journal of toxicological sciences 48 (9) 487-494 2023年

    DOI: 10.2131/jts.48.487  

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    We here examined whether CHAC1 is implicated in arsenite (As(III))-induced cytotoxicity in HaCaT cells. We found that HaCaT cells in which the intracellular GSH levels were elevated by transfection with CHAC1 siRNA showed decreased sensitivity to As(III) compared to the control cells. Treatment with BSO (an inhibitor of GSH biosynthesis) abolished the decrease in sensitivity to As(III), suggesting that an increase in intracellular GSH levels was involved in the decrease in sensitivity to As(III) due to the decrease in the levels of CHAC1 expression. When we examined the expression of CHAC1 after exposure of HaCaT cells to As(III), the levels of CHAC1 were increased. Since CHAC1 is a proapoptotic factor, we examined appearance of apoptotic cells and cleavage of caspase-3 after exposure to As(III) to determine whether As(III)-induced CHAC1 up-regulation was involved in apoptosis induction. The results showed that induction of apoptosis by As(III) exposure was not detected in CHAC1 siRNA-transfected cells. Together, our findings indicate that CHAC1 is involved in the sensitivity of HaCaT cells to As(III) by regulating the intracellular GSH levels, and in particular, CHAC1 is involved in As(III)-induced apoptosis.

  16. Comparisons of segment-specific toxicity of platinum-based agents and cadmium using S1, S2, and S3 cells derived from mouse kidney proximal tubules. 国際誌 査読有り

    Hitomi Fujishiro, Hiroki Taguchi, Satoko Hamao, Daigo Sumi, Seiichiro Himeno

    Toxicology in vitro : an international journal published in association with BIBRA 75 105179-105179 2021年9月

    DOI: 10.1016/j.tiv.2021.105179  

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    Renal toxicants such as cisplatin and cadmium cause segment-specific damages in kidney proximal tubules. Recently, we established an in vitro experimental system for evaluating segment-specific toxicity and transport of chemicals using immortalized S1, S2, and S3 cells derived from the S1, S2, and S3 regions of mouse kidney proximal tubules. In the present study, we examined the toxicity and accumulation of cisplatin, carboplatin, oxaliplatin, and cadmium in S1, S2, and S3 cells. We found that not only cisplatin but also carboplatin and oxaliplatin exhibited higher lethal toxicity in S3 cells than in S1 and S2 cells. At sublethal doses, cisplatin showed delayed induction of Kim-1 and clusterin on days 3 and 6, which may reflect the latent renal toxicity of cisplatin in vivo. The high sensitivities of S3 cells to the platinum-based agents were not due to the high accumulation of Pt in S3 cells. Exposure to cadmium resulted in similar toxicity among these cells, suggesting that S3 cells were not sensitive to any renal toxicants. Thus, the utilization of S1, S2, and S3 cells may provide a useful tool for the in vitro evaluation of the proximal tubule segment-specific toxicity of chemicals.

︎全件表示 ︎最初の5件までを表示

MISC 23

  1. シスプラチン曝露後の細胞内Pt蓄積と細胞毒性の経時変化

    上村歩, 田口央基, 松本可南子, 藤代瞳, 姫野誠一郎, 角大悟

    日本薬学会年会要旨集(Web) 144th 2024年

    ISSN: 0918-9823

  2. 亜ヒ酸によるC2C12細胞の分化誘導阻害作用の解析

    竹川芽依, 田口央基, 藤代瞳, 姫野誠一郎, 姫野誠一郎, 角大悟

    日本薬学会年会要旨集(Web) 144th 2024年

    ISSN: 0918-9823

  3. 亜ヒ酸は細胞膜表面における糖鎖末端のシアル酸発現量に影響を与える

    田口央基, 藤代瞳, 角大悟

    日本薬学会年会要旨集(Web) 144th 2024年

    ISSN: 0918-9823

  4. 腎臓内元素動態に関する研究:カドミウムばく露マウス腎臓における生命金属分布

    藤代瞳, 田中泉, 阿山香子, 田口央基, 上原章寛, 石原弘, 及川将一, 姫野誠一郎, 姫野誠一郎, 武田志乃

    量子科学技術研究開発機構資料(Web) (45) 2024年

  5. ウラン細胞内動態に関する研究:腎尿細管領域由来細胞における元素分布解析

    田中泉, 藤代瞳, 薬丸晴子, 田口央基, 田中美香, 横地和子, 阿山香子, 上原章寛, 石原弘, 及川将一, 姫野誠一郎, 姫野誠一郎, 武田志乃

    量子科学技術研究開発機構資料(Web) (45) 2024年

  6. Glyco-immune checkpointに関与する細胞膜表面のシアル酸は亜ヒ酸により増加する

    田口央基, 藤代瞳, 角大悟

    日本免疫毒性学会学術年会講演要旨集 30th 2023年

  7. シスプラチンに対する近位尿細管S3領域の高感受性にフェロトーシスが関与する

    田口央基, 藤代瞳, 姫野誠一郎, 姫野誠一郎, 角大悟

    Fundamental Toxicological Sciences (Web) 10 (Supplement) 2023年

    ISSN: 2189-115X

  8. 亜ヒ酸によるC2C12細胞の分化誘導阻害作用の解析

    竹川芽依, 田口央基, 藤代瞳, 姫野誠一郎, 角大悟

    Journal of Toxicological Sciences 48 (Supplement (CD-ROM)) 2023年

    ISSN: 0388-1350

  9. フェロトーシスはシスプラチンによる近位尿細管S3領域の高感受性に関与する

    田口央基, 藤代瞳, 姫野誠一郎, 姫野誠一郎, 角大悟

    Journal of Toxicological Sciences 48 (Supplement (CD-ROM)) 2023年

    ISSN: 0388-1350

  10. GSH分解酵素CHAC1による亜ヒ酸毒性の増強作用の解析

    日裏晃大, 佐藤友理, 田口央基, 竹内久美子, 藤代瞳, 角大悟

    日本薬学会年会要旨集(Web) 143rd 2023年

    ISSN: 0918-9823

  11. 近位尿細管領域由来細胞を用いたシスプラチンによる細胞傷害メカニズムの解明

    田口央基, 藤代瞳, 冨塚祐希, 桑田浩, 原俊太郎, 姫野誠一郎, 姫野誠一郎, 角大悟

    日本薬学会年会要旨集(Web) 143rd 2023年

    ISSN: 0918-9823

  12. シスプラチン曝露による近位尿細管S3領域の毒性発現機構の検討

    田口央基, 藤代瞳, 姫野誠一郎, 姫野誠一郎, 角大悟

    日本薬学会年会要旨集(Web) 142nd 2022年

    ISSN: 0918-9823

  13. グルタチオン分解酵素CHAC1は亜ヒ酸の毒性を増強させる

    角大悟, 田口央基, 佐藤友理, 日裏晃大, 竹内久美子, 藤代瞳

    Fundamental Toxicological Sciences (Web) 9 (Supplement) 2022年

    ISSN: 2189-115X

  14. 近位尿細管S3領域由来細胞に対するシスプラチン,パラコート,erastinの細胞毒性発現機構の比較

    田口央基, 藤代瞳, 姫野誠一郎, 姫野誠一郎, 角大悟

    衛生薬学・環境トキシコロジー講演要旨集 2022 2022年

    ISSN: 0919-2115

  15. シスプラチンに対する近位尿細管S3領域の高感受性に関与する抗酸化システム

    田口央基, 藤代瞳, 姫野誠一郎, 姫野誠一郎, 角大悟

    Journal of Toxicological Sciences 47 (Supplement (CD-ROM)) 2022年

    ISSN: 0388-1350

  16. シスプラチンのUVでの検出を可能にする反応システムの構築

    角大悟, 田口央基, 荷川取理樹, 藤代瞳

    衛生薬学・環境トキシコロジー講演要旨集 2021 2021年

    ISSN: 0919-2115

  17. 近位尿細管S3領域のシスプラチンによる不可逆毒性発現機構の解析

    田口央基, 藤代瞳, 姫野誠一郎, 姫野誠一郎, 角大悟

    衛生薬学・環境トキシコロジー講演要旨集 2021 2021年

    ISSN: 0919-2115

  18. 亜鉛輸送体ZIP8の金属結合モチーフがMn輸送に及ぼす影響の解析

    藤代瞳, 田口央基, 神戸大朋, 姫野誠一郎, 姫野誠一郎, 角大悟

    Biomedical Research on Trace Elements (Web) 32 (2) 2021年

    ISSN: 1880-1404

  19. シスプラチンの近位尿細管領域特異的毒性発現とその機序の検討

    藤代瞳, 田口央基, 姫野誠一郎, 姫野誠一郎, 上原章寛, 武田志乃, 角大悟

    Journal of Toxicological Sciences 46 (Supplement) 2021年

    ISSN: 0388-1350

  20. シスプラチンのUVでの検出を可能にする反応システムの構築

    荷川取理樹, 田口央基, 藤代瞳, 角大悟

    Fundamental Toxicological Sciences (Web) 8 (Supplement) 2021年

    ISSN: 2189-115X

  21. 近位尿細管S3領域のシスプラチンによる毒性発現機構の解析

    田口央基, 藤代瞳, 姫野誠一郎, 角大悟

    Fundamental Toxicological Sciences (Web) 8 (Supplement) 2021年

    ISSN: 2189-115X

  22. 白金錯化合物の近位尿細管部位特異的毒性の比較

    田口央基, 仲宗根浩気, 藤代瞳, 角大悟, 姫野誠一郎

    Journal of Toxicological Sciences 45 (Supplement) 2020年

    ISSN: 0388-1350

  23. 白金製剤の近位尿細管S3領域特異的脆弱性の検討

    田口央基, 藤代瞳, 姫野誠一郎, 角大悟

    衛生薬学・環境トキシコロジー講演要旨集 2020 2020年

    ISSN: 0919-2115

︎全件表示 ︎最初の5件までを表示

講演・口頭発表等 20

  1. シスプラチン短時間曝露による遅延性腎障害機構の解明

    田口央基、藤代瞳、上村歩、角大悟

    フォーラム2024:衛生薬学・環境トキシコロジー 2024年9月4日

  2. シスプラチン耐性近位尿細管細胞を用いた新規シスプラチン腎障害責任因子の探索

    田口央基, 藤代瞳, 外山喬士, 斎藤芳郎, 角大悟

    第51回日本毒性学会学術年会 2024年7月3日

  3. 亜ヒ酸は細胞膜表面における糖鎖末端のシアル酸発現量に影響を与える

    田口央基, 藤代瞳, 角大悟

    日本薬学会第144年会 2024年3月31日

  4. 亜ヒ酸は細胞表面の糖鎖組成に影響を与える~ヒ素の発がんとの関連性~

    田口央基, 藤代瞳, 角大悟

    第28回ヒ素シンポジウム 2023年12月1日

  5. シスプラチンに対する近位尿細管S3領域の高感受性にフェロトーシスが関与する

    田口央基, 藤代瞳, 姫野誠一郎, 角大悟

    メタルバイオサイエンス研究会2023 2023年10月5日

  6. Glyco-immune checkpointに関与する細胞膜表面のシアル酸は亜ヒ酸により増加する

    田口央基, 藤代瞳, 角大悟

    第30回日本免疫毒性学会学術年会 2023年9月11日

  7. シスプラチンによる近位尿細管S3領域の高感受性にフェロトーシスが関与する

    田口央基, 藤代瞳, 姫野誠一郎, 角大悟

    第35回生物無機化学セミナー 2023年9月7日

  8. Ferroptosis involved in cisplatin vulnerability of proximal tubule S3 segment-derived immortalized cells

    Hiroki Taguchi, Hitomi Fujishiro, Seiichiro Himeno, Daigo Sumi

    ASIATOX-X 2023年7月18日

  9. フェロトーシスはシスプラチンによる近位尿細管S3領域の高感受性に関与する

    田口央基, 藤代瞳, 姫野誠一郎, 角大悟

    第50回日本毒性学会学術年会 2023年6月19日

  10. 近位尿細管領域由来細胞を用いたシスプラチンによる細胞傷害メカニズムの解明

    田口 央基, 藤代 瞳, 冨塚 祐希, 桑田 浩, 原 俊太郎, 姫野 誠一郎, 角 大悟

    日本薬学会第143年会 2023年3月25日

  11. 近位尿細管S3領域由来細胞に対するシスプラチン、パラコート、erastinの細胞毒性発現機構の比較

    田口央基, 藤代瞳, 姫野誠一郎, 角大悟

    フォーラム2022:衛生薬学・環境トキシコロジー 2022年8月30日

  12. シスプラチンに対する近位尿細管S3領域の高感受性に関与する抗酸化システム

    田口央基, 藤代瞳, 姫野誠一郎, 角大悟

    第49回日本毒性学会学術年会 2022年6月30日

  13. シスプラチン曝露による近位尿細管S3領域の毒性発現機構の検討

    田口央基, 藤代瞳, 姫野誠一郎, 角大悟

    日本薬学会第142年会 2022年3月27日

  14. 近位尿細管S3領域のシスプラチンによる毒性発現機構の解析

    田口央基, 藤代瞳, 姫野誠一郎, 角大悟

    メタルバイオサイエンス研究会2021 2021年10月28日

  15. シスプラチン曝露による近位尿細管S3領域の不可逆毒性発現機構の検討

    田口央基, 藤代瞳, 姫野誠一郎, 角大悟

    第60回日本薬学会・日本薬剤師会・日本病院薬剤師会 中国四国支部学術大会 2021年10月23日

  16. 近位尿細管S3領域のシスプラチンによる不可逆毒性発現機構の解析

    田口央基, 藤代瞳, 姫野誠一郎, 角大悟

    フォーラム2021:衛生薬学・環境トキシコロジー 2021年9月10日

  17. human ZIP8の金属結合モチーフがマンガン輸送に及ぼす影響

    田口央基, 藤代瞳, 姫野誠一郎, 角大悟

    第22回日本亜鉛治療研究会学術集会 2021年8月7日

  18. シスプラチン曝露による近位尿細管S3領域の毒性発現機構の検討

    田口央基, 藤代瞳, 姫野誠一郎, 角大悟

    日本薬学会第142年会 2021年3月27日

  19. 白金製剤の近位尿細管S3領域特異的脆弱性の検討

    田口央基, 藤代瞳, 姫野誠一郎, 角大悟

    フォーラム2020:衛生薬学・環境トキシコロジー 2020年9月5日

  20. 白金錯化合物の近位尿細管部位特異的毒性の比較

    田口央基, 仲宗根浩気, 藤代瞳, 角大悟, 姫野誠一郎

    第47回日本毒性学会学術年会 2020年6月30日

︎全件表示 ︎最初の5件までを表示

共同研究・競争的資金等の研究課題 2

  1. リソソーム酸性化と白金架橋形成を標的とした新規シスプラチン腎障害予防薬の創出

    田口 央基

    2026年4月 ~ 2029年3月

  2. セレノプロテインPを用いたシスプラチン腎障害防御機構の解明と新規治療薬への応用

    田口 央基

    2025年4月 ~ 2028年3月