湯小朋(博士)

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湯小朋,致公黨黨員,農學博士,碩士生導師。2018年11月至今就職於貴州師範大學喀斯特研究院。主要研究方向為喀斯特適生植物飼料資源開發與利用;喀斯特地區土壤、植物與放牧動物的互作關係等。目前,主持或參與項目8項。國內外發表期刊論文50餘篇,參編專著1部,授權專利5項。

基本介紹

  • 中文名:湯小朋
  • 國籍中國
  • 畢業院校:山西農業大學 
  • 學位/學歷:博士 
  • 職務:碩士生導師 
1. 教育經歷
(1) 2014-09 至 2018-06, 湖南農業大學, 動物營養與飼料科學, 博士
(2) 2011-09 至 2014-06, 四川農業大學, 動物營養與飼料科學, 碩士
(3) 2007-09 至 2011-06, 山西農業大學, 動物科學, 學士
2. 主持或參與項目
(1) 貴州省科學技術廳, 貴州省科技計畫項目, 黔科合基礎-ZK[2023]一般267, 薑黃素絡合鋅通過TLR4/NF-κB信號通路緩解豬小腸上皮細胞炎性損傷的分子機制研究, 2023-01 至今, 在研, 主持
(2) 貴州師範大學, 貴州師範大學學術新苗基金項目, 黔師新苗[2021]B16, 谷氨醯胺轉運載體ASCT2在緩解豬小腸上皮細胞損傷中的作用及其調控機制, 2022-04 至今, 在研, 主持
(3) 貴州省教育廳, 貴州省普通高等學校青年科技人才成長項目, 黔教合KY字[2021]294, 表皮生長因子對宮內發育遲緩仔豬腸道葡萄糖轉運的影響及作用機理研究, 2021-01至2023-12, 結題, 主持
(4) 貴州師範大學, 貴州師範大學博士科研啟動項目, GZNUD[2018] 26 號, 表皮生長因子對脂多糖誘導豬小腸上皮細胞谷氨醯胺及葡萄糖吸收轉運的影響, 2019-06 至 2022-05, 結題, 主持
(5)國家自然科學基金面面上項目,31572419,EGF對豬小腸磷吸收通道蛋白NPT-IIb調控的分子機制,2016.1至2017.12,已結題,參加
(6)湖南省自然基金面上項目,2018JJ2163,表皮生長因子對脂多糖誘導豬小腸上皮細胞屏障功能的影響及作用機制,2018.1至2020.12,在研,參加
(7)長沙市科技項目,kh1601185,EGF對仔豬腸道健康的影響與腸道調節劑的研製,2015.9至2017.9,已結題,參加
(8)湖南省研究生科研創新項目,CX2016B276,EGF對LPS誘導仔豬腸道健康及磷吸收的影響,2016.5至2017.5,已結題,主持
3. 代表性論文
[1] Tang X et al. Epidermal growth factor and intestinal barrier function, Mediators of inflammation, 2016, 2016, 1927348.
[2] Tang X et al. Effects of fermented cottonseed meal and enzymatic hydrolyzed cottonseed meal on amino acid digestibility and metabolic energy in white leghorn rooster, Pakistan Journal of Zoology, 2018, 50(3): 957-962.
[3] Tang X et al. Epidermal Growth Factor, through Alleviating Oxidative Stress, Protect IPEC-J2 Cells From Lipopolysaccharides-induced Apoptosis, International journal of molecular sciences, 2018,19,848.
[4] Tang X et al. Acute effect of epidermal growth factor on phosphate diffusion across intestinal mucosa using the Ussing chamber system, Pakistan Journal of Zoology, 2019, 51(6): 2209-2216.
[5] Tang X et al. Effects of calcitonin on porcine intestinal epithelial cells growth, phosphorus absorption, and NaPi-IIb expression, Pakistan journal of zoology, 2019, 51(6): 2167-2174.
[6] Tang X et al. The nutritive value of palm kernel cake and its application in low quality diets of broiler chickens. Pak. J. Agri. Sci., 2021, 58(5): 1429-1436.
[7] Tang X et al. Effects of Epidermal Growth Factor on Glutamine and Glucose Absorption by IPEC-J2 Cells Challenged by Lipopolysaccharide using the Ussing Chamber System. Pakistan Journal of Zoology, 2021, 53(2): 417-422.
[8] Tang X et al. Effects of Corn Distillers Dried Grain with Solubles on Growth Performance and Economic Benefit of Meat Ducks. Pakistan Journal of Zoology, 2021,53(3): 821-826.
[9] Tang X et al. Mechanisms of epidermal growth factor effect on animal intestinal phosphate absorption: a review. Front Vet Sci., 2021, 8: 670140.
[10] Tang X et al. Potential Application of Lonicera japonica Extracts in Animal Production: From the Perspective of Intestinal Health. Front. Microbiol., 2021, 12: 719877.
[11] Tang X et al. Effects of Microbial Fermented Feed on Serum Biochemical Profile, Carcass Traits, Meat Amino Acid and Fatty Acid Profile, and Gut Microbiome Composition of Finishing Pigs. Front Vet Sci., 2021, 8: 744630.
[12] Tang X et al. Effects of Dietary Probiotic (Bacillus subtilis) Supplementation on Carcass Traits, Meat Quality, Amino Acid, and Fatty Acid Profile of Broiler Chickens. Front Vet Sci., 2021, 8:767802.
[13] Tang X et al. Intrauterine Growth Retardation Affects Intestinal Health of Suckling Piglets via Altering Intestinal Antioxidant Capacity, Glucose Uptake, Tight Junction, and Immune Responses. Oxid Med Cell Longev. 2022, 2022: 2644205.
[14] Tang X et al. Curcumin and Intestinal Oxidative Stress of pigs with Intrauterine Growth Retardation: A Review. Front. Nutr. 2022, 9: 847673.
[15] Tang X et al. Effects of Dietary Replacement of Soybean Meal with Corn Distillers Dried Grain with Solubles on Growth Performance and Carcass Characteristics of Broilers. Pakistan Journal of Zoology, 2022,54(4): 1691-1697.
[16] Tang X et al. Effects of Epidermal Growth Factor on ASCT2 Expression in IPEC-J2 Cells Challenged by Lipopolysaccharide. Pakistan Journal of Zoology, 2022,54(4):1969-1972
[17] Tang X et al. Epidermal growth factor activates EGFR/AMPK signalling to up-regulate the expression of SGLT1 and GLUT2 to promote intestinal glucose absorption in lipopolysaccharide challenged IPEC-J2 cells and piglets. Italian Journal of Animal Science. 2022. 21 (1): 943-954
[18] Tang X et al. Fecal Microbial Changes in Response to Finishing Pigs Direct Fed with Fermented Feed. Front Vet Sci., 2022, 9: 894909.
[19] Tang X et al. Dietary Epidermal Growth Factor Supplementation Alleviates Intestinal Injury in Piglets with Intrauterine Growth Retardation via Reducing Oxidative Stress, and Enhancing Intestinal Glucose Transport and Barrier Function. Animals, 2022, 12, 2245.
[20] Tang X, et al. Weaning stress and intestinal health of piglets: A review. Front. Immunol. 2022, 13:1042778.
[21] Tang X, et al. Lipopolysaccharide promotes apoptosis and oxidative injury of porcine small intestinal epithelial cells by downregulating the expression of glutamine transporter ASCT2. J. Anim. Sci. 2023, 101, skad229.
[22] Tang X, et al. Effects of dietary epidermal growth factor supplementation on liver antioxidant capacity of piglets with intrauterine growth retardation. J. Anim. Sci. 2023, 101, skad323.
[23] Tang X. Probiotic Roles of Clostridium butyricum in Piglets: Considering Aspects of Intestinal Barrier Function. Animals, 2024, 14, 1069.
[24] Tang X, et al. The Inflammatory Injury of Porcine Small Intestinal Epithelial Cells Induced by Deoxynivalenol is Related to the Decrease of Glucose Transport. J. Anim. Sci. 2024, 102, skae107.

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