¹Ù·½QQ
¹Ù·½Î¢ÐÅ
ÊÖ»ú°æ
ÄúµÄλÖãºÊ×Ò³ >˶ʿÉúµ¼Ê¦>ÖÐÒ©Ò©Àí·½Ïò>ÏêϸÄÚÈÝ

ÖÐÒ©Ò©Àí·½Ïò

ÍõС²©

                                                                                02569d6176c74986802b6126bdd3de33.Jpeg

Ò»¡¢¸öÈ˼ò½é

    ÍõС²©£¬1991Äê3Ô£¬ÉÂÎ÷μÄÏÈË£¬²©Ê¿/²©Ê¿ºó£¬¸±½ÌÊÚ£¬Ë¶Ê¿Ñо¿Éúµ¼Ê¦¡£±¾¿Æ£¨2014Ä꣩ºÍ˶ʿ£¨2017Ä꣩±ÏÒµÓÚÄþÏÄÒ½¿Æ´óѧ£¬2020Ä격ʿ±ÏÒµÓÚmg老虎机游戏¡£2020Äê-2023ÄêÔÚmg老虎机游戏ÖÐÎ÷Ò½½áºÏ»ù´¡½øÐв©Ê¿ºó¿ÆÑÐѵÁ·¡£Ä¿Ç°ÈÎÖ°ÓÚmg老虎机游戏£¬ÖÐÒ½Ò©´´ÐÂÑо¿Ôº/½»²æÑ§¿ÆÑо¿Ôº¡£»ñµÃ2024-2026Äê¶ÈÖлªÖÐҽҩѧ»áÇàÄêÍоÙÈ˲š£Ö÷³Ö¹ú¼Ò×ÔÈ»¿ÆÑ§»ù½ð2ÏÖйú²©Ê¿ºó»ù½ð1ÏËÄ´¨Ê¡¿Æ¼¼ÌüÏîÄ¿2Ï³É¶¼ÊÐίԺУÁªºÏ»ù½ð1Ïî¡£Ñо¿·½ÏòΪ²ØÒ©·ÀÖθßÔ­²¡¡£

    µç×ÓÓÊÏ䣺VitaDrwang@cdutcm.edu.cn

¶þ¡¢´ú±íÐԳɹû£¨¿Éº¬³Ðµ£ÏîÄ¿¡¢·¢±íÂÛÎÄ¡¢ÂÛÖø¡¢»ñ½±µÈ£©

£¨Ò»£©³Ðµ£ÏîÄ¿

1.¹ú¼Ò×ÔÈ»¿ÆÑ§»ù½ð£¬ÃæÉÏÏîÄ¿£¬82474185£¬²ØÒ©ÅµµÏ¿µµ÷¿Ø¸»ÂíËá-mtDNA-ÏßÁ£ÌåÑ×֢ͨ·¸ÄÉÆ¸ßÔ­ÄÔËðÉ˵ÄҩЧÎïÖʺÍ×÷ÓûúÖÆÑо¿£¬2025-01ÖÁ2028-12£¬49ÍòÔª£¬ÔÚÑУ¬Ö÷³Ö¡£

2.¹ú¼Ò×ÔÈ»¿ÆÑ§»ù½ð£¬ÇàÄê¿ÆÑ§»ù½ðÏîÄ¿£¬82104533£¬»ùÓÚTRPV4-HIF-1¦Á-NLRP3ͨ·Ñо¿²ØÒ©ºì¾°Ììµ÷¿Ø¡°·Î-ÄÔÖᡱ·ÀÖθßԭȱÑõÄÔѪ¹ÜÑ×Ö¢ËðÉË»úÖÆ£¬2022-01ÖÁ2024-12£¬30ÍòÔª£¬½áÌ⣬Ö÷³Ö¡£

3.Öйú²©Ê¿ºó¿ÆÑ§»ù½ð»á£¬ÃæÉÏÏîÄ¿£¬2020M683273£¬»ùÓÚSirt1/p53/Drp1½éµ¼ÏßÁ£ÌåĤ¶¯Á¦Ñ§µÄºì¾°ÌìÜÕ·ÀÖθßԭȱÑõÄÔËðÉË×÷ÓûúÖÆÑо¿£¬2020-11ÖÁ2022-10£¬8ÍòÔª£¬½áÌ⣬Ö÷³Ö¡£

4.ËÄ´¨Ê¡¿ÆÑ§¼¼ÊõÌü£¬ËÄ´¨Ê¡×ÔÈ»¿ÆÑ§»ù½ðÇàÄê»ù½ðÏîÄ¿£¬2024NSFSC1845£¬ºì¾°ÌìÜÕͨ¹ý°ÐÏòHIF-1¦Á½éµ¼MPTP-ÏßÁ£ÌåÑ×֢ͨ··ÀÖθßÔ­ÄÔËðÉË»úÖÆÑо¿£¬2024-01-01ÖÁ2025-12-31£¬10ÍòÔª£¬ÔÚÑУ¬Ö÷³Ö¡£

5.ËÄ´¨Ê¡¿ÆÑ§¼¼ÊõÌü£¬ÃæÉÏÏîÄ¿£¬2021YJ0175£¬»ùÓÚ·ÎTRPV4-ATP-P2XàÑßÊÐźż°¡°·Î-ÄÔ¡±ÖáµÄ²ØÒ©ºì¾°ÌìÇå·ÎÈÈ·ÀÖθßԭȱÑõÄÔËðÉË»úÖÆÑо¿£¬2021-04ÖÁ2023-03£¬15ÍòÔª£¬½áÌ⣬Ö÷³Ö¡£

6.³É¶¼ÊÐÎÀÉú½¡¿µÎ¯Ô±»á/mg老虎机游戏/mg老虎机游戏¸½ÊôÒ½Ôº£¬2024Äê¶ÈίУԺÁªºÏ´´Ð»ù½ð£¬WXLH202403076£¬»ùÓÚ΢Á÷¿ØÆ÷¹ÙоƬ¼¼ÊõµÄÃñ×åÒ©¸ßԭȱÑõÄÔÉñ¾­±£»¤»îÐԳɷÖɸѡ¼°ÆÀ¼ÛÑо¿£¬2025-01ÖÁ2027-12£¬20ÍòÔª£¬ÔÚÑУ¬Ö÷³Ö¡£

£¨¶þ£©·¢±íÂÛÎÄ

1.Xiaobo Wang, Yan Tang, Na Xie, Jinrong Bai, Shengnan Jiang, Yi Zhang, Ya Hou* and Xianli Meng*. Salidroside, a phenyl ethanol glycoside from Rhodiola crenulata, orchestrates hypoxic mitochondrial dynamics homeostasis by stimulating Sirt1/p53/Drp1 signaling [J]. Journal of Ethnopharmacology, 2022, 293: 115278.

2.Xiaobo Wang#, Ya Hou#, Qiuyue Li, Xuanhao Li, Wenxiang Wang, Xiaopeng Ai, Tingting Kuang, Xiaorui Chen, Yi Zhang, Jing Zhang*, Yao Hu* and Xianli Meng*. Rhodiola crenulata attenuates apoptosis and mitochondrial energy metabolism disorder in rats with hypobaric hypoxia-induced brain injury by regulating the HIF-1¦Á/microRNA210/ISCU1/2 (COX10) signaling pathway [J]. Journal of Ethnopharmacology, 2019, 241: 111801.

3.Xiaobo Wang#, Zixuan Liu#, Fangfang Fan, Ya Hou, Hailing Yang, Xianli Meng, Yi Zhang* and Fugang Ren*. Microfluidic chip and its application in autophagy detection [J]. TrAC Trends in Analytical Chemistry, 2019, 117: 300¨C315.

4.Xiaobo Wang*, Yating Zhang, Ya Hou, Hong Jiang, Tingting Kuang, Rui Li* and Xianli Meng*. Mechanistic insights into salidroside's mitochondrial protection via AMPK/Sirt1/HIF-1¦Á pathway in hypoxic HT22 cells [J]. Journal of Visualized Experiments, 2025, 218: e66923.

5.Xiaobo Wang, Yating Zhang, Ya Hou, Hong Jiang, Yi Zhang, Sanyin Zhang and Xianli Meng*. Preclinical anti-apoptotic properties of salidroside for hypoxic-ischemic cerebral damage: a systematic review and meta-analysis [J]. Digital Chinese Medicine, 2023, 6 (2): 121¨C135.

6.Yating Zhang#, Rui Li#, Hong Jiang, Ya Hou, Yi Zhang, Xianli Meng* and Xiaobo Wang*. Salidroside modulates repolarization through stimulating Kv2.1 in rats [J]. European Journal of Pharmacology, 2024, 977: 176741.

7.Ya Hou, Fuhan Fan, Na Xie, Yi Zhang, Xiaobo Wang*, Xianli Meng*. Rhodiola crenulata alleviates hypobaric hypoxia-induced brain injury by maintaining BBB integrity and balancing energy metabolism dysfunction[J]. Phytomedicine, 2024, 128: 155529.

8.Ya Hou, Yating Zhang, Shengnan Jiang, Na Xie, Yi Zhang, Xianli Meng* and Xiaobo Wang*. Salidroside intensifies mitochondrial function of CoCl2-damaged HT22 cells by stimulating PI3K-AKT-MAPK signaling pathway [J]. Phytomedicine, 2023, 109: 154568.

9.Na Xie, Fangfang Fan, Shengnan Jiang, Ya Hou, Yi Zhang, Nanjia Cairang, Xiaobo Wang*, Xianli Meng*. Rhodiola crenulate alleviates hypobaric hypoxia-induced brain injury via adjusting NF-¦ÊB/NLRP3-mediated inflammation[J]. Phytomedicine, 2022, 103: 154240.

10.Na Xie, Jinrong Bai, Ya Hou, Jia Liu, Yi Zhang, Xianli Meng* and Xiaobo Wang*. hPSCs-derived brain organoids for disease modeling, toxicity testing and drug evaluation [J]. Experimental Neurology, 2025, 385, 115110.

(Èý)»ñ½±

1.2022ÄêÖлªÖÐҽҩѧ»á¿ÆÑ§¼¼Êõ½ø²½¶þµÈ½±£¬ÃæÏòÎÄÏ×ÀíÂÛºÍÁÙ´²Êµ¼ùµÄ²ØÒ©Æ·ÖÊÌáÉý´´ÐÂÑо¿¼°Ó¦Óã¨202202-12-R-08£©£¬ÕÅÒÕ¡¢ÃÏÏÜÀö¡¢ºéѧ´«¡¢·¶¸Õ¡¢Èζ«Éý¡¢ÀµÏÈÈÙ¡¢Î´¨ì­¡¢ÍõС²©¡¢Õž²²¨¡¢¾ÃÃÀÅí´ë£¨8/10£©

2.2022ÄêÄþÏÄ»Ø×å×ÔÖÎÇø¿ÆÑ§¼¼Êõ½ø²½ÈýµÈ½±£¬Ä¾ÏãÓÍ·½µÄÌáÈ¡ÒÔ¼°¿¹È±ÑªÐÔ×äÖеÄÎïÖÊ»ù´¡ºÍÒÖÖÆCaspase 3ͨ·ºÍAMPK/mTORͨ·µÄ×÷Óã¨2021-J-3-36-R£©£¬ÕÔÆôÅô¡¢ÖìÑÇ·É¡¢³ÌÐãÀö¡¢ÍõС²©¡¢³Â°®Áᣨ4/5£©

ÖÕÉó£ºÒ©Ñ§Ôº×ܹÜÀíÕ˺Å