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1.
Academic Journal of Second Military Medical University ; (12): 191-196, 2016.
Article in Chinese | WPRIM | ID: wpr-838616

ABSTRACT

Objective To use polyamidoamine dendrimers (PAMAM) loaded with sh miR 34a for constructing PAMAM/ sh-miR-34a nanocomplexes and to observe its inhibitory effect on the proliferation, invasion and metastasis of malignant melanoma A375 cells. Methods Particle size analyzer was used to investigate the potential and size of the constructed PAMAM/sh-miR-34a nanocomplex, and sh-miR-34a enrichment capability was determined by gel electrophoresis assay. The intracellular uptake of PAMAM/sh-miR-34a by A375 cells was investigated using sh-miR-34a labeled by rhodamine. CCK8 method was used to determine the inhibitory effect of the nanocomplex against A375 cell proliferation. Transwell assay was used to determine the inhibition effect of nanocomplex against A375 cell migration and invasion. Western blotting analysis was used to examine the inhibitory effect of PAMAM/sh-miR-34a on the protein expression of pAkt, pRb, and pERKl/2 in A375 cells. Results PAMAM loaded with sh-miR-34a could form stable nanocomplexes. The intracellular uptake of PAMAM/sh-miR-34a by A375 cells was the highest when N/P = 20 (P<0. 05). PAMAM effectively mediated sh-miR-34a entry into A375 cells, inhibiting the cell proliferation- invasion and metastasis and blocking the protein expression of pAkt, pRb. and pERKl/2 in A375 cells. Conclusion PAMAM can enwrap sh-miR-34a and inhibit malignant melanoma A375 cells

2.
International Journal of Biomedical Engineering ; (6): 308-311, 2008.
Article in Chinese | WPRIM | ID: wpr-398106

ABSTRACT

Polyamidoamine (PAMAM) dendrimers is considered a better genetic carrier for its ability to form with DNA a nano-sized polyelectrolyte complex of high stability and dissolubility. The mechanism of PAMAMmediated gene endocytosis has been fairly clear and the researches in vitro have confirmed that PAMAM had high transfection efficiency and low cytotoxicity. The researches in vivo have further confirmed that PAMAM had a potential application foreground in the field of gene therapy including in the prevention and treatment of ewing's sarcoma and pulmonary fibrosis, in heart transplantation, and in the preparation of falciparum malaria vaccine.

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