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Biomedical subjects

Jia-Hua Zhang

Publications and source records attributed to Jia-Hua Zhang.

4 recordsLinked to original sources

Inhibitory effects of isoliensinine on bleomycin-induced pulmonary fibrosis in mice.

The effects of isoliensinine (IL), a bisbenzylisoquinoline alkaloid extracted from the Chinese traditional medicine seed embryo of Nelumbo nucifera Gaertn., on bleomycin (BLM)-induced pulmonary fibrosis in mice were investigated. Seventy-two male Kungming mice were divided randomly into eight groups as BLM-IL10, BLM-IL20, BLM-IL40, BLM-Sal, Sal-IL10, Sal-IL20, Sal-IL40 and Sal-Sal groups. BLM (0.1 mg in 0.05 ml saline per animal, once) or saline (0.05 ml per animal, once) was applied intratracheally, and IL (10, 20, 40 mg/kg) or saline was administered orally 3 times per day in the appropriate groups. Animals were sacrificed 14 days after intratracheal treatment. Lung tissue and serum superoxide dismutase (SOD) activity and malondialdehyde (MDA) levels, tumor necrosis factor alpha (TNF-alpha) and transforming growth factor beta 1 (TGF-beta (1)) were determined by biochemical measurements and immunohistochemistry. BLM treatment resulted in a significant increase of the hydroxyproline content and an obvious lung histological injury as compared to the Sal-Sal group. Administration of IL remarkably suppressed the increase in hydroxyproline content and abated the lung histological injury induced by BLM. There was a decrease in SOD activity and an increase in MDA level in lung tissue and serum in the BLM-Sal group (p < 0.01 , p < 0.01, vs. Sal-Sal group, respectively). And IL could obviously enhance the SOD activity and decrease the MDA level in a concentration-dependent manner. Moreover, IL also significantly inhibited the overexpression of TNF-alpha and TGF-beta (1) induced by BLM. These results indicated that IL possessed a significant inhibitory effect on BLM-induced pulmonary fibrosis, probably due to its antioxidant and/or anti-inflammatory activities and inhibitory overexpressing TNF-alpha and TGF-beta (1) induced by BLM.

Administration, Oral↗

[A method for DNA template preparation using a single embryo].

We established a simple method for the preparation of DNA template from a single oocyte or early embryo by KOH/DTT-Triton X disintegration. The PCR amplification efficiency of DNA template prepared by this method was compared with that prepared by TE-proteinase K. Single oocyte, 2-cell embryo, 8-cell embryo, morula or blastocyst were separately treated by KOH/DTT-Triton X, then the DNA template was directly used to amplify mitochondrial DNA segment by PCR. The overall PCR success rate of the 3 pairs of primers was 100% (70/70), while the overall PCR success rate of single oocyte treated by TE-proteinase K was 92.9% (65/70). Difference between the two results was significant (P<0.05), and the PCR false positive rates in both groups were 0. The designed KOH/DTT-Triton X disintegrate method was efficient to the preparation of DNA template of a single early embryo. It needed only one cycle of PCR amplification to get clear aimed DNA stripe and the efficiency was high enough to meet the need of early embryonic genetic material detection.

Animals↗

[Progress in ooplasmic transfer].

Many studies indicated mitochondria in oocytoplasm affects obviously the fertilization of the oocytes and early embryo development. The decrease of ATP content and mitochondrial DNA(mtDNA) content, and mtDNA defects can make the fertilization of oocytes and embryo development decreased, which is the key one of reason that the reproductive ability is low in aged women and aged animal. Ooplasmic transfer increases the fertilizability of the aged oocytes and the early embryonic viability, it has led to the birth of health babies, and become a hotspot in the realm of human assisted reproduction biotechnology and animal clone. However, Ooplasmic transfer can lead to mtDNA become heteroplastic, which is the mtDNA of donor and recipient coexist in offspring. At present, how the heterogeneous ooplasm influences the embryogenesis and development is not entirely clear. This paper reviews the ooplasmic transfer in summary, the relation between ooplasm and fertilization and embryo development, the hereditary behavior of heterogeneous mitochondria DNA and it's examination after ooplasmic transfer.

Animals↗