¹Ö±éÈÖ¹æ:3I01¡¢Ê¬Îà:°ìÈÌ¹Ö±é ¤Î¸¡º÷·ë²Ì
-
3I01-04
-
2023/03/16 09:00
-
¥ß¡¼¥Æ¥£¥ó¥°¥ë¡¼¥à I
-
Caenorhabditis elegans¤Ë¤ª¤±¤ë¿À·ÐÊÑÀ¼À´µ¤Î¿ÊŸ¤ËµÚ¤Ü¤¹¥Ó¥¿¥ß¥óCÄã²¼¤Î±Æ¶Á¤Î²òÀÏ
Analysis of the effect of decreased vitamin C level on the progression of neurodegenerative disease using Caenorhabditis elegans
-
¡ûÀõÌî ľÅÍ1¡¢ÈþÆ£ ͧÇî1,2¡¢ÅÏîµ Ê¸Íº1,2¡¢é®ÅÄ ¹Ôů1,2
¡ûNAOTO ASANO1, TOMOHIRO BITO1,2, FUMIO WATANABE1,2, YUKINORI YABUTA1,2
1Ä»Â籡»ý³¡¢2Ä»¼èÂçÇÀ
1Graduate School of Sustainability Science, Tottori Univ., 2Tottori Univ.
-
3I01-05
-
2023/03/16 09:00
-
¥ß¡¼¥Æ¥£¥ó¥°¥ë¡¼¥à I
-
¥Ó¥¿¥ß¥óB12ÉÔ¤ˤè¤ë¥ß¥È¥³¥ó¥É¥ê¥¢µ¡Ç½¤Ø¤Î±Æ¶Á
Effects of vitamin B12 deficiency on mitochondrial function
-
¡û¿¼»³ ¿µ²ð1¡¢»³ËÜ ÃÒÂç2¡¢ÄÄ ðÉØü1¡¢ÈþÆ£ ͧÇî1,2¡¢ÅÏîµ Ê¸Íº1,2¡¢é®ÅÄ ¹Ôů1,2
¡ûShinsuke MIYAMA1, Tomohiro YAMAMOTO2, Jixu Chen1, Tomohiro BITOU1,2, Humio WATANABE1,2, Yukinori YABUTA1,2
1Ä»Â籡»ý³¡¢2Ä»¼èÂçÇÀ
1Graduate School of Sustainability Science, Tottori Univ., 2Tottori Univ.
-
3I01-06
-
2023/03/16 09:00
-
¥ß¡¼¥Æ¥£¥ó¥°¥ë¡¼¥à I
-
¥á¥Á¥ª¥Ë¥ó¹çÀ®¹ÚÁÇ°äÅÁ»ÒÇ˲õÀþÃî¤Î¥Û¥â¥·¥¹¥Æ¥¤¥óÂå¼Õ
Homocysteine metabolism in the knockout methionine synthase Caenorhabditis elegans mutans.
-
¡û°Ë°æ Þæ¾1¡¢ÄÄ ðÉØü1¡¢ÈþÆ£ ͧÇî1,2¡¢Àи¶ µý1,2¡¢ÅÏîµ Ê¸Íº1,2¡¢é®ÅÄ ¹Ôů1,2
¡ûKosuke Ii1, JIXU CHEN1, Tomohiro BITOU1,2, Atsushi ISIHARA1,2, Fumio WATANABE1,2, Yukinori YABUTA1,2
1Ä»Â籡»ý³¡¢2Ä»¼èÂçÇÀ
1Graduate school of Sustainabiliy Science, Tottori Univ., 2Tottori Univ.
-
3I01-07
-
2023/03/16 09:00
-
¥ß¡¼¥Æ¥£¥ó¥°¥ë¡¼¥à I
-
ÀþÃîC. elegans¤ÎÍÄÃîµÙ̲¤òÀ©¸æ¤¹¤ëûº¿¿À·Ð¥Ú¥×¥Á¥É¼õÍÆÂÎNPR-22¤Îµ¡Ç½²òÀÏ
Molecular mechanism of NPR-22, a C. elegans short neuropeptide receptor, relevant to larval diapause
-
¡ûÁ°²ì æÆ1¡¢³§ÌÚ Í§²Ö2¡¢ºäËÜ Êþ·Ã2¡¢´äùõ ¿ò1,2¡¢²ÏÌî ¶¯1,2
¡ûSho MAEGA1, Yuka MINAGI2, Tomoe SAKAMOTO2, Takashi IWASAKI1,2, Tsuyoshi KAWANO1,2
1Ä»¼èÂçÇÀ¡¢2Ä»¼èÂ籡»ý³À
1Tottori Univ., 2Graduate School of Tottori Univ.
-
3I01-08
-
2023/03/16 09:00
-
¥ß¡¼¥Æ¥£¥ó¥°¥ë¡¼¥à I
-
Æý»À¶ÝͳÍè¦Ã¥ê¥Î¥ì¥ó»ÀÂå¼Õ»ºÊª¦ÃKetoD¡¢¦ÃHYD¤Ï¥Ò¥È¾®Ä²¥ª¥ë¥¬¥Î¥¤¥É¤Î»é¼ÁÂå¼Õ¤ò²þÁ±¤¹¤ëPPAR¦Ä¥ê¥¬¥ó¥É¤Ç¤¢¤ë
Lactic acid bacteria-derived ¦Ã-linolenic acid metabolites are PPAR¦Ä ligands that enhance lipid metabolism in human intestinal organoids.
-
¡ûÌî¸ý Æ×1¡¢Î¦ ˲1¡¢¹â¶¶ ͵1¡¢»³Æâ ¾ÍÀ¸1¡¢º´Æ£ ¿µÂÀϺ2¡¢À¶Ìî ¹¨3¡¢´ßÌî ½Å¿®4¡¢¾®Àî ½ç4¡¢±ÊÅÄ ¹¨¼¡1¡¢º´Æ£ δ°ìϺ1¡¢À¶¿å À¿1
¡ûMakoto NOGUCHI1, Peng LU1, YU TAKAHASHI1, Yoshio YAMAUCHI1, Shintaro SATO2, Hiroshi KIYONO3, Shigenobu KISHINO4, Jun OGAWA4, Koji NAGATA1, Ryuichiro SATO1, Makoto SHIMIZU1
1ÅìÂ籡¡¦ÇÀÀ¸²Ê¡¦±þÀ¸²½¡¢2Ï²λ³¸©°åÂç³Ø¡¦Ìô¡¢3ÀéÍÕÂ硦̤Íè°åÎŶµ°é¸¦µæµ¡¹½¡¢4µþÂ籡 ¡¦ ÇÀ ¡¦ ±þÍÑÀ¸Ì¿
1Dept. of Appl. Biol. Chem., Grad. Sch. of Agr. and Life Sci., Univ. of Tokyo, 2Wakayama Med. Univ, 3Chiba Univ., 4Kyoto Univ.
-
3I01-10
-
2023/03/16 09:00
-
¥ß¡¼¥Æ¥£¥ó¥°¥ë¡¼¥à I
-
p38MAPK¥·¥°¥Ê¥ë¤¬¥Ò¥ÈiPSºÙ˦ͳÍè¹ü³Ê¶ÚºÙ˦¤Ë¤ª¤¤¤Æ¹ü³Ê¶ÚÏ·²½¤òÀ©¸æ¤¹¤ë
p38MAPK is a novel regulator of muscular senescence in human iPSC-derived myocytes
-
¡ûº´Æ£ ¹°¼ù1¡¢Ý¯°æ ±Ñ½Ó2¡¢¾åÊ¿ ÀµÆ»3¡¢¹âÆ£ ϵ±4¡¢¹â²° ½á°ìϺ4¡¢»³Æâ ¾ÍÀ¸1¡¢º´Æ£ δ°ìϺ1¡¢À¶¿å À¿1
¡ûHiroki SATO1, Hidetoshi SAKURAI2, Masamichi KAMIHIRA3, Kazuaki TAKAFUJI4, Junichiro TAKAYA4, Yoshio YAMAUCHI1, Ryuichiro SATO1, Makoto SHIMIZU1
1ÅìÂ籡¡¦ÇÀÀ¸²Ê¡¦±þÀ¸²½¡¢2µþÂ硦CiRA¡¢3¶åÂ籡¹©¡¢4¥µ¥ó¥È¥ê¡¼¥°¥í¡¼¥Ð¥ë¥¤¥Î¥Ù¡¼¥·¥ç¥ó¥»¥ó¥¿¡¼ (³ô)
1Dept. of Appl. Biol. Chem., Grad. Sch. of Agr. and Life Sci., Univ. of Tokyo, 2CiRA¡¦Kyoto Univ., 3Dept. of Chem. Eng., Kyushu Univ., 4Suntory Global Innovation Center Ltd.