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Xiu-Min Wang

Publications and source records attributed to Xiu-Min Wang.

3 recordsLinked to original sources

In vitro and in vivo studies of different liposomes containing topotecan.

Liposome as a carrier of topotecan (TPT), a promising anticancer drug, has been reported in attempt to improve the stability and antitumor activity of TPT. However, the biodistribution pattern of TPT liposome in vivo and PEG-modified liposome containing TPT have not been studied systemically. In this paper, the in vitro stability and in vivo biodistribution behavior of several liposomes containing TPT with different lipid compositions and PEG-modification were studied. Compared with the 'fluid' liposome (S-Lip) composed of soybean phosphatidylcholine (SPC), the 'solid' liposome (H-Lip) composed of hydrogenated soybean phosphatidylcholine HSPC decreased the leaking efficiency of TPT from liposome and enhanced the stability of liposome in fetal bovine serum (FBS) or human blood plasma (HBP). The results of biodistribution studies in S180 tumor-bearing mice showed that liposomal encapsulation increased the concentrations of total TPT and the ratio of lactone form in plasma. Compared with free TPT, S-Lip and H-Lip resulted in 5- and 19-fold increase in the area under the curve (AUC(0-->infinity)), respectively. PEG-modified H-Lip (H-PEG) showed 3.7-fold increase in AUC(0-->infinity) compared with H-Lip, but there was no significant increase in t(1/2) and AUC(0-->infinity) for PEG-modified S-Lip (S-PEG) compared with S-Lip. Moreover, the liposomal encapsulation changed the biodistribution behavior, and H-Lip and H-PEG dramatically increased the accumulation of TPT in tumor, and the relative tumor uptake ratios were 3.4 and 4.3 compared with free drug, respectively. There was also a marked increase in the distribution of TPT in lung when the drug was encapsulated into H-Lip and H-PEG. Moreover, H-PEG decreased the accumulation of TPT in bone marrow compared with unmodified H-Lip. All these results indicated that the membrane fluidity of liposome has an important effect on in vitro stability and in vivo biodistribution pattern of liposomes containing TPT, and PEG-modified 'solid' liposome may be an efficient carrier of TPT.

Animals↗

[Expression of green fluorescent protein vector by promoter sequence of CYP21 gene and CYP21P gene].

After amplification of PCR fragment of -770 bp(-)-1 bp in promoters of CYP21 gene and CYP21P gene respectively, the CMV promoter was cut off from pEGFP-N1, the vectors were constructed, in which contained promoter areas in CYP21 gene (pCYP21) and CYP21P gene (pCYP21P). All pCYP21, pCYP21P, pEGFP-N1(positive control) and negative control were transfected respectively into steroidogenic Y1 cell line, and were observed by inverted fluorescent microscopy and laser confocal microscopy. After transient transfection, the cells placed on inverted fluorescent microscopy. The appearance of GFP expression observed is as follows: pEGFP-N1 at 3 hours; pCYP21 at 7 hours. However, neither pCYP21P nor negative control expressed GFP. Laser confocal microscopy showed that pEGFP-N1 and pCYP21 produced GFP. pEGFP-N1 is stronger than pCYP21, but none of pCYP21P and negative control expressed GFP. Different distribution of GFP in Y1 cell could be seen of pEGFP-N1 and pCYP21, and the intensity of GFP in nucleus is stronger than cytoplasm. Our results further conform that there is a significantly difference of GFP expression in Y1 cell line by promoters of CYP21 and CYP21P.

Animals↗

[Double stranded RNA (RNA interference RNAi) in different creatures].

Double stranded RNA could degrade mRNA of target gene. It is a useful way for studying gene function. It is used widely in different creatures,such as Arabidopsis thaliana, Caenorhabditis elegans, Drosophila melanogaster, Zebrafish, Mouse. This review is mainly related to the application of dsRNA in recent years.

English Abstract↗