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熱門搜(sou)索(suo):
Universal TA質構儀(yi)
Rapid TA質(zhi)構儀(yi)
魚糜(mi)彈性儀
質構儀(yi)探頭(tou)
凝膠(jiao)強度(du)測定(ding)儀
Rapid TA+質(zhi)構(gou)儀(yi)
肌肉嫩(nen)度(du)儀
iDeal TA物性測試儀
化(hua)工(gong)物性分析(xi)儀
RTA-SCP土(tu)壤微型(xing)貫入(ru)儀
納(na)米(mi)粒(li)子高(gao)效自動(dong)收(shou)集裝置
通針(zhen)性測試儀
RTA-SA土(tu)壤粘(zhan)附力測定(ding)儀
TBUTA-23質(zhi)構(gou)儀(yi)
茶(cha)樹(shu)新梢(shao)嫩(nen)度(du)測定(ding)儀
微針(zhen)強度(du)測定(ding)儀
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上海騰拔(ba)質(zhi)構儀(yi)用(yong)於測(ce)定(ding)靜(jing)電(dian)紡絲(si)納(na)米(mi)纖(xian)維的(de)拉(la)伸(shen)強度(du)和斷裂(lie)伸(shen)長率
發(fa)布時(shi)間:2023/3/17
點擊(ji)次數:2133
In this study, a novel nanofiber material with Polylactic acid (PLA), natural plant polysaccharides-Bletilla striata polysaccharide (BSP) and Rosmarinic acid (RA) as the raw materials to facilitate wound healing was well prepared through coaxial electrospinning. The morphology of RA-BSP-PVA@PLA nanofibers was characterized through scanning electron microscopy (SEM), and the successful formation of core-shell structure was verified under confocal laser microscopy (CLSM) and Fourier transform infrared spectroscopy (FTIR). RA-BSP-PVA@PLA exhibited suitable air permeability for wound healing, as indicated by the result of the water vapor permeability (WVTR) study. The results of tension test results indicated the RA-BSP-PVA@PLA nanofiber exhibited excellent flexibility and better accommodates wounds. Moreover, the biocompatibility of RA-BSP-PVA@PLA was examined through MTT assay. Lastly, RA-BSP-PVA@PLA nanofibers can induce wound tissue growth, as verified by the rat dorsal skin wound models and tissue sections. Furthermore, RA-BSP-PVA@PLA can facilitate the proliferation and transformation of early wound macrophages, and down-regulate MPO+ expression of on the wound, thus facilitating wound healing, as confirmed by the result of immunohistochemical. Thus, RA-BSPPVA@PLA nanofibers show great potential as wound dressings in wound healing.