نتایج جستجو برای: Engineered Microsphere

تعداد نتایج: 42416  

A. Barati, M. H. Shahavi M. Jahanshahi R. Mofidian

In this research, the generation process of engineered microsphere agarose adsorbent has been explained that has surfaces with different active sites to adsorb protein nanoparticles into the fluidized-bed system. Also, excellent selectivity of protein nanoparticles, high adsorption capacity, and fast equilibrium rate through the eco-friendly polymeric adsorbents were vital aims in here. Hence, ...

2016
Mengxue Wu Rui Chen Jiahao Soh Yue Shen Lishi Jiao Jianfeng Wu Xudong Chen Rong Ji Minghui Hong

Engineered microsphere possesses the advantage of strong light manipulation at sub-wavelength scale and emerges as a promising candidate to shrink the focal spot size. Here we demonstrated a center-covered engineered microsphere which can adjust the transverse component of the incident beam and achieve a sharp photonic nanojet. Modification of the beam width and working distance of the photonic...

2006
E. Jabbarzadeh C. F. Abrams C. T. Laurencin

Bone tissue engineering offers promising alternatives to repair and restore orthopaedic disorders. Our laboratory has employed poly(lactic acid-co-glycolic acid) (PLAGA) microspheres to develop a three dimensional (3-D) porous bioresorbable scaffold with a pore structure similar to the structure of human trabecular bone. The success of osseous healing and integration of the engineered implants ...

Journal: :Optics letters 2003
Tin Man Lee Amy L Oldenburg Shoeb Sitafalwalla Daniel L Marks Wei Luo Farah Jean-Jacques Toublan Kenneth S Suslick Stephen A Boppart

Contrast agents are utilized in virtually every imaging modality to enhance diagnostic capabilities. We introduce a novel class of optical contrast agent, namely, encapsulating microspheres, that are based not on fluorescence but on scattering nanoparticles within the shell or core. The agents are suitable for reflection- or scattering-based techniques such as optical coherence tomography, ligh...

Journal: :Tissue engineering. Part A 2011
Chun-hei Li Tsz-Kit Chik Alfonso H W Ngan Stanley C H Chan Daisy K Y Shum Barbara P Chan

Mesenchymal stem cell (MSC)-based engineering is promising for cartilage repair. However, the compositional mechanical relationship of the engineered structures has not been extensively studied, given the importance of such relationship in native cartilage tissues. In this study, a novel human MSC-collagen microsphere system was used to study the compositional mechanical relationship during in ...

The main objective of this study was to investigate biocompatibility and provide in vivo pharmacological and toxicological evidence for further investigation of the possibility of pH sensitive ion exchange resin microsphere for clinical utilizations. Acute toxicity study and general pharmacological studies were conducted on the pH sensitive ion exchange resin microsphere we prepared. The genera...

Journal: :iranian journal of pharmaceutical research 0
hongfei liu jiangsu university shuangshuang shi jiangsu university weisan pan shenyang pharmaceutica university changshan sun shenyang pharmaceutical university xiaomian zou shenyang pharmaceutical university min fu jiangsu university

the main objective of this study was to investigate biocompatibility and provide in vivo pharmacological and toxicological evidence for further investigation of the possibility of ph sensitive ion exchange resin microsphere for clinical utilizations. acute toxicity study and general pharmacological studies were conducted on the ph sensitive ion exchange resin microsphere we prepared. the genera...

Journal: :Journal of biomedical materials research. Part A 2008
W J E M Habraken L T de Jonge J G C Wolke L Yubao A G Mikos J A Jansen

For tissue engineered bone constructs, calcium phosphate cement (CPC) has a high potential as scaffold material because of its biocompatibility and osteoconductivity. However, in vivo resorption and tissue ingrowth is slow. To address these issues, microspheres can be incorporated into the cement, which will create macroporosity after in situ degradation. The goal of this study was to investiga...

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