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Cytokine nanosponges suppressing overactive macrophages and dampening systematic cytokine storm for the treatment of hemophagocytic lymphohistiocytosis 被引量:1
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作者 Honglan Wang Huiwen Liu +8 位作者 Jia Li Chunying Liu Hui Chen Junying Li Chunyan Sun Tao Guo Zhiqing Pang Bo Zhang Yu Hu 《Bioactive Materials》 SCIE CSCD 2023年第3期531-546,共16页
Hemophagocytic lymphohistiocytosis(HLH)is a highly fatal condition with the positive feedback loop between continued immune cell activation and cytokine storm as the core mechanism to mediate multiple organ dysfunctio... Hemophagocytic lymphohistiocytosis(HLH)is a highly fatal condition with the positive feedback loop between continued immune cell activation and cytokine storm as the core mechanism to mediate multiple organ dysfunction.Inspired by macrophage membranes harbor the receptors with special high affinity for proin-flammation cytokines,lipopolysaccharide(LPS)-stimulated macrophage membrane-coated nanoparticles(LMNP)were developed to show strong sponge ability to both IFN-γand IL-6 and suppressed overactivation of macrophages by inhibiting JAK/STAT signaling pathway both in vitro and in vivo.Besides,LMNP also efficiently alleviated HLH-related symptoms including cytopenia,hepatosplenomegaly and hepatorenal dysfunction and save the life of mouse models.Furthermore,its sponge effect also worked well for five human HLH samples in vitro.Altogether,it’s firstly demonstrated that biocompatible LMNP could dampen HLH with high potential for clinical transformation,which also provided alternative insights for the treatment of other cytokine storm-mediated pathologic conditions such as COVID-19 infection and cytokine releasing syndrome during CAR-T therapy. 展开更多
关键词 Hemophagocytic lymphohistiocytosis Cytokine storm nanosponge Macrophage activation Macrophage membranes coated nanoparticles LIPOPOLYSACCHARIDE JAK/STAT pathway
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A rapid synthesis of high surface area PdRu nanosponges:Composition-dependent electrocatalytic activity for formic acid oxidation 被引量:2
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作者 Ehteram Hasheminejad Reza Ojani Jahan Bakhsh Raoof 《Journal of Energy Chemistry》 SCIE EI CAS CSCD 2017年第4期703-711,共9页
Here, Pd Ru nanoparticle networks(NPNs) with various compositions were synthesized through an inexpensive method in water as a green solvent, at different ratios of the H;PdCl;and RuCl;precursors. This is a fast, ro... Here, Pd Ru nanoparticle networks(NPNs) with various compositions were synthesized through an inexpensive method in water as a green solvent, at different ratios of the H;PdCl;and RuCl;precursors. This is a fast, room temperature and surfactant free strategy which is able to form high surface area metal nanosponges with a three-dimensional(3D) porous structure. The structure of as-prepared nanosponges was characterized using the techniques of field emission scanning electron microscopy(FESEM), energy dispersive spectroscopy(EDS) and cyclic voltammetry(CV). Then, the electrocatalytic activities of Pd Ru NPNs towards formic acid oxidation were examined by electrochemical measurements including CV,chronoamperometry, and electrochemical impedance spectroscopy(EIS). Based on studies, it was found that the current density of formic acid oxidation(FAO) is strongly dependent on the composition of Pd Ru NPNs. The best performance was realized for Pd;Ru;NPNs compared to monometallic Pd counterpart and other bimetallic NPNs which might be ascribed to the role of Ru in the decrease of CO adsorption strength on the catalyst and consequently the priority of formic acid oxidation through the direct pathway. The Pd;Ru;NPNs also showed the maximum current density and stability in chronoamperometric measurements. In addition, comparative studies were performed between as-prepared NPNs and CNTs-supported Pd nanoparticles(Pd NPs/CNTs). The present results demonstrated the unique structural advantages of NPNs compared to individual Pd NPs supported on the CNT which leads to the promising performance of NPNs as supportless catalysts for the oxidation of formic acid. 展开更多
关键词 Palladium–ruthenium nanosponge Nanoparticle networks Methanol oxidation Green synthesis
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Engineered Biomimetic Platelet Membrane-Coated Nanoparticles Block Staphylococcus aureus Cytotoxicity and Protect Against Lethal Systemic Infection 被引量:4
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作者 Jwa-Kyung Kim Satoshi Uchiyama +3 位作者 Hua Gong Alexandra Stream Liangfang Zhang Victor Nizet 《Engineering》 SCIE EI 2021年第8期1149-1156,共8页
Staphylococcus aureus(S.aureus)is a leading human pathogen capable of producing severe invasive infections such as bacteremia,sepsis,and endocarditis with high morbidity and mortality,exacerbated by the increasingly w... Staphylococcus aureus(S.aureus)is a leading human pathogen capable of producing severe invasive infections such as bacteremia,sepsis,and endocarditis with high morbidity and mortality,exacerbated by the increasingly widespread antibiotic resistance exemplified by methicillin-resistant strains(MRSA).S.aureus pathogenesis is fueled by the secretion of toxins—such as the membrane-damaging pore-forming atoxin,which have diverse cellular targets including the epithelium,endothelium,leukocytes,and platelets.Here,we examine the use of human platelet membrane-coated nanoparticles(PNPs)as a biomimetic decoy strategy to neutralize S.aureus toxins and preserve host cell defense functions.The PNPs blocked platelet damage induced by S.aureus secreted toxins,thereby supporting platelet activation and bactericidal activity.Likewise,the PNPs blocked macrophage damage induced by S.aureus secreted toxins,thus supporting macrophage oxidative burst,nitric oxide production,and bactericidal activity,and diminishing MRSA-induced neutrophil extracellular trap release.In a mouse model of MRSA systemic infection,PNP administration reduced bacterial counts in the blood and protected against mortality.Taken together,the results from the present work provide a proof of principle of the therapeutic benefit of PNPs in toxin neutralization,cytoprotection,and increased host resistance to invasive S.aureus infection. 展开更多
关键词 Nanoparticle nanosponge PLATELET Staphylococcus aureus Bacterial toxins SEPSIS
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和厚朴酚环糊精纳米海绵的制备及表征研究 被引量:2
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作者 邓凤 徐才兵 +2 位作者 贾运涛 邓萍 张良珂 《中国药学杂志》 CAS CSCD 北大核心 2016年第16期1390-1393,共4页
目的制备和厚朴酚环糊精纳米海绵,考察环糊精纳米海绵对和厚朴酚的增溶作用,并对其理化性质进行初步考察。方法采用β-环糊精与碳酸二苯酯合成环糊精纳米海绵,并用红外光谱法(FT-IR)和热分析法(DSC)进行验证。结果和厚朴酚环糊精纳米海... 目的制备和厚朴酚环糊精纳米海绵,考察环糊精纳米海绵对和厚朴酚的增溶作用,并对其理化性质进行初步考察。方法采用β-环糊精与碳酸二苯酯合成环糊精纳米海绵,并用红外光谱法(FT-IR)和热分析法(DSC)进行验证。结果和厚朴酚环糊精纳米海绵在DSC中无和厚朴酚的特征吸收峰,FT-IR中1 780 cm^(-1)左右出现新的羰基峰。体外释放实验中和厚朴酚环糊精纳米海绵5 h的累积释放为88.57%,而和厚朴酚混悬液仅为46.55%。纳米海绵使和厚朴酚在水中的溶解度增加了8.87倍。结论成功制备了和厚朴酚环糊精纳米海绵,显著提高了和厚朴酚的溶解度。 展开更多
关键词 和厚朴酚 Β-环糊精 纳米海绵 溶解度
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离子液体辅助合成AuPd纳米海绵及催化性能 被引量:2
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作者 王楠 姚开胜 +2 位作者 赵晨晨 李添锦 卢伟伟 《高等学校化学学报》 SCIE EI CAS CSCD 北大核心 2020年第1期62-69,共8页
在功能化离子液体氯化1⁃羟乙基⁃3⁃甲基咪唑([HEmim]Cl)辅助下,在室温水溶液中一步快速合成了具有多孔海绵状结构的AuPd纳米材料.通过场发射扫描电子显微镜(FESEM)、透射电子显微镜(TEM)、X射线能谱(EDX)和X射线衍射分析(XRD)等对该材料... 在功能化离子液体氯化1⁃羟乙基⁃3⁃甲基咪唑([HEmim]Cl)辅助下,在室温水溶液中一步快速合成了具有多孔海绵状结构的AuPd纳米材料.通过场发射扫描电子显微镜(FESEM)、透射电子显微镜(TEM)、X射线能谱(EDX)和X射线衍射分析(XRD)等对该材料进行了表征.结果表明,AuPd纳米海绵为合金结构,由表面粗糙的纳米颗粒聚集熔接而成.采用不同摩尔比(3∶1,1∶1或1∶3)的前驱物HAuCl4和Na2PdCl4均可制备出海绵状AuPd合金结构.离子液体对AuPd纳米海绵状结构的形成起关键作用.在对硝基苯酚还原反应中,不同组成的AuPd纳米海绵均表现出比商用Pd/C催化剂更优异的性能.其中,Au1Pd3纳米海绵具有最高的催化活性,反应在98 s内即可完成,反应速率常数为0􀆰0143 s^-1,是商用Pd/C的2􀆰3倍.该方法也可用于制备其它双金属(如PdCu,PtCu等)和多金属纳米海绵. 展开更多
关键词 离子液体 AuPd合金 纳米海绵 对硝基苯酚还原
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纳米海绵足趾分离垫在趾间糜烂型足癣创口中应用的效果观察 被引量:1
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作者 李敏宜 许璧瑜 姚倩倩 《现代临床护理》 2020年第1期30-34,共5页
目的探讨纳米海绵足趾分离垫在趾间糜烂型足癣创口中应用的效果,为临床提供一种新的足趾趾缝分离与换药方法。方法采用随机对照试验方法,对2016年5月至2018年5月本院皮肤科收治的64例趾间糜烂型足癣合并下肢丹毒患者,采用随机数字表法... 目的探讨纳米海绵足趾分离垫在趾间糜烂型足癣创口中应用的效果,为临床提供一种新的足趾趾缝分离与换药方法。方法采用随机对照试验方法,对2016年5月至2018年5月本院皮肤科收治的64例趾间糜烂型足癣合并下肢丹毒患者,采用随机数字表法分为对照组和试验组,每组各32例,对照组患者在常规治疗及创口处理后采用棉球分离足趾趾间黏连皮肤,试验组患者在常规治疗及创口处理后采用自制纳米海绵足趾分离垫分离足趾趾间黏连皮肤。1个疗程后比较两组患者治疗效果,治疗前后舒适度得分,治疗期间趾间皮肤黏连发生总次数、换药总次数、每次换药时间及换药总费用情况。结果试验组患者治疗效果、舒适度均明显优于对照组,两组比较,均P<0.05,差异具有统计学意义;两组患者治疗期间趾间皮肤黏连发生总次数、换药总次数、每次换药时间均少于或短于对照组,但换药总费用略高于对照组,两组比较,均P<0.001,差异具有统计学意义。结论应用自制纳米海绵足趾分离垫分离趾间糜烂皮肤,可以有效减少趾间糜烂型足癣创口趾间皮肤黏连,促进趾间糜烂皮肤愈合,提高患者的舒适度,同时也减少了护士的工作量。 展开更多
关键词 趾间糜烂型足癣 纳米海绵 分离垫 随机对照试验
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基于红细胞的载药系统研究进展 被引量:6
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作者 孙雅楠 马琳 +2 位作者 张彪 苏靖 邱明丰 《中国药科大学学报》 CAS CSCD 北大核心 2015年第4期481-487,共7页
基于红细胞(RBC)的新型药物输送系统近年来倍受关注,天然红细胞是机体固有成分,与传统药物载体相比,具有生物相容性高、体内半衰期长等优势。本文综述了红细胞药物载体的特点、制备方法及其载药的最新研究进展;同时,介绍了近年来出现的... 基于红细胞(RBC)的新型药物输送系统近年来倍受关注,天然红细胞是机体固有成分,与传统药物载体相比,具有生物相容性高、体内半衰期长等优势。本文综述了红细胞药物载体的特点、制备方法及其载药的最新研究进展;同时,介绍了近年来出现的新型红细胞膜药物输送系统即红细胞膜包裹纳米粒(RBC-NP)和红细胞膜纳米海绵技术。 展开更多
关键词 红细胞 细胞膜 药物载体 红细胞膜包裹纳米粒 红细胞膜纳米海绵
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Unique and hierarchically structured novel Co3O4/NiO nanosponges with superior photocatalytic activity against organic contaminants
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作者 Vahini RAJA Senthil Kumar PUVANESWARAN Karuthapandian SWAMINATHAN 《Frontiers of Materials Science》 SCIE CSCD 2017年第4期375-384,共10页
In the present study, novel Co3O4/NiO nanosponges designed for the photocatalytic degradation of organic contaminants were synthesized by a simple precipitation technique. The formation of sponge-like nanostructures w... In the present study, novel Co3O4/NiO nanosponges designed for the photocatalytic degradation of organic contaminants were synthesized by a simple precipitation technique. The formation of sponge-like nanostructures was clearly evident through the TEM analysis. The photocatalytic efficiency was tested against rhodamine B (RhB) and congo red (CR) dye solutions. Co3O4/NiO nanosponges showed excellent and enhanced photocatalytic efficacy compared to those of Co3O4, NiO nanoparticles, and standards like Ti02 and ZnO. The influence of paramount important operational parameters was explored and the conditions for the best photocatalytic efficiency were optimized. The trapping experiment revealed that the reactive oxygen species (ROS) identified was · OH radical. These findings certainly open up a new way for synthesizing a morphology dependent photocatalyst. 展开更多
关键词 Co3O4/NiO nanospongeS photocatalytic efficacy visible light
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微波辅助制备β-环糊精纳米海绵 被引量:2
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作者 乔宗梅 张阳倩 张毅民 《精细化工》 EI CAS CSCD 北大核心 2020年第6期1171-1177,共7页
利用微波辐射法制备了β-环糊精纳米海绵(NSCD)。以β-环糊精(β-CD)为单体,碳酸二苯酯(DPC)为交联剂,以反应时间、反应温度和物料比为自变量,产物收率为响应指标,通过响应曲面法建立Box-Behnken模型对工艺优化及预测,得到最优反应条件... 利用微波辐射法制备了β-环糊精纳米海绵(NSCD)。以β-环糊精(β-CD)为单体,碳酸二苯酯(DPC)为交联剂,以反应时间、反应温度和物料比为自变量,产物收率为响应指标,通过响应曲面法建立Box-Behnken模型对工艺优化及预测,得到最优反应条件为:反应时间87 min,反应温度90℃,物料物质的量比n(β-CD)∶n(DPC)=1∶7.75,在该条件下产物实际收率为68.92%。利用FTIR、DSC、PXRD、SEM和BET等方法对产物进行了表征。FTIR结果显示,在1757 cm^-1处出现新的羰基特征峰,表明β-CD与DPC交联成功;DSC测得分解温度在260℃左右;PXRD和SEM表明,微波法得到的产物其结晶度比传统加热法产物的结晶度更高;BET分析表明,随着物料β-CD与DPC物质的量比减小,产物比表面积增加,孔径减小。优化后的工艺方法相较于传统方法反应时间缩短至原来的1/4,收率提高约20%。 展开更多
关键词 Β-环糊精 纳米海绵 碳酸二苯酯 响应曲面 微波辐射 功能材料
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PdSn纳米海绵的制备及其对甲酸电催化的性能研究
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作者 洪林艳 董奇志 +2 位作者 李慧子 覃倩 谢剑 《中国科技论文在线精品论文》 2020年第1期82-89,共8页
为提高催化剂的催化性能以及降低催化剂的成本,采用液相还原法,以硼氢化钠为还原剂,在室温下成功地制备了PdSn纳米海绵(PdSn nanosponges,PdSn NSs)催化剂.利用X射线衍射(X-ray diffraction,XRD)、透射电子显微镜(transmission electron... 为提高催化剂的催化性能以及降低催化剂的成本,采用液相还原法,以硼氢化钠为还原剂,在室温下成功地制备了PdSn纳米海绵(PdSn nanosponges,PdSn NSs)催化剂.利用X射线衍射(X-ray diffraction,XRD)、透射电子显微镜(transmission electron microscope,TEM)、扫描电子显微镜(scanning electron microscope,SEM)、能量色散X射线光谱(energy dispersive X-ray spectroscopy,EDX)等物理手段对所制备催化剂的相结构、成分及形貌进行表征.同时通过循环伏安法及计时电流法等电化学手段,对该催化剂对甲酸的电催化氧化性能进行研究.结果表明,PdSn NSs催化剂对甲酸的催化氧化具有较好的催化活性及稳定性,这说明金属Sn的引入不仅可以提高催化剂的催化活性还能提高催化剂的稳定性. 展开更多
关键词 物理化学 二元合金催化剂 纳米海绵 甲酸 电催化
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