PubMed Health⌕ Search

Biomedical subjects

Qinhan Jin

Publications and source records attributed to Qinhan Jin.

5 recordsLinked to original sources

A rapid and facile method for hydrothermal synthesis of CdTe nanocrystals under mild conditions.

By using a novel procedure, a new kind of water-soluble CdTe nanocrystals (NCs) is synthesized in aqueous solutions at the temperature of 100 degrees C. In this procedure, tripeptide thiol glutathione was used as stabilizing agent, CdTe NCs with controllable photoluminescence wavelength from 500 nm to 680 nm were prepared within two hours. Compared with CdTe NCs prepared with thiohydracrylic acid as stabilizing agent, as-prepared NCs show much narrower photoluminescence FWHM, more symmetrical emission peak and higher photoluminescence quantum yield. The surface structure of as-prepared CdTe NCs is deduced, therefore, there may be some unreported circular structure on the surface. Experimental results show that as-prepared NCs have very good biological compatibility and they are nontoxic. And these CdTe NCs can conjugate with biological molecules for further biological luminescence study. The proposed hydrothermal synthesis procedure has the advantage of simplicity, inexpensiveness, time saving and mild operating conditions.

Cadmium↗

Methods for labeling quantum dots to biomolecules.

Semiconductor quantum dots (QDs) are thought to be the most promising fluorescent probe for biological and biomedical applications because of their unique size-dependent optical and electronic properties. QD bioconjugates provide important advantages over conventional organic dyes. This review compares the optical properties of nanoparticles and dyes and describes the surface modification of the QDs and the methods for biomolecules conjugating to QDs. In addition, the effect of QDs on normal physiology in real biological applications is discussed.

Fluorescent Dyes↗

A novel sandwich immunosensing method for measuring cardiac troponin I in sera.

Common methods for monitoring human cardiac troponin I (cTn I) are based on using antibodies against cTn I labeled with horseradish peroxidase, radioactive isotopes, or other labels. In this study, a novel label-free sandwich immunosensing method for measuring cTn I was developed. Three monoclonal antibodies (mAbs 9F5, 2F11, and 8C12) against human cTn I were generated by the commonly used hybridoma technique and characterized by a surface plasmon resonance (SPR) biosensor. An optimal pair of mAbs for measuring human cTn I was selected, as both mAbs have high affinities for cTn I and do not compete against each other for cTn I binding. An optical immunosensor for measuring cTn I in sera based on SPR was developed by using avidin as an intermediate layer and biotinylated-2F11 as the capturing antibody. Two detection methods for cTn I with the immunosensor were performed: (1) the direct detection of cTn I with a detection range of 2.5 to 40 microg/L and (2) the sandwich immunosensing method. In the sandwich assay mode, the second antibody 9F5 biologically amplified the sensor response. As a result, the sandwich assay showed a sensitivity of 0.25 microg/L and a detection range of 0.5 to 20 microg/L with within-run variation of 4.9 to 6.7% and between-run variation of 5.2 to 8.4%. This method has greatly enhanced the sensitivity for detection compared to that previously reported in the literatures.

Antibodies, Monoclonal↗

Studies on quantum dots synthesized in aqueous solution for biological labeling via electrostatic interaction.

3-Mercaptopropyl acid-stabilized CdTe nanoparticles synthesized in aqueous solution are effectively bound to a biomacromolecule, papain, via electrostatic interaction. The conjugation between the nanoparticles and the papain is demonstrated by UV-Vis absorption, photoluminescence spectroscopy, transmission electron microscopy, and fluorescence micrographs. The biological activity of papain is maintained after the conjugation. The effects of the quantity of papain and the size of nanoparticles on the fluorescence characteristics of the CdTe-papain bioconjugates were studied.

Biotechnology↗

Studies on fluorescence resonance energy transfer between dyes and water-soluble quantum dots.

In this work, donor-acceptor complexes were formed based on antibody-antigen interactions. Immunoglobulin antigen (mouse-IgG) was effectively conjugated to mercaptopropyl acid-modified CdTe quantum dot synthesized in aqueous solution via electrostatic interaction, while organic dyes-tetramethylrhodamine isothiocyanate (TRITC) were attached to the corresponding antibody (anti-mouse IgG). The mutual affinity of the antigen and antibody brought the CdTe quantum dot and TRITC sufficiently close together to allow the resonance dipole-dipole coupling required for fluorescence resonance energy transfer to occur. The formation of immunocomplexes resulted in fluorescence resonance energy transfer from the CdTe quantum dot donors to the TRITC acceptors.

Animals↗