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| 1 | Kikuchi-Fujimoto病显示文摘Kikuchi—Fujimoto病,或称组织细胞坏死性淋巴结炎,是一种自限性疾病。其特征是良性的淋巴结肿大,可伴有发热和系统性症状。该病最常累及亚裔人,常为小于40岁的年轻成人患者。受累淋巴结常显示副皮质区凋亡坏死,可见大量核碎片以及组织细胞、浆样树突细胞和CD8阳性的T细胞增生,但缺乏中性粒细胞浸润。Kikuchi—Fujimoto病的病变进程分3期:增生期、坏死期和黄色瘤期。 | Hutchinson C B Wang E.Kikuchi-fujimoto disease Arch Patbol Lab Med 樊祥山(摘译) | 2010 | 临床与实验病理学杂志2010,26,3: | 19 |
| 2 | Engineering of drug nanoparticles by HGCP for pharmaceutical applications显示文摘This paper reviews our work on the fundamental principles of high gravity controlled precipitation (HGCP) technology, and its applications in the production of drug nanoparticles, which was carried out in a rotating packed bed (RPB). Several kinds of drug nanoparticles with narrow particle size distributions (PSDs) were successfully prepared via HGCP, including the 300-nm Cefuroxime Axetil (CFA) particles, 200–400-nm cephradine particles, 500-nm salbutamol sulfate (SS) particles (100 nm in width), and 850-nm beclomethasone dipropionate (BDP) particles, etc. Compared to drugs available in the current market, all the drug nanoparticles produced by HGCP exhibited advantages in both formulation and drug delivery, thus improving the bioavailability of drugs. HGCP is essentially a platform technology for the preparation of poorly water-soluble drug nanoparticles for oral and injection delivery, and of inhalable drugs for pulmonary delivery. Consequently, HGCP offers potential applications in the pharmaceutical industry due to its cost-effectiveness, efficient processing and the ease of scaling-up. | Ting-Ting Hua, Jie-Xin Wanga, Zhi-Gang Shena, Jian-Feng Chena,b, a Key Lab for Nanomaterials, Ministry of Education, Beijing University of Chemical Technology, Beijing 100029, China b Research Center of Ministry of Education for High Gravity Engineering and Technology, Beijing University of Chemical Technology, Beijing 100029, China | 2008 | Particuology2008,6,4: | 7 |
| 3 | Microstructure and oxygen storage capacity of Sr-modified Pt/CeO_2-ZrO_2 catalysts | Rui Ran a,Jun Fan b,Duan Weng a,a State Key Lab of New Ceramic and Fine Processing,Department of Materials Science and Engineering,Tsinghua University,Beijing 100084,China b The Administrative Centre for China’s Agenda 21,Beijing 100038,China | 2012 | Progress in Natural Science:Materials International2012,22,1: | 5 |
| 4 | Purification and properties of primary and secondary alcohol dehydrogenases from Thermoanaerobacter ethanolicus显示文摘 | FRANK O B JUERGEN W LABS G L | 1988 | Applied and Environmental Microbology1988,54,2: | 1 |
| 5 | IL-1-independent role of IL-17 in synovial inflammation and joint destruction during collagen-in-duced arthritis显示文摘 | Lubberts E Joosten LAB Oppers B | 2001 | J Immunol2001,167,2: | 1 |
| 6 | Different sensitivities of human colon adenocarcinoma ( CaCo-2 ), astrocytoma ( IPDDCA2) and lymphoblastoid (NCNC) cell lines to microcystin-LR induced reactive oxygen species and DNA damage显示文摘 | Vegura B Volcic M Lab TT | 2008 | Toxicon2008,52,: | 1 |
| 7 | Colony-stimulating factors for febrile neutropenia during cancer therapy 显示文摘 | Bennett CL Djulbegovic B Norris LAB | 2013 | New Engl J Med2013,368,12: | 1 |
| 8 | Genetic association with response to intravitreal ranibizumab in patients with neovascular AMD 显示文摘 | Kloeckener-Gruissem B Barthelmes D Labs S | 2011 | Invest Ophthalmol Vis Sci2011,52,: | 1 |
| 9 | Massive MIMO in the UL/DL of cellular networks : how many antennas do we need? 显示文摘 | Hoydis J Labs B Stuttgart A L | 2013 | IEEE Journal on Selected Areas in Communications2013,31,2: | 1 |
| 10 | Characteristic bending strength of beech glulam 显示文摘 | Frese M lab H J B | 2006 | Materials and Structures2006,,40: | 1 |
| 11 | Two simple algorithms for bincovering显示文摘 | Csirik J Frenk B G Labé M | 1999 | Acta Cybernetica1999,14,: | 1 |
| 12 | Effect ofpolyphe- nol concentration on pyrazine formation during cocoa liquor roasting显示文摘 | MISNAWI S JINAP S JAM/LAb/B | 2004 | Food Chemistry2004,85,1: | 1 |
| 13 | The role of reactive oxygen species in microcystin-LR-induced DNA damage显示文摘 | Zegura B Lab T T Filipic M | 2004 | Toxicology2004,200,: | 1 |
| 14 | Cryptographic techniques for privacy preserving data mining显示文摘 | PINKAS B LABS H P | 2002 | SIGKDD Explorations2002,4,2: | 1 |
| 15 | Cathepsin B, plasminogen activator - inhibitor (PAI - 1 ) and plasminogen activator - receptor (uPAR) are prognostic factors for patients with non- small cell lung cancer显示文摘 | Werle B Kotzsch M Lab TT | 2004 | Anticancer Res2004,24,6: | 1 |
| 16 | Accurate physical fusion taper shape model for waveguide analyses显示文摘 | Lochmann S Labs J M Sharma A B | 1993 | 29(20):1785-17861993,29,20: | 1 |
| 17 | Genetic association with response to intravitreal ranibizumab in patients with neovascular AMD显示文摘 | Kloeckener-Gruissem B Barthelmes D Labs S | 2011 | Invest Ophthalmol Vis Sci2011,52,7: | 1 |
| 18 | Kinetic Study of the Pyrolysis of H2S显示文摘 | BINOIST M LABGORRE B MONNET F CLARK P D DOWLING N I HUANG M ARCHAMBAULT D PLASARI E MARQUAIRE P M | 2003 | Ind Eng Chem Res2003,42,17: | 1 |
| 19 | Detection and quantification of genotoxicity in wastewater -treated Tetrahymena thermophila using the comet assay显示文摘 | Lab B Malovrh S Narat M | 2004 | Environ Toxicol2004,19,6: | 1 |
| 20 | Dyeing Characteristics of Chitosan Biguanidine Hydrochloride Treated Wool Fabrics显示文摘Chitosan biguanidine hydrochloride(CGH) has been synthesized by the guanidineylation reaction of chitosan with dicyandiamide.The structures of CGH were characterized by Fourier transform infrared spectroscopy and 13CNMR spectra.In this paper,we used citric acid(CA) as a crosslinking agent,mixed with CGH to perform a pad-drycure treatment on wool fabric to study reaction mechanism during crosslinking with the help of Fourier transform infrared spectroscopy(FT-IR) and scanning electron microscopy(SEM).Dyeing characteristics of CGH treated wool fabric was assessed.The effects of CGH concentration,curing temperature,dipping time,pH value on color yield of reactive dyes on wool fibres were investigated.Fastness properties of the modified wool fabric to laundering and crocking have also been discussed.Fourier transform infrared spectroscopy(FT-IR) showed that CA produce esterification with the-OH group of the wool and transamidation with the-NH2 group of the CGH to form a crosslink.Scanning electron microscopy(SEM) analysis showed the CGH firmly attached to the surface of wool fibre.It was found that the CGH pretreated wool fabrics had significantly improved dyeability characteristics.It is worthwhile to mention that the CGH treated samples have antibacterial potential due to the antibacterial property of chitosan molecules and guanidinium salts. | ZHAO Xuea,HE JIN-xina,b a College of Chemistry,Chemical Engineering and biotechnology,Donghua University,Shanghai 201620,China bKey Lab of Textile Science&Technology,Ministry of Education,China | 2010 | China Textile2010,,4: | 0 |