栄養化学分野 タイトル Last update
2024.6.19
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List of Publications
In English (英文業績のリスト)
In Japanese(和文業績のリスト・著書などを含む)

 
List of Publications in English
(英文論文の業績リスト)
*corresponding author

Tsutomu SASAKI(佐々木 努) ORCID 0000-0001-8041-1915
Satoshi TSUZUKI(都築 巧) ORCID 0000-0003-4385-0075
Sho MATSUI(松居 翔) ORCID 0000-0003-1256-1182
Yasuo OGURI(小栗 靖生) ORCID 0000-0002-7435-6961

 
2024
Adaptive gene expression of alternative splicing variants of PGC-1α regulates whole-body energy metabolism.
Nomura K, Kinoshita S, Mizusaki N, Senga Y, Sasaki T, Kitamura T, Sakaue H, Emi A, Hosooka T, Matsuo M, Okamura H, Amo T, Wolf AM, Kamimura N, Ohta S, Itoh T, Hayashi Y, Kiyonari H, Krook A, Zierath JR, Kasuga M, Ogawa W.
Mol Metab, 2024 Jun 15:101968. doi: 10.1016/j.molmet.2024.101968. Online ahead of print.
PMID: 38885788

Medium-Chain Triglycerides-Specific Appetite is Regulated by the β-oxidation of Medium-Chain Fatty Acids in the Liver
Maruyama T, Matsui S, Kobayashi R, Horii T, Oguri Y, Tsuzuki S, Horie T, Ono K, Hatada I, *Sasaki T.
Am J Physiol Endocrinol Metab. 2024;326(5):E735-E746. doi: 10.1152/ajpendo.00031.
PMID: 38597830

Binding Interaction Between Lauric Acid and Cluster of Differentiation 36 Underpinned by a Fluorescence- Intensifying Assay
*Tsuzuki S, Sugawara T, Manabe Y, Yamasaki M, Sasaki T.
J Oleo Sci. 2024;73(1):113-119. doi: 10.5650/jos.ess23156. PMID: 38171727

2023
A point of view on human fat olfaction - do fatty derivatives serve as cues for awareness of dietary fats?
*Tsuzuki S.
Biomed Res. 2023;44(4):127-146. doi: 10.2220/biomedres.44.127. PMID: 37544735

2022
Application of a novel fluorescence intensity assay: identification of distinct fatty acetates as volatile compounds that bind specifically to amino acid region 149-168 of a transmembrane receptor CD36.
*Tsuzuki S, Kimoto Y, Marui K, Lee S, Inoue K, Sasaki T.
Biosci Biotechnol Biochem. 2022 Mar 21;86(4):509-518. doi: 10.1093/bbb/zbac018. PMID: 35102395

Role of SIRT1 and Progesterone Resistance in Normal and Abnormal Endometrium.
Kim TH, Young SL, Sasaki T, Deaton JL, Schammel DP, Palomino WA, Jeong JW, Lessey BA.
J Clin Endocrinol Metab. 2022 Feb 17 ;107(3):788-800. doi: 10.1210/clinem/dgab753. PMID: 34665857

The Hypothalamic Paraventricular Nucleus Is the Center of the Hypothalamic-Pituitary-Thyroid Axis for Regulating Thyroid Hormone Levels.
Kondo Y, Ozawa A, Kohno D, Saito K, Buyandalai B, Yamada S, Horiguchi K, Nakajima Y, Shibusawa N, Harada A, Yokoo H, Akiyama H, Sasaki T, Kitamura T, Yamada M*.
Thyroid. 2022 Jan;32(1):105-114. doi: 10.1089/thy.2021.0444.
PMID: 34726513

2021
Assessment of direct binding interaction between CD36 and its potential lipid ligands using a peptide mimic of the receptor labeled with a fluorophore.
*Tsuzuki S, Kimoto Y, Yamasaki M, Sugawara T, Manabe Y, Inoue K, Sasaki T.
Biomed Res. 2021;42(5):181-191. doi: 10.2220/biomedres.42.181.
PMID: 34544994

Urinary FABP1 is a biomarker for impaired proximal tubular protein reabsorption and is synergistically enhanced by concurrent liver injury.
Kawakami R, Matsui M, Konno A, Kaneko R, Shrestha S, Shrestha S, Sunaga H, Hanaoka H, Goto S, Hosojima M, Kabasawa H, Obokata M, Koitabashi N, Matsui H, Sasaki T, Saito A, Yanagita M, Hirai H, Kurabayashi M, Iso T.
J Pathol. 2021 Dec;255(4):362-373. doi: 10.1002/path.5775.
PMID: 34370295

Influence of dietary habits on depression among patients with rheumatoid arthritis: A cross-sectional study using KURAMA cohort database.
Minamino H, Katsushima M, Hashimoto M, Fujita Y, Torii M, Ikeda K, Isomura N, Oguri Y, Yamamoto W, Watanabe R, Murakami K, Murata K, Nishitani K, Tanaka M, Ito H, Uda M, Nin K, Arai H, Matsuda S, Morinobu A, Inagaki N.
PLoS One. 2021 Aug 5;16(8):e0255526. doi: 10.1371/journal.pone.0255526. eCollection 2021.
PMID: 34351967

Disordered branched chain amino acid catabolism in pancreatic islets is associated with postprandial hypersecretion of glucagon in diabetic mice.
Wada E, Kobayashi M, Kohno D, Kikuchi O, Suga T, Matsui S, Yokota-Hashimoto H, Honzawa N, Ikeuchi Y, Tsuneoka H, Hirano T, Obinata H, Sasaki T, Kitamura T.
J Nutr Biochem. 2021 Jun 28;97:108811. doi: 10.1016/j.jnutbio.2021.108811.
PMID: 34197915

Urinary sodium-to-potassium ratio associates with hypertension and current disease activity in patients with rheumatoid arthritis: a cross-sectional study.
Minamino H, Katsushima M, Hashimoto M, Fujita Y, Yoshida T, Ikeda K, Isomura N, Oguri Y, Yamamoto W, Watanabe R, Murakami K, Murata K, Nishitani K, Tanaka M, Ito H, Ohmura K, Matsuda S, Inagaki N, Morinobu A.
Arthritis Res Ther. 2021 Mar 27;23(1):96. doi: 10.1186/s13075-021-02479-x.
PMID: 33773587

microRNA-33 maintains adaptive thermogenesis via enhanced sympathetic nerve activity.
Horie T, Nakao T, Miyasaka Y, Nishino T, Matsumura S, Nakazeki F, Ide Y, Kimura M, Tsuji S, Rodriguez RR, Watanabe T, Yamasaki T, Xu S, Otani C, Miyagawa S, Matsushita K, Sowa N, Omori A, Tanaka J, Nishimura C, Nishiga M, Kuwabara Y, Baba O, Watanabe S, Nishi H, Nakashima Y, Picciotto MR, Inoue H, Watanabe D, Nakamura K, Sasaki T, Kimura T, Ono K.
Nat Commun. 2021 Feb 16;12(1):843. doi: 10.1038/s41467-021-21107-5.
PMID: 33594062

The major cap-binding protein eIF4E regulates lipid homeostasis and diet-induced obesity.
Conn CS, Yang H, Tom HJ, Ikeda K, Oses-Prieto JA, Vu H, Oguri Y, Nair S, Gill RM, Kajimura S, DeBerardinis RJ, Burlingame AL, Ruggero D.
Nat Metab. 2021 Feb;3(2):244-257. doi: 10.1038/s42255-021-00349-z.
PMID: 33619378

2020
Blood-cerebrospinal fluid barrier: another site disrupted during experimental cerebral malaria caused by Plasmodium berghei ANKA.
Ngo-Thanh H, Sasaki T, Suzue K, Yokoo H, Isoda K, Kamitani W, Shimokawa C, Hisaeda H, Imai T.
Int J Parasitol. 2020 Dec;50(14):1167-1175. doi: 10.1016/j.ijpara.2020.07.007.
PMID: 32882285

The regulation of glucose and lipid homeostasis via PLTP as a mediator of BAT-liver communication.
Sponton CH, Hosono T, Taura J, Jedrychowski MP, Yoneshiro T, Wang Q, Takahashi M, Matsui Y, Ikeda K, Oguri Y, Tajima K, Shinoda K, Pradhan RN, Chen Y, Brown Z, Roberts LS, Ward CC, Taoka H, Yokoyama Y, Watanabe M, Karasawa H, Nomura DK, Kajimura S.
EMBO Rep. 2020 Sep 3;21(9):e49828. doi: 10.15252/embr.201949828.
PMID: 32672883

TET1 is a beige adipocyte-selective epigenetic suppressor of thermogenesis.
Damal Villivalam S, You D, Kim J, Lim HW, Xiao H, Zushin PH, Oguri Y, Amin P, Kang S.
Nat Commun. 2020 Aug 27;11(1):4313. doi: 10.1038/s41467-020-18054-y.
PMID: 32855402

Leukotriene A 4 hydrolase deficiency protects mice from diet-induced obesity by increasing energy expenditure through neuroendocrine axis.
Uzawa H, Kohno D, Koga T, Sasaki T, Fukunaka A, Okuno T, Jo-Watanabe A, Kazuno S, Miyatsuka T, Kitamura T, Fujitani Y, Watada H, Saeki K, Yokomizo T.
FASEB J. 2020 Aug 26. doi: 10.1096/fj.202001148R.
PMID: 32844470

Wireless optogenetics protects against obesity via stimulation of non-canonical fat thermogenesis.
Tajima K, Ikeda K, Tanabe Y, Thomson EA, Yoneshiro T, Oguri Y, Ferro MD, Poon ASY, Kajimura S.
Nat Commun. 2020 Apr 7;11(1):1730. doi: 10.1038/s41467-020-15589-y.
PMID: 32265443

CD81 Controls Beige Fat Progenitor Cell Growth and Energy Balance via FAK Signaling.
Oguri Y, Shinoda K, Kim H, Alba DL, Bolus WR, Wang Q, Brown Z, Pradhan RN, Tajima K, Yoneshiro T, Ikeda K, Chen Y, Cheang RT, Tsujino K, Kim CR, Greiner VJ, Datta R, Yang CD, Atabai K, McManus MT, Koliwad SK, Spiegelman BM, Kajimura S.
Cell. 2020 Aug 6;182(3):563-577.e20. doi: 10.1016/j.cell.2020.06.021.
PMID: 32615086

The PDK1-FoxO1 signaling in adipocytes controls systemic insulin sensitivity through the 5-lipoxygenase-leukotriene B4 axis.
Hosooka T, Hosokawa Y, Matsugi K, Shinohara M, Senga Y, Tamori Y, Aoki C, Matsui S, Sasaki T, Kitamura T, Kuroda M, Sakaue H, Nomura K, Yoshino K, Nabatame Y, Itoh Y, Yamaguchi K, Hayashi Y, Nakae J, Accili D, Yokomizo T, Seino S, Kasuga M, Ogawa W.
Proc Natl Acad Sci U S A. 2020 May 26;117(21):11674-11684. doi: 10.1073/pnas.1921015117. Epub 2020 May 11.
PMID: 32393635

Cellular heterogeneity in brown adipose tissue.
Oguri Y, Kajimura S.
J Clin Invest. 2020 Jan 2;130(1):65-67. doi: 10.1172/JCI133786. Review
PMID: 31763995

2019
Higher straight-chain aliphatic aldehydes: Importance as odor-active volatiles in human foods and issues for future research.
*Tsuzuki S.
J Agric Food Chem. 2019 May 1;67(17):4720-4725. doi: 10.1021/acs.jafc.9b01131.
PMID: 30945546

SGLT1 in pancreatic α cells regulates glucagon secretion in mice, possibly explaining the distinct effects of SGLT2 inhibitors on plasma glucagon levels.
Suga T, Kikuchi O, Kobayashi M, Matsui S, Yokota-Hashimoto H, Wada E, Kohno D, Sasaki T, Takeuchi K, Kakizaki S, Yamada M, Kitamura T.
Mol Metab. 2019 Jan;19:1-12. doi: 10.1016/j.molmet.2018.10.009.
PMID: 30416006

2018
Neuronal SIRT1 regulates macronutrient-based diet selection through FGF21 and oxytocin signalling in mice.
Matsui S, *Sasaki T, Kohno D, Yaku K, Inutsuka A, Yokota-Hashimoto H, Kikuchi O, Suga T, Kobayashi M, Yamanaka A, Harada A, Nakagawa T, Onaka T, Kitamura T.
Nat Commun. 2018 Nov 2;9(1):4604. doi: 10.1038/s41467-018-07033-z.
PMID: 30389922

Overexpression of Nmnat3 efficiently increases NAD and NGD levels and ameliorates age-associated insulin resistance.
Gulshan M, Yaku K, Okabe K, Mahmood A, Sasaki T, Yamamoto M, Hikosaka K, Usui I, Kitamura T, Tobe K, Nakagawa T.
Aging Cell. 2018 Jun 14:e12798. doi: 10.1111/acel.12798. [Epub ahead of print]
PMID: 29901258

A central-acting connexin inhibitor, INI-0602, prevents high-fat diet-induced feeding pattern disturbances and obesity in mice.
*Sasaki T, Numano R, Yokota-Hashimoto H, Matsui S, Kimura N, Takeuchi H, Kitamura T.
Mol Brain. 2018 May 24;11(1):28. doi: 10.1186/s13041-018-0372-9.
PMID: 29793524

A role for scavenger receptor B1 as a captor of specific fatty acids in taste buds of circumvallate papillae.
*Tsuzuki S, Lee S, Kimoto Y, Sugawara T, Manabe Y, Inoue K.
Biomed Res. 2018;39(6):295-300. doi: 10.2220/biomedres.39.295.
PMID: 30531159

A novel role for scavenger receptor B1 as a contributor to the capture of specific volatile odorants in the nasal cavity.
*Tsuzuki S, Kimoto Y, Lee S, Sugawara T, Manabe Y, Inoue K.
Biomed Res. 2018;39(3):117-129. doi: 10.2220/biomedres.39.117.
PMID: 29899187

 
和文業績
(代表的なものを抜粋 by 佐々木)


佐々木努(編): 「エッセンシャル栄養化学(講談社)」(2021)
佐々木努(編)実験医学別冊 もっとよくわかる!シリーズ 「もっとよくわかる!食と栄養のサイエンス(羊土社)」(2021)
食と栄養のサイエンス

佐々木努私のメンター「―科学者たらんとする者ルネサンス人をめざせ―教育と研究の2人の師」実験医学、37(8)、1342-1345 (2019)
佐々木努「摂食調節研究のパラダイム・シフト 摂食調節に流れる3つの時間」実験医学、36(1)、64-65 (2018)
佐々木努: 「摂食調節メカニズム研究の最前線」公益財団法人群馬健康医学振興会編「肥満と疾患 どこまで解明されたか?」(上毛新聞社)第4章33、200-213 (2017)
佐々木努特集企画「食欲と食嗜好のサイエンス」実験医学、35(6)、900-950 (2017)
佐々木努: 「中枢神経系のSIRT1による体重調節機序」月間糖尿病、9(3)、19-28
佐々木努、北村忠弘: 「肥満と糖尿病の表現型解析」>実験医学別冊「マウス表現型解析スタンダード」(羊土社)第4章11、242-250 (2016)
佐々木努: 「中枢神経系SIRT1による体重調節機構」内分泌・糖尿病・代謝内科、41(1)、14-18 (2015)
 など

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