韩璐璐
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个人信息Personal Information
教授
博士生导师
硕士生导师
性别:女
毕业院校:浙江大学
学位:博士
所在单位:生物工程学院
办公地点:生物工程楼501
联系方式:
电子邮箱:
个人简介Personal Profile
诚邀博士后、博士生和硕士生, 欢迎交叉学科背景学生加入(材料科学、化学、生物工程、计算机、生物信息学、医学)!
韩璐璐,大连理工大学生物工程学院教授、博士生导师,国家级青年人才、辽宁省“兴辽英才”计划青年拔尖人才、大连市高层次人才,辽宁省蛋白质修饰与疾病发生重点实验室主任。
研究工作聚焦于具有仿生微纳结构和生物活性生物材料的构建,基于自动化高通量生物材料制备、筛选平台及AI辅助设计,开发面向循环肿瘤细胞高灵敏捕获及其类器官培养的新材料,为恶性肿瘤的早期诊断和个体化精准治疗提供理论和技术支撑。科研成果在Advanced Science、ACS Nano、Biomaterials、Small等期国际高质量期刊上发表SCI论文40余篇;获授权发明专利10余项,成果转化1项;循环肿瘤细胞免标记捕获纳米笼材料入选2022年辽宁省自然科学学术成果一等奖(排1)。作为负责人主持3项国家自然科学基金项目、辽宁省“兴辽英才计划”青年拔尖人才项目、大连理工大学“星海优青”人才项目、博士后特别资助项目及大连市重大科技成果转化专项等省部级项目10余项;作为项目骨干参与“十三五”重点研发和国家自然科学基金区域联合重点项目。担任SCI期刊Front. Bioeng. Biotechnol.(影响因子6.064,JCR一区)客座编辑。
学术荣誉:
Ø 国家级高层次青年人才计划(2023)
Ø 辽宁省“兴辽英才”计划青年拔尖人才(2020)
Ø 辽宁省自然科学学术成果一等奖(2022)
Ø 辽宁省研究生教学成果展示大赛一等奖(2026)
Ø 辽宁省首届优秀研究生导师团队(2022)
Ø 大连理工大学“重大学术进展”(2021)
Ø 大连理工大学“星海优青”(2019)
Ø 大连市高层次人才(2020)
Ø 中、韩生物材料学会“青年科学家奖”(2016)
指导学生获奖:
Ø 辽宁省优秀博士学位论文(杨立为)
Ø 辽宁省优秀毕业生(杨立为)
Ø 研究生国家奖学金(杨立为、晁振华、纪嘉欣、潘奕璇、张桐瑀)
Ø 大连理工大学优秀研究生(杨立为、彭瑞莲、晁振华、纪嘉欣、潘奕璇)
Ø 国际基因工程机器大赛(iGEM)金奖(韩雪、李国瑞)
Ø 互联网+创新创业大赛国家级铜奖(刘子瑜、张艺馨、华夏、纪嘉欣)
Ø 大连市三好学生(杨立为)
研究方向:
Ø 基于AI辅助设计的自动化高通量生物材料制备筛选
Ø 面向循环肿瘤细胞高灵敏捕获及类器官培养的新材料研发
Ø 具有仿生微纳结构的生物活性材料
Ø 个性化肿瘤疫苗与免疫佐剂的开发
代表性文章:
Ø Chong Zhang, Fen Zeng, Zhengyang Fan, Zhen He, Liang Tai, Qiang Peng, Yixin Zhang, Zhenhua Chao, Wenning Jiang, Lingyun Jia*, Lulu Han*. An Oral Polyphenol Host-Guest Nanoparticle for Targeted Therapy of Inflammatory Bowel Disease. Acta Biomaterialia, 2023, 169 (18): 422-433.
Ø Chong Zhang, Xiaorong Gao, Xinxiu Ren, Ting Xu, Qiang Peng, Yixin Zhang, Zhenhua Chao, Wenning Jiang, Lingyun Jia*, Lulu Han*. Bacteria-Induced Colloidal Encapsulation for Probiotic Oral Delivery. ACS Nano, 2023, 17 (7), 6886–6898.
Ø Wenning Jiang, Lulu Han*, Guorui Li, Ying Yang, Qidong Shen, Bo Fan, Yuchao Wang, Xiaomin Yu, Yan Sun, Shengxiu He, Huakun Du, Jian Miao, Yuefeng Wang, and Lingyun Jia*. Bait-trap chip for accurate and ultrasensitive capture of living circulating tumor cells. Acta Biomaterialia, 2023, 162, 226-239.
Ø Lulu Han, Jiaxin Ji, Chong Zhang, Bingjian Sun, Zhenhua Chao, Hua Zhu, Xiaorong Gao Jun Ren, Fangling Ji, Liming Ma, Lingyun Jia*. One-Step Assembly of Versatile Multifunctional Coatings Based on Host-Guest and Polyphenol Chemistry. Small, 2023, e2206943.
Ø Ting Xu, Lulu Han*, Lingyun Jia*. Facile calcium ion-regulated grafting of dense and highly stretched hyaluronan for selective mediation of cancer cells rolling under high-speed flow. Acta Biomaterialia, 2022, 146, 177-186.
Ø Wenning Jiang, Lulu Han*, Liwei Yang, Ting Xu, Jiabei He, Ruilian Peng, Ziyu Liu, Chong Zhang, Xiaomin Yu, Lingyun Jia*. Natural fish trap-like nanocage for label-free capture of circulating tumor cells. Advanced Science, 2020, 7, 2002259.
Ø Lingyu Li, Lulu Han*, Jian Xie, Shuxin Liu, Lingyun Jia*. Multi-sites polycyclodextrin adsorbents for removal of protein-bound uremic toxins combining with hemodialysis. Carbohydrate Polymers, 2020, 247, 116665.
Ø Lulu Han, Ruilian Peng, Wenning Jiang, Ting Xu, Chong Zhang, Kaidi Chen, Yixin Zhang, Haiyuan Song, Lingyun Jia*. Coordination-driven reversible surfaces with site-specifically immobilized nanobody for dynamic cancer cell capture and release. Journal of Materials Chemistry B, 2020, 8 (33), 7511-7520.
Ø Liwei Yang, He Sun, Wenning Jiang, Ting Xu, Bing Song, Ruilian Peng, Lulu Han*, Lingyun Jia. A chemical method for specific capture of circulating tumor cells using label-free polyphenol-functionalized films. Chemistry of Materials, 2018, 30, 4372-4382.
Ø Liwei Yang, Lulu Han*, QiLiu, Yige Xu, Lingyun Jia*. Galloyl groups-regulated fibrinogen conformation: Understanding antiplatelet adhesion on tannic acid coating. Acta Biomaterialia, 2017, 64, 187-199.
Ø Liwei Yang, Lulu Han*, Lingyun Jia*. A Novel Platelet-Repellent Polyphenolic Surface and Its Micropattern for Platelet Adhesion Detection. ACS Applied Materials & Interfaces. 2016, 8 (40): 26570-26577.
Ø Lulu Han, Zhengwei Mao*, Jindan Wu, Yang Guo, Tanchen Ren, Changyou Gao*. Directional Cell Migration through Cell-Cell Interaction on Polyelectrolyte Multilayers with Swelling Gradients. Biomaterials. 2013, 34 (4): 975-984.
ORCID:https://orcid.org/0000-0002-8608-4561
Google Scholar: https://scholar.google.com/citations?hl=en&user=hUToYjgAAAAJ
