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Biomedical subjects

Q H Hu

Publications and source records attributed to Q H Hu.

18 recordsLinked to original sources

Soil to plant transfer of 238U, 226Ra and 232Th on a uranium mining-impacted soil from southeastern China.

Both soil and plant samples of nine different plant species grown in soils from southeastern China contaminated with uranium mine tailings were analyzed for the plant uptake and translocation of 238U, 226Ra and 232Th. Substantial differences were observed in the soil-plant transfer factor (TF) among these radionuclides and plant species. Lupine (Lupinus albus) exhibited the highest uptake of 238U (TF value of 3.7x10(-2)), while Chinese mustard (Brassica chinensis) had the least (0.5x10(-2)). However, in the case of 226Ra and 232Th, the highest TFs were observed for white clover (Trifolium pratense) (3.4x10(-2)) and ryegrass (Lolium perenne) (2.1x10(-3)), respectively. 232Th in the tailings/soil mixture was less available for plant uptake than 226Ra or 238U, and this was especially evident for Chinese mustard and corn (Zea mays). The root/shoot (R/S) ratios obtained for different plants and radionuclides shown that Indian mustard had the smallest R/S ratios for both 226Ra (5.3+/-1.2) and 232Th (5.3+/-1.7), while the smallest R/S ratio for 238U was observed in clover (2.8+/-0.9).

China↗

Effect of Pluronic on cellular uptake of cationic liposomes- mediated antisense oligonucleotides.

Cationic liposomes modified by different Pluronic block copolymers were prepared. The influence of Pluronic on the cellular uptake of antisense oligonucleotides (ODN) based on cationic 3beta[N-(N', N'-dimethylaminoethan)-carbamoyl] cholesterol (DC-Chol) liposomes was studied by flow cytometric analysis. It showed that DC-Chol liposomes containing Pluronic gave 1.7-2.3 times higher capacity of cellular uptake of ODN, despite the diminution of ODN loading efficiency. The level of improvement by Pluronic is related to the hydrophobic propylene oxide (PO) units Pluronic contains as well as the lipophile/hydrophile value of the molecule. This preliminary study indicated that modifying liposomes with another excipient is a useful pharmaceutical technique to improve ODN delivery.

Cations↗

A comparative study of electroporation and iontophoresis for percutaneous penetration of naproxen.

Using side-by-side compartment diffusion cell and rat skin, the in vitro percutaneous penetration of naproxen by electroporation and iontophoresis with different energy was investigated and compared. Both electroporation and iontophoresis could obviously increase the penetration of naproxen through rat skin. The enhancing effect of electroporation was not always better than that of iontophoresis. The enhancing effect was dependent on the energy of the electrical field.

Animals↗

[Cardioprotective effect of exogenous phosphocreatine in patients undergoing open heart surgery].

Twenty patients with rheumatic heart valve disease undergoing valve replacement were randomly divided into 2 group (n = 10): phosphocratine (neoton) group (group CP) in which 4.0 g neoton was used intravenously 2 days before operation and control group (group C) in which 5% G. S instead of neoton. The results showed that spontaneous recovery rate of heart beat in group CP was significantly higher than that in group C; requirement of inotropic drugs, serum MDA value and ultrastructural changes of myocardium were less in group CP than those in group C. There were no differences in release of myocardial enzymes and myocardial ATP content between 2 groups. It is suggested that neoton is an effective cardioprotective drug.

Cardiopulmonary Bypass↗

Microvascular vasodilatory responses to electric acupuncture in rat brain under acute hemorrhagic hypotension.

The present experiment attempted to evaluate the effect of electrical acupuncture on the cerebral microcirculation in anesthetized rats, using fluorescence videomicroscopy. Changes in the pial arteriolar diameter under acute hemorrhagic hypotension were examined quantitatively. The present results suggest that acupuncture may be effective in improving the cerebral microcirculation in hemorrhagic hypotension.

Anesthesia, General↗

[Effect of ET-1 antisense oligodeoxynucleotide on the hemodynamics of normal and experimental hypertensive rats].

It was previously found that a phosphorothioated antisense oligodeoxynucleotide (ETASODN) significantly inhibits production of endothelin-1 (ET-1). The purpose of the present study was to determine whether intracerebroventricular injection of ETASODN targeted to prepro-ET-1 is capable of exerting the same preventing effect on the aorta narrowing of experimentally modeled hypertensive rats. Radioimmunoassay showed that ET-1 level in the brain stem of hypertensive rats was significantly elevated. In addition to down-regulating the ET-1 level, astisense could also reduce mean arterial pressure (MAP), heart rate and LVSP in model rats. The antisense also down-regulated the ET-1 level in hypothalamus and brain stem, reducing MAP in normal control rats. After treatment with the antisense, the value of delta MAP was markedly lowered in experimental hypertensive rats as compared to the control ones. Thus it appears that (1) ET-1 might play an important role in central cardiovascular regulation in rats and (2) antisense ETASODN might be used in treatment of hypertension via inhibiting ET-1 production.

Animals↗

ATP evokes calcium transients in single pulmonary artery endothelial cell in primary cultures.

Effects of ATP on cytosolic free calcium ([Ca2+]i) in single porcine pulmonary artery endothelial cell were studied. Using a dual-wavelength excitation microflurometry, it was found that ATP evoked a rapid transient in [Ca2+]i which was then followed by a maintained elevation of [Ca2+]i. The removal of extracellular Ca2+ abolished the maintained plateform, but exerted no obvious effect on the initial-transient. These results suggest that ATP stimulates both calcium release from intracellular calcium pool(s) and calcium influx across the plasma membrane from extracellular space.

Adenosine Triphosphate↗

Both hypoxic endothelial cell conditioned medium and hypoxia elevate intracellular free calcium in pulmonary artery smooth muscle cells.

By using Ca(2+)-sensitive fluorescent probe, Fura- 2, the effects of endothelial cell-conditioned medium and hypoxia on intracellular free calcium ([Ca2+]i) in cultured pulmonary artery smooth muscle cell (PASMC) were studied. Normoxic porcine pulmonary artery endothelial cell-conditioned medium (NPAECCM) obviously elevated [Ca2+]i in PASMC, whereas the hypoxic porcine pulmonary artery endothelial cell conditioned medium (HPAECCM) significantly elevated [Ca2+]i in PASMC much more than NPAECCM. Both the effects of NPAECCM and HPAECCM were dependent on the cultured endothelial cell extracellular calcium concentrations, ranged from 1.8 mmol/L to 2.4 mmol/L. Meanwhile, hypoxia directly increased, which was partially inhibited by verapamil, [Ca2+]i in PASMC through Ca2+ influx pathway. The data suggest that the augmented regulation of endothelial cell on PASMC via Ca2+ second messenger system and the hypoxia-induced Ca2+ influx into PASMC, particularly the former, may be components of mechanisms underlying hypoxic pulmonary vasoconstriction and chronic pulmonary hypertension.

Animals↗

[Effect of ATP on cytosolic free calcium in single porcine pulmonary artery endothelial cell in primary culture].

Effect of ATP on cytosolic free calcium ([Ca2+]i) in single porcine pulmonary artery endothelial cell was studied. Using a dual-wavelength excitation fluorescence spectrophotometer, it was found that ATP evoked a rapid rise in [Ca2+]i followed by a slightly maintained increase. Removal of extracellular Ca2+ abolished the maintained increase without obvious effect on the initial transient. These results suggest that ATP stimulates both calcium release from intracellular calcium pool (s) and calcium influx across the plasma membrane.

Adenosine Triphosphate↗

Hypoxia increases cytosolic free calcium in porcine pulmonary arterial endothelial cells.

Alteration of cytosolic free calcium ([Ca2+]i) in hypoxia was studied with fluorescent probe, Fura-2 in cultured porcine pulmonary arterial endothelial cells. It was found that hypoxia caused by bubbling the cell suspension with 100% N2 increased [Ca2+]i in endothelial cells by 90 +/- 20% (n = 8, P < 0.05), but didn't affect that in a Ca(2+)-free buffer, La3+ (2 x 10(-5) mol/L) inhibited the hypoxia-induced increment in [Ca2+]i, whereas verapamil (10(-8) mol/L) didn't. These findings suggest that hypoxia could induce Ca2+ influx in pulmonary arterial endothelial cells, which might play an important role in vascular response to hypoxia.

Animals↗

[Cell line of hybridoma secreting monoclonal antibodies against Echinococcus granulosus antigens].

In order to produce specific monoclonal antibodies for immunodiagnosis and immunoprophylaxis in hydatid disease, a monoclonal antibody cell line NIA2 secreting specific antibodies was established, through fusion of myeloma cells SP2/0 and spleen cells of BALB/c mice immunized with hydatid fluid from a local (Ningxia) patient and repeated screenings and clonings. The specificity was assayed via ELISA, immunoprecipitating and ultramicroscopy. Antibody titer of 1:2,560 was obtained in the supernatant of the culture medium by ELISA and a high titer of 1:163,840 in seeded ascitic fluid of mice of the same isolate. Immunoglobulin subclass of the NIA2 secreting antibody was determined to be IgG1 which showed no cross reaction to Cysticercus cellulosae. Cloned cell lines from the hybridomas were found consistent in secreting anti-Echinococcus granulosus antibody through serial passage in tissue culture for ten months.

Animals↗

Wave packet transmission in a ZnO nanorod under the influence of repulsive/attractive scattering center.

We study electron wave packet propagation and scattering in ZnO nanorods. By solving the time-dependent three-dimensional Schrödinger equation, we were able to describe propagation and dynamics of the scattering process of the wave packet by ionized impurities. Scattering behavior of the wave packet by an attractive/repulsive scattering center is clearly demonstrated.

Computer Simulation↗

In situ expression of ICAM-1 and its mRNA in the lung tissue of asthmatic rats.

In situ expression of ICAM-1 and ICAM-1 mRNA on the lung tissue of asthmatic rats was studied by immunohistochemical staining and in situ hybridization, respectively. The results showed that in normal rats ICAM-1 expression was rare on the endothelium of pulmonary artery and vein, and on the bronchial and alveolar epithelium. The distribution of ICAM-1 expression on the different part of lung tissue of asthmatic rats was similar to that of normal rats, but the level of ICAM-1 expression was significantly increased on the endothelium of pulmonary artery (EPA) and vein (EPV), bronchial epithelium (BEP) and alveolar epithelium (AEP) compared with those of normal and sensitized controls. The distribution and expression of ICAM-1 mRNA on the different part of lung tissue of normal and asthmatic rats were similar to that of ICAM-1 expression. In asthmatic rats, the expression of ICAM-1 mRNA on AEP and EPV was increased significantly compared with those of normal and sensitized controls. It is concluded that the increase of ICAM-1 expression on endothelium of pulmonary vessels, epithelium of broncheoli and alveoli may play an important role of inflammatory cell infiltration in asthmatic rats, and the increased expression of ICAM-1 in asthmatic rats was caused by the increase of expression of ICAM-1 mRNA.

Animals↗