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1.
Medical Journal of Chinese People's Liberation Army ; (12): 745-750, 2019.
Article in Chinese | WPRIM | ID: wpr-849784

ABSTRACT

Objective: To investigate the effects of RCCS simulated microgravity on the metabolism of the human keratinocyte cell line HaCaT. Methods: The rotary cell culture system (RCCS) was used to simulate the microgravity environment, and HaCaT cells were cultured in vitro and divided randomly into simulated microgravity group (SMG) and normal gravity group (NG). The two group HaCaT cells were collected respectively after 1 d, 2 d and 3 d culture, and the samples were analyzed by LC/MS metabolomics. The differential metabolites between the SMG and NG cells were identified with partial least squares discriminant analysis ((O)PLS-DA), and the data were input into the KEGG database for the construction and functional analysis of metabolic pathways. Results: Comparing to NG cells, after 1 d culture, there were 74 different metabolites in SMG cells, among which 16 were up-regulated and 58 were down-regulated; after 2 d culture, there were 89 different metabolites, among which 15 were up-regulated and 74 down-regulated; after 3d culture, there were 100 different metabolites, of which 23 were up-regulated and 77 were down-regulated. The differentially expressed 49 metabolites (VIP>1 and P<0.05) after 3 d were set as target metabolites, within which the sphingosine, glutamate, and docosapentaenoic acid were down-regulated, and dehydrated sorbitol was up-regulated. KEGG analysis indicated that the metabolic pathways involved were amino acid metabolism, lipid metabolism, cell proliferation and apoptosis, substance transport, catabolism, and signal transduction. Conclusion: RCCS simulated microgravity may have significant impacts on keratinocyte metabolism mainly involving metabolites such as sphingolipids and glutamate as well as the related signaling pathways.

2.
China Journal of Orthopaedics and Traumatology ; (12): 661-665, 2018.
Article in Chinese | WPRIM | ID: wpr-691153

ABSTRACT

<p><b>OBJECTIVE</b>To explore surgical method and clinical effects of descending branch of the anterior lateral malleolar artery based anterograde island flap for repairing foot and ankle wounds.</p><p><b>METHODS</b>Nine patients with skin defects of foot and ankle repaired by descending branch of the anterior lateral malleolar artery based anterograde island flap were studied from June 2015 to January 2017, including 6 males and 3 females aged from 32 to 63 years old. The wound were located on foot and ankle and associated with exposure of bone, tendon, blood vessels or nerves. The surface of wound located on foot in 6 patients, and 3 patients in ankle joint. The area of defect ranged from 1.5 cm×2.0 cm to 6.0 cm×13.0 cm, and the area of flap ranged from 2.0 cm×3.0 cm to 7.0 cm×15.0 cm. The donor site was skin grafted with split-thickness skin from abdomen. Appearance, texture, condition of donor site of island flaps after operation were observed, satisfied degree of clinical effects were evaluated by ZHANG Hao's evaluation, and AOFAS score were used to evaluate function.</p><p><b>RESULTS</b>Circulations of flaps in 9 cases were stable without blockage, and healed well at 2 weeks after operation. All patients were followed up from 2 to 18 months with an average of(8.0±2.3) months. All flap were survived at stage I, pedicles looked smooth and tidy, no cat-ear formed, the texture of flap was soft with satisfied appearance, the color was near to surrounding skin. The surface of wound were tidy after skin graft of donor sites without scar hypertrophy. Nine patients got satisfied results according to ZHANG Hao's evaluation, and AOFAS score was excellent.</p><p><b>CONCLUSIONS</b>Descending branch of the anterior lateral malleolar artery based anterograde island flap for repairing foot and ankle wounds, which has advantages of protect main vessel, thin flap, is a simple and effective method.</p>

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