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Biomedical subjects

Qiang Cao

Publications and source records attributed to Qiang Cao.

4 recordsLinked to original sources

Matrix metalloproteinase inhibitors as prospective agents for the prevention and treatment of cardiovascular and neoplastic diseases.

Acting on a broad spectrum of extracellular, intracellular, and membrane-associated substrates, the matrix metalloproteinases (MMPs) are critical to the biological processes of organisms; when aberrantly expressed, many pathological conditions may be born or exacerbated. The prospect of MMP inhibition for therapeutic benefit in cancer, cardiovascular disease, and stroke is reviewed here. MMP inhibitor (MMPI) development constitutes an important branch of research in both academic and industrial settings and advances our knowledge on the structure-function relationship of MMPs. Targeting MMPs in disease treatment is complicated by the fact that MMPs are indispensable for normal development and physiology and by their multi-functionality, possible functional redundancy or contradiction, and context-dependent expression and activity. This complexity was revealed by previous efforts to inhibit MMP activity in the treatment of cancer patients that yielded unsatisfactory results. This review focuses on MMPI development since the late 90s, in terms of natural products and their derivatives, and synthetic compounds of low molecular mass incorporating specific zinc-binding groups (ZBGs). A few polyphenols and flavonoids that exhibit MMPI activities may have chemopreventive and neuro- and cardiovascular-protective effects. A new generation of potent and selective MMPIs with novel ZBGs and inhibition mechanisms have been designed, synthesized, and tested. Although only one collagenase inhibitor (Periostat, doxycycline hyclate) has been approved by the Food and Drug Administration as a drug for the treatment of periodontal disease, new hope is emerging in the form of natural and synthetic MMPIs for the prevention and treatment of stroke, cardiovascular disease, cancer, and other medical conditions.

Animals↗

[Effects of volatile organic compounds inhalation on the inflammation biomarkers in nasal lavage fluids of decoration workers].

OBJECTIVE: To study the effects of volatile organic compounds (VOCs) inhalation on the inflammation biomarkers in nasal lavage fluid (NAL), and to assess the practicability of the nasal lavage methods. METHODS: 32 volunteers joined in this study, among whom 20 Painters were chosen as exposed group, and 12 plumbers and electricians were chosen as controls. Lung function was detected, and several inflammation biomarkers (IL-4, IL-5, ECP) in nasal lavage (NAL) were determined. RESULTS: The average FEV1 of exposed group was 3.08L, which was significantly lower than the control. And the concentration levels of inflammation biomarkers in NAL of painters were higher than that of the control. Among these detected biomarkers, the ECP level was significantly higher in exposed group than in control group(the mean was 3.57 microg/L in painter and 2.79 microg/L in the control, respectively). Moreover, there was statistically negative correlation between ECP level and FEV1 (a kind of lung function parameters), the correlated coefficient was -0.381. CONCLUSION: Inhalation of VOCs could be responsible for the occurrence of respiratory inflammation and allergic illness such as rhinitis and asthma. Moreover, the method of nasal lavage is practicable for population study.

Adult↗

[Applications of a rat model of chronic bronchitis on toxicity of PM2.5].

OBJECTIVE: To study the acute toxicity of PM2.5 to the rats with chronic bronchitis and the control rats and the difference between the model rats and the control rats on PM2.5 toxicity. METHODS: With the use of an intratracheal instillation, both groups were exposed to suspensions of PM2.5. After three times, the levels of ALB, LDH, AKP, MDA and GSH in bronchoalveolar lavage fluid (BALF) were analyzed. RESULTS: PM2.5 could induce the acute toxicity to both model rats and control rats, and dose-response relationships were observed in all indexes. In model rats, the levels of ALB, LDH, AKP, and MDA were higher in control rats( P < 0.05), while the levels of GSH were lower in control rats (P < 0.05). CONCLUSION: PM2.5 could have acute toxic effects on both model rats and health rats, and the rats with chronic bronchitis are more susceptible to PM2.5 than health rats.

Air Pollutants↗

[A study of injectable autogenous tissue-engineered bone].

OBJECTIVE: To investigate the utilization of carrier for delivering osteoblasts and creating autogenous bone tissue in ectopic site of animal via injection. METHODS: Bone marrow cells harvested from iliac bone of New Zealand rabbits were induced to differentiate into marrow stromal osteoblasts. The osteoblasts were mixed with 1.5% alginate sodium solution to generate osteoblasts/alginate composites with final cellular density of 4 x 10(9)/L. Calcium chloride was used as cross-linking agent to gel aqueous alginate solution. The marrow stromal osteoblasts/alginate composites were injected into the dorsal subcutaneous tissue of rabbits with autogenous cells transplantation. The samples were examined with X-ray and histological analysis. RESULTS: Four, eight and twelve weeks after injection, the hard knobbles were easily palpated under the dorsal skin of animals. On X-ray photograph the samples showed calcified image with more density than surrounding soft tissue, new bone formation was observed in the osteoblasts/alginate composites in histological analysis. The osteogenesis was in association with regenerated hematopoietic bone marrow. CONCLUSIONS: These results demonstrate that new bone tissue could be created through the injection of alginate sodium treated with autogenous marrow stromal osteoblasts.

Alginates↗