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Metallomics:An integrated biometal science 被引量:5
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作者 GE RuiGuang1,2 & SUN HongZhe1 1 Department of Chemistry and Open Laboratory of Chemical Biology,The University of Hong Kong,Hong Kong,China 2 Laboratory of Integrative Biology,College of Life Sciences,Sun Yat-Sen University,Guangzhou 510006,China 《Science China Chemistry》 SCIE EI CAS 2009年第12期2055-2070,共16页
Metallomics is an emerging scientific area integrating the research fields related to the understanding of the molecular mechanisms of metal-associated life processes and the entirety of metal and metalloid species wi... Metallomics is an emerging scientific area integrating the research fields related to the understanding of the molecular mechanisms of metal-associated life processes and the entirety of metal and metalloid species within a cell or tissue type. In metallomics,metalloproteins,metalloenzymes and other metal-containing biomolecules in a biological system are referred to as metallomes,similar to genomes and proteomes in genomics and proteomics,respectively. This review discusses the concept of metallomics with a focus on analytical techniques and methods,particularly the so-called hyphenated techniques which combine a high-resolution separation technique (gel electrophoresis/laser ablation,chromatography or capillary electrophoresis) with a highly sensitive detection method such as elemental (inductively coupled plasma,ICP) or molecular (electron spray ionization (ESI) or matrix-assisted laser desorption/ionization (MALDI)) mass spectrometry,or nuclear X-ray fluorescence/absorption spectrometry. The applications of these advanced analytical methods in the identification of metallo-/phospho-/seleno-proteins,probing of relationships between structure and function of metal-loproteins,and study of clinically used metallodrugs will be selectively outlined,along with their advantages and limitations. 展开更多
关键词 METALLOMICS metallome metallodrug METALLOPROTEIN CHEMICAL SPECIATION
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金属组学:研究生命体系中金属离子的前沿交叉学科 被引量:3
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作者 葛瑞光 陈卓 孙红哲 《中国科学(B辑)》 CSCD 北大核心 2009年第7期590-606,共17页
金属组学是一门新兴的前沿交叉学科,是对若干涉及金属相关生命过程的分子机制以及对细胞与组织内全部金属离子和金属配合物进行综合研究的学科.在金属组学中,生命体系中所有的金属蛋白质、金属酶以及其他含金属的生物分子统称为金属组,... 金属组学是一门新兴的前沿交叉学科,是对若干涉及金属相关生命过程的分子机制以及对细胞与组织内全部金属离子和金属配合物进行综合研究的学科.在金属组学中,生命体系中所有的金属蛋白质、金属酶以及其他含金属的生物分子统称为金属组,这个概念与基因组学中的基因组和蛋白质组学中的蛋白质组相类似.本文对金属组学中涉及的若干概念进行阐述,并将着重介绍金属组学中的研究技术和方法,特别是"组和技术",即把一种高分辨率分离技术如凝胶电泳/激光切除、色谱或者毛细管电泳与一项高灵敏度检测方法,如电感耦合等离子体质谱、电喷雾电离质谱、基质辅助激光解吸附质谱或者X射线荧光/吸收光谱联合起来.并重点分析了这些方法的优缺点以及在分离鉴别金属蛋白、磷酸化蛋白以及硒蛋白、确定金属蛋白的结构与功能的关系和医药中的金属药物活性抗药性方面的研究中的应用. 展开更多
关键词 金属组学 金属组 金属药物 金属蛋白 化学物种
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The induction of PANoptosis in KRAS-mutant pancreatic ductal adenocarcinoma cells by a multispecific platinum complex
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作者 Xin Yuan Shuren Zhang +5 位作者 Xuanmeng Zhong Hao Yuan Dongfan Song Xiaoyu Wang Hanyang Yu Zijian Guo 《Science China Chemistry》 SCIE EI CAS CSCD 2022年第10期1978-1984,共7页
Oncogenic KRAS reprograms pancreatic ductal adenocarcinoma(PDAC) cells to a state that is awfully resistant to apoptosis.An alternative coping strategy is to trigger a nonapoptotic cell death.Herein,a multi specific p... Oncogenic KRAS reprograms pancreatic ductal adenocarcinoma(PDAC) cells to a state that is awfully resistant to apoptosis.An alternative coping strategy is to trigger a nonapoptotic cell death.Herein,a multi specific platinum complex SEP was constructed by conjugating a quinone derivative seratrodast to a prodrug of cisplatin.Interestingly,SEP-treated KRAS-mutant PDAC cells showed the characteristics of pyroptosis,apoptosis and necroptosis,similar to PANoptosis(a newfound inflammatory cell death).Mechanistically,SEP could enter cancer cells effectively,then damage nuclear DNA,boost mitochondrial superoxide anion radicals and affect various signaling pathways related to redox homeostasis and tumor metabolism.To our best knowledge,SEP is the first metal complex,even small molecule,to elicit PANoptosis(pyroptosis,apoptosis and necroptosis) in cancer cells,providing a new strategy to overcome apoptotic resistance of KRAS-mutant PDAC. 展开更多
关键词 metallodrug pancreatic ductal adenocarcinoma PANoptosis cell death platinum prodrug
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Copper-thioguanine metallodrug with self-reinforcing circular catalysis for activatable MRI imaging and amplifying specificity of cancer therapy
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作者 Haifeng Yuan Yan Zhao +6 位作者 Chan Yang Cheng Zhang Yue Yang Hongmin Meng Shuangyan Huan Guosheng Song Xiaobing Zhang 《Science China Chemistry》 SCIE EI CAS CSCD 2020年第7期924-935,共12页
For chemotherapy, drug delivery systems often suffer from the inefficient drug loading capability, which usually cause systems toxicity and extra burden to excrete carrier itself. Moreover, the cancer therapeutic effi... For chemotherapy, drug delivery systems often suffer from the inefficient drug loading capability, which usually cause systems toxicity and extra burden to excrete carrier itself. Moreover, the cancer therapeutic efficacy is also greatly limited by the specificity of tumor microenvironment for reactive oxygen species(ROS) based cancer therapeutic strategy(e.g., chemodynamic therapy). Herein, we have developed metal-drug coordination nanoplatform that can not only be responsive to tumor microenvironment but also modulate it, so as to achieve efficient treatment of cancer. Excitingly, by employing small molecule drug(6-thioguanine) as ligand copper ions, we achieve a high drug loading rate(60.1%) and 100% of utilization of metal-drug coordination nanoplatform(Cu-TG). Interestingly, Cu-TG possessed high-efficiently horseradish peroxidase-like, glutathione peroxidase-like and catalase-like activity. Under the tumor microenvironment, Cu-TG exhibited the self-reinforcing circular catalysis that is able to amplify the cellular oxidative stress, inducing notable cancer cellular apoptosis. Moreover, Cu-TG could be activated with glutathione(GSH) and facilitated for GSH triggered 6-TG release, higher selective therapeutic effect toward cancer cells, and GSH activated T1 weight-magnetic resonance imaging. Based on the above properties, Cu-TG exhibited magnetic resonance imaging(MRI) guiding, efficient and synergistic combination of chemodynamic and chemotherapy with self-reinforcing therapeutic outcomes in vivo. 展开更多
关键词 coordination nanoplatform metallodrug chemodynamic therapy circular catalysis drug delivery
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Manganese-Fluorouracil Metallodrug Nanotheranostic for MRI-Correlated Drug Release and Enhanced Chemoradiotherapy
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作者 Chan Yang Guosheng Song +6 位作者 Haifeng Yuan Yue Yang Yuqi Wang Deju Ye Hongmin Meng Shuangyan Huan Xiao-Bing Zhang 《CCS Chemistry》 CAS 2021年第4期1116-1128,共13页
For cancer therapy,drug delivery systems are often limited by insufficient drug loading capacity,which usually results in systemic toxicity and heavy metabolic burden to excrete the carriers.Herein,we reported a“one-... For cancer therapy,drug delivery systems are often limited by insufficient drug loading capacity,which usually results in systemic toxicity and heavy metabolic burden to excrete the carriers.Herein,we reported a“one-pot”method for constructing metal(Mn^(2+))–fluorouracil(FU)-coordinated nanotheranostics(Mn-FU)by self-assembly of FU(as bridging ligands)and Mn^(2+)(as metal nodes)through Mn–N/O coordination interactions.Importantly,owing to the effective coordination between Mn and FU,Mn-FU exhibits high drug loading efficacy(47.7 wt%),encapsulation efficacy(82.6%),and relatively large yield(1 g/pot).In acidic tumor microenvironments,efficient release of FU and Mn^(2+)is realized because of nitrogen protonation.The released FU and Mn^(2+)from Mn-FU are used for chemotherapy and turn on magnetic resonance imaging(MRI),respectively,achieving MRI-correlated drug release.After PEG modification,Mn-FU displays high tumor homing ability via enhanced permeability and retention effects and quick renal clearance owing to the disassembly in acidic biological conditions.As a result,Mn-FU substantially enhances the synergistic effects of chemoradiotherapy.Meanwhile,the systemic toxic side effects of free FU-based chemoradiotherapy were greatly reduced through this nanotheranostic.Our strategy offers a facile way to construct metallodrug nanotheranostics for efficient cancer theranostics. 展开更多
关键词 coordination-driven self-assembly metallodrug nanotheranostics magnetic resonance imaging synergetic chemoradiotherapy
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毛细管电泳技术在药物分析中的应用研究进展 被引量:28
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作者 吴娟芳 陈令新 +1 位作者 罗国安 王义明 《药学学报》 CAS CSCD 北大核心 2006年第5期385-389,共5页
关键词 毛细管电泳 药物分析 手性分离 相互作用 药物代谢 金属抗癌药物
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质谱在金属抗癌药物与蛋白质相互作用研究中的应用 被引量:7
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作者 胡文兵 汪福意 《质谱学报》 EI CAS CSCD 2010年第6期354-361,共8页
研究细胞毒性金属抗肿瘤药物与蛋白质的相互作用,以及这种相互作用对药物的细胞摄入、转运、代谢和生物利用度的影响,对金属抗癌药物的结构设计和优化,提高药物的抗癌活性,降低毒副作用具有重要意义。基于软电离技术的电喷雾质谱和基质... 研究细胞毒性金属抗肿瘤药物与蛋白质的相互作用,以及这种相互作用对药物的细胞摄入、转运、代谢和生物利用度的影响,对金属抗癌药物的结构设计和优化,提高药物的抗癌活性,降低毒副作用具有重要意义。基于软电离技术的电喷雾质谱和基质辅助激光解析电离质谱能够在分析检测过程中很好的保留金属抗癌药物与蛋白质的共价(配位)结合,获得药物与蛋白质结合位点的信息。同时,质谱分析还具有灵敏度高,所需样品量少,耗时短以及适用于分析复杂生物样品等优点,已成为研究金属抗癌药物与蛋白质相互作用最强有力的工具,在为药物发现提供大量化学、生物信息的同时,也极大地促进了质谱技术自身的发展。本文将结合我们在金属抗癌药物相互作用组学研究中取得的最新进展,系统地总结、评述Bottom-up和Top-down质谱分析方法在铂、钌类金属抗癌药物与蛋白质相互作用研究中的发展动态,并分析这一前沿交叉领域未来的发展趋势。 展开更多
关键词 质谱 金属抗癌药物 蛋白质 相互作用
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