滕雯迪

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滕雯迪

出生年月:19914

最高学历学位: 博士研究生

职称: 讲师

导师类型: 硕士生导师

电子邮箱:wenditeng@btbu.edu.cn

个人简历

教育经历:

20099月至20136 东北农业大学 获学士学位

20139月至20166 北京化工大学 获硕士学位

20199月至20211 康奈尔大学  联合培养

20169月至20217 中国农业大学 获博士学位

工作经历:

20219-至今 HG0086皇冠 讲师

主讲课程

分子营养学

主要研究领域

食源性物质的功能活性及作用机制

功能食品的开发与功能评价

蛋白质翻译后修饰的功能及其应用

主要学术成果(课题、论文、获奖、专利等)

承担的主要科研项目(限5项):

发表的代表性论文(限10篇):

1. Wendi Teng, Liyun Zhao, Songtao Yang, Chengying Zhang, Meiyu Liu, Jie Luo, Junhua Jin, Ming Zhang, Chen Bao, Dan Li, Yuan Li and Fazheng Ren*. The hepatic-targeted, resveratrol loaded nanoparticles for relief of high fat diet-induced nonalcoholic fatty liver disease. Journal of Controlled Release, 2019, 307:139-149;

2. Wendi Teng, Yuan Li, Min Du, Xingen Lei, Siyu Xie and Fazheng Ren*. Sulforaphane prevents hepatic insulin resistance by blocking serine palmitoyltransferase 3- mediated ceramide biosynthesis. Nutrients, 2019, 11(5): 1185;

3. Siyu Xie, Yuan Li, Wendi Teng, Min Du, Yixuan Li, Baoguo Sun*. Liensinine inhibits beige adipocytes recovering to white adipocytes through blocking mitophagy flux in vitro and in vivo. Nutrients, 2019, 11(7); 1640;

4. Wendi Teng, Wenjing Yin, Liang Zhao, Changwei Ma, Jiaqiang Huang and Fazheng Ren*. Resveratrol metabolites ameliorate insulin resistance in HepG2 hepatocytes via modulating IRS-1/ AMPK. RSC advances, 2018, 8:36034-36042;

5. Ming Yang, Wendi Teng, Yue Qu, Haiyong Wang and Qipeng Yuan*. Sulforaphene inhibits triple negative breast cancer through activating tumor suppressor Egr1. Breast Cancer Research & Treatment, 2016, 158:277-286;

6. Congcong Zuo, Huijuan Zhang, Shuang Liang, Wendi Teng, Cheng Bao, Dan Li, Yuling Hu, Qimeng Wang, Zekun Li, Yuan Li*. The alleviation of lipid deposition in steatosis hepatocytes by capsaicin-loaded α-lactalbumin nanomicelles via promoted endocytosis and synergetic multiple signaling pathways. Journal of Functional Foods, 2021, 79 (2021), 104396;

7. Ming Yang, Meng Ren, Yue Qu, Wendi Teng, Zhongpeng Wang, Hao Li and Qipeng Yuan*. Sulforaphene inhibits hepatocellular carcinoma through repressing keratin 8 and activating anoikis. RSC Advances, 2016, 6(74):70326-70334.