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1.
Article de Chinois | WPRIM | ID: wpr-804842

RÉSUMÉ

Objective@#To evaluate the effect of vertical incision with superomedial pedicle for the treatment of female asymmetric hypermastia.@*Methods@#The total of 31 patients with asymmetric breast hypertrophy were admitted from May 2012 to November 2018. All patients were female with an average age of 37.8 (28-55) years. Mammoplasty was performed by vertical incision with superomedial pedicle. According to the preoperative design, the epidermis of the pedicle, the excess skin and glandular tissue were removed. The superomedial pedicle was rotated upward and to be fixed on the major pectoralis fascia. After the fixation of the nipple areola, the incision was closed.@*Results@#The mean follow up was (8.4±3.0) months, with a range from 6 to 18 months.One patient was unsatisfied with scar hyperplasia. One patient had slight mastoptosis 6 months after operation and received favorable outcome after revision. The rest of 29 patients had satisfactory results.@*Conclusions@#For patients with asymmetric breast hypertrophy, the new location of nipples on both sides should be determined by the degree of mastoptosis and hypermastia. So that, symmetry breast as well as smaller breast can be obtained.

2.
Article de Chinois | WPRIM | ID: wpr-805730

RÉSUMÉ

Stromal vascular fraction(SVF)are the remaining cells after removing mature fat cells in the adipose tissue. Containing a certain amount of adipose derived stem cells(ADSCs), SVF also includes many other cells, which may have the potential of promoting angiogenesis. In this review, the role of SVF in angiogenesis after fat transplantation was summarized by intensive reading relative literature in recent years. The result is that angiogenesis and fat graft revascularization are regulated by various factors: SVF promotes secretion of a diverse array of cytokines and growth which are capable of stabilizing endothelium vascular network. ADSCs have the potential of differentiating into smooth muscle cells and endothelial cells which can coroperate to form new blood vessels.

3.
Article de Chinois | WPRIM | ID: wpr-251738

RÉSUMÉ

<p><b>OBJECTIVE</b>To compare three different methods in transfection of plasmid pGPU6/GFP/Neo into chicken embryo fibroblast.</p><p><b>METHODS</b>Different doses (1.25 μl,2 μl,2.5 μl) of Lipofec-tamin2000, Gbfectene-Elite and HilyMax were used to transfect 1 μg plasmid pGPU6/GFP/Neo. The transfection efficiency was observed by the fluorescence and the cell viabilities were measured.</p><p><b>RESULTS</b>The transfection efficiency of HilyMax was significant higher than that of Lipofectamin2000 and Gbfectene-Elite (86.85%±2.32% compared with 48.33%±3.24% and compared with 37.35%±5.41%; F=18.882, P<0.05). The transfection efficiency of 2.5 μl HilyMax was highest(90.53%±1.15%). The cell viability of Lipofectamin2000 was significantly lower than that of HilyMax and Gbfectene-Elite(65.76%±5.78% compared with 89.54%±0.86% and compared with 82.45%±3.56%;F=90.676, P<0.05).</p><p><b>CONCLUSION</b>HilyMax has the highest transfection efficiency and the lowest cell toxicity in transfection of plasmid pGPU6/GFP/Neo into chicken embryo fibroblast, with the optimal ratio of 2.5 μl HilyMax:1 μg plasmid.</p>


Sujet(s)
Animaux , Embryon de poulet , Lignée cellulaire , Fibroblastes , Biologie cellulaire , Protéines à fluorescence verte , Génétique , Plasmides , Génétique , Transfection , Méthodes
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