PubMed Health⌕ Search

Biomedical subjects

Guanquan Chen

Publications and source records attributed to Guanquan Chen.

2 recordsLinked to original sources

High-resolution Hadamard transform microscope fluorescence imaging: quantifying the DNA content in single cells.

This study presents a novel miniaturized Hadamard transform fluorescence imaging microscope, by combining a conventional fluorescence microscope with Hadamard transform multiplexing encoding using a one-dimensional movable mask to realize spatial resolution and a linear CCD for multichannel detection. The microscope can provide high-resolution automatically-generated 0-255 gray level HT images for morphological analysis and visualization of a single cell, and normalized HT images for cellular quantitative measurements. The microscope's imaging capability was applied to measure the DNA content in human lymphocyte, chicken erythrocyte and eel erythrocyte, and a comparative study was performed. The results show that the calibrated DNA content in a chicken erythrocyte is 2.32 pg when human lymphocyte is used as the standard, and eel erythrocyte may be a potentially reliable and novel standard for determining DNA contents in other species because it has a stable DNA value of 2.06 pg, with a CV of 4.3% when 20 eel erythrocytes are measured. The results also demonstrate that the HT imaging microscope should be valuable in the fields of medicine and cell biology.

DNA↗

Study on Schiff base complexes-cellular DNA interactions by a novel system of Hadamard transform fluorescence image microscopy.

A novel system of Hadamard transform microscopic fluorescence imaging for single cells is presented, based on which the DNA ploidy of rat hepatocyte was quantitatively measured. The result shows that diploid rat hepatocyte has a stable DNA content, thus diploid rat hepatocyte was used to investigate the binding of five clinical anticancer agents, vincristine, cyclophosphamide, nitrogen mustard, cis-diamminedichloroplatinum(n) (CDDP) and mitomycin-C, with cellular DNA when acridine orange (AO) was used as the competitive fluorescence probe. Based on this model, some Schiff base complexes-cellular DNA interactions were investigated. The results indicate that all the twenty-two compounds, including Schiff base ligands of N-2-hydroxy-naphthaldehyde with D-glucoamine (NG) and the complexes of 3d-transitional metals ions with NO and with D-glucoamine (Glu) and the mixed complexes of NG and Glu series with alpha-glycine (GNG), have the ability to enter the cell membrane and interact with cellular DNA. Four of the compounds, CuGlu, Fe(II)NG, Fe(III)NG and CuGluG can intercalate with DNA like AO does and depress AO-DNA fluorescence to 70% or lower. An in intro UV-visible spectroscopic study on the compound-DNA spectra testified the above results and suggests that diverse interaction mechanisms coexist for all these complexes except intercalating mode. This study presents a new in vitro method for initial screening of anticancer compounds.

Animals↗