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8篇 您的检索式:作者名="Gyenis"
    题名 作者 年代 出处 被引量
1Drying of suspensions and solutions on inert particle surface in mechanically spouted bed dryer显示文摘To eliminate some disadvantages of the conventional spouted bed dryers the mechanically spouted bed (MSB) system was developed. This dryer type is convenient to use inert particles providing an increased surface area for drying of materials of high-moisture content and heat sensitive materials. On three different drying tasks are demonstrated the experimental optimization of process parameters to obtain products of demanded quality. The main object was at drying of AlO(OH) suspension to preserve the particle size under 2.5 m and to obtain product with a moisture content of about 0.05 kg/kg (d.b.). For this reason a very thin particle coating and intensive abrasion had to be assured. At drying of tomato concentrates the thermoplasticity makes the process very difficult. To jump over the deliquescent and sticky state developed at the critical temperature-moisture content values a very short drying time (8-10 s) must be provided. The third task was to form powder-like product from bovine serum albumin (BSA) solution having very low solid content (2-4%). The selected process parameters given in this paper resulted in a mean particle size of less than 20 m while the soluble preserved protein content was higher than 90%.Elisabeth Pallai-Varsányi Judit Tóth János Gyenis 2007China Particuology2007,5,5:2
2Discrete particle simulation of flow regimes in bulk solids mixing and conveying显示文摘Gyenis J Ulbert Zs 1999Powder Technology1999,104,:1
3Photocatalytic decomposition of NO by TiO 2 particles显示文摘Tak Hyoung Lim Sang Mun Jeong Sang Done Kim Janos Gyenis 2000Journal of Photochemistry & Photobiology A: Chemistry2000,,3:1
4Discrete particle simulation of flow regimes in bulk solids mixing and conveying显示文摘J. Gyenis Zs. Ulbert J. Szépv?lgyi Y. Tsuji 1999Powder Technology1999,,3:1
5Assessment of mixing mechanism on the basisof concentration pattern 显示文摘Gyenis J 1999Chemical EngineeringJournal1999,38,456:1
6An unbiased evaluation of CK2 inhibitors by chemoproteomics: characterization of inhibitor effects on CK2 and identification of novel inhibitor targets 显示文摘Duncan J S Gyenis L Lenehan J 2008Mol Cell Proteomics2008,7,6:1
7Discrete particle simulation of flow regimes in bulk solids mixing and conveying显示文摘Gyenis J Ulbert Z 1999Powder Technology1999,104,:1
8Engineering polymer nanoparticles using cell membrane coating technology and their application in cancer treatments:Opportunities and challenges显示文摘Nanotechnology has revolutionized cancer drug delivery,and recent research continues to focus on the development of“one-size-fits-all,”i.e.,“all-in-one”delivery nanovehicles.Although nanomedicines can address significant shortcomings of conventional therapy,biological barriers remain a challenge in their delivery and accumulation at diseased sites.To achieve long circulation time,immune evasion,and targeted accumulation,conventional nanocarriers need modifications,e.g.,PEGylation,peptide/aptamer attachment,etc.One such modification is a biomimetic coating using cell membrane(CM),which can offer long circulation or targeting,or both.This top-down CM coating process is facile and can provide some advantageous features over surface modification by synthetic polymers.Herein,an overview is provided on the engineering of CM camouflaged polymer nanoparticles.A short section on CM and the development of CM coating technology has been provided.Detailed description of the preparation and characterization of CM camouflaged polymer NPs and their applications in cancer treatment has been reported.A brief comparison between CM coating and PEGylation has been highlighted.Various targeting approaches to achieve tumor-specific delivery of CM coated NPs have been summarized here.Overall,this review will give the readers a nice picture of CM coated polymer NPs,along with their opportunities and challenges.Kai Guo Nanyang Xiao Yixuan Liu Zhenming Wang Judit Tóth János Gyenis Vijay Kumar Thakur Ayako Oyane Quazi T.H.Shubhra 2022Nano Materials Science2022,4,4:0
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