研究者業績

熊本 海生航

kumamoto kanako

基本情報

所属
藤田医科大学 研究支援推進本部 病態モデル先端医学研究センター 講師
学位
博士(広島大学)

J-GLOBAL ID
201701013940448161
researchmap会員ID
7000019881

論文

 35
  • Takanori Hayashi, Kanako Kumamoto, Tatsuya Kobayashi, Xinfeng Hou, Shizuko Nagao, Nobuhiro Harada, Shinichiro Honda, Yohei Shimono, Eiji Nishio
    The FEBS journal 2025年2月18日  
    Estrogen is synthesized throughout various tissues in the body, and its production is regulated by the rate-limiting enzyme aromatase (encoded by the Cyp19a1 gene). Notably, aromatase is also expressed in central nervous system cells, allowing for localized estrogen synthesis in regions such as the hypothalamus. Estrogens produced within these neurons are referred to as neuroestrogens. In this study, we investigated the role of neuroestrogens in the regulation of appetite through modulation of hypothalamic pathways in OVX, ArKO, and aromatase-restored mice. Estrogen suppresses appetite by influencing the expression of appetite-regulating peptides, including POMC and NPY, via MC4R. We explored the direct effects of neuroestrogens, independent from ovarian estrogen, on appetite suppression and the underlying molecular mechanisms. We monitored body weight and food intake and evaluated the expression of Cyp19a1, Mc4r, and other appetite-related genes. Our findings indicate that OVX and ArKO mice exhibited increased body weight and food consumption, which correlated with altered expression of Mc4r and Cyp19a1. Conversely, restoration of Cyp19a1 expression in a neuron specific manner significantly decreased food intake and increased Mc4r expression in the hypothalamus. Furthermore, neuroestrogens enhanced leptin responsiveness. Our results imply that neuroestrogens likely contribute to appetite regulation and may be relevant for body weight reduction.
  • Saori Fukuda, Masanori Kugita, Kanako Kumamoto, Yuki Akari, Yuki Higashimoto, Shizuko Nagao, Takayuki Murata, Tetsushi Yoshikawa, Koki Taniguchi, Satoshi Komoto
    Viruses 16(8) 2024年7月25日  
    The live attenuated human rotavirus vaccine strain RIX4414 (Rotarix®) is used worldwide to prevent severe rotavirus-induced diarrhea in infants. This strain was attenuated through the cell culture passaging of its predecessor, human strain 89-12, which resulted in multiple genomic mutations. However, the specific molecular reasons underlying its attenuation have remained elusive, primarily due to the absence of a suitable reverse genetics system enabling precise genetic manipulations. Therefore, we first completed the sequencing of its genome and then developed a reverse genetics system for the authentic RIX4414 virus. Our experimental results demonstrate that the rescued recombinant RIX4414 virus exhibits biological characteristics similar to those of the parental RIX4414 virus, both in vitro and in vivo. This novel reverse genetics system provides a powerful tool for investigating the molecular basis of RIX4414 attenuation and may facilitate the rational design of safer and more effective human rotavirus vaccines.
  • 白水 貴大, 吉村 文, 坂田 美和, 熊本 海生航, 釘田 雅則, 八代 百合子, 鈴木 慶幸, 大畑 敬一, 秋江 靖樹, 山口 太美雄, 高橋 和男, 長尾 静子
    日本腎臓学会誌 66(4) 657-657 2024年6月  
  • 白水 貴大, 吉村 文, 坂田 美和, 熊本 海生航, 釘田 雅則, 高橋 和男, 長尾 静子
    日本腎臓学会誌 65(3) 317-317 2023年5月  
  • Sei Saitoh, Takashi Takaki, Kazuki Nakajima, Bao Wo, Hiroshi Terashima, Satoshi Shimo, Huy Bang Nguyen, Truc Quynh Thai, Kanako Kumamoto, Kazuo Kunisawa, Shizuko Nagao, Akihiro Tojo, Nobuhiko Ohno, Kazuo Takahashi
    PloS one 18(2) e0281770 2023年  査読有り
    A long-term high-fat diet (HFD) causes obesity and changes in renal lipid metabolism and lysosomal dysfunction in mice, causing renal damage. Sodium-glucose co-transporter inhibitors, including phlorizin, exert nephroprotective effects in patients with chronic kidney disease, but the underlying mechanism remains unclear. A HFD or standard diet was fed to adult C57BL/6J male mice, and phlorizin was administered. Lamellar body components of the proximal tubular epithelial cells (PTECs) were investigated. After phlorizin administration in HFD-fed mice, sphingomyelin and ceramide in urine and tissues were assessed and label-free quantitative proteomics was performed using kidney tissue samples. Mitochondrial elongation by fusion was effective in the PTECs of HFD-fed obese mice under phlorizin administration, and many lamellar bodies were found in the apical portion of the S2 segment of the proximal tubule. Phlorizin functioned as a diuretic, releasing lamellar bodies from the apical membrane of PTECs and clearing the obstruction in nephrons. The main component of the lamellar bodies was sphingomyelin. On the first day of phlorizin administration in HFD-fed obese mice, the diuretic effect was increased, and more sphingomyelin was excreted through urine than in vehicle-treated mice. The expressions of three peroxisomal β-oxidation proteins involved in fatty acid metabolism were downregulated after phlorizin administration in the kidneys of HFD-fed mice. Fatty acid elongation protein levels increased with phlorizin administration, indicating an increase in long-chain fatty acids. Lamellar bodies accumulated in the proximal renal tubule of the S2 segment of the HFD-fed mice, indicating that the urinary excretion of lamellar bodies has nephroprotective effects.
  • Kyongtae T Bae, Kanako Kumamoto, Aya Yoshimura, Masanori Kugita, Shigeo Horie, Tamio Yamaguchi, Junu T Bae, Shizuko Nagao
    Journal of nephrology 35(3) 1033-1040 2021年11月10日  査読有り筆頭著者
    BACKGROUND: Cystogenesis in polycystic kidney disease (PKD) is likely accelerated by various renal insults, including crystal deposition, that activate renal tubule obstruction and dilation. We developed a capsule-based device that can be applied to cystic kidneys to restrict tubular lumen dilatation and cyst expansion. METHODS: Kidney capsule devices were designed from computed tomography images of wild-type and Cy/+ rats. Capsule devices were surgically implanted on kidneys in six surgical sessions over a period of 14 months in 7 wild-type rats of 6.5-8 weeks (3 sham operations, 2 right, 2 left) and 6 Cy/+ rats of 6.5 weeks (2 sham, 3 left, 1 bilateral). After surgery, the rats were followed for 5.4-12.4 weeks' growth and sacrificed to retrieve the kidneys. During the follow-up, serum creatinine was measured and retrieved kidneys were weighed. Histological analysis including cystic area measurement and immunohistochemistry was performed. RESULTS: Morphometric capsule devices were configured and developed by an image processing technique and produced using a 3D printer. Encapsulated Cy/+ kidneys (n = 5; mean weight 3.64 g) were consistently smaller in size (by 21-36%; p < 0.001) than unencapsulated Cy/+ kidneys (n = 7; mean weight 5.52 g). Encapsulated Cy/+ kidneys (mean %cyst area: 29.4%) showed smaller histological cystic area (by 28-58%; p < 0.001) than unencapsulated Cy/+ kidneys (mean %cyst area 48.6%). Cell proliferation and macrophages were also markedly reduced in encapsulated Cy/+ kidneys, compared to unencapsulated Cy/+ kidneys. CONCLUSIONS: We report a pilot feasibility study for the application of a novel morphometric 3D capsule device to the Cy/+ rat model showing restricted kidney volume expansion on polycystic kidney disease progression.
  • 林 孝典, 熊本 海生航, 會田 訓子, 侯 忻逢, 久富 由紀子, 西尾 永司, 下野 洋平
    日本女性医学学会雑誌 28(4) 548-553 2021年7月  査読有り招待有り
  • Riona Hatazawa, Saori Fukuda, Kanako Kumamoto, Fumio Matsushita, Shizuko Nagao, Takayuki Murata, Koki Taniguchi, Taei Matsui, Satoshi Komoto
    The Journal of general virology 102(4) 2021年4月  査読有り
    With the recent establishment of robust reverse genetics systems for rotavirus, rotavirus is being developed as a vector to express foreign genes. However, insertion of larger sequences such as those encoding multiple foreign genes into the rotavirus genome has been challenging because the virus segments are small. In this paper, we attempted to insert multiple foreign genes into a single gene segment of rotavirus to determine whether it can efficiently express multiple exogenous genes from its genome. At first, we engineered a truncated NSP1 segment platform lacking most of the NSP1 open reading frame and including a self-cleaving 2A sequence (2A), which made it possible to generate a recombinant rotavirus stably expressing NanoLuc (Nluc) luciferase as a model foreign gene. Based on this approach, we then demonstrated the generation of a replication-competent recombinant rotavirus expressing three reporter genes (Nluc, EGFP, and mCherry) by separating them with self-cleaving 2As, indicating the capacity of rotaviruses as to the insertion of multiple foreign genes. Importantly, the inserted multiple foreign genes remained genetically stable during serial passages in cell culture, indicating the potential of rotaviruses as attractive expression vectors. The strategy described here will serve as a model for the generation of rotavirus-based vectors designed for the expression and/or delivery of multiple foreign genes.
  • Aya Yoshimura, Tamio Yamaguchi, Masanori Kugita, Kanako Kumamoto, Kazuya Shiogama, Naomichi Ogitsu, Misao Yoneda, Toshihiro Miura, Yoichi Nagamura, Shizuko Nagao
    JOURNAL OF NUTRITIONAL SCIENCE AND VITAMINOLOGY 67(4) 243-248 2021年  査読有り
  • Uga Naoko, Nakatani Masashi, Yoshimura Aya, Kumamoto Kanako, Tsuchida Kunihiro, Nagao Shizuko, Tsuchiya Tomonori, Kondo Yasuhiro, Naoe Atsuki, Watanabe Shunsuke, Yasui Toshihiro, Hara Fujio, Suzuki Tatsuya
    Fujita Medical Journal 7(2) 41-49 2021年  査読有り
    <p>Objectives: Proximal stoma creation in neonates results in growth failure and distal intestinal atrophy. "Recycling stool" consists of stool injection from the proximal limb to the distal limb of a stoma. Because this method may prevent distal bowel atrophy and increase body weight, we investigated the effects of recycling stool upon distal intestinal mucosa by generating an ileostomy model in rats.</p><p>Methods: An ileostomy was created 5 cm proximal to the cecum in male Wistar/ST rats. Discharged stool or saline was injected into the distal limb, twice per day for 7 days. The intestinal adaptation was assessed by measuring the villus height and counting goblet cell number. Proliferation and apoptosis were analyzed by Ki67 and TUNEL immunostaining.</p><p>Results: The ratios of the height of the distal villi (D) to the that of proximal villi (P) were 0.97 (median [range] of D and P length: 421 [240–729] μm and 436 [294–638] μm, P<0.05) in the stool-injected group and 0.81 in the saline-injected group (442 [315–641] μm and 548 [236–776] μm, P<0.05). Compared with the saline-injected group, the stool-injected group showed elevated numbers of goblet cells (3.6 [2.0–7.6] vs. 4.9 [2.4–7.5] cells/100-μm villus length) and Ki67-positive cells (26.8% [13.8%–35.4%] vs. 40.1% [31.2%–45.7%]), along with a reduced number of apoptotic cells (5.0 [2.0–14.0] vs. 4.0 [1.0–9.0] cells/100-μm villus length).</p><p>Conclusions: Recycling stool prevented distal intestinal atrophy; this experimental design may facilitate further studies concerning alternative methods to prevent intestinal atrophy and growth failure.</p>
  • Shinji Hirotsune, Hiroshi Kiyonari, Mingyue Jin, Kanako Kumamoto, Kayo Yoshida, Miki Shinohara, Hitomi Watanabe, Anthony Wynshaw-Boris, Fumio Matsuzaki
    Scientific reports 10(1) 2518-2518 2020年2月13日  査読有り
    The field of genome editing was founded on the establishment of methods, such as the clustered regularly interspaced short palindromic repeat (CRISPR) and CRISPR-associated protein (CRISPR/Cas) system, used to target DNA double-strand breaks (DSBs). However, the efficiency of genome editing also largely depends on the endogenous cellular repair machinery. Here, we report that the specific modulation of targeting vectors to provide 3' overhangs at both ends increased the efficiency of homology-directed repair (HDR) in embryonic stem cells. We applied the modulated targeting vectors to produce homologous recombinant mice directly by pronuclear injection, but the frequency of HDR was low. Furthermore, we combined our method with the CRISPR/Cas9 system, resulting in a significant increase in HDR frequency. Thus, our HDR-based method, enhanced homologous recombination for genome targeting (eHOT), is a new and powerful method for genome engineering.
  • Shizuko Nagao, Masanori Kugita, Kanako Kumamoto, Aya Yoshimura, Kazuhiro Nishii, Tamio Yamaguchi
    PLoS ONE 14(3) e0207461 2019年3月1日  
  • Shiori Toba, Mingyue Jin, Masami Yamada, Kanako Kumamoto, Sakiko Matsumoto, Takuo Yasunaga, Yuko Fukunaga, Atsuo Miyazawa, Sakiko Fujita, Kyoko Itoh, Shinji Fushiki, Hiroaki Kojima, Hideki Wanibuchi, Yoshiyuki Arai, Takeharu Nagai, Shinji Hirotsune
    Scientific Reports 8(1) 8019 2017年12月1日  査読有り
  • Shiori Toba, Mingyue Jin, Masami Yamada, Kanako Kumamoto, Sakiko Matsumoto, Takuo Yasunaga, Yuko Fukunaga, Atsuo Miyazawa, Sakiko Fujita, Kyoko Itoh, Shinji Fushiki, Hiroaki Kojima, Hideki Wanibuchi, Yoshiyuki Arai, Takeharu Nagai, Shinji Hirotsune
    SCIENTIFIC REPORTS 7(1) 16386 2017年11月  査読有り
  • Kanako Kumamoto, Tokuichi Iguchi, Ryuichi Ishida, Takuya Uemura, Makoto Sato, Shinji Hirotsune
    BIOLOGY OPEN 6(7) 1041-1055 2017年7月  査読有り筆頭著者
  • Yukie Tauchi, Hiroaki Tanaka, Kanako Kumamoto, Mao Tokumoto, Chie Sakimura, Katsunobu Sakurai, Kenjiro Kimura, Takahiro Toyokawa, Ryosuke Amano, Naoshi Kubo, Kazuya Muguruma, Masakazu Yashiro, Kiyoshi Maeda, Masaichi Ohira, Kosei Hirakawa
    CANCER SCIENCE 107(8) 1101-1109 2016年8月  査読有り
  • Yuki Ikeda, Akiko Hasegawa, Hiroshi Tsubamoto, Yu Wakimoto, Kanako Kumamoto, Hiroaki Shibahara
    EUROPEAN JOURNAL OF OBSTETRICS & GYNECOLOGY AND REPRODUCTIVE BIOLOGY 203 72-77 2016年8月  査読有り
  • Hironori Inaba, Hidemasa Goto, Kousuke Kasahara, Kanako Kumamoto, Shigenobu Yonemura, Akihito Inoko, Shotaro Yamano, Hideki Wanibuchi, Dongwei He, Naoki Goshima, Tohru Kiyono, Shinji Hirotsune, Masaki Inagaki
    JOURNAL OF CELL BIOLOGY 212(4) 409-423 2016年2月  査読有り
  • Am J Reprod Immunol. 73((Suppl.1)) 23-49 2015年  
  • Shakibur Rahman, Nobuyuki Kondo, Kazue Yoneda, Teruhisa Takuwa, Masaki Hashimoto, Hayato Orui, Yoshitomo Okumura, Fumihiro Tanaka, Kanako Kumamoto, Mohammad Golam Mostafa, Golam Mohiuddin Akbar Chowdhury, Akramul Haque, Seiki Hasegawa
    INTERNATIONAL JOURNAL OF CLINICAL ONCOLOGY 19(1) 45-49 2014年2月  査読有り
  • Masami Yamada, Kanako Kumamoto, Shintaro Mikuni, Yoshiyuki Arai, Masataka Kinjo, Takeharu Nagai, Yoshikazu Tsukasaki, Tomonobu M. Watanabe, Mitsuru Fukui, Mingyue Jin, Shiori Toba, Shinji Hirotsune
    NATURE COMMUNICATIONS 4 2033 2013年6月  査読有り
  • Shiori Toba, Yasuhisa Tamura, Kanako Kumamoto, Masami Yamada, Keizo Takao, Satoko Hattori, Tsuyoshi Miyakawa, Yosky Kataoka, Mitsuyoshi Azuma, Kiyoshi Hayasaka, Masano Amamoto, Keiko Tominaga, Anthony Wynshaw-Boris, Hideki Wanibuchi, Yuichiro Oka, Makoto Sato, Mitsuhiro Kato, Shinji Hirotsune
    Scientific reports 3 1224-1224 2013年  査読有り筆頭著者
  • Takako Takitoh, Kanako Kumamoto, Chen-Chi Wang, Makoto Sato, Shiori Toba, Anthony Wynshaw-Boris, Shinji Hirotsune
    JOURNAL OF NEUROSCIENCE 32(32) 11050-11066 2012年8月  査読有り
  • X. Z. Yang, K. Kumamoto, A. Hasegawa, S. Komori, K. Koyama
    JOURNAL OF REPRODUCTIVE IMMUNOLOGY 88(1) 24-31 2011年1月  査読有り筆頭著者責任著者
  • Y. Hosoda, A. Hasegawa, K. Kumamoto, M. Ogino, Y. Ikeda, H. Tanaka, S. Komori
    JOURNAL OF REPRODUCTIVE IMMUNOLOGY 86(1) 55-56 2010年8月  査読有り
  • Shigeo Tojo, Kanako Kumamoto, Kazutake Hirooka, Yasutaro Fujita
    JOURNAL OF BACTERIOLOGY 192(6) 1573-1585 2010年3月  査読有り
  • Proceedings of Annual Meeting of JSIR 22(2) 2010年  
  • A. Hasegawa, K. Kumamoto, N. Mochida, S. Komori, K. Koyama
    JOURNAL OF REPRODUCTIVE IMMUNOLOGY 83(1-2) 40-44 2009年12月  査読有り
  • K. Kumamoto, X. Z. Yang, A. Hasegawa, S. Komori, K. Koyama
    JOURNAL OF REPRODUCTIVE IMMUNOLOGY 82(1) 32-39 2009年10月  査読有り筆頭著者責任著者
  • Shigeo Tojo, Takenori Satomura, Kanako Kumamoto, Kazutake Hirooka, Yasutaro Fujita
    JOURNAL OF BACTERIOLOGY 190(18) 6134-6147 2008年9月  査読有り
  • Kazutake Hirooka, Satoshi Kunikane, Hiroshi Matsuoka, Ken-Ichi Yoshida, Kanako Kumamoto, Shigeo Tojo, Yasutaro Fujita
    JOURNAL OF BACTERIOLOGY 189(14) 5170-5182 2007年7月  査読有り
  • Hideaki Yamashiro, HaiFeng Wang, Yasuhisa Yamashita, Kanako Kumamoto, Takato Terada
    JOURNAL OF REPRODUCTION AND DEVELOPMENT 52(3) 407-414 2006年6月  査読有り
  • Hideaki Yamashiro, Kanako Kumamoto, HaiFeng Wang, Yasuhisa Yamashita, Takato Terada
    JOURNAL OF REPRODUCTION AND DEVELOPMENT 52(3) 397-406 2006年6月  査読有り
  • HF Wang, N Isobe, K Kumamoto, H Yamashiro, Y Yamashita, T Terada
    REPRODUCTIVE BIOLOGY AND ENDOCRINOLOGY 4 4 2006年2月  査読有り
  • K Kumamoto, HF Wang, H Yamashiro, T Terada
    REPRODUCTIVE BIOLOGY AND ENDOCRINOLOGY 3 59 2005年10月  査読有り筆頭著者

MISC

 45

担当経験のある科目(授業)

 6

共同研究・競争的資金等の研究課題

 6