期刊文献+
共找到2篇文章
< 1 >
每页显示 20 50 100
药品生物技术专业核心课程校企协同型课堂生态的构建
1
作者 罗凯 覃鸿妮 +3 位作者 谢钰珍 吴凡 胡海艳 胡振新 《教育教学研究前沿》 2024年第5期17-21,共5页
随着新质生产力的发展和生物医药产业的战略地位提升,高等职业教育在培养高素质技术技能人才方面面临挑战。本研究针对苏州市高等职业学院药品生物技术专业核心课程存在的问题,提出了校企协同型课堂生态构建方案。旨在通过产教融合和校... 随着新质生产力的发展和生物医药产业的战略地位提升,高等职业教育在培养高素质技术技能人才方面面临挑战。本研究针对苏州市高等职业学院药品生物技术专业核心课程存在的问题,提出了校企协同型课堂生态构建方案。旨在通过产教融合和校企合作,优化课程内容和教学方法,提高教育质量。具体内容包括重构岗位需求的课程体系、整合教学资源、完善评价机制等。研究采用问卷调查、企业走访等方法,分析了现状并设计了改革策略。成果表明,理论与实践相结合的校企协同型课堂生态有效提升了学生的职业技能和素质,促进了学生全面发展。 展开更多
关键词 校企协同 课堂生态 药品生物技术
下载PDF
Perturbing tumor cell metabolism with a Ru(Ⅱ)photo-redox catalyst to reverse the multidrug resistance of lung cancer 被引量:1
2
作者 Siqi Wei Hui Liang +10 位作者 Anyi Dao yuzhen xie Fengshu Cao Qingyan Ren Ashish Kumar Yadav Rajesh Kushwaha Arif Ali Mandal Samya Banerjee Pingyu Zhang Shaomin Ji Huaiyi Huang 《Science China Chemistry》 SCIE EI CAS CSCD 2023年第5期1482-1488,共7页
The novel concept of enzyme photocatalysis has recently attracted much attention in developing anticancer therapy.However,the relationship between coenzyme depletion and cellular metabolomic changes has rarely been in... The novel concept of enzyme photocatalysis has recently attracted much attention in developing anticancer therapy.However,the relationship between coenzyme depletion and cellular metabolomic changes has rarely been investigated.Herein,we report the rational design of a deep-red light-triggered bis-tridentate Ru(Ⅱ)photocatalyst(Ru3),which induces cell metabolism disorder to combat multidrug resistance.Ru3 exhibits promising multiple triplet excited states,a long lifetime,and high photocatalytic activity toward the coenzyme.Consequently,Ru3 shows high phototherapeutic activity(photo index=191–833)against diverse resistant(cisplatin,5-fluorouracil,or paclitaxel)lung cancer cells by inhibiting cellular peptide,lipid,and glycerophospholipid metabolism.We believe that cell metabolism inhibition by photo-redox catalysts is an effective form of therapeutics for drug-resistant cancer cells. 展开更多
关键词 drug resistance photocatalytic therapy Ru(Ⅱ)photocatalyst NADPH cell metabonomic
原文传递
上一页 1 下一页 到第
使用帮助 返回顶部