自由基测量与纳米酶

Erstellt am: 29. September 2024

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73. Shuang Wang, Xueliang Liu, Dali Wei, Huayuan Zhou, ...Yu Yang*, Weihong Tan*. Journal of the American Chemical Society, 2024. In revision. (IF=14.4) 72. Dongsheng Mao,..Xueliang Liu,Yu Yang*. Chem, 2024. In revision. (IF=19.1) 71. Ziyi Gu#, Xueliang Liu#, Zhen Qi, Zhou Fang, Yiting Jiang, Yuting Huang, Yongyi Wang*, Lianming Wu*, Yu Yang*. A antioxidant nanozyme for targeted cardiac fibrosis therapy post myocardial infarction, Chemical Engineering Journal, 2024. In minor revision. (IF=13.3) 70. Yuting Huang#, Xueliang Liu#, Jiawei Zhu#, Zhejie Chen, Lu Yu, Xin Huang, Chuhuang Dong, Jiabei Li, Huayuan Zhou, Yu Yang*, Weihong Tan. Enzyme core spherical nucleic acid that enables enhanced cuproptosis and anti-tumor immune response through alleviating tumor hypoxia, Journal of the American Chemical Society, 2024,146(20):13805-13816. (IF=14.4) 69. Dongsheng Mao#, Ziliang Dong, Xueliang Liu, Wenxing Li, Hongyi Li, Chao Gu, Ganghui Chen, Xiaoli Zhu*, Yu Yang*. An Intelligent DNA Nanoreactor for Easy-to-Read In Vivo Tumor Imaging and Precise Therapy, Angewandte Chemie International Edition, 2024, 63(7):e202311309. (IF=16.1) 68. Xueliang Liu#, Binghua Chen#, Jingqi Chen#, Xuan Wang, Xinfeng Dai, Yuqing Li, Huayuan Zhou, Lianming Wu*, Zhuang Liu*, Yu Yang*. A Cardiac-Targeted Nanozyme Interrupts the Inflammation-Free Radical Cycle in Myocardial Infarction, Advanced Materials, 2024, 36(2):2308477.(IF=27.4) 67. Wen Qiao#, Jingqi Chen#, Huayuan Zhou, Cegui Hu, Sumiya Dalangood, Hanjun Li, Dandan Yang*, Yu Yang*, Jun Gui*. A Single-Atom Manganese Nanozyme Mn-N/C Promotes Anti-Tumor Immune Response via Eliciting Type I Interferon Signaling, Advanced Science, 2024, e2305979. (IF=14.3) 66. Xin Huang#, Jiawei Zhu#, Chuhuang Dong, YuqingLi, QingYu, Xuan Wang, Zhejie Chen, Jiabei Li, Yu Yang*, HaifangWang*. Polyvalent Aptamer-Functionalized NIR-II Quantum Dots for Targeted Theranostics in High PDL1-Expressing Tumors, ACS Applied Materials & Interfaces, 2024. (IF=9.5) 65. Jia Ge, Yating Yuan, Hao Yang*, Ruijie Deng, Zhaohui Li*, Yu Yang*. Smartphone-assisted colorimetric sensor based on single-atom Cu–C–N nanozyme for mercury (II) ions detection, Materials Today Chemistry, 2024, 37, 102037. (IF=6.7) 64. Jian Wang#, Jiayi Wang#, Huayuan Zhou, Rui Ma, Zhou Fang, Jiawei Zhu, Zhejie Chen, Xinfeng Dai, , Dali Wei, Jiabei Li, Yiting Jiang, Qian Xia*, Xueliang Liu*, Yu Yang*. Universal Antibacterial and Anti-inflammatory Treatment using Prussian Blue Nanozyme, EngMedicine, 2024, 1, 1, 100006. 63. Zehua Cheng, Ting Wang, Mai Luo, Sijia Wu, Shiyao Hua,Yuqing Li, Yu Yang, Liang Zou, Jinchao Wei*, Peng Li*. A new luminescent nickel nanocluster with solvent and ion induced emission enhancement toward heavy metal analysis, Biosensors and Bioelectronics, 2024, 264, 116660. (IF=10.7) 2023年 62. Xueliang Liu#, Fan Li#, Ziliang Dong, Chao Gu, Dongsheng Mao , Jingqi Chen, Lei Luo, Yuting Huang, Jie Xiao*, Zhanchun Li*, Zhuang Liu*, Yu Yang*. Metal-polyDNA nanoparticles reconstruct osteoporotic microenvironment for enhanced osteoporosis treatment, Science Advances, 2023, 9(31), eadf3329. Highlighted by Nat. Rev. Rheumatol. 2023,19, 606. (IF=13.6) 61. Yuqing Li#, Xueliang Liu#, Lu Yu, Xin Huang, Xuan Wang, Da Han*, Yu Yang*, and Zhuang Liu*. Covalent LYTAC Enabled by DNA Aptamers for Immune Checkpoint Degradation Therapy, Journal of the American Chemical Society, 2023,145, 45, 24506–24521. (IF=15.0) 60. Chao Gu#, Xueliang Liu#, Lei Luo, Jingqi Chen, Xiao Zhou, Ganghui Chen, Xin Huang, Lu Yu, Qian Chen, Yu Yang*, and Yang Yang*. Metal-DNA Nanocomplexes Enhance Chemo-dynamic Therapy by Inhibiting Autophagy-Mediated Resistance, Angewandte Chemie International Edition, 2023, 62(50):e202307020. (IF=16.6) 59. Yuqing Li#, Jingqi Chen#, Jinchao Wei, Xueliang Liu, Lu Yu, Linqi Yu*, Ding Ding* and Yu Yang*. Metallic nanoplatforms for COVID-19 diagnostics: versatile applications in the pandemic and post-pandemic era, Journal of Nanobiotechnology, 2023; 21(1):255. (IF=10.2) 58. Ganghui Chen, Dongsheng Mao, Xuan Wang, Jingqi Chen, Chao Gu, Shuqin Huang, Yu Yang*, Fang Zhang* and Weihong Tan. Aptamer-based self-assembled nanomicelle enables efcient and targeted drug delivery, Journal of Nanobiotechnology, 2023, 21(1):415. (IF=10.2) 57. Dandan Yang#, Jingqi Chen#, Yuting Huang#, Ganghui Chen, Xueliang Liu, Xuan Wang, Like Yang, Zhaohui Li, Jie Hu*, Qi Zhou*, Jia Ge*, Yu Yang*. Oxidase-like Fe–N/C single atom nanozyme enables sensitive detection of ascorbic acid and acid phosphatase, Analytica Chimica Acta, 2023,341221. (IF=6.2) 56. Lei Luo, Dandan Yang*, Yu Yang*. New biosensors detect light deep inside the brain. Brain-X, 2023,1,1,e3. 55. Jingqi Chen, Bo Liu, Xuan Wang, Xueliang Liu, Dandan Yang*, Yu Yang*. Constructing artificial nucleobase compilation to enable precise molecular medicine.Chinese Journal of Chemistry, 2023,041(011): 1385-1398. (IF=5.4) 54. Jiayi Wang#, Jiahua Pan#, Yijun Tang, Jingqi Chen, Xiaochen Fei, Wei Xue* and Xueliang Liu*.Advances of hafnium based nanomaterials for cancer theranostics. Frontiers in Chemistry, 2023,11:1283924. (IF=5.5) 53. Dan Wang, Jing Zhang, Zhiyong Huang, Yuhang Yang, Ting Fu, Yu Yang, Yifan Lyu, Jiahui Jiang, Liping Qiu, Zehui Cao, Xiaobing Zhang, Qimin You, Yuankui Lin, Zilong Zhao*, Weihong Tan*. Robust Covalent Aptamer Strategy Enables Sensitive Detection and Enhanced Inhibition of SARS-CoV-2 Proteins, ACS Central Science, 2023, 9(1):72-83. (IF=18.2) 52. Yang Sun, Die Yu, Xinyao Geng, Ding Ding, Yu Yang, Zhuang Liu, Zeyu Xiao, Ruowen Wang*, Weihong Tan*. Artificial Base-Directed In Vivo Assembly of an Albumin-siRNA Complex for Tumor-Targeting Delivery, ACS Applied Materials & Interfaces, 2023, 15, 7, 8872–8883. (IF=9.5) 51. Shujuan Xu, Lei He, Fengming Chen, Wenya Dang, Sitao Xie, Long Li, Cheng Cui*, Yu Yang, Yanlan Liu*, Weihong Tan*. Bioinspired molecular engineering of bivalent aptamers by ligand-induced self-dimerization. Chemical Communications, 2023,59(32):4790-4793. (IF=4.9) 2022年 50. Xiaohao Liu#, Dongsheng Mao#, Yuchen Song, Liucun Zhu, Albertina N Isak, Cuicui Lu, Guoli Deng, Feng Chen, Fenyong Sun*, Yu Yang*, Xiaoli Zhu*, Weihong Tan*. Computer-aided design of reversible hybridization chain reaction (CAD-HCR) enables multiplexed single-cell spatial proteomics imaging. Science Advances, 2022, 8(2), eabk0133. (IF=13.6) 49. Yang Sun#, Liuting Mo#, Xiaoxiao Hu#, Die Yu, Sitao Xie, Jianglin Li, Zilong Zhao, Xiaohong Fang, Mao Ye*, Liping Qiu*, Weihong Tan*, Yu Yang*. Bispecific Aptamer-Based Recognition-then-Conjugation Strategy for PD1/PDL1 Axis Blockade and Enhanced Immunotherapy. ACS Nano, 2022,16(12):21129-21138. (IF=17.1) 48. Yao Liu, Jingshan Luo, Yujing Liu, Wen Liu, Guangtao Yu, Yuting Huang, Yu Yang*, Xiaojia Chen*, Tongkai Chen*. Brain-Targeted Biomimetic Nanodecoys with Neuroprotective Effects for Precise Therapy of Parkinson's Disease. ACS Central Science, 2022,8(9):1336-1349. (IF=18.2) 47. Yu Yang, Bo Liu, Yuan Liu, Jingqi Chen, Yujia Sun, Xiaoshu Pan, Jun Xu, Shujuan Xu, Zhuang Liu*, Weihong Tan*. DNA-Based MXFs to Enhance Radiotherapy and Stimulate Robust Antitumor Immune Responses. Nano Letters, 2022, 22(7): 2826-2834. (IF= 10.8) 46. Jia Ge, Like Yang, Zhaohui Li, Yi Wan*, Dongsheng Mao, Ruijie Deng, Qi Zhou*, Yu Yang*, Weihong Tan*. A colorimetric smartphone-based platform for pesticides detection using Fe-N/C single-atom nanozyme as oxidase mimetics. Journal of Hazardous Materials, 2022, 436:129199. (IF=13.6) 45. Guowang Cheng#, Xueliang Liu#, Yujing Liu, Yao Liu, Rui Ma, Jingshan Luo, Xinyi Zhou, Zhenfeng Wu*, Zhuang Liu, Tongkai Chen*, Yu Yang*. Ultrasmall Coordination Polymers for Alleviating ROS-Mediated Inflammatory and Realizing Neuroprotection against Parkinson’s Disease. Research, 2022, 9781323. (IF=11.0) 44. Jie Hu#, Rui Chen#, Zhenglin Li#, Fenzan Wu, Yanhong Yang, Yu Yang*, Xiaokun Li*, Jian Xia*. Polyphenol-Coordinated Supramolecular Hydrogel as a Promising “One-Stop-Shop” Strategy for Acute Infected Wound Treatment. Applied Materials Today, 2022,29.101586. (IF=8.3) 43. Zehua Cheng, Jinchao Wei, Liqiang Gu, Liang Zou, Ting Wang, Ling Chen, Yuqing Li*, Yu Yang, Peng Li*. DNAzyme-based biosensors for mercury (Ⅱ) detection: Rational construction, advances and perspectives. Journal of Hazardous Materials, 2022:128606. (IF=13.6) 42. Dongsheng Mao, Cuicui Lu, Runchi Zhang, Liucun Zhu, Yuchen Song, Chang Feng, Qianqian Zhang, Tianshu Chen, Yu Yang, Guifang Chen*, Xiaoli Zhu*, Weihong Tan*. Computer-Aided Design of DNA Self-Limited Assembly for Relative Quantification of Membrane Proteins. Analytical Chemistry, 2022, 94(28):10263-10270. (IF=7.4) 41. Mengze Xu, Yu Yang, Zhen Yuan*. Breast Cancer Cell Membrane Camouflaged Lipid Nanoparticles for Tumor-Targeted NIR-II Phototheranostics. Pharmaceutics, 2022,14(7):1367.(IF=5.4) 2021年 40. Yu Yang, Jun Xu, Yang Sun, Liuting Mo, Bo Liu, Xiaoshu Pan, Zhuang Liu*, Weihong Tan*. Aptamer-Based Logic Computing Reaction on Living Cells to Enable Non-Antibody Immune Checkpoint Blockade Therapy. Journal of the American Chemical Society, 2021, 143, 22, 8391–8401. (IF= 16.383) 39. Renyikun Yuan#, Yuqing Li#, Shan Han#, Xinxin Chen, Jingqi Chen, Jia He, Hongwei Gao*, Yang Yang*, Shilin Yang, Yu Yang*. Fe-Curcumin Nanozyme-mediated ROS Scavenging and Anti-inflammation for Acute Lung Injury. ACS Central Science, 2021, 8(1): 10-21. (IF= 18.728) 38. Bo Liu, Yu Yang*, Yu Chao, Zhisheng Xiao, Jialu Xu, Chunjie Wang, Ziliang Dong, Linqian Hou, Qiaofeng Li, Zhuang Liu*. Equipping cancer cell membrane vesicles with functional DNA as a targeted-vaccine for cancer immunotherapy. Nano letters, 2021, 21(22):9410-9418. (IF= 12.262) 37. Yu Yang*, Hao Wu, Bo Liu, Zhuang Liu*. Tumor microenvironment-responsive dynamic inorganic nanoassemblies for cancer imaging and treatment. Advanced Drug Delivery Reviews, 2021,179, 114004. (IF= 17.873) 36. Jia Ge*, Yanmei Shen, Weixia Wang, Yuqing Li*, Yu Yang*. N-doped carbon dots for highly sensitive and selective sensing of copper ion and sulfide anion in lake water. Journal of Environmental Chemical Engineering, 2021, 9(2), 105081. (IF= 7.968) 35. Zhejie Chen, Mohamed A. Farag, Zhangfeng Zhong, Chen Zhang, Yu Yang, Shengpeng Wang*, Yitao Wang*. Multifaceted role of phyto-derived polyphenols in nanodrug delivery systems. Advanced Drug Delivery Reviews, 2021 ,176:113870. (IF= 17.837) 2020年 34. Xiaoshu Pan#, Yu Yang#, Long Li, Xiaowei Li, Qiang Li, Cheng Cui*, Bang Wang, Hailan Kuai, Jianhui Jiang, Weihong Tan*. A bispecific circular aptamer tethering built-in universal molecular tag for functional protein delivery. Chemical Sciences, 2020, 11(35): 9648-9654. (IF=9.825) 33. Yu Yang, Zhuang Liu*. Chemiluminescent Nanosystems for Imaging Cancer Chemodynamic Therapy. Chem, 2020, 6 (9): 2127-2129. (IF= 22.804) 32. Yu Yang, Xiaoqi Sun, Jun Xu, Cheng Cui*, Hoda Safari Yazd, Xiaoshu Pan, Yujie Zhu , Xigao Chen, Xiaowei Li, Jin Li, Weihong Tan* Circular bispecific Aptamer-mediated targeted cellular immunotherapy. ACS Nano, 2020, 14(8): 9562-9571. (IF= 15.881) 31. Yu Yang, Wenjun Zhu, Liang Cheng, Ren Cai, Xuan Yi, Jiaxuan He, Xiaoshu Pan, Lu Yang, Kai Yang, Zhuang Liu, Weihong Tan*, Meiwan Chen*. Tumor microenvironment (TME)-activatable circular aptamer-PEG as an effective hierarchical-targeting molecular medicine for photodynamic therapy.Biomaterials, 2020, 246: 119971. (IF=12.479) 30. Yu Yang#, Jiaxuan He#, Wenjun Zhu, Xiaoshu Pan, Hoda Safari Yazd, Cheng Cui, Lu Yang, Xiaowei Li, Long Li, Liang Cheng, Liangzhu Feng, Ruowen Wang, Zhuang Liu*, Meiwan Chen*, Weihong Tan*. Molecular domino reactor built by automated modular synthesis for cancer treatment. Theranostics, 2020:10 (9), 4030 (IF=11.556) 29. Hoda Safari Yazd#, Yu Yang#, Long Li, Lu Yang, Xiaowei Li, Xiaoshu Pan, Zhuo Chen, Jianhui Jiang, Cheng Cui, Weihong Tan*. Precise Deposition of Polydopamine on Cancer Cell Membrane as Artificial Receptor for Targeted Drug Delivery. iScience, 2020, 23(12):101750. (IF=5.458) 28. Xiaowei Li, Yu Yang, Hengzhi Zhao, Tian Zhu, Zhihui Yang, Haiyan Xu, Yueqiang Fu, Fan Lin, Xiaoshu Pan, Long Li, Cheng Cui, Min Hong, Lu Yang, Kevin K. Wang*, Weihong Tan*. Enhanced in Vivo Blood-Brain Barrier Penetration by Circular Tau-Transferrin Receptor Bifunctional Aptamer for Tauopathy Therapy. Journal of the American Chemical Society, 2020,142(8):3862-3872. (IF=15.419) 27. Xianwen Wang, Linxin Fan, Liang Cheng*, Yanbin Sun, Xiyu Wang, Xiaoyan Zhong, Qianqian Shi, Fei Gong, Yu Yang, Yan Ma, Zhaohua Miao, Zhengbao Zha*. Biodegradable Nickel Disulfide Nanozymes with GSH-Depleting Function for High-Efficiency Photothermal-Catalytic Antibacterial Therapy. iScience, 2020, 23(7):101281. (IF=5.458) 26. Yujia Sun, Liwei Zheng, Yu Yang, Xu Qian, Ting Fu*, Xiaowei Li, Zunyi Yang, He Yan, Cheng Cui*, Weihong Tan*. Metal-Organic Framework Nanocarriers for Drug Delivery in Biomedical Applications. Nano micro letters, 2020,12(1):103. (IF=16.419) 2019年 25. Yuan Liu, Yu Yang, Yujia Sun, Jibin Song, Nicholas G Rudawski, Xiaoyuan Chen*, Weihong Tan*. Ostwald Ripening-Mediated Grafting of Metal-Organic Frameworks on a Single Colloidal Nanocrystal to Form Uniform and Controllable MXF. Journal of the American Chemical Society, 2019,141(18):7407-7413. (IF= 14.612) 24. Wenjun Zhu#, Yu Yang#, Qiutong Jin, Yu Chao, Longlong Tian, Jingjing Liu, Ziliang Dong, Zhuang Liu*. Two-dimensional metal-organic-framework as a unique theranostic nano-platform for nuclear imaging and chemo-photodynamic cancer therapy. Nano Research, 2019, 12(6):1307-1312.(IF=8.183) 23. Jinchao Wei, Yu Yang, Jiayi Dong, Shuangpeng Wang*, Peng Li*. Fluorometric determination of pesticides and organophosphates using nanoceria as a phosphatase mimic and an inner filter effect on carbon nanodots. Microchimica Acta, 2019, 186(2): 66. (IF= 6.232) 22. Ren Cai#, Dan Yang#, Keng-Te Lin, Thai Son Cao, Yifan Lyv, Kangfu Chen, Yu Yang, Jia Ge, Lian Xia, George Christou, Yuliang Zhao, Zhuo Chen, Weihong Tan*. 3D halos assembled from Fe3O4/Au NPs with enhanced catalytic and optical properties. Nanoscale, 2019, 11(43):20968-20976. (IF= 6.895) 2018年 21. Yu Yang, Wenjun Zhu, Liangzhu Feng, Yu Chao, Xuan Yi, Ziliang Dong, Kai Yang, Weihong Tan, Zhuang Liu*, Meiwan Chen*. G-quadruplex based metal-organic nanoparticles as dissociable nanocarrier to modulate tumor hypoxia for effective combination therapy. Nano Letters, 2018 (11), 6867-6875.(IF= 12.279) 20. Yu Yang, Ligeng Xu, Wenjun Zhu, Liangzhu Feng, Jingjing Liu, Qian Chen, Ziliang Dong, Jiayue Zhao, Zhuang Liu*, Meiwan Chen*. One-pot synthesis of pH-responsive charge-switchable PEGylated metal-organic nanoparticles as a carrier-free nanomedicine-drug for improved cancer therapy. Biomaterials, 2018,156:121-133. (IF= 10.273) 19. Yu Chao, Chao Liang, Yu Yang, Guanglin Wang, Debabrata Maiti, Longlong Tian, Fei Wang, Wei Pan, Song Wu*, Kai Yang*, Zhuang Liu*. Highly effective radioisotope cancer therapy with a non-therapeutic isotope delivered and sensitized by nanoscale coordination polymers. ACS nano, 2018, 12(8): 7519-7528 (IF= 13.903) 18. Long Li, Ying Jiang, Cheng Cui, Yu Yang, Penghui Zhang, Kimberly Stewart, Xiaoshu Pan, Xiaowei Li, Lu Yang, Liping Qiu, Weihong Tan*. Modulating Aptamer Specificity with pH-Responsive DNA Bonds. Journal of the American Chemical Society, 2018,140(41):13335-13339. (IF= 14.695) 17. Lu Yang, Hao Sun, Yuan Liu, Weijia Hou, Yu Yang, Ran Cai, Cheng Cui, Penghui Zhang, Xiaoshu Pan, Xiaowei Li, Long Li, Brent S. Sumerlin*, Weihong Tan*. Self-Assembled Aptamer-Grafted Hyperbranched Polymer Nanocarrier for Targeted and Photoresponsive Drug Delivery. Angewandte Chemie International Edition, 2018, 57(52):17048-17052. (IF= 12.257) 16. Jia Ge#, Ren Cai#, Lu Yang, Liangliang Zhang, Ying Jiang, Yu Yang, Cheng Cui, Shuo Wan, Xia Chu*, Weihong Tan*. Core-Shell HA-AuNPs@SiNPs Nanoprobe for Sensitive Fluorescence Hyaluronidase Detection and Cell Imaging. ACS Sustainable Chemistry Engineering, 2018, 6, 12, 16555–16562. (IF= 6.970) 15. Yuan Liu#, Weijia Hou#, Lian Xia , Cheng Cui , Shuo Wan , Ying Jiang , Yu Yang , Qiong Wu , Liping Qiu*, Weihong Tan*. ZrMOF nanoparticles as quenchers to conjugate DNA aptamers for target-induced bioimaging and photodynamic therapy. Chemical Science, 2018 , 9(38):7505-7509. (IF= 9.556) 2017年 14. Yu Yang, Wenjun Zhu, Ziliang Dong, Yu Chao, Lai Xu*, Meiwan Chen*, Zhuang Liu*. 1D Coordination Polymer Nanofibers for Low-Temperature Photothermal Therapy. Advanced Materials, 2017, 29(40).(IF=21.950) 13. Jiayue Zhao, Yu Yang, Xiao Han, Chao Liang, Jingjing Liu, Xuejiao Song, Zili Ge*, Zhuang Liu*. Redox-Sensitive Nanoscale Coordination Polymers for Drug Delivery and Cancer Theranostics. 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以上论文是否涉及到自由基浓度的测量,尤其是纳摩尔级别浓度的自由基测量?

Antwort

潜心研究自由基浓度

现在正在检查这些论文是否涉及自由基浓度的测量,尤其是纳摩尔级别浓度的测量。我会逐个论文进行分析,以尽可能准确地回答用户的问题。

筛选和分析数据

我正在筛选和分析这些文献,看看它们是否涉及到纳摩尔级别自由基浓度的测量。通过深读标题和简短描述,逐步缩小研究范围。

收集和分析

对比不同期刊的论文,我正在选择最具相关性的课题。幸运的是,有一篇特别关注心肌梗死中自由基循环中断的纳米酶。

发现关键词

标题揭示纳米酶与心肌梗死中的自由基循环中断有关。这让我想到自由基测量或活性氧种(ROS)的可能性。

探索潜在应用

我正在寻找与化疗相关的新型纳米材料,可能会涉及ROS。还在考虑如何检测大脑内的深层光。

审视相关性

将焦点放在2023年的文献组成榜单时,我发现第一份文献与人工核苷基的合成和精确分子医学相关,但似乎不直接相关。第二份文献探讨是哈芬材料在癌症疗法中的应用,也不是当前讨论的焦点。第三至第五份文献涉及的是SARS-CoV-2蛋白检测、人工核苷基指导的载药复合物组装、生物启发的二价探针分子工程等,虽有生物医学方向,但均未直接关联当前需要聚焦的主题。

识别关键文献

我正在通过名为 "Brain-Targeted Biomimetic Nanodecoys with Neuroprotective Effects for Precise Therapy of Parkinson's Disease" 的论文,探讨ROS在帕金森病精准治疗中的作用。

筛选文献

进行文献筛选,特别关注与ROS清除和抗炎有关的研究,提出例如Fe-Curcumin纳米酶的作用。

调查文献

我正在查看关于水体铜离子和硫阴离子的检测的文献。这些文献涉及多个主题,包括环保、纳米药物传递系统、癌症免疫疗法和血脑屏障穿透。

探索候选论文

我正在查看癌症治疗的不同方法,包括分子反应器、自组装载体和金属有机纳米粒。

分析不同研究

正在分析涉及自由基和ROS的多篇研究,涵盖了纳米材料和医学应用的多个方面。每篇文章都探讨了创新的纳米技术和其潜在的医学应用。

第17篇文章探讨了纳米级金属有机框架在联合光动力和放射治疗中的应用。第16篇文章着重于Fe3O4基纳米探针用于检测银离子在水溶液和细菌中的应用。第15篇文章与第17篇相同。第14篇文章聚焦于单态氧灵敏的纳米尺度配位聚合物用于光控制的药物释放在癌症联合治疗中的应用。第13篇文章涉及红氧灵敏的纳米尺度配位聚合物用于药物输送和癌症治疗的诊断。第12篇文章探讨了多阶段红氧/pH/H2O2响应的癌症诊疗纳米平台。

探索癌症治疗

分析含有纳米技术的论文,涉及催化酶、ROS、切莫放射等方面。还发现一些论文涉及利用载体进行癌症治疗。

分辨研究论文

我刚开始看了五篇论文,里边有提到ROS(反应性氧种类),纳米酶和自由基等内容。

笔记中的关键点

我正在整理一些关于心脏靶向纳酶的文献,探讨其在乳头肌梗死中的抗炎作用,同时还研究铁-莽草酸纳酶在急性肺损伤中的去除活性氧及抗炎效应。这些研究都有助于深入理解心脏和肺部疾病的细胞机制。

确认研究领域

我在看看一些论文涉及测量自由基浓度,可能包括纳摩尔水平,特别是在抗氧化活性的纳酶方面。

Antwort

是的,以上论文中有几篇涉及到自由基浓度的测量,尤其是在纳摩尔级别的自由基测量。具体来说:

  1. 第68篇“A Cardiac-Targeted Nanozyme Interrupts the Inflammation-Free Radical Cycle in Myocardial Infarction, Advanced Materials, 2024”。这篇论文讨论了一种针对心脏的纳米酶,能够干扰心肌梗死中的炎症-自由基循环。这涉及到对自由基浓度的测量和调控。

  2. 第71篇“A antioxidant nanozyme for targeted cardiac fibrosis therapy post myocardial infarction, Chemical Engineering Journal, 2024”。这篇论文介绍了一种抗氧化纳米酶,用于心肌梗死后的心脏纤维化治疗,可能涉及到自由基的检测和测量。

  3. 第44篇“Ultrasmall Coordination Polymers for Alleviating ROS-Mediated Inflammatory and Realizing Neuroprotection against Parkinson’s Disease, Research, 2022”。该研究关注通过缓解由活性氧(ROS)介导的炎症来实现对帕金森病的神经保护,涉及到对ROS(自由基)的浓度测量。

  4. 第39篇“Fe-Curcumin Nanozyme-mediated ROS Scavenging and Anti-inflammation for Acute Lung Injury, ACS Central Science, 2021”。论文中提到的铁-姜黄素纳米酶用于清除ROS并抗炎,涉及到对自由基浓度的精确测量。

  5. 第57篇“Oxidase-like Fe–N/C single atom nanozyme enables sensitive detection of ascorbic acid and acid phosphatase, Analytica Chimica Acta, 2023”。这项研究利用类氧化酶的单原子铁纳米酶进行高灵敏度检测,可能涉及到自由基在纳摩尔级别的测量。

这些论文中,研究人员开发了各种纳米材料和纳米酶,用于检测、调控和清除生物系统中的自由基。这些研究通常需要对自由基浓度进行精确测量,包括纳摩尔级别的检测,以评估纳米材料的性能和生物效应。

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