{"id":48,"date":"2016-05-12T16:32:34","date_gmt":"2016-05-12T07:32:34","guid":{"rendered":"http:\/\/www.tminami.iis.u-tokyo.ac.jp\/en\/?page_id=48"},"modified":"2026-08-25T11:16:37","modified_gmt":"2026-08-25T02:16:37","slug":"yui-sasaki","status":"publish","type":"page","link":"https:\/\/www.tminami.iis.u-tokyo.ac.jp\/en\/?page_id=48","title":{"rendered":"Yui Sasaki"},"content":{"rendered":"\r\n<p><img decoding=\"async\" loading=\"lazy\" class=\"alignleft size-thumbnail wp-image-524\" src=\"https:\/\/www.tminami.iis.u-tokyo.ac.jp\/wp-content\/uploads\/2024\/12\/Sasaki_2024.png\" alt=\"\" width=\"150\" height=\"150\"><\/p>\r\n<p>&nbsp;<\/p>\r\n<p>&nbsp;<\/p><p>&nbsp;<\/p><p>&nbsp;<\/p><p>&nbsp;<\/p><p>&nbsp;<\/p>\r\n<p>&nbsp;<\/p>\r\n<p><strong><a href=\"https:\/\/www.sayui.rcast.u-tokyo.ac.jp\/en\/\" target=\"_blank\" rel=\"noopener\">Lecturer<\/a><\/strong><\/p>\r\n<p><strong>\u25a0 Contact<\/strong><br>E-mail: sayui[at]iis.u-tokyo.ac.jp<\/p>\r\n<hr>\r\n<p><strong>\u25a0 Researcher Information<\/strong><br>\r\n<td><a href=\"https:\/\/researchmap.jp\/sayui_?lang=en\"><img decoding=\"async\" loading=\"lazy\" class=\"wp-image-2120 size-medium\" src=\"https:\/\/www.tminami.iis.u-tokyo.ac.jp\/wp-content\/uploads\/2020\/06\/researchmap-logo_2.jpg\" width=\"40\" height=\"40\"><\/a><\/td>\r\n<td><a href=\"https:\/\/orcid.org\/0000-0003-4185-569X\"><img decoding=\"async\" loading=\"lazy\" class=\"wp-image-2120 size-medium\" src=\"https:\/\/www.tminami.iis.u-tokyo.ac.jp\/wp-content\/uploads\/2020\/06\/ORCiD-4.jpg\" width=\"40\" height=\"40\"><\/a><\/td>\r\n<hr>\r\n<p><strong>\u25a0 Education <\/strong><\/p>\r\n<p> Mar. 2016 <strong>B.Eng. <\/strong>\r\n<br>Department of Polymer Science and Engineering, Faculty of Engineering, Yamagata University &nbsp; <\/p>\r\n<p> Sep. 2017 <strong> M.Eng. <\/strong> \r\n<br>Department of Organic Materials Science, Graduate School of Organic Materials Science, Yamagata University &nbsp; <\/p>\r\n<p> Sep. 2020 <strong> Ph.D. <\/strong><br> \r\nDepartment of Chemistry and Biotechnology, Graduate School of Engineering, The University of Tokyo (Supervisor: Associate Professor Tsuyoshi Minami) <br>\r\n(Graduated at the top of the Department of Chemistry and Biotechnology) &nbsp; <\/p>\r\n<p><strong>\u25a0 Research Experience <\/strong><\/p>\r\n<p> Apr. 2016\u2212Mar. 2017 <strong> Internship Student <\/strong><br> \r\n(Institute of Industrial Science, The University of Tokyo, Associate Professor Tsuyoshi Minami group) &nbsp; <\/p>\r\n<p> Apr. 2018\u2212Sep. 2020 <strong> JSPS Research Fellow for Young Scientists (DC1)<\/strong> &nbsp; <\/p>\r\n<p> Mar. 2019 <strong> Visiting Research Student <\/strong><br>\r\n(East China Normal University, China (Professor Yang Tian group)) &nbsp; <\/p>\r\n<p> Jan. 2020\u2212Mar. 2020 <strong> Visiting Research Student <\/strong><br>\r\n(University of Technology of Compi\u00e8gne, France (Professor Karsten Haupt group)) &nbsp; <\/p>\r\n<p> Oct. 2020\u2212Mar. 2021 <strong> JSPS Research Fellow for Young Scientists (PD) <\/strong><br>\r\n(Change of status with degree)\r\n<p> Apr. 2021\u2212June. 2022<strong> Project Researcher <\/strong><br>\r\n<p> June. 2022\u2212Mar. 2024<strong> Project Research Associate <\/strong><br>\r\n(Institute of Industrial Science, The University of Tokyo, Associate Professor Tsuyoshi Minami group)\r\n<p> Oct. 2023\u2212Present<strong> JST PRESTO Researcher (concurrent post)<\/strong><br>\r\n<p> Apr. 2024\u2212Present<strong> Lecturer (PI)<\/strong><br>\r\n(Research Center for Advanced Science and Technology, The University of Tokyo)\r\n\r\n<p>Apr. 2026\u2212Present <strong>Member<\/strong><br>\r\n(The University of Tokyo Integrated Research Network \u2013 LIMMS KIKO, Laboratories for International Research on Multi-disciplinary Micro Systems (concurrent post))<\/p>\r\n\r\n<hr>\r\n<p><strong>\u25a0 Research interests\uff1a<\/strong>\r\n<br>Fluorescence\/colorimetric chemosensor arrays and Organic transistor-based chemical sensors.<\/p>\r\n<hr>\r\n<p><strong>\u25a0 Publications<\/strong><br>(See also, <a href=\"https:\/\/scholar.google.co.jp\/citations?user=0bhmMEkAAAAJ&amp;hl=ja\"><strong>Google Scholar Citations<\/strong><\/a>)<be>\r\n<p><span id=\"badgeCont901\"><script type=\"text\/javascript\" src=\"https:\/\/publons.com\/mashlets?el=badgeCont901&amp;rid=ABE-1133-2021\"><\/script><\/span><\/p>\r\n\r\n<p>42. <strong>Excitonic organic materials for photochemical and optoelectronic applications: general discussion<\/strong><br>\r\nAitchison, C.; Albrecht, K.; Awaga, K.; Bergmann, K.; Calbo, J.; Cameron, J.; Clark, J.; Collins, M.; Data, P.; Santos, P.;  Fujigaya, T.; Fujino, T.; Fukazawa, A.; Gl\u00f6cklhofer, F.; Guo, X.; Heeney, M.; Hudson, Z.; Ie, Y.; Ishii, W.; Luscombe, C.; Marcilla, R.; Matsuo, T.; Miyazaki, S.; Nakagawa, S.; Nakanishi, T.; Nakatsuka, N.; Nishide, H.; <u>Sasaki, Y.<\/u>; Schroeder, B.; Singh, M.; Skabara, P.; Takeda, Y.; Tanaka, Y.;  Tani, Y.; Tsuchiya, Y.; Tsutsui, Y.; Uematsu, T.; Xie, G.; Yanai, N.;<br>\r\n<em><strong>Faraday Discuss.<\/strong><\/em>, <strong>2024<\/strong>, <em>250<\/em>, 298-334\r\n<\/p>\r\n<p><\/p>\r\n\r\n<p>41. <strong>Organic neuromorphics and bioelectronics: general discussion<\/strong><br>\r\nAitchison, C.; Albrecht, K.; Awaga, K.; Cameron, J.; Data, P.; Gl\u00f6cklhofer, F.; Guo, X.; Heeney, M.;  Hudson, Z.; Ie, Y.; Luscombe, C.; Matsuo, T.; Nakanishi, T.; Nakatsuka, N.; Nishide, H.; <u>Sasaki, Y.<\/u>; Schroeder, B.; Singh, M.; Skabara, P.; Takeda, Y.; Tani, Y.; Torsi, L.; Tsuchiya, Y.; Uematsu, T.; Yadav, D.; Yanai, N.;<br>\r\n<em><strong>Faraday Discuss.<\/strong><\/em>, <strong>2024<\/strong>, <em>250<\/em>, 83-95\r\n<\/p>\r\n\r\n<p>40. <strong>An organic transistor for detecting the oxidation of an organic sulfur compound at a solid\u2013liquid interface and its chemical sensing applications<\/strong><br>\r\n<u>Sasaki, Y.<\/u>; Zhang, Y.; Ohshiro, K.; Tsuchiya, K.; Lyu, X.; Kamiko, M.; Ueno, Y.; Tanaka, H.; Minami, T.;<br>\r\n<em><strong>Faraday Discuss.<\/strong><\/em>, <strong>2024<\/strong>, <em>250<\/em>, 60-73\r\n<\/p>\r\n\r\n<p>39.<strong>Leaf-Inspired Host-Guest Complexation-Dictating Supramolecular Gas Sensors<\/strong><\/p>\r\nPark, J.; <span style=\"text-decoration: underline;\">Sasaki, Y.<\/span>; Ishii, Y.; Murayama, S.; Ohshiro, K.; Nishiura, K.; Ikura, R.; Yamaguchi, H.; Harada, A.; Matsuba, G.; Washizu, H.; Minami, T.; Takashima, Y.<\/br>\r\n<i>ACS Appl. Mater. Interfaces<\/i>, <strong>2023<\/strong>, <em>15<\/em>, 39777 \u2013 39785.<\/p>\r\n<p>38.<strong>Zn(II)-Dipicolylamine-Attached Amphiphilic Polythiophene for Quantitative Pattern Recognition of Oxyanions in Mixtures<\/strong><\/p>\r\n<span style=\"text-decoration: underline;\">Sasaki, Y.<\/span>; Ohshiro, K.; Okabe, K.; Lyu, X.; Tsuchiya, K.; Matsumoto, A.; Takizawa, S.; Minami T.<\/br>\r\n<i>Chem. Asian J.<\/i>, <strong>2023<\/strong>, <em>18<\/em>, e202300372.<\/p>\r\n(This article was selected as<strong><span style=\"color: #0000ff;\">&nbsp;<a style=\"color: #0000ff;\" href=\"https:\/\/onlinelibrary.wiley.com\/doi\/10.1002\/asia.202300568\">a Front Cover <\/a><\/span><\/strong> and <strong><span style=\"color: #0000ff;\">&nbsp;<a style=\"color: #0000ff;\" href=\"https:\/\/onlinelibrary.wiley.com\/doi\/full\/10.1002\/asia.202300372\">&#8220;Chem. Asian J. VIP&#8221;<\/a><\/span><\/strong>.) \r\n<p>37.<strong>Spontaneous preparation of a fluorescent ratiometric chemosensor using off-the-shelf materials for metal ions<\/strong><\/p>\r\n<span style=\"text-decoration: underline;\">Sasaki, Y.<\/span>; Ohshiro, K.; Zhou, Q.; Lyu, X.; Tang, W.; Okabe, K.; Takizawa, S.; Minami T.<\/br>\r\n<i><em>Chem. Commun.<\/em><\/i>, <strong>2023<\/strong>, <em>59<\/em>, 7747 &#8211; 7750.<\/p>\r\n<p>36.<strong> Accurate cortisol detection in human saliva by an extended-gate-type organic transistor functionalized with a molecularly imprinted polymer<\/strong><\/p>\r\n<span style=\"text-decoration: underline;\">Sasaki, Y.<\/span>; Zhang, Y.; Fan, H.; Ohshiro, K.; Zhou, Q.; Tang, W.; Lyu, X.; Minami T.<\/br>\r\n<i><em>Sens. Actuators B Chem.<\/em><\/i> <strong>2023<\/strong>, 382, 133458.<\/p>\r\n<p>35.<strong> A Printed Colorimetric Chemosensor Array on A 96-microwell Paper Substrate for Metal Ions in River Water<\/strong><\/p>\r\n<span style=\"text-decoration: underline;\">Sasaki, Y.<\/span>; Lyu, X.; Minami T.<\/br>\r\n<i>Front. Chem. <\/i><strong>2023<\/strong>, 11, 1134752.&nbsp;<\/p>\r\n<p>34.<strong> An extended-gate-type organic transistor-based enzymatic sensor for dopamine detection in human urine<\/strong>\r\n<br>Ohshiro, K.; <span style=\"text-decoration: underline;\">Sasaki, Y.<\/span>; Minami T.<\/br>\r\n<i>Talanta Open <\/i><strong>2023<\/strong>, 7, 100190.&nbsp;<\/p>\r\n<p>33.<strong> Non-enzymatic detection of glucose levels in human blood plasma by a graphene oxide-modified organic transistor sensor<\/strong>\r\n<br>Fan, H.; <span style=\"text-decoration: underline;\">Sasaki, Y.<\/span>; Zhou, Q.; Tang, W.; Nishina, Y.; Minami T.<\/br>\r\n<i>Chem. Commun. <\/i><strong>2023<\/strong>, 59, 2425\u20132428.&nbsp;<\/p>\r\n(This article was selected as<strong><span style=\"color: #0000ff;\">&nbsp;<a style=\"color: #0000ff;\" href=\"https:\/\/pubs.rsc.org\/en\/content\/articlelanding\/2023\/cc\/d2cc07009j\">a Back Cover<\/a><\/span>.<\/strong>)<\/p>\r\n<p>32.<strong> A Highly Accurate pH Detection Method for Sweat Analysis using a Printed 96-Microwell Colorimetric Sensor Array<\/strong>\r\n<br><span style=\"text-decoration: underline;\">Sasaki, Y.<\/span>; Lyu, X.; Minami T. <\/br>\r\n<i>Anal. Sens. <\/i><strong>2023<\/strong>, 3, e202200097.<\/p>\r\n<p>31.<strong> An organic transistor for the selective detection of tropane alkaloids utilizing a molecularly imprinted polymer<\/strong>\r\n<br>Zhou, Q.; <span style=\"text-decoration: underline;\">Sasaki, Y.<\/span>; Ohshiro, K.; Fan, H.; Montagna, V.; Gonzato, C.; Haupt, K.; Minami, T. <\/br>\r\n<i>J. Mater. Chem. B <\/i><strong>2022<\/strong>, 10, 6808-6815.&nbsp;<\/p>\r\n<p>30.<strong> Printed 384-Well Microtiter Plate on Paper for Fluorescent Chemosensor Arrays in Food Analysis<\/strong>\r\n<br>Lyu, X.; <span style=\"text-decoration: underline;\">Sasaki, Y.<\/span>; Ohshiro, K.; Tang, W.; Yuan, Y.; Minami, T.<\/br>\r\n<i>Chem. Asian J. <\/i><strong>2022<\/strong>, 17, e202200479.&nbsp;<\/p>\r\n<p>(This article was selected as<strong><span style=\"color: #0000ff;\">&nbsp;<a style=\"color: #0000ff;\" href=\"https:\/\/onlinelibrary.wiley.com\/doi\/toc\/10.1002\/(ISSN)1861-471X.Responsive-Probes-and-Molecular-Bioimaging\">&#8220;Chem. Asian J. VIP&#8221;<\/a><\/span><\/strong>) <\/p>\r\n<p>29.<strong> A microfluidic organic transistor for reversible and real-time monitoring of H<sub>2<\/sub>O<sub>2<\/sub> at ppb\/ppt levels in ultrapure water<\/strong>\r\n<br>Ohshiro, K.; <span style=\"text-decoration: underline;\">Sasaki, Y.<\/span>; Zhou, Q; Didier, P.; Nezaki, T.; Yasuike, T.; Kamiko, M.; Minami, T.<\/br>\r\n<i>Chem. Commun. <\/i><strong>2022<\/strong>, 58, 5721-5724.&nbsp;<\/p>\r\n<p>28.<strong> Multi-Oxyanion Detection by an Organic Field-Effect Transistor with Pattern Recognition Techniques and Its Application to Quantitative Phosphate Sensing in Human Blood Serum<\/strong>\r\n<br>Mitobe, R.; <span style=\"text-decoration: underline;\">Sasaki, Y.<\/span>; Tang, W.; Zhou, Q.; Lyu, X.; Ohshiro, K.; Kamiko, M.; Minami, T.<\/br>\r\n<i>ACS Appl. Mater. Interfaces <\/i><strong>2022<\/strong>, 14, 22903-22911.&nbsp;<\/p>\r\n(This article was selected as<strong><span style=\"color: #0000ff;\">&nbsp;<a style=\"color: #0000ff;\" href=\"https:\/\/pubs.acs.org\/doi\/full\/10.1021\/acsami.1c21092\">a Front Cover <\/a><\/span><\/strong>.) \r\n<p>27.<strong> Oxytocin detection at ppt level in human saliva by an extended-gate-type organic field-effect transistor<\/strong>\r\n<br>Ohshiro, K.; <span style=\"text-decoration: underline;\">Sasaki, Y.<\/span>; Zhou, Q; Lyu, X.; Yamanashi, Y.; Nakahara, K.; Nagaoka, H.; Minami, T.<\/br>\r\n<i>Analyst <\/i><strong>2022<\/strong>, 147, 1055\u20131059.&nbsp;<\/p>\r\n<p>26.<strong> Freshness monitoring of raw fish by detecting biogenic amines using a gold nanoparticle-based colorimetric sensor array<\/strong>\r\n<br>Du, L.; Lao, Y.; <span style=\"text-decoration: underline;\">Sasaki, Y.<\/span>; Lyu, X.; Gao, P.; Wu, S.; Minami, T.; Liu, Y.<\/br>\r\n<i>RSC Adv. <\/i><strong>2022<\/strong>, 12, 6803.&nbsp;<\/p>\r\n<p>25.<strong> A minimized fluorescent chemosensor array utilizing carboxylate-attached polythiophenes on a chip for metal ions detection<\/strong>\r\n<br><u>Sasaki, Y.<\/u>; Lyu, X.;Zhang, Z.; Minami, T.<\/br><i>Front. Chem. Sci. Eng. <\/i><strong>2022<\/strong>, 16, 72.&nbsp;<\/p>\r\n(This article was selected as<strong><span style=\"color: #0000ff;\">&nbsp;<a style=\"color: #0000ff;\" href=\"https:\/\/journal.hep.com.cn\/fcse\/EN\/10.1007\/s11705-021-2037-y\">Frontiers of Chemical Science and Engineering Featured Article <\/a><\/span><\/strong>.) \r\n<p>24.<strong> Toward Food Freshness Monitoring: Coordination Binding\u2013Based Colorimetric Sensor Array for Sulfur-Containing Amino Acids<\/strong>\r\n<br> Lyu, X.; Tang, W.; <u>Sasaki, Y.<\/u>; Zhao, J.; Zheng, T.; Tian Y.; Minami, T.<br>\r\n<i>Front. Chem. <\/i><strong>2021<\/strong>, 9, 685783.&nbsp;<\/p>\r\n<p>23.<strong> Detection of polyamines by an extended gate-type organic transistor functionalized with a carboxylate attached 1,3,4-thiadiazole derivative<\/strong>\r\n<br> Asano, K.; <u>Sasaki, Y.<\/u>; Zhou, Q.; Mitobe, R.; Tang, W.; Lyu, X.; Kamiko, M.; Tanaka, H.; Yamagami, A.; Hagiya, K.; Minami, T.<br>\r\n<i>J. Mater. Chem. C <\/i><strong>2021<\/strong>, 9, 11690.&nbsp;<\/p>\r\n(This article was selected as<strong><span style=\"color: #0000ff;\">&nbsp;<a style=\"color: #0000ff;\" href=\"https:\/\/pubs.rsc.org\/en\/content\/articlelanding\/2021\/tc\/d1tc01542g#!divAbstract\">a Front Cover <\/a><\/span><\/strong> and highlighted by<strong><span style=\"color: #0000ff;\">&nbsp;<a style=\"color: #0000ff;\" https:\/\/pubs.rsc.org\/en\/journals\/articlecollectionlanding?sercode=tc&#038;themeid=d09ac359-9789-44f8-b582-0f688a7c9fa2\">Journal of Materials Chemistry C HOT Papers<\/a><\/span>.<\/strong>)<\/p>\r\n<p>22.<strong> A Printed Paper-Based Anion Sensor Array for Multi-Analyte Classification: Application to On-Site Quantification of Glyphosate<\/strong> \r\n<br>Zhang, Z.; Hamedpour, V.;Lyu, X.;<span style=\"text-decoration: underline;\">Sasaki, Y<\/span>.; Minami, T.<br>\r\n<i>ChemPlusChem <\/i><strong>2021<\/strong>, 86, 798.&nbsp;<\/p>\r\n(This article was selected as<strong><span style=\"color: #0000ff;\">&nbsp;<a style=\"color: #0000ff;\" href=\"https:\/\/chemistry-europe.onlinelibrary.wiley.com\/doi\/full\/10.1002\/cplu.202100041\">a Front Cover Article<\/a><\/span><\/strong> and highlighted by<strong><span style=\"color: #0000ff;\">&nbsp;<a style=\"color: #0000ff;\" href=\"https:\/\/www.chemistryviews.org\/details\/ezine\/11301289\/Paper-Based_Anion_Sensor.html\">Wiley ChemistryViews Article<\/a><\/span>.<\/strong>)<\/p>\r\n<p>21.<strong> 96-well Microtiter Plate Made of Paper: A Printed Chemosensor Array for Quantitative Detection of Saccharides<\/strong>\r\n<br> Lyu, X.; Hamedpour, V.;<span style=\"text-decoration: underline;\">Sasaki, Y<\/span>.;Zhang, Z.; Minami, T.<br><i>Anal. Chem. <\/i><strong>2021<\/strong>, 93, 1179.&nbsp;<\/p>\r\n<p>20.<strong> Easy-to-Prepare Mini-Chemosensor Array for Simultaneous Detection of Cysteine and Glutathione Derivatives<\/strong>\r\n<br><span style=\"text-decoration: underline;\">Sasaki, Y<\/span>.; Lyu, X.; Kubota, R.; Takizawa, S; Minami, T.<br><i>ACS Appl. Bio Mater. <\/i> <strong>2021<\/strong>, 4, 2113. &nbsp;<\/p>\r\n(This article was selected as<strong><span style=\"color: #0000ff;\">&nbsp;<a style=\"color: #0000ff;\" href=\"https:\/\/pubs.acs.org\/doi\/10.1021\/acsabm.0c01275\">a Front Cover<\/a><\/span>.<\/strong>)<\/p>\r\n<p>19.<strong> A Water\u2010Gated Organic Thin\u2010Film Transistor for Glyphosate Detection: A Comparative Study with Fluorescence Sensing<\/strong>\r\n<br><span style=\"text-decoration: underline;\">Sasaki, Y<\/span>.;Asano, K.; Minamiki, T.; Zhang, Z.; Takizawa, S.; Kubota, R.; Minami, T.<br>\r\n<i>Chem. \u2013 Eur. J. <\/i> <strong>2020<\/strong>, 26, 14525. &nbsp;<\/p>\r\n(This article was selected as<strong><span style=\"color: #0000ff;\">&nbsp;<a style=\"color: #0000ff;\" href=\"https:\/\/chemistry-europe.onlinelibrary.wiley.com\/doi\/full\/10.1002\/chem.202003529\">Very Important Paper and a Front Cover article<\/a><\/span>.<\/strong>)<\/p>\r\n<p>18.<strong> Supramolecular Sensor for Astringent Procyanidin C1: Fluorescent Artificial Tongue for Wine Components<\/strong>\r\n<br><span style=\"text-decoration: underline;\">Sasaki, Y<\/span>.; Ito, S.; Zhang, Z.; Lyu, X.; Takizawa, S; Kubota, R.; Minami, T.<br>\r\n<i>Chem. \u2013 Eur. J. <\/i> <strong>2020<\/strong>, 26, 16236.&nbsp; <\/p>\r\n(This article was selected as<strong><span style=\"color: #0000ff;\">&nbsp;<a style=\"color: #0000ff;\" href=\"https:\/\/chemistry-europe.onlinelibrary.wiley.com\/doi\/full\/10.1002\/chem.202002262\">an Inside Front Cover article<\/a><\/span>.<\/strong>)<\/p>\r\n<p>17. <strong> Accurate chiral pattern recognition for amines, albeit a single chemosensor<\/strong><br>\r\n<span style=\"text-decoration: underline;\">Sasaki, Y<\/span>.; Kojima, S.; Hamedpour, V.; Kubota, R.; Takizawa, S; Yoshikawa, I.; Houjou, H.; Kubo, Y.; Minami, T.<br>\r\n<i>Chem. Sci.<\/i> <strong>2020<\/strong>, 11, 3790.&nbsp; <\/p>\r\n(This article was selected as<strong><span style=\"color: #0000ff;\">&nbsp;<a style=\"color: #0000ff;\" href=\"https:\/\/pubs.rsc.org\/en\/content\/articlelanding\/2020\/sc\/d0sc00194e#!divAbstract\">2020 Chemical Science HOT Article and an Inside Front Cover article<\/a><\/span>.<\/strong>)<\/p>\r\n<p>16.<strong> Porous microneedles on a paper for screening test of prediabetes<\/strong>\r\n<br>Lee, H.; Bonfante, G.; <span style=\"text-decoration: underline;\">Sasaki, Y<\/span>.; Takama, N.; Minami, T.; Kim, B.<br>\r\n<i>Med. Devices Sens. <\/i> <strong>2020<\/strong>, 3, e10109.&nbsp; <\/p>\r\n(This article was selected as<strong><span style=\"color: #0000ff;\">&nbsp;<a style=\"color: #0000ff;\" href=\"https:\/\/onlinelibrary.wiley.com\/doi\/full\/10.1002\/mds3.10109\"> a Front Cover article<\/a><\/span>.<\/strong>)<\/p>\r\n<p>15.<strong> Fluorescence Anion Chemosensor Array Based on Pyrenylboronic Acid<\/strong><br>Cao, Z.; Cao, Y.; Kubota, R.; <span style=\"text-decoration: underline;\">Sasaki, Y<\/span>.; Asano, K.; Lyu, X.; Zhang, Z.; Zhou, Q.; Zhao, X.; Xu, X.; Wu, S.; Minami, T.; Liu, Y.<br><i>Front. Chem. <\/i> <strong>2020<\/strong>, 8, 414. &nbsp; <\/p>\r\n<p>14.<strong> Microfluidic system with extended-gate type organic transistor for real-time glucose monitoring<\/strong>\r\n<br>Didier, P.; Lobato-Dauzier, N.; Cl\u00e9ment, N.; Genot, A. J.; <span style=\"text-decoration: underline;\">Sasaki, Y<\/span>.; Leclerc, \u00c9.; Minamiki, T.; Sakai, Y.; Fujii, T.; Minami, T.<br>\r\n<i>ChemElectroChem<\/i> <strong>2020<\/strong>, 7, 1332.&nbsp; <\/p>\r\n(This article was selected as<strong><span style=\"color: #0000ff;\">&nbsp;<a style=\"color: #0000ff;\" href=\"https:\/\/chemistry-europe.onlinelibrary.wiley.com\/doi\/full\/10.1002\/celc.201902013\">a Front Cover article<\/a><\/span>.<\/strong>)<\/p>\r\n<p>13.<strong> An Extended-Gate Type Organic Transistor with a Solution Processable Small-Molecule Semiconductor Capable of Detecting Glutathione in Water<\/strong>\r\n<br>Asano, K.; Aiko, M.; Yamanashi, Y.; <span style=\"text-decoration: underline;\">Sasaki, Y<\/span>.; Nakahara, K.; Minamiki, T.; Koike, T.; Minami, T.<br>\r\n<i>Jpn. J. Appl. Phys.<\/i> <strong>2020<\/strong>, 59, SGGG07. &nbsp; <\/p>\r\n<p>12.<strong> Simplest Chemosensor Array for Phosphorylated Saccharides<\/strong>\r\n<br><span style=\"text-decoration: underline;\">Sasaki, Y<\/span>.; Leclerc, \u00c9.; Hamedpour, V.; Kubota, R.; Takizawa, S.; Sakai, Y.; Minami, T.<br>\r\n<i>Anal. Chem.<\/i> <strong>2019<\/strong>, 91, 15570. &nbsp;<\/p>\r\n<p>11.<strong> Simple Colorimetric Chemosensor Array for Oxyanions: Quantitative Assay for Herbicide Glyphosate<\/strong>\r\n<br>Hamedpour, V.*; <span style=\"text-decoration: underline;\">Sasaki, Y<\/span>.*; Zhang, Z.*; Kubota, R.; Minami, T.<br>\r\n<i>Anal. Chem.<\/i> <strong>2019<\/strong>, 91, 13627. &nbsp;<br>\r\n(*These authors equally contributed to this paper.)<\/p>\r\n<p>10.<strong> Facile Indicator Displacement Assay-based Supramolecular Chemosensor: Quantitative Colorimetric Determination of Xylose and Glucose in the Presence of Ascorbic Acid<\/strong>\r\n<br><span style=\"text-decoration: underline;\">Sasaki, Y<\/span>.; Hamedpour, V.; Kubota, R.; He, Y.; Torii, Y.;Minami, T.<br>\r\n<i>Chem. Lett.<\/i> <strong>2019<\/strong>, 48, 1368. &nbsp;<\/p>\r\n<p>9.<strong> A Saccharide Chemosensor Array Developed Based on an Indicator Displacement Assay Using a Combination of Commercially Available Reagents<\/strong>\r\n<br><span style=\"text-decoration: underline;\">Sasaki, Y<\/span>.; Zhang, Z.; Minami, T.<br>\r\n<i>Front. Chem.<\/i> <strong>2019<\/strong>, 7, 49. &nbsp;<\/p>\r\n<p>8.<strong> An electrolyte-gated polythiophene transistor for the detection of biogenic amines in water<\/strong>\r\n<br>Minamiki, T.; Hashima, Y.; <span style=\"text-decoration: underline;\">Sasaki, Y<\/span>.; Minami, T.<br>\r\n<i>Chem. Commun.<\/i> <strong> 2018<\/strong>, 54, 6907-6910. &nbsp;<\/p>\r\n(This article was advertised in <strong><span style=\"color: #0000ff;\">&nbsp;<a style=\"color: #0000ff;\" href=\" https:\/\/twitter.com\/ChemCommun\/status\/1019945074103406592 \">a ChemComm Twitter account <\/a><\/span>.<\/strong>)<\/p>\r\n<p>7.<strong> An organic transistor-based electrical assay for copper(II) in water<\/strong>\r\n<br><span style=\"text-decoration: underline;\">Sasaki, Y<\/span>.; Minami, T.; Minamiki, T.; Tokito, S.<br>\r\n<i>Electrochemistry<\/i><strong> 2017<\/strong>, 85, 775\u2013778. &nbsp;<\/p>\r\n<p>6.<strong> A molecular self-assembled colourimetric chemosensor array for simultaneous detection of metal ions in water<\/strong>\r\n<br><span style=\"text-decoration: underline;\">Sasaki, Y<\/span>.; Minamiki, T.; Tokito, S.; Minami, T.<br>\r\n<i>Chem. Commun.<\/i><strong> 2017<\/strong>, 53, 6561-6564.&nbsp; <\/p>\r\n(This article was selected as<strong><span style=\"color: #0000ff;\">&nbsp;<a style=\"color: #0000ff;\" href=\"http:\/\/pubs.rsc.org\/is\/content\/articlelanding\/2017\/cc\/c7cc90235b#!divAbstract\">an Inside Front Cover article<\/a><\/span>.<\/strong>)<\/p>\r\n<p>5.<strong> Label-Free Direct Electrical Detection of a Histidine-Rich Protein with Sub-Femtomolar Sensitivity using an Organic Field-Effect Transistor<\/strong>\r\n<br>Minamiki, T*.; <span style=\"text-decoration: underline;\">Sasaki, Y*<\/span>.; Tokito, S.; Minami, T.<br>\r\n<i>ChemistryOpen<\/i><strong> 2017<\/strong>, 6, 472-475. &nbsp; <\/p>\r\n(*These authors equally contributed to this paper.) \r\n<br> (This article was selected as<strong><span style=\"color: #0000ff;\">&nbsp;<a style=\"color: #0000ff;\" href=\"http:\/\/onlinelibrary.wiley.com\/doi\/10.1002\/open.201700125\/full\">a Front Cover article<\/a><\/span>.<\/strong>)<\/p>\r\n<p>4.<strong> Label-Free Detection of Human Glycoprotein (CgA) Using an Extended-Gated Organic Transistor-Based Immunosensor<\/strong>\r\n <br>Minamiki, T.; Minami, T.; <span style=\"text-decoration: underline;\">Sasaki, Y<\/span>.; Wakida, S.; Kurita, R.; Niwa, O.; Tokito, S.<br>\r\n<i>Sensors<\/i><strong> 2016<\/strong>, 16, 2033. &nbsp; <\/p>\r\n<p>3.<strong> Selective nitrate detection by an enzymatic sensor based on an extended-gate type organic field-effect transistor<\/strong>\r\n<br>Minami, T.; <span style=\"text-decoration: underline;\">Sasaki, Y.<\/span>; Minamiki, T.; Wakida, S.; Kurita, R.; Niwa, O.; Tokito, S.<br>\r\n<i>Biosens. Bioelectron.<\/i><strong> 2016<\/strong>, 81, 87. &nbsp; <\/p>\r\n<p>2.<strong> A mercury (II) ion sensor device based on an organic field effect transistor with an extended-gate modified by dipicolylamine<\/strong>\r\n<br>Minami, T.; <span style=\"text-decoration: underline;\">Sasaki, Y.<\/span>; Minamiki, T.; Koutnik, P.; Anzenbacher Jr., P.; Tokito, S.<br>\r\n<i>Chem. Commun.<\/i><strong> 2015<\/strong>, 51, 17666. &nbsp; <\/p>\r\n(This article was selected as<span style=\"color: #0000ff;\"><a style=\"color: #0000ff;\" href=\"http:\/\/pubs.rsc.org\/is\/content\/articlelanding\/2015\/cc\/c5cc90554k#!divAbstract\"><strong> a Back Cover article<\/a><\/span><\/strong>.)<\/p>\r\n<p>1.<strong> An Organic Field-Effect Transistor with an Extended-Gate Electrode Capable of Detecting Human Immunoglobulin A<\/strong>\r\n<br>Minamiki, T.; Minami, T.; <u>Sasaki, Y.<\/u>; Kurita, R.; Niwa, O.; Wakida, S.; Tokito, S.<br>\r\n<i>Anal. Sci.<\/i><strong> 2015<\/strong>, 31, 725. &nbsp; <\/p>\r\n(This article was selected as<strong><span style=\"color: #0000ff;\"><a style=\"color: #0000ff;\" href=\"http:\/\/www.jsac.or.jp\/analsci\/mcpa.php\">The TOP 3 papers most cited during 2016 in Analytical Sciences.<\/a><\/span><\/strong>)<\/p>\r\n<hr>\r\n<p><strong>\u25a0 Reviews<\/strong><be>\r\n<p>11.<strong><a href=\"https:\/\/onlinelibrary.wiley.com\/doi\/epdf\/10.1002\/cnma.202300335\"> Methodologies for Spontaneous Preparation of Chemosensors and Their Arrays Using Off-the-Shelf Reagents<\/a><\/strong>\r\n<br><u>Sasaki, Y.<\/u>; Minami, T.<br>\r\n<i>ChemNanoMat<\/i> <strong>2024<\/strong>, 10, e202300335.<strong> (Invited Review)<\/strong><\/p>\r\n<p>10.<strong> Preparation of Molecular Self-Assembled Chemosensors without Organic Synthesis and Their Arrays<\/strong><br><u>Sasaki, Y.<\/u>; Minami, T.<br>\r\n<i>BUNSEKI KAGAKU<\/i> <strong>2023<\/strong>, 72, 503\u2013510. <\/p>\r\n<p>9.<strong> Supramolecular optical sensor arrays for on-site analytical devices<\/strong>\r\n<br><u>Sasaki, Y.<\/u>; Lyu, X.; Tang, W.; Wu, H.; Minami, T.<br>\r\n<i>J. Photochem. Photobiol. C<\/i><strong> 2022<\/strong>, 51, 100475. <strong> (Invited Review)<\/strong> &nbsp; <\/p>\r\n<p>8.<strong> Polythiophene-based Chemical Sensors: Toward On-site Supramolecular Analytical Devices<\/strong>\r\n<br><u>Sasaki, Y.<\/u>; Lyu, X.; Tang, W.; Wu, H.; Minami, T.<br>\r\n<i>Bull. Chem. Soc. Jpn.<\/i><strong> 2021<\/strong>, 94, 2613. <strong> (Invited Review)<\/strong> &nbsp; <\/p>\r\n(This article was selected as<span style=\"color: #0000ff;\"><a style=\"color: #0000ff;\" href=\"https:\/\/www.journal.csj.jp\/toc\/bcsj\/current\"><strong> a Cover<\/a><\/span><\/strong>.)<\/p>\r\n<p>7.<strong> Indicator Displacement Assay-based Chemosensor Arrays for Saccharides using Off-the-Shelf Materials toward Simultaneous On-site Detection on Paper<\/strong>\r\n<br> <u>Sasaki, Y.<\/u>; Lyu, X.; Zhou, Q.; Minami, T.<br>\r\n<i>Chem. Lett. <\/i><strong> 2021<\/strong>, 50, 987. <strong> (Invited Review)<\/strong> &nbsp; <\/p>\r\n(This article was selected as<span style=\"color: #0000ff;\"><a style=\"color: #0000ff;\" href=\"https:\/\/www.journal.csj.jp\/doi\/full\/10.1246\/cl.200962\"><strong> an Inside Cover<\/a><\/span><\/strong>.)<\/p>\r\n<p>6.<strong> Molecular self-assembled chemosensors and their arrays <\/strong>\r\n<br> <u>Sasaki, Y.<\/u>; Kubota, R.; Minami, T.<br>\r\n<i> Coord. Chem. Rev. <\/i><strong> 2021<\/strong>, 429, 213607. <strong> (Invited Review)<\/strong> &nbsp; <\/p>\r\n<p>5.<strong> Extended-gate type Organic Field-effect Transistors for the Detection of Potential Psychological Stress Markers <\/strong>\r\n<br>Didier, P.; Blomenkamp H.; Kubota, R.; <u>Sasaki, Y.<\/u>; Minami, T.<br>\r\n<i>Sens. Mater. <\/i><strong> 2021<\/strong>, 33, 211. <strong> (Special Issue)<\/strong> &nbsp; <\/p>\r\n<p>4.<strong> Protein Assays on Organic Electronics: Rational Device and Material Designs for Organic Transistor-Based Sensors <\/strong>\r\n<br>Minamiki, T.; Kubota, R.; <u>Sasaki, Y.<\/u>; Asano, K.; Minami, T.<br>\r\n<i>ChemistryOpen <\/i><strong> 2020<\/strong>, 9, 573. <strong> (Invited Paper)<\/strong> &nbsp; <\/p>\r\n(This article was selected as<span style=\"color: #0000ff;\"><a style=\"color: #0000ff;\" href=\" https:\/\/chemistry-europe.onlinelibrary.wiley.com\/doi\/10.1002\/open.202000025 \"><strong> Frontspice<\/a><\/span><\/strong>.)<\/p>\r\n<p>3.<strong> Chemical Sensing Platforms Based on Organic Thin-Film Transistors Functionalized with Artificial Receptors <\/strong>\r\n<br>Kubota, R.; <u>Sasaki, Y.<\/u>; Minamiki, T.; Minami, T.<br>\r\n<i>ACS Sens. <\/i><strong> 2019<\/strong>, 4, 2571. <strong> (Invited Paper)<\/strong> &nbsp; <\/p>\r\n(This article was selected as<span style=\"color: #0000ff;\"><a style=\"color: #0000ff;\" https:\/\/pubs.acs.org\/doi\/abs\/10.1021\/acssensors.9b01114 \"><strong> a Supplementary Cover<\/a><\/span><\/strong>.)<\/p>\r\n<p>2.<strong> Development of polymer field-effect transistor-based immunoassays <\/strong>\r\n<br>Minamiki, T.; <u>Sasaki, Y.<\/u>; Su, S.; Minami, T.<br>\r\n<i>Polym. J. <\/i><strong> 2019<\/strong>, 51, 1-9. <strong> (Invited and Highlighted Paper)<\/strong> &nbsp; <\/p>\r\n<p>1.<strong> Development of enzymatic sensors based on extended-gate type organic field-effect transistors<\/strong>\r\n<br>Minami, T.; Minamiki, T.; <u>Sasaki, Y.<\/u><br>\r\n<i>Electrochemistry <\/i><strong> 2018<\/strong>, 86, 303. <strong> (Invited and Featured Article)<\/strong> &nbsp; <\/p>\r\n<hr>\r\n<p><strong>\u25a0 Awards<\/strong>\r\n<p>14.<strong> Inoue Research Award for Young Scientists<\/strong><br>\r\n(Inoue Foundation for Science) (Dec. 2023) &nbsp; <\/p>\r\n<p>13.<strong> 2023 PCCP Prize<\/strong><br>\r\n(The Chemical Society of Japan) (Mar. 2023) &nbsp; <\/p>\r\n<p>12.<strong> Poster Presentaion Award<\/strong><br>\r\n(The 31st Polymer Materials Forum) (Nov. 2022) &nbsp; <\/p>\r\n<p>11.<strong> The First Place Honor, Yayoi Award, Institute of Industrial Science, the University of Tokyo <\/strong><br> (Sep. 2022) &nbsp; <\/p>\r\n<p>10.<strong> Young Resercher Support For Attending Lindau Nobel Laureate Meetings<\/strong><br>(Japan Society for the Promotion of Science) (Jul. 2022) &nbsp; <\/p>\r\n<p>9.<strong> Dean&#8217;s Award, Graduate School of Engineering, The University of Tokyo <\/strong><br> (Mar. 2021) &nbsp; <\/p>\r\n<p>8.<strong> Outstanding Presentation Award <\/strong><br> (IIS PhD Student Live 2019) (Jul. 2019) &nbsp; <\/p>\r\n<p>7.<strong> Invited Doctoral Student Lecture, Kanto Branch, The Japan Society for Analytical Chemistry<\/strong><br> (The Japan Society for Analytical Chemistry, Kanto Branch) (Jul. 2019) &nbsp; <\/p>\r\n<p>6.<strong> CSJ Student Presentation Award 2019 <\/strong><br> (The Chemical Society of Japan 99th Spring Meeting) (Mar. 2019) &nbsp; <\/p>\r\n<p>5.<strong> Invention Award <\/strong><br> \r\n(The 12th University of Tokyo Student Invention Contest) (Feb. 2019) &nbsp; <\/p>\r\n<p>4.<strong> Poster Award <\/strong><br> \r\n(The 9th Shanghai International Symposium on Analytical Chemistry (Shanghai, China)) (Nov. 2018) &nbsp; <\/p>\r\n<p>3.<strong> Excellent Poster Presentation Award <\/strong><br>\r\n(Kanto Society of Polymer Science, 2017 Student Presentation and Exchange Meeting) (Mar. 2018) &nbsp; <\/p>\r\n<p>2.<strong> 77th Industrial Symposium Young Poster Award <\/strong><br> \r\n(The 77th Annual Meeting of the Japanese Society for Analytical Chemistry) (May. 2017) &nbsp; <\/p>\r\n<p>1.<strong> 5th Poster Award <\/strong><br> \r\n(The 62nd Spring Meeting of the Japan Society of Applied Physics) (Jul. 2015) &nbsp; <\/p>\r\n<hr>\r\n<p><strong>\u25a0 International Conference<\/strong>\r\n<p>11.<strong> Molecular self-assembled chemosensors and their arrays\r\n<\/strong><\/p>\r\n<p>(oral) <u>Yui Sasaki<\/u><\/p>\r\n<p>SPIE Photonics West 2024, San Francisco, USA, January, 2024<\/p>\r\n<p>10.<strong> Accurate pattern recognition for chiral amines from just a single chemosensor\r\n<\/strong><\/p>\r\n<p>(oral) <u>Yui Sasaki<\/u> Soya Kojima, Vahid Hamedpour, Riku Kubota, Shin-ya Takizawa, Isao Yoshikawa, Hirohiko Houjou, Yuji Kubo, and Tsuyoshi Minami<\/p>\r\n<p>Pacifichem 2021, online, December, 2021<\/p>\r\n<p>9.<strong>Development of A Glyphosate Sensor Based on Polythiophene Derivatives<\/strong><\/p>\r\n<p>(poster) <u>Yui Sasaki<\/u> and Tsuyoshi Minami<\/p>\r\n<p>ISMSC2019, Lecce, Italy, June, 2019<\/p>\r\n<p>8.<strong> Molecular Self-Assembled Chemosensor Array for Metal Ions<\/strong><\/p>\r\n<p>(poster) <u>Yui Sasaki<\/u> and Tsuyoshi Minami<\/p>\r\n<p>The 9th Shanghai International Symposium on Analytical Chemistry, Shanghai, China, November, 2018<br>(<strong><a style=\"color: #0000ff;\">Poster Award<\/a><\/strong>)<\/p>\r\n<p>7.<strong> Molecular Self-assembled Chemosensor Arrays for Simultaneous Detection of Saccharides<\/strong><\/p>\r\n<p>(poster) <u>Yui Sasaki<\/u>, Zhoujie Zhang, and Tsuyoshi Minami<\/p>\r\n<p>ISMSC2018, Quebec city, Canada, July, 2018<\/p>\r\n<p>6.<strong> Label-Free Electrical Detection of a Histidine-Rich Protein with Sub-Femtomolar Sensitivity using an Organic Field-Effect Transistor<\/strong><\/p>\r\n<p>(poster) <u>Yui Sasaki<\/u>, Tsukuru Minamiki, and Tsuyoshi Minami<\/p>\r\n<p>CEMsupra2018, The University of Tokyo, January, 2018<\/p>\r\n<p>5.<strong> Organic Transistors Can Electrically Read&nbsp;Out Molecular Recognition Behaviors of&nbsp;Supramolecular Receptors<\/strong><\/p>\r\n<p>(oral) Tsuyoshi Minami, Tsukuru Minamiki, and&nbsp;<u>Yui Sasaki<\/u><\/p>\r\n<p>MSMLG2016,&nbsp;University of Bath,&nbsp;UK, July, 2016<\/p>\r\n<p>4.&nbsp; <strong>Organic Transistor Based Biofets Towards Stress Monitoring<\/strong><\/p>\r\n<p>(poster)Shin-ichi Wakida, Tsuyoshi Minami, Tsukuru Minamiki, <span style=\"text-decoration: underline;\">Yui Sasaki<\/span>, Ryoji Kurita, Osamu Niwa, and Shizuo Tokito<\/p>\r\n<p>IMCS 2016, Ramada Plaza Jeju, Jeju Island, Korea, July, 2016<\/p>\r\n<p>3. <strong>A Mercury(II) Ion Sensor Device based on an Organic Field Effect Transistor with an Extended-Gate Modified by Dipicolylamine<\/strong><\/p>\r\n<p>(poster)Tsuyoshi Minami, \u3007Yui Sasaki, Tsukuru Minamiki, and Shizuo Tokito<\/p>\r\n<p>CEMsupra2016, The University of Tokyo, January, 2016<\/p>\r\n<p>2. <strong>Detection of heavy metal ions and phosphates using organic field effect transistors functionalized with dipicolylamine derivatives<\/strong><\/p>\r\n<p>(poster) Tsuyoshi Minami, Tsukuru Minamiki, <u>Yui Sasaki<\/u>, and Shizuo Tokito<\/p>\r\n<p>The International Chemical Congress of Pacific Basin Societies 2015 (Pacifichem 2015), Honolulu, Hawaii, USA, December, 2015<\/p>\r\n<p>1. <strong>Detection of Mercury (II) Ion in Water using an Extended-gate Type Organic Field Effect Transistor Functionalized with a Dipicolylamine Derivative<\/strong><\/p>\r\n<p>(oral) Tsuyoshi Minami, <u>Yui Sasaki<\/u>, Tsukuru Minamiki, and Shizuo Tokito<\/p>\r\n<p>2015 International Conference on Flexible and Printed Electronics (2015 ICFPE), Taipei World Trade Center Nangang Exhibition Hall, Taiwan, October, 2015<\/p>\r\n","protected":false},"excerpt":{"rendered":"<p>&nbsp; &nbsp; &nbsp; &nbsp; &nbsp; &nbsp; &nbsp; Lecturer \u25a0 ContactE-mail: sayui[at]iis.u-tokyo.ac.jp \u25a0 Researcher Information \u25a0 Education Mar. 2016 B.Eng. Department of Polymer Science and Engineering, Faculty of Engineering, Yamagata University &nbsp; Sep. 2017 M.Eng. Department of Organic Materials Science, Graduate &hellip; <a href=\"https:\/\/www.tminami.iis.u-tokyo.ac.jp\/en\/?page_id=48\">Continue reading <span class=\"meta-nav\">&rarr;<\/span><\/a><\/p>\n","protected":false},"author":1,"featured_media":0,"parent":6,"menu_order":0,"comment_status":"closed","ping_status":"closed","template":"","meta":{"footnotes":""},"_links":{"self":[{"href":"https:\/\/www.tminami.iis.u-tokyo.ac.jp\/en\/index.php?rest_route=\/wp\/v2\/pages\/48"}],"collection":[{"href":"https:\/\/www.tminami.iis.u-tokyo.ac.jp\/en\/index.php?rest_route=\/wp\/v2\/pages"}],"about":[{"href":"https:\/\/www.tminami.iis.u-tokyo.ac.jp\/en\/index.php?rest_route=\/wp\/v2\/types\/page"}],"author":[{"embeddable":true,"href":"https:\/\/www.tminami.iis.u-tokyo.ac.jp\/en\/index.php?rest_route=\/wp\/v2\/users\/1"}],"replies":[{"embeddable":true,"href":"https:\/\/www.tminami.iis.u-tokyo.ac.jp\/en\/index.php?rest_route=%2Fwp%2Fv2%2Fcomments&post=48"}],"version-history":[{"count":120,"href":"https:\/\/www.tminami.iis.u-tokyo.ac.jp\/en\/index.php?rest_route=\/wp\/v2\/pages\/48\/revisions"}],"predecessor-version":[{"id":7399,"href":"https:\/\/www.tminami.iis.u-tokyo.ac.jp\/en\/index.php?rest_route=\/wp\/v2\/pages\/48\/revisions\/7399"}],"up":[{"embeddable":true,"href":"https:\/\/www.tminami.iis.u-tokyo.ac.jp\/en\/index.php?rest_route=\/wp\/v2\/pages\/6"}],"wp:attachment":[{"href":"https:\/\/www.tminami.iis.u-tokyo.ac.jp\/en\/index.php?rest_route=%2Fwp%2Fv2%2Fmedia&parent=48"}],"curies":[{"name":"wp","href":"https:\/\/api.w.org\/{rel}","templated":true}]}}