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    题名 作者 年代 出处 被引量
1二苯酮和萘混合物熔融分光光度测定镨:用镨的1-(2-呲啶偶氮)-2-萘酮络合物显示文摘Vyas P C Mittar V P 1992分析化学文摘1992,,05:1
2Intrinsic tyrosine kinase activity is required for vascular endothelial growth factor receptor 2 ubiquitination,sorting and degradation in endothelial cells显示文摘Ewan L C Jopling H M Jia H Mittar S Bagherzadeh A Howell G J Walker J H 0,,09:1
3Optimization of 38 kDa based PCR assay for detection of Mycobacterium tubercu losis from clinical samples显示文摘Dwivedil A Sarin BC Mittar D 2003Ind J Tub2003,50,:1
4Osteosarcoma growth on trabecular bone mimicking structures manufactured via laser direct write显示文摘This paper describes the direct laser write of a photocurable acrylate-based PolyHIPE(High Internal Phase Emulsion)to produce scaffolds with both macro-and microporosity,and the use of these scaffolds in osteosarcoma-based 3D cell culture.The macroporosity was introduced via the application of stereolithography to produce a classical“woodpile”structure with struts having an approximate diameter of 200μm and pores were typically around 500μm in diameter.The PolyHIPE retained its microporosity after stereolithographic manufacture,with a range of pore sizes typically between 10 and 60μm(with most pores between 20 and 30μm).The resulting scaffolds were suitable substrates for further modification using acrylic acid plasma polymerisation.This scaffold was used as a structural mimic of the trabecular bone and in vitro determination of biocompatibility using cultured bone cells(MG63)demonstrated that cells were able to colonise all materials tested,with evidence that acrylic acid plasma polymerisation improved biocompatibility in the long term.The osteosarcoma cell culture on the 3D printed scaffold exhibits different growth behaviour than observed on tissue culture plastic or a flat disk of the porous material;tumour spheroids are observed on parts of the scaffolds.The growth of these spheroids indicates that the osteosarcoma behave more akin to in vivo in this 3D mimic of trabecular bone.It was concluded that PolyHIPEs represent versatile biomaterial systems with considerable potential for the manufacture of complex devices or scaffolds for regenerative medicine.In particular,the possibility to readily mimic the hierarchical structure of native tissue enables opportunities to build in vitro models closely resembling tumour tissue.Atra Malayeri Colin Sherborne Thomas Paterson Shweta Mittar Ilida Ortega Asencio Paul V.Hatton Frederik Claeyssens 2016International Journal of Bioprinting2016,2,2:0
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