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曾志俊
作者: 发布时间: 2022-11-30 04:09 浏览次数:

电话:15625069758

E-mail:zjzeng@cqmu.edu.cn


个人简介:

特聘副教授,硕士生导师。荷兰格罗宁根大学医学中心病理学博士,暨南大学生态学博士后。主要研究方向为:生命早期环境污染物暴露对儿童生长发育影响的表观遗传学研究。目前已发表SCI论文23篇,其中以第一作者(含共同)在JCR Q1区如Environment International, Science of The Total Environment, Environmental Pollution, Chemosphere, Environmental Research, American Journal of Physiology-Lung Cellular and Molecular Physiology和Environmental Science and Pollution Research等期刊发表论文9篇,出版学术专著1部:《Exposure to toxic environments across the life course: consequences for development, DNA methylation and ageing》,University of Groningen,978-94-034-2739-3(ISBN),2020。在全国分析毒理第二届青年论坛、第六届环境污染与健康会议等大会做学术报告,应邀为Chemosphere,Environmental Science and Pollution Research等环境健康领域类较高水平期刊审稿。作为项目负责人,主持中国博士后科学基金面上项目、广东省粤穗联合基金青年基金项目和荷兰JAN KORNELIS DE COCK-STICHTING项目等3项;主要参研国家自然科学基金面上项目、荷兰Stichting Astma Bestrijding项目、广东省科技计划国际合作领域项目和广东省自然科学基金项目等6项,获广东省海外博士后人才支持项目资助。

科研项目(部分)

1.中国博士后科学基金第70批面上项目,多环芳烃暴露影响GH-IGF1轴干扰学龄前儿童生长的表观遗传学研究,2021M701430,2021/09-2023/08,8万元,在研,主持

2.广东省基础与应用基础研究基金-粤穗联合基金青年项目,2020A1515110858,基于GH-IGF1轴的妊娠期PM2.5-PAHs暴露与出生结局相关性及表观遗传学机制,2020/10-2023/09,10万元,在研,主持

4.JAN KORNELIS DE COCK-STICHTING, The effect of prenatal and/or postnatal smoke exposure on epigenetic changes in the IGF axis in the lung. 2017/01-2018/12, € 6000.00,已结题,主持

5.广东省科技计划项目-国际科技合作领域项目,2020A0505100043,污染物暴露与机体低度炎症代谢组学变化的心血管疾病风险,2020/08-2022/07,50万元,已结题,中方主要参与人(排第2)

论文情况(部分)

1.Zeng Z, Huo X, Wang Q, Wang C, Hylkema MN, Xu X. PM2.5-bound PAHs exposure is linked with low plasma insulin-like growth factor 1 levels and reduced child height.Environment International,2020; 138:105660. doi: 10.1016/j.envint.2020.105660. (JCR Q1,IF:13.352)

2.Zeng Z, Ngai S#, Wang Q, Liang W, Huo X. Early-life exposure to widespread environmental toxicants and children's health risks: A focus on the post-vaccination antibody potency or immunoglobulin levels.Science of The Total Environment,2021; 781(6):146714. doi: 10.1016/j.scitotenv.2021.146714. (JCR Q1,IF:10.753)

3.Zeng Z,Xu X, Wang Q, Zhang Z, Meng P, Huo X.Maternal exposure to atmospheric PM2.5and fetal brain development: associations withBAI1methylation and thyroid hormones.Environmental Pollution,2022; 308:119665. doi: 10.1016/j.envpol.2022.119665. (JCR Q1,IF:9.988)

4.Zeng Z, Xu X, Zhu Y, Wang Q, Zhang Y, Huo X. Pb and Cd exposure linked with Il-10 and Il-13 gene polymorphisms in asthma risk relevant immunomodulation in children.Chemosphere,2022; 294(4):133656. doi: 10.1016/j.chemosphere.2022.133656. (JCR Q1,IF:8.943)

5.Zeng Z, Huo X#, Zhang Y, Hylkema MN, Wu Y, Xu X. Differential DNA methylation in newborns with maternal exposure to heavy metals from an e-waste recycling area.Environmental Research,2019; 171:536-545. doi: 10.1016/j.envres.2019.01.007. (JCR Q1,IF:8.431)

6.Zeng Z, Meyer KF#, Lkhagvadorj K, Kooistra W, Reinders-Luinge M, Xu X, Huo X, Song J, Plösch T, Hylkema MN. Prenatal smoke effect on mouse offspring Igf1 promoter methylation from fetal stage to adulthood is organ and sex specific.American Journal of Physiology-Lung Cellular and Molecular Physiology,2020; 318(3):L549-L561. doi: 10.1152/ajplung.00293.2019. (JCR Q1,IF:6.011)

7.Lin C,Zeng Z#, Xu R, Liang W, Guo Y, Huo X. Risk assessment of PBDEs and PCBs in dust from an e-waste recycling area of China.Science of The Total Environment,2021, 803(15):150016. doi: 10.1016/j.scitotenv.2021.150016. (JCR Q1,IF:10.753)

8.Wang Y, Wang Q#, Zhou L#,Zeng Z#, Zhao C, You L, Lu X, Liu X, Ouyang R, Wang Y, Xu X, Tian X, Guo Y, Huo X, Xu G. Metabolomics insights into the prenatal exposure effects of polybrominated diphenyl ethers on neonatal birth outcomes.Science of The Total Environment,2022, 30:155601. doi: 10.1016/j.scitotenv.2022.155601. (JCR Q1,IF:10.753)

9.Zeng Z, Huo X#, Zhang Y, Xiao Z, Zhang Y, Xu X. Lead exposure is associated with risk of impaired coagulation in preschool children from an e-waste recycling area.Environmental Science and Pollution Research,2018; 25:20670-20679. doi: 10.1007/s11356-018-2206-9. (JCR Q2,IF:5.190)

10.Zeng X,Zeng Z, Wang Q, Liang W, Guo Y, Huo X. Alterations of the gut microbiota and metabolomics in children with E-waste lead exposure.Journal of Hazardous Materials,2022, 434:128842. doi: 10.1016/j.jhazmat.2022.128842. (JCR Q1,IF:14.224)

11.Zheng K,Zeng Z, Huang J, Tian Q, Cao B, Huo X. Kindergarten indoor dust metal(loid) exposure associates with elevated risk of anemia in children.Science of The Total Environment,2022, 851(Pt 1):158227. doi: 10.1016/j.scitotenv.2022.158227. (JCR Q1,IF:10.753)

12.Lkhagvadorj K,Zeng Z, Song J, Reinders-Luinge M, Kooistra W, Song S, Krauss-Etschmann S, Melgert BN, Cao J, Hylkema MN. Prenatal smoke exposure dysregulates lung epithelial cell differentiation in mouse offspring: role for AREG-induced EGFR signaling.American Journal of Physiology-Lung Cellular and Molecular Physiology,2020; 319(4):L742-L751. doi: 10.1152/ajplung.00209.2020. (JCR Q1,IF:6.011)

13.Lkhagvadorj K,Zeng Z, Meyer KF, Verweij LP, Kooistra W, Reinders-Luinge M, Dijkhuizen HW, de Graaf IAM, Plösch T, Hylkema MN. Postnatal Smoke Exposure Further Increases the Hepatic Nicotine Metabolism in Prenatally Smoke Exposed Male Offspring and Is Linked with Aberrant Cyp2a5 Methylation.International Journal of Molecular Sciences,2020; 22(1):164. doi: 10.3390/ijms22010164. (JCR Q1,IF:6.208)

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