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粉末钼和铌钼合金中的合金元素钼的共毒性比较
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作者 张德尧 《稀有金属快报》 CSCD 1999年第7期9-10,共2页
关键词 生物材料 铌钼合金 粉末钼 共毒性 合金元素
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壳聚糖/魔芋葡甘聚糖共混膜细胞毒性和机械性能研究
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作者 李承文 赵利芬 +3 位作者 陈庆华 马丽丽 侯宗柳 段开文 《生物医学工程与临床》 CAS 2010年第5期383-386,共4页
目的利用天然高分子材料壳聚糖(CS)和魔芋葡甘聚糖(KGM)制备两者含量不同比例的生物膜,测定其细胞毒性和机械性能。方法流延法制备CS与KGM含量不同比例的混合膜。并将其与人脐带间充质干细胞联合培养,观察其细胞毒性:测定其断裂... 目的利用天然高分子材料壳聚糖(CS)和魔芋葡甘聚糖(KGM)制备两者含量不同比例的生物膜,测定其细胞毒性和机械性能。方法流延法制备CS与KGM含量不同比例的混合膜。并将其与人脐带间充质干细胞联合培养,观察其细胞毒性:测定其断裂伸长率、拉伸强度及吸水率。结果CS/KGM含量比例分别为3:0、2:1、1:1和1:2制备的8种共混膜,具有良好的细胞毒性:膜平均厚度0.110mm,拉伸强度为35.84~48.17MPa,断裂伸长率为4.84%-6.25%,吸水率均随着CS含量增加而增加。结论CS/KGM含量比为3:0、2:1、1:1和1:2制备的共混膜,都具有良好的细胞毒性,初步具备了引导组织再生膜的基本性能。 展开更多
关键词 壳聚糖/魔芋葡甘聚糖混膜:细胞毒性 引导组织再生
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防止免疫耳标引发破伤风 被引量:1
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作者 程泽华 《畜禽业》 2003年第6期42-43,共2页
关键词 免疫耳标 破伤风 流行病学 家畜 症状 鉴别诊断 治疗 急性中毒性人畜患传染病
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猴痘诊疗指南(2022年版) 被引量:8
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《中国感染控制杂志》 CAS CSCD 北大核心 2022年第6期600-601,共2页
猴痘是一种由猴痘病毒(Monkeypox virus,MPXV)感染所致的人兽共患病毒性疾病,临床上主要表现为发热、皮疹、淋巴结肿大。该病主要流行于中非和西非。2022年5月以来,一些非流行国家也报道了猴痘病例,并存在社区传播。为提高临床医师对猴... 猴痘是一种由猴痘病毒(Monkeypox virus,MPXV)感染所致的人兽共患病毒性疾病,临床上主要表现为发热、皮疹、淋巴结肿大。该病主要流行于中非和西非。2022年5月以来,一些非流行国家也报道了猴痘病例,并存在社区传播。为提高临床医师对猴痘的早期识别及规范诊疗能力,特制定本诊疗指南。一、病原学,猴痘病毒(MPXV)归类于痘病毒科正痘病毒属,是对人类致病的4种正痘病毒属之一,另外3种是天花病毒、痘苗病毒和牛痘病毒。 展开更多
关键词 猴痘 猴痘病毒 人兽患病毒性疾病 病原学
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Improving the denitration performance and K-poisoning resistance of the V_2O_5-WO_3/TiO_2 catalyst by Ce^(4+) and Zr^(4+) co-doping 被引量:15
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作者 Jun Cao Xiaojiang Yao +4 位作者 Fumo Yang Li Chen Min Fu Changjin Tang Lin Dong 《Chinese Journal of Catalysis》 SCIE EI CAS CSCD 北大核心 2019年第1期95-104,共10页
A series of V2O5‐WO3/TiO2‐ZrO2,V2O5‐WO3/TiO2‐CeO2,and V2O5‐WO3/TiO2‐CeO2‐ZrO2 catalysts were synthesized to improve the selective catalytic reduction(SCR)performance and the K‐poisoning resistance of a V2O5‐W... A series of V2O5‐WO3/TiO2‐ZrO2,V2O5‐WO3/TiO2‐CeO2,and V2O5‐WO3/TiO2‐CeO2‐ZrO2 catalysts were synthesized to improve the selective catalytic reduction(SCR)performance and the K‐poisoning resistance of a V2O5‐WO3/TiO2 catalyst.The physicochemical properties were investigated by using XRD,BET,NH3‐TPD,H2‐TPR,and XPS,and the catalytic performance and K‐poisoning resistance were evaluated via a NH3‐SCR model reaction.Ce^4+and Zr^4+co‐doping were found to enhance the conversion of NOx,and exhibit the best K‐poisoning resistance owing to the largest BET‐specific surface area,pore volume,and total acid site concentration,as well as the minimal effects on the surface acidity and redox ability from K poisoning.The V2O5‐WO3/TiO2‐CeO2‐ZrO2 catalyst also presents outstanding H2O+SO2 tolerance.Finally,the in situ DRIFTS reveals that the NH3‐SCR reaction over the V2O5‐WO3/TiO2‐CeO2‐ZrO2 catalyst follows an L‐H mechanism,and that K poisoning does not change the reaction mechanism. 展开更多
关键词 V2O5‐WO3/TiO2‐CeO2‐ZrO2 catalyst Co‐doping K‐poisoning NH3‐SCR Reaction mechanism
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Polymeric nanocomposites loaded with fluoridated hydroxyapatite Ln^(3+)(Ln = Eu or Tb)/iron oxide for magnetic targeted cellular imaging
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作者 Jie Pan Wei-Jiao Liu +3 位作者 Chao Hua Li-Li Wang Dong Wan Jun-Bo Gong 《Cancer Biology & Medicine》 SCIE CAS CSCD 2015年第3期175-183,共9页
Objective: To fabricate polymeric nanocomposites with excellent photoluminescence, magnetic properties, and stability in aqueous solutions, in order to improve specificity and sensitivity of cellular imaging under a ... Objective: To fabricate polymeric nanocomposites with excellent photoluminescence, magnetic properties, and stability in aqueous solutions, in order to improve specificity and sensitivity of cellular imaging under a magnetic field. Methods: Fluoridated LnS+-doped HAP (Ln3+-HAP) NPs and iron oxides (lOs) can be encapsulated with biocompatible polymers via a modified solvent exaction/evaporation technique to prepare polymeric nanocomposites with fluoridated Ln3+-HAP/iron oxide. The nanocomposites were characterized for surface morphology, fluorescence spectra, magnetic properties and in vitro cytotoxicity. Magnetic targeted cellular imaging of such nanocomposites was also evaluated with confocal laser scanning microscope using A549 cells with or without magnetic field. Results: The fabricated nanocomposites showed good stability and excellent luminescent properties, as well as low in vitro cytotoxicity, indicating that the nanocomposites are suitable for biological applications. Nanocomposites under magnetic field achieved much higher cellular uptake via an energy-dependent pathway than those without magnetic field. Conclusion: 1tie nanocomposites fabricated in this study will be a promising tool for magnetic targeted cellular imaging with improved specificity and enhanced selection. 展开更多
关键词 Cancer cellular imaging NANOCOMPOSITES magnetic targeted hydroxyapatite (HAP) doped with rare earth
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CTLA4-Ig抑制异种混合淋巴细胞反应 被引量:1
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作者 谢晋 李宁丽 +3 位作者 祁小平 张冬青 沈佰华 周光炎 《中华器官移植杂志》 CAS CSCD 北大核心 2002年第2期87-89,共3页
目的 研究共刺激分子细胞毒性T细胞抗原 4(CTLA4)对人 -猪异种移植反应中 ,T细胞活化的抑制作用。方法 用转染CTLA4 Ig融合基因的猪血管内皮细胞系 (PIEC)和CTLA4 Ig融合蛋白抑制T细胞增殖反应。结果 B7/CD2 8共刺激信号途径在异种... 目的 研究共刺激分子细胞毒性T细胞抗原 4(CTLA4)对人 -猪异种移植反应中 ,T细胞活化的抑制作用。方法 用转染CTLA4 Ig融合基因的猪血管内皮细胞系 (PIEC)和CTLA4 Ig融合蛋白抑制T细胞增殖反应。结果 B7/CD2 8共刺激信号途径在异种细胞排斥反应中起重要作用 ,CTLA4 Ig的抑制效应没有对同种细胞反应的影响强。 结论 上述结果的机制可能是因为异种间分子不相容性降低协同分子的匹配性 ,或者异种移植反应中其它协同分子“替代性” 展开更多
关键词 刺激分子细胞毒性T细胞抗原4 CTLA4 异种移植反应 T细胞活化 抑制作用
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Cytotoxicity of mitochondrial-targeting silica-coated manganese oxide nanoparticles
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作者 Jie Wei Chao Yu +4 位作者 Li Wang Jun Wang Zhiguo Zhou Hong Yang Shiping Yang 《Science China Chemistry》 SCIE EI CAS CSCD 2015年第10期1537-1543,共7页
The mitochondrion is a promising target for diagnosis and therapy. Mitochondrial-targeting silica-coated manganese oxide nanoparticles(Mn O@Si O2-PPh3+ NPs) were successfully synthesized to explore the mitochondrial c... The mitochondrion is a promising target for diagnosis and therapy. Mitochondrial-targeting silica-coated manganese oxide nanoparticles(Mn O@Si O2-PPh3+ NPs) were successfully synthesized to explore the mitochondrial cytotoxicity of nanoparticles. The mitochondrial targeting property was confirmed by a laser scanning confocal microscopy experiment. Even after incubation for only 4 h, the cytotoxicity of Mn O@Si O2-PPh3+ NPs against cancer cells was obvious; the ATP content was significantly decreased to 40%; and the mitochondrial membrane potential was depleted. All of these results indicated the collapse of mitochondrial function and the start of a cell apoptosis pathway. Our findings suggest that mitochondrial-mediated apoptosis could be strengthened by targeting to the subcellular compartment. 展开更多
关键词 mitochondrial targeting CYTOTOXICITY APOPTOSIS ATP content mitochondrial membrane potential
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