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纸质出版日期:2016
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杨胜群, 熊茜, 邹俊波, 等. 美洲大蠊水提取物对小鼠烫伤模型的影响[J]. 中国实验方剂学杂志, 2016,22(22):145-149.
YANG Sheng-qun, XIONG Xi, ZOU Jun-bo, et al. Effect of Water Extract of on Scald Model in Mice[J]. Chinese journal of experimental traditional medical formulae, 2016, 22(22): 145-149.
杨胜群, 熊茜, 邹俊波, 等. 美洲大蠊水提取物对小鼠烫伤模型的影响[J]. 中国实验方剂学杂志, 2016,22(22):145-149. DOI: 10.13422/j.cnki.syfjx.2016220145.
YANG Sheng-qun, XIONG Xi, ZOU Jun-bo, et al. Effect of Water Extract of on Scald Model in Mice[J]. Chinese journal of experimental traditional medical formulae, 2016, 22(22): 145-149. DOI: 10.13422/j.cnki.syfjx.2016220145.
目的:观察美洲大蠊水提取物对小鼠实验性烫伤模型创面愈合的影响,并初步探讨其作用机制。方法:取健康ICR雌性小鼠,按体重分层随机分为正常组、模型组、康复新液组、美洲大蠊水提取物低、中、高(0.327,0.490,0.653 g·kg-1)剂量组,采用(82±2)℃砝码烫伤小鼠背部脱毛区皮肤制备模型,观察药物外用5,10 d对烫伤创面愈合的影响,并测定血清转化生长因子-β1(TGF-β1),白细胞介素-6(IL-6)含量,进行烫伤创面皮肤组织病理检查。结果:与模型组比较,美洲大蠊水提取物各剂量用药5,10 d均显著提高烫伤小鼠创面愈合率(P<0.05,P<0.01);中剂量组用药5 d明显提高小鼠血清TGF-β1水平,用药10 d则降低TGF-β1,IL-6含量,低剂量用药10 d亦降低TGF-β1含量(P<0.05)。美洲大蠊水提取物能促进烫伤小鼠皮肤纤维母细胞、成纤维细胞及毛细血管等增生,并能促进表皮、真皮及肌层损伤和真皮胶原纤维束排列紊乱的修复,尤以中剂量的修复作用明显。结论:美洲大蠊水提取物外用能明显促进烫伤模型小鼠创面的愈合,促进损伤表皮、真皮等的修复,作用机制可能与调控TGF-β1释放(早期促进,后期抑制)、抑制炎性因子释放有关,发挥既可促进修复但又避免瘢痕形成的作用。
Objective: To observe the effects of the water extract of Periplaneta americana on the wound healing of experimental scald model mice
and explore its mechanism. Method: Healthy female ICR mice were randomly divided into control group
model group
Kangfuxin group
P. americana water extract low-dose group (0.327 g·kg-1)
middle-dose group (0.490 g·kg-1) and high-dose group (0.653 g·kg-1) group according to body weight
n=13 in each group. The scald mouse models were established by using (82±2)℃ weight burning in hair removal zone on their back. The effect of the topical medicines (0.1 mL/spray) on the scald wound was observed at 5 d and 10 d; the contents of transforming growth factor (TGF)-β1 and interleukin (IL)-6 in serum were detected
and histopathological examination of burn wound skin was conducted. Result: As compared with the normal group
the wound healing rate was significantly reduced at day 5 and day 10 in model group (P<0.01)
the level of IL-6 was significantly increased at day 10 in model group (P<0.05)
with obvious pathological injury in skin. As compared with the model group
he wound healing rate was significantly increased at day 5 and day 10 in P. americana water extract groups (P<0.05
P<0.01); the level of TGF-β1 was significantly increased at day 5 in P. americana water extract middle dose group (P<0.05); the levels of TGF-β1 and IL-6 were reduced at day 10 (P<0.05); TGF-β1 level was also reduced at day 10 in P.americana water extract low-dose group (P<0.05). Pathological test results showed that P.americana water extract can promote proliferation of skin fibroblasts
fibroblast
and capillary vessels in skin of scalded mice
and promote the repair of epidermis
dermis and muscular damages
as well as disorder of dermal collagen fibers
especially in the P.americana water extract middle-dose group. Conclusion: P.americana water extract has obvious promoting effect on would healing in scald mice
promoting repair of epidermal hyperplasia and proliferation of granulation tissue. Its mechanism may be associated with regulating TGF-β1 release (promotion at the early stage
inhibition at the late stage)
inhibiting the release of inflammatory factors
so that P.americana water extract can both promote repair and avoid scarring.
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