PubMed Health⌕ Search

Biomedical subjects

Haiyun Qu

Publications and source records attributed to Haiyun Qu.

3 recordsLinked to original sources

Stable microstructured network for protein patterning on a plastic microfluidic channel: strategy and characterization of on-chip enzyme microreactors.

Chemical modification of a poly(methyl methacrylate) (PMMA) microchannel surface has been explored to functionalize microfluidic chip systems. A craft copolymer was designed and synthesized to introduce the silane functional groups onto the plastic surface first. Furthermore, it has been found that, through a silicon-oxygen-silicon bridge that formed by tethering to these functional groups, a stable patterning network of gel matrix could be achieved. Thus, anchorage of proteins could be realized onto the hydrophobic PMMA microchannels with bioactivity preserved as far as possible. The protein homogeneous patterning in a microfluidic channel has been demonstrated by performing microchip capillary electrophoresis with laser-induced fluorescence detection and confocal fluorescence microscopy. To investigate the bioactivity of enzymes entrapped within stable silica gel-derived microchannels, the suggested scheme was employed to the construction of immobilized enzyme microreactor-on-a-chip. The proteolytic activity of immobilized trypsin has been demonstrated with the digestion of cytochrome c and bovine serum albumin at a fast flow rate of 4.0 microL/min, which affords the short residence time less than 5 s. The digestion products were characterized using MALDI-TOF MS with sequence coverage of 75 and 31% observed, respectively. This research exhibited a simple but effective strategy of plastic microchip surface modification for protein immobilization in biological and proteomic research.

Amino Acid Sequence↗

Spectroelectrochemical study of the interaction between antitumor drug daunomycin and DNA in the presence of antioxidants.

Anthracycline drug daunomycin (DNR) is a widely used clinical drug. But its side effects, especially cardiotoxicity, have greatly restrained its application. The side effects were due to free radical formation in the metabolic process of DNR. The purpose of this study is to diminish the side effects by using antioxidants. Two kinds of free radical scavengers have been investigated, that is, vitamins: vitamin C (V(C)), rutin (V(P)) and vitamin B6 (V(B6)); amino acids: cysteine (CysH) and methionine (Met). Free radical scavenging efficiency (E degrees (eff)) of these antioxidants had been calculated. Under the experimental condition, the values of E degrees (eff) of V(C), V(P), V(B6), CysH and Met were 23.8, 15.3, 6.4, 48.2 and -7.7%, respectively. The relationship between the free radical scavenging activities and its chemical structure has also been discussed.

Antibiotics, Antineoplastic↗

Strategy for allosteric analysis based on protein-patterned stationary phase in microfluidic chip.

An effective method is presented for the on-chip analysis of chiral interactions with a successful depression of nonspecific adsorption. The alumina gel-derived protein network on poly(methyl methacrylate) (PMMA) microchannel was explored to form a protein-stationary phase and then used to carry out electrophoresis for fast enantioseparation coupled with electrochemical detection. On the basis of the chemical modification of a synthesized copolymer containing silane-functionalized scaffold, alumina sol-gel could react readily with the silane groups and form steady microstructure on the chip surface achieving the encapsulation of functional biomolecules. Compared with the native PMMA microchannels, the modified surfaces exhibited much better wettability, more stable and enhanced electroosmotic mobility, and less nonspecific adsorption. The water contact angle and EOF of alumina-gel-derived PMMA substrate were 22 degrees and 4.3 x 10(-4) cm(2) V(-1) s(-1), compared to those of 73 degrees and 1.9 x 10(-4) cm(2) V(-1) s(-1) from the untreated one, respectively. Bovine serum albumin, acting as a target protein, could be stably and homogeneously immobilized in the modified PMMA microchannel to fabricate a protein-stationary phase. Under a mild condition, D- and L-tryptophan were efficiently separated with a resolution of 1.57. The as-prepared microchip can perform chiral separations within short time, indicating that the general protocol has the potential to provide a platform for high throughput screening of enantiomer candidates such as those biochemical drugs with protein targets and the research of receptor interactions.

Adsorption↗