赌球者-嫩模赌球白富美世界杯

Recent Progress in Tumor Radiotherapy and Immunotherapy by Prof. Lianhui Wang and Zhimin Luo's Team from NJUPT Published in Nature Communications

文章來(lái)源:School of Chemistry and Life Sciences, State?Key Laboratory for Organic Electronics and Information Displays, Science and Technology Department發(fā)布時(shí)間:2024-10-09瀏覽次數(shù):10

  Recently, the research team of Prof. Lianhui Wang and Zhimin Luo from State Key Laboratory for Organic Electronics and Information Displays, School of Chemistry and Life Sciences in Nanjing University of Posts and Telecommunications, along with Professor Yunlu Dai's team from the University of Macau, achieves new progress in the field of tumor radiotherapy and immunotherapy. Their findings, titled Two-dimensional coordination risedronate-manganese nanobelts as adjuvant for cancer radiotherapy and immunotherapy, are published in the international academic journal, Nature Communications. Prof. Lianhui Wang, Zhimin Luo along with Prof. Dai, are co-corresponding authors of this paper. Young faculty member Zhusheng Huang and master's student Shiqian Huang are co-first authors. Prof. Lixing Weng provides significant support for the genome-wide RNA transcriptome analysis in this paper.

  Radiation therapy-induced tumor damage can be viewed as a promising opportunity to establish endogenous in situ vaccines. However, the efficacy of in situ cancer vaccination (ISCV) induced by radiation therapy (RT) is very weak and often insufficient to elicit systemic anti-tumor immunity. Therefore, Prof. Lianhui Wang and Zhimin Luo's team develops two-dimensional risedronate-manganese nanobelts (RMn-NBs) based on the clinical osteoporosis drug (risedronate) and trace element (manganese ions) as an immunoadjuvant for radiotherapy, by using a drug self-assembly delivery strategy to enhance the tumor in situ vaccine effect induced by radiotherapy. RMn-NBs exhibit excellent T2 magnetic resonance imaging performance and enhanced Fenton-like catalytic activity, effectively inducing immunogenic cell death in tumor cells. Additionally, RMn-NBs significantly inhibit the HIF-1α/VEGF pathway, and activate the cGAS/STING pathway to promote the secretion of type I interferons, thereby strengthening the ISCV effect induced by radiotherapy and enhancing immune checkpoint blockade therapies for both primary and metastatic tumors. As a nanoadjuvant for radiotherapy, RMn-NBs demonstrate good biocompatibility and therapeutic efficacy, offering promising applications for cancer radiotherapy and immunotherapy.

Figure. Two-dimensional coordination risedronate-manganese nanobelts as adjuvant for cancer radiotherapy and immunotherapy

  The innovative use of existing drugs and the drug self-assembly delivery strategy provide new insights for radiotherapy and clinical translation of immunotherapy. This work is supported by the Natural Science Foundation of Jiangsu Province-Major Project, the National Natural Science Foundation of China, Macao Young Scholars Program, Natural Science Key Fund for Universities in Jiangsu Province, General project of natural science research in colleges and universities of Jiangsu Province, Natural Science Research Start up Foundation of Recruiting Talents of Nanjing University of Posts and Telecommunications.


(Written by Zhusheng Huang,   Initially Reviewed by Zhimin Luo, Zuqin Qiao and Xiubin Dai,   Edited by Cunhong Wang,  Reviewed by Feng Zhang)


宝马会网上娱乐| 百家乐闲拉长龙| 百家乐官网赌场博彩赌场网| 百家乐官网永利娱乐场| 百家乐注码管理| 威尼斯人娱乐棋牌是真的吗| 网络博彩群| 百家乐官网和局投注法| 网上百家乐官网骗人的| 去澳门百家乐官网的玩法技巧和规则| 百家乐官网PK| 百家乐游戏机价格| 大发888真钱| 百家乐官网庄闲当哪个好| 风水24山辛山乙| 百家乐平注资讯| 砚山县| 百家乐官网皇室百家乐官网| 圣安娜百家乐包杀合作| 真钱娱乐城| 百家乐官网高手心得| 诺贝尔百家乐的玩法技巧和规则 | 百家乐官网电话投注多少| 沙龙百家乐官网代理| 大发888在线投注| 百家乐官网合法| A8百家乐娱乐场| 皇宝国际网址| 百家乐官网楼梯缆| 百家乐赌博大全| 在线百家乐官网娱乐| 24山什么来龙是真龙| 博彩公司大全| 百家乐官网秘| 大发888娱乐游戏账号| 赌百家乐官网的高手| 百家乐官网电影网| 宝胜娱乐| 百家乐游戏世界视频| 什么棋牌游戏能赚钱| 百家乐官网路子|