谭涛


瓯江实验室神经生物学课题组PI


生物医学工程博士

瓯江实验室研究员

温州医科大学研究生导师

原贝勒医学院助理教授

邮箱:tantao@ojlab.ac.cn

课题组网址:谭涛组 (x-mol.com)


个人简介

2023年3月至今:  瓯江实验室 研究员

2021年12月-2023年3月:美国贝勒医学院 神经生物学院 助理教授

2020年7月-2021年12月:德州农工大学 医学院 研究员

2019年5月-2020年7月:  纽约州立大学布法罗分校 生理与生物物理学院 研究员

2016年5月-2019年5月:  纽约州立大学布法罗分校 博士后

2014年1月-2016年5月:  重庆医科大学附属儿童医院 博士后

2013年7月-2014年1月:  重庆医科大学 附属儿童医院 助理研究员

研究方向

1)眼脑解析Patch-seq多模态技术开发

2)无创磁遗传神经调控

3)应激性别差异的神经环路

4)神经/精神疾病神经生物学机制

参与项目

1. 温州市重大科技创新攻关项目、基于整合生物学的精神分裂症精准诊疗标志物筛选与机制研究、2024-202640万)

2. 国家自然科学基金青年科学基金项目、rTMS调节AD认知功能的突触可塑性机制研究、2015-201722万)

3. 重庆医科大学附属儿童医院杰出青年计划B类人才、rTMS调节孤独症的机制研究,2015-201675万)

4. 中国博士后科学基金第56批面上资助西部地区博士后人才资助计划rTMS调节 AD认知功能的突触可塑性机制研究,2014-20165万)

5. 2014 重庆市博士后科研项目特别资助项目、低频rTMS调节AD认知功能的突触可塑性机制研究, 2014-201610万)

6. 天津医科大学“211工程博士创新基金、rTMS修复模型大鼠记忆损伤的机制研究,2010-20138万)

代表论著

通讯作者文章

1) Lin, P., Yang, J., Wu, S., Ye, T., Zhuang, W., Wang, W., & Tan, T#. (2023). Current trends of high-risk gene Cul3 in neurodevelopmental disorders. Frontiers in Psychiatry. 14.

2) Zhuang W, Ye T, Wang W, Song W, Tan T#. (2023). CTNNB1 in neurodevelopmental disorders. Frontiers in Psychiatry 14.

3) Chen H, He T, Li M, Wang C, Guo C, Wang W, Yu B, Huang J, Cui L, Guo P, Yuan Y, Tan T#. (2023) Cell-type-specific synaptic modulation of mAChR on SST and PV interneurons. Front Psychiatry. Jan 12;13:1070478.

4) Wang X, Mei D, Gou L, Zhao S, Gao C, Guo J, Luo S, Guo B, Yang Z, Wang Q, Tan T#, Zhang Y#. Functional Evaluation of a Novel GRIN2B Missense Variant Associated with Epilepsy and Intellectual Disability. Neuroscience. 2023 Aug 21;526:107-120.

5) Zhao, K., X. Zhou, M. Chen, L. Gou, D. Mei, C. Gao, S. Zhao, S. Luo, X. Wang, T. Tan# and Y. Zhang# (2023). Neuroprotective Effects of CXCR2 Antagonist SB332235 on Traumatic Brain Injury Through Suppressing NLRP3 Inflammasome. Neurochem Res.

第一/共同第一作者文章

1) Tan T, Palumbo S (2024): Editorial: Reviews in emotional and behavioral dyscontrol in neurological disorders. Front Behav Neurosci.

2) Tao Tan, Wei W, Tiaotiao Liu, Ping Zh, Megan C, Xin T, Zhen Y. (2021). Neural circuits and activity dynamics underlying sex-specific effects of chronic social isolation stress. Cell Reports.  

3) Tan T, Wang W, Williams J, et al. (2019). Stress Exposure in Dopamine D4 Receptor Knockout Mice Induces Schizophrenia-Like Behaviors via Disruption of GABAergic Transmission. Schizophrenia bulletin.45:1012-1023.

4) Maximiliano Rapanelli, Tao Tan, Wei Wang, et al. (2021).  Behavioral, circuitry, and molecular aberrations by region-specific deficiency of the high-risk autism gene Cul3. Molecular Psychiatry. (Co-first)

5) Tan, T., Zhang, Y., Luo, W., Lv, J., Han, C., Hamlin, J. N., ... & Song, W*. (2018). Formaldehyde induces diabetes-associated cognitive impairments. The FASEB Journal, fj-201701239R.

6) Tan, T., Wang, W., Xu, H., Huang, Z., Wang, Y. T., & Dong, Z*. (2018). Low-frequency rTMS ameliorates autistic-like behaviors in rats induced by neonatal isolation through regulating the synaptic GABA transmission. Frontiers in Cellular Neuroscience, 12, 46.

7) Ai, Li, Tao Tan, Yonghe Tang, Jun Yang, Dehua Cui, Rui Wang, Aibo Wang et al. (2019): "Endogenous formaldehyde is a memory-related molecule in mice and humans." Communications Biology 2, no. 1 1-12. (Co-first)

8) Tan, T., Wang, W., Xu, H., Huang, Z., Wang, Y. T., & Dong, Z*. (2018). Low-frequency rTMS ameliorates autistic-like behaviors in rats induced by neonatal isolation through regulating the synaptic GABA transmission. Frontiers in Cellular Neuroscience, 12, 46.

9) Huang, Z., Tan, T., Du, Y., Chen, L., Fu, M., Yu, Y., ... & Dong, Z*. (2017). Low-frequency repetitive transcranial magnetic stimulation ameliorates cognitive function and synaptic plasticity in APP23/PS45 mouse model of Alzheimer's disease. Frontiers in Aging Neuroscience, 9, 292. (Co-first)

10) Wei Wang, Tao Tan, Yanzhi Yu, Zhilin Huang, Yehong Du, Huili Han, Zhifang Dong*. (2017). Inhibition of AMPAR endocytosis alleviates pentobarbital-induced spatial memory deficits and synaptic depression. Behav Brain Res. (Co-first)

11) Guo D, Gan J, Tan T, et al. (2018) Neonatal exposure of ketamine inhibited the induction of hippocampal long-term potentiation without impairing the spatial memory of adult rats. Cognitive Neurodynamics, 1-7. (Co-first)

12) Wei Wang, Tao Tan, Man Tu, Wenting He, Zhifang Dong and Huili Han*. (2015). Acute Pentobarbital Treatment Impairs Spatial Learning and Memory and Hippocampal Long-Term Potentiation in Rats, Physiol Behav, 149 169-73. (Co-first)

13) Tao Tan, Jiacun Xie, Tiaotiao Liu, Xiaojia Chen, Xiaobo Zheng, Zhiqian Tong, Xin Tian*. (2013). Low frequency (1 Hz) repetitive transcranial magnetic stimulation (rTMS) reverses Aβ1-42 mediated memory deficit in rats. Experimental Gerontology, Volume 48, Issue 8, Pages 786-794, 2013.

14) Tao Tan, Jiacun Xie, Zhiqian Tong, Tiaotiao Liu, Xiaojia Chen, Xin Tian*(2013). Repetitive transcranial magnetic stimulation increases excitability of hippocampal CA1 pyramidal neurons. Brain Research, Volume 1520, Pages 23-35.

15) Tan, Tao, Bao-Liang Zhang and Xin Tian*. (2011). Chronic Effects of Oligomeric Abeta1-42 on Hippocampal Synaptic Plasticity in Vivo. Acta physiologica Sinica 63, no. 3: 225-32.

 

共同作者文章

1) Wang W, Xie X, Zhuang X, Huang Y, Tan T, Gangal H, Huang Z, Purvines W, Wang X, Stefanov A, Chen R, Rodriggs L, Chaiprasert A, Yu E, Vierkant V, Hook M, Huang Y, Darcq E, Wang J. Striatal μ-opioid receptor activation triggers direct-pathway GABAergic plasticity and induces negative affect. Cell Rep. 2023 Feb 7:112089.

2) Qin, Luye, Jamal B. Williams, Tao Tan, Tiaotiao Liu, Qing Cao, Kaijie Ma, and Zhen Yan. "Deficiency of autism risk factor ASH1L in prefrontal cortex induces epigenetic aberrations and seizures." Nature communications 12, no. 1 (2021): 1-14.

3) Wang W, Cao Q, Tan T, Yang F, Williams JB, Yan Z. Epigenetic treatment of behavioral and physiological deficits in a tauopathy mouse model. Aging Cell. 2021 Oct;20(10):e13456.

4) Rein B, Tan T, Yang F, Wang W, Williams J, Zhang F, Mills A, Yan Z (2021) Reversal of synaptic and behavioral deficits in a 16p11.2 duplication mouse model via restoration of the GABA synapse regulator Npas4. Mol. Psychiatry.

5) Wang, W., Rein, B., Zhang, F., Tan, T., Zhong, P., & Qin, L., et al. (2018). Chemogenetic activation of prefrontal cortex rescues synaptic and behavioral deficits in a mouse model of 16p11.2 deletion syndrome. Journal of Neuroscience, 44(6 Suppl), 99.

6) Zhu, Binglin, B Zhu, L Zhao, D Luo, D Xu, T Tan, Z Dong, Y Tang, et al. (2018). Furin promotes dendritic morphogenesis and learning and memory in transgenic mice.  Cellular and Molecular Life Sciences: 1-16.

7) Wei, J., Zhong, P., Qin, L., Tan, T., & Yan, Z. (2018). Chemogenetic Restoration of the Prefrontal Cortex to Amygdala Pathway Ameliorates Stress-Induced Deficits. Cerebral Cortex, 1-11.

8) Huang, X., Chen, Y. Y., Shen, Y., Cao, X., Li, A., Liu, Tao, T, Q., ... & Arias-Carrion, O*. (2017). Methamphetamine abuse impairs motor cortical plasticity and function. Molecular Psychiatry, 22(9), 1274.

9) Peng, Y., W. Wang, T. Tan, W. He, Z. Dong, Y. T. Wang and H. Han (2016). "Maternal sleep deprivation at different stages of pregnancy impairs the emotional and cognitive functions, and suppresses hippocampal long-term potentiation in the offspring rats." Mol Brain 9(1): 17.

10) Zhou, Limin; Bai, Yanjie; Li, Yanxi; Liu, Xueliang; Tan, Tao; Meng, Shasha; He, Wenting; Wu, Xiaobin; Dong, Zhifang. (2016). Overexpression of MCPH1 inhibits uncontrolled cell growth by promoting cell apoptosis and arresting the cell cycle in S and G2/M phase in lung cancer cells. Oncology Letters, 11, 1, 365-372.

11) Chen, L., W. Wang, T. Tan, H. Han and Z. Dong*.  (2015). Gaba Receptors in the Central Nucleus of the Amygdala Are Involved in Pain- and Itch-Related Responses. J Pain.

12) Zhifang Dong, Huili Han, Tao Tan, Yutian Wang*, etc. (2014).  Long-term potentiation decay and memory loss are mediated by AMPAR endocytosis. J Clin Invest, p. 1-14.

13) Xiaoyan Wu, Yanrui Bai, Tao Tan, Zhifang Dong*, etc. (2014). Lithium ameliorates autistic-like behaviors induced by neonatal isolation in rats. Front Behav Neurosci, 8: p. 1-12.

14) Liu, T., W. Bai, H. Yi, T. Tan, J. Wei, J. Wang and X. Tian (2014). "Functional connectivity in a rat model of Alzheimer's disease during a working memory task." Curr Alzheimer Res 11(10): 981-991.

15) Liu Aili, Li Yize, Tan Tao, Tian Xin*, (2014). Early exposure to sevoflurane inhibits Ca2+ channels activity in hippocampal CA1 pyramidal neurons of developing rats. Brain Research, 1557: p. 1-11.

16) Chen, Xiaojia; Tan, Tao; Liu, Tiaotiao; Tian, Xin. (2013). Changes of IA and IK from the pyramidal neurons at hippocampal CA1 during the early development of rats. Sheng li xue bao:[Acta physiologica Sinica], 65, 2, 193-200

17) GUO, D. Y., TAN, T., TIAN, X., & WANG, G. L. (2012). Effect of ketamine injected into cerebro ventriles on synaptic plasticity of hippocampus in adult SD rats. Journal of Tianjin Medical University, 2, 016.

18) GUO, Dong-yong; TAN, Tao; TIAN, Xin; WANG, Guo-lin. (2012). Neonatal ketamine exposure-induced cognitive dysfunction persists into adulthood in rats, Chinese Journal of Anesthesiology. 32, 4, 420-422

19) Zhang, B., Chen, X., Lin, Y., Tan, T., Yang, Z., Dayao, C., ... & Zhang, J. (2011). Impairment of synaptic plasticity in hippocampus is exacerbated by methylprednisolone in a rat model of traumatic brain injury. Brain Research, 1382, 165-172.

20) Zhang, B. L., Chen, X., Tan, T., Yang, Z., Carlos, D., Jiang, R. C., & Zhang, J. N. (2011). Traumatic brain injury impairs synaptic plasticity in hippocampus in rats. Chinese Medical Journal-Beijing, 124(5), 740.

21) Bei, Fang; Tan, Tao; Tian, Xin. (2011). Diabetes suppresses hippocampal synaptic plasticity in rats, International Journal of Biomedical Engineering. 34, 3, 150-153

22) Bei, Fang; Tan, Tao; Tian, Xin. (2010). Study on the Use of Water Maze to Test the Change of Spatial Memory Ability in Diabetic Rats, International Journal of Biomedical Engineering. 6, 321-325

个人荣誉

中国神经科学学会应激神经生物学分会委员;

中国研究型医院学会神经再生与修复专业委员会委员;

美国神经科学学会、中国神经科学学会、浙江省神经科学学会会员。

Frontiers in Behavioral Psychiatry等杂志编委,ResearchSCI期刊审稿人。

团队介绍

课题组聚焦脑科学前沿,深入研究神经发育(孤独症ASD)及退行性疾病(老年性痴呆症AD)、应激和精神分裂、成瘾等神经/精神疾病相关脑区/神经环路、离子通道病变和突触可塑性机制。基因与环境因素在神经/精神疾病中的交互作用。探索rTMS等新型无创神经刺激技术对神经/精神疾病干预调控的作用机理。以期解析神经/精神疾病的致病基因、分子靶点和特异神经环路,实现靶向干预和调控。

研究手段包括转基因动物构建、膜片钳电生理(单细胞/脑片膜片钳、多通道(12导)膜片钳、Patchseq)、自由活动小动物多通道记录、双光子成像、神经环路示踪和全脑成像、化学遗传学/光遗传学神经调控、rTMS、行为学、分子生物学(单细胞转路组、PCR、WB、免疫组化)等。

课题组现有团队成员21人:PI/Co-PI 2人,博士后2人,研究助理4人(2名助理研究员、2名研究实习员),博士研究生(联培)3人,硕士研究生10人。队成员年轻活泼,富有朝气和创造力。

招聘需求

团队长期招聘神经生物学及相关领域优秀人才,包括副研究员、助理研究员、博士后和科研助理。欢迎相关方向本科生、研究生到实验室开展毕业设计、合作研究、实习。 

副研究员(1名)

1. 神经生物学、生物医学工程、基础医学、分子生物学、药理学等相关学科博士学位;有1-2轮国内外博士后训练经历。

2. 3年内,以第一作者(或共同第一作者)在相关领域发表过较高水平研究论文2篇以上,其中中科院一区文章1篇以上。

3. 熟练掌握膜片钳电生理、在体多通道电生理、光纤记录、mini-scope单细胞钙成像、二代测序、单细胞测序、双光子成像等方向具体实验技术,能独立开展并指导学生开展相关方向实验,并有相关文章发表;

4. 有课题申请经验,曾主持国家/省部级项目。

5. 有指导硕士研究生经历。

博士后(4名)、助理研究员(1名)

1. 应聘者具有神经生物学、生物医学工程、基础医学、分子生物学、药理学等相关学科博士学位;

2. 有良好的学术道德和团队精神,具备较好的合作沟通能力和独立解决问题的能力;

3. 有膜片钳电生理、在体多通道电生理、光纤记录、mini-scope单细胞钙成像、二代测序、单细胞测序、双光子成像等相关研究经验,并有相关文章发表;

4. 3年内,以第一作者(或共同第一作者)在相关领域发表过较高水平研究论文,能清晰表达自己的思路与想法。

三、 科研助理(1)

1. 硕士研究生学历,具有神经生物学、生物医学工程、生物学、医学或相关学科背景及理论基础;

2. 有膜片钳电生理、在体多通道电生理、光纤记录、mini-scope单细胞钙成像、二代测序、单细胞测序、双光子成像等相关研究经验;或有生物信息学、单细胞组学分析经验;有MatlabPython等编程基础;有ArduinoLabviewC语言编写使用经验;有软件开发经验;

3. 身体健康,为人踏实乐观积极,热爱科研工作,对未来有明确目标,具有良好的沟通能力和团队合作精神;具一定英语听说读写能力,能熟练应用办公软件;

四、  实习生、志愿者(5名)

1. 神经生物学、生物医学工程、基础医学等相关专业大二以上学生;

2. 对脑科学有浓厚兴趣;

3. 有继续研究生深造意向。

工作地点:浙江 温州

岗位待遇

1. 提供具有竞争力的薪酬待遇和科研条件;

2. 签订正规劳动合同,全额缴纳五险一金。同时享有带薪休假、五险一金、人才公寓、职工食堂、免费体检、工会福利等;

3. 解决子女义务教育阶段入学或入托问题;

4. 申请人入职后,为申请人量身定制未来发展方向和计划,全力支持申请人的未来发展;

岗位

年薪(万元)

其他

博士后(4名)

45

出站留温州全职工作,享受购房优惠

副研究员(1名)

>30

副高职称、正式事业编制,提供购房补贴

助理研究员(1名)

>20

中级职称、正式事业编制,提供购房补贴

研究助理(1名)

12-15及科研奖励

提供>30平米精装人才公寓

实习生、志愿者(5名)

提供住宿和工作餐

提供系统、全面的前沿神经科学实验技术培训

微信公众号

联系地址:中国浙江省温州市龙湾区永中街道金石路999号

邮编:325000

邮箱:zh@ojlab.ac.cn

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