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      1. 納米珍珠粉對大鼠深Ⅱ°燒傷創(chuàng)面愈合的影響

        時間:2023-03-02 13:37:26 藥學畢業(yè)論文 我要投稿
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        納米珍珠粉對大鼠深Ⅱ°燒傷創(chuàng)面愈合的影響

               作者:崔淑芳,郝光榮,湯 球,孫 偉,曹 平

        【摘要】  目的  研究納米珍珠粉對大鼠深Ⅱ°燒傷創(chuàng)面愈合的影響并與微米珍珠粉在燒傷愈合中進行效比較。方法  納米珍珠粉、微米珍珠粉(0.5g/只)分別與甘油按1∶1配制成混合液。以微米珍珠粉組與自然愈合組作對照,納米珍珠粉組為實驗組。測定大鼠14%深Ⅱ°燙傷后7、15、21天的創(chuàng)面愈合率、創(chuàng)面組織學觀察以及皮膚羥脯氨酸的含量。結(jié)果  納米珍珠粉組創(chuàng)面愈合率較微米珍珠粉組、自然愈合組高(P<0.05或P<0.01);燒傷后3天各組皮膚羥脯氨酸含量均低于正常(P<0.01),納米珍珠粉組減少程度小于其他組;傷后5天各組HP含量有所恢復,尤以納米珍珠粉組顯著高于自然愈合組及微米珍珠粉組;10天后各組明顯升高,而納米珍珠粉組HP含量的升高差異有非常顯著性(P<0.01)。結(jié)論  納米珍珠粉可以促進大鼠深Ⅱ°燒傷創(chuàng)面的愈合,其愈合作用明顯高于微米珍珠粉(P<0.05)。
           
            【關(guān)鍵詞】  納米珍珠粉;微米珍珠粉;燒傷;羥脯氨酸
            
                
            【Abstract】  Objective  To study the efficiency comparison between nano and micro pearl powder for treatment of deep Ⅱ° skin scalds in rats.Methods  Nano and micro pearl powder (0.5g each rat) are mixed with glycerol (1∶1).With the micro pearl powder group and the normal healing group as the control,nano pearl powder were used as drug on the deep Ⅱ° skin scalds of rats in the experimental groups.Wound healing rates was measured at 7,15,21 days post-injury;and the content of hydroxyproline (HP) were detected also.Results  Wound healing rates of the nano pearl powder group were higher than that of the micro pearl powder group and the normal healing group (P<0.05 or P<0.01).At the 3th day post-injury,the content of HP in every group were lower than that in the normal group (P<0.01),while the decrease in the nano pearl powder group was slight than those in other groups.At the 5th day post-injury,the content of OHP recovered to some extent,with a significantly higher elevation in the nano pearl powder group than those in other groups.At the 10th day post-injury,evident HP increase was found in every group,with a statistical significant higher elevation in the nano pearl powder group (P<0.01).Conclusion  Nano pearl powder could promote the wound healing of deep Ⅱ° skin scalds in rats significantly,it’s healing was more higher than that of micron pearl powder.
           
            【Key words】  nano pearl powder;micro pearl powder;scald;hydroxyproline(HP)
           
            This research is to study the wound healing efficacy of nano pearl powder in treatment of deep Ⅱ°skin scalds in rats and compare the function with those of micron pearl powder.
           
            1  Material and methods
           
            1.1  Pearl powder  (Zhejiang Fenix Pharmaceutical Co.,Ltd),nano and micro pearl powder (0.5g each rat ) are mixed with glycerol (1∶1).Dermal hydroxyproline detection kit (Nanjing Jiancheng biotechnology Institute,Approved Number 20040631).
           
            1.2  Experimental animals  Female SD rats (n=190,body weight 240~260g,Experimental Animal Center,Second Military Medical University).The rats were fedin metabolic cages for 1 week.
           
            Qualified certificate for experimental animal [SCXK(Hu)2002-0006];qualified certificate for animal facility [No.SCXK(Hu)2002-0026].
           
            1.3  Establishment of deep Ⅱ° skin scalds model in rats  The model was made based on the traditional method set up by Yang Taimei[1].The rats were denuded with BaS and scalded for 15s in 80℃ water the next day to get deep Ⅱ° skin scalds model in rats with a wound accounting for 14% of the body surface.See fig.1.
           
            1.4  Methods  Those rats were divided into 3 groups after the burn (n=60):nano pearl powder group,micro pearl powder and normal healing group.In nano pearl powder and micro pearl powder groups the wound were daubed with a mixture of nano,micro pearl powder and glycerol once a day,while the rats in the normal healing group were fed regularly.The experiment lasted 21 days.
           
            1.5  Observations
           
            1.5.1  Wound healing circumstance  The wound development healing percentage and healing circumstance were observed in the whole healing.The healing rates were calculated on day 7、15、21 after scalding.Wound healing rate=healing surface/original skin lesion×100%.Regarding the wound healing as the index,to judge the healing time.
           
            1.5.2  Dermal hydroxyproline(HP)measurement  Tissue in the wound were taken from the 3 groups of rats on day 3,5,10,15 and 21 after scalding with normal rats skin as a control.The dorsal skin were denuded and separated from the connective tissue followed by a drying at 80℃,50mg of which were measured by dermal HP reagent kit.HP content was recorded by μg/mg.
           
            1.6  Data statistics and analysis  Inputting the data into the computer,to analyze the data with the Excel software,a significance dissimilarity of group data was showed P<0.05 or P<0.01,the average data was showed x±s.
           
            2  Results
           
            2.1  Comparison of the healing time and the wound development healing rate  The skin wound in the nano pearl powder group is clear with no effusion and infection.In the micro pearl powder group,there is a rat with effusion on the skin surface.In the control group 2 cases of effusion and one infection were found.
           
            The wound healing time of nano pearl powder has a significance dissimilarity more than that of micro pearl powder (P<0.01),the wound development healing rate is more quickly.(P<0.01,See table 1 for details).

        Tab.1  Comparison of wound healing time and development healing rate of the different times  (x±s,%) 

        0Note:compared with control group:*P<0.05,**P<0.01;compared with micro pearl powder group:△P<0.05,△△P<0.01




            
            2.2  Changement of the scalded skin tissue HP content in different phases  The HP content in the normal control group is (78.05±7.79)μg/mg.On day 3 after the scald,the HP content in every group of animals were lower than that in the normal group (P<0.01),while the decrease in the nano pearl powder group was slight than those in other groups.On day 5,the HP recovered to some extent,with a significantly higher elevation in the nano pearl powder group than those in other groups.On day 10,evident HP increase was found in every group,with a statistical significant higher elevation in the nano pearl powder group (P<0.01).See table 2.

        Tab.2  Changement of the scalded skin tissue HP content in different phases  (x±s,n=10) 

        Normal control value:78.05±7.79;t test:compared with normal control:△P<0.05,△△P<0.01;compared with experimental control*P<0.05,**P<0.01;compared with micro pearl powder:☆P<0.05,☆☆P<0.01

            3  Discussion
           
            By the measurement of the wound healing rate,nano pearl powder had the function of promoting obviously the wound healing in earlier period,it’s curative effect is obvious better than that of micron pearl powder by comparison (P<0.05).The scald healing is a compound process of inflammatory reaction,cell proliferation,re-epithelization and collagen metabolizing[2].The collagen synthesized and secreted by fibroblasts is the main structure protein of the skin,and HP is a steady component of collagen,which accounts for 13.4% of the collagen proteins.The healing of a burn lesion mainly relies on the collagen fiber formed by the granulation tissue,thus,measurement of the variance of skin HP content may act as a specific and sensitive marker for wound healing in tested animals[3].
           
            The decrease of HP in the early stage of scald has much to do with the collagen decomposing caused by heat damage and the eschar formed by collagen degeneration[4].The dermal HP content in the nano peal powder group started to increase on day 5,reached the same value as the normal control group on day 10,and arrived a peak value on day 15.Between day 3 and 21,the dermal HP content in the nano pearl powder group is significantly higher than those in micro pearl powder group and normal healing group,which indicates that nano peal powder has a more potent stimulation effect on collagen synthesis and a higher absorption rate than micro pear powder.So,nano peal powder can promote the healing process of a scalded tissue by relieving the decrease of HP in the affected skin and accelerating the synthesis of collagen fiber. 


        Fig1a''1b  The trauma of deep Ⅱ°degree wound in SD rats(×100)

        【參考文獻】

            1  YANG Tai-mei,F(xiàn)ENG Shi-jie,XU Sa-ying.Making the rat scald model.Acta Universitatis Medicinalis Secondae Shanghai,1997,173):91.    
            2  Portera CA,Love EJ,Memore L,et al.Effect of macrophagge stimulation on collagen biosynthesis in the healing wound.Am Surg,1997,63(2):125-131.    
            3  Edwards CA,Orien JR.Modified assay for determination of hydroxyproline in tissue hydrolyzate.Clin Chem Acta,1980,104:161.    
            4  Nussbaum MS.Arginine stimulates wound healing and immune function in elderly humen beings.J PEN,1994,18:194.

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