姜黄素,纳米混悬液,温敏性水凝胶;星点设计-响应面法," /> 姜黄素,纳米混悬液,温敏性水凝胶;星点设计-响应面法,"/> curcumin,nano suspension,thermosensitive hydrogel,star point design-response surface method,"/> <p class="MsoNormal"> <span>采用星点设计</span><span>-</span><span>响应面法优化姜黄素纳米混悬温敏性水凝胶的处方和制备工艺</span>
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沈阳化工大学学报, 2022, 36(5): 403-411    doi: 10.3969/j.issn.2095-2198.2022.05.004
  生物与环境工程 本期目录 | 过刊浏览 | 高级检索 |

采用星点设计-响应面法优化姜黄素纳米混悬温敏性水凝胶的处方和制备工艺

Optimization of Formulation and Preparation Technology of Curcumin Nanoscale Suspension Thermosensitive Hydrogel by Central Composite Design Response Surface Methodology

1. 沈阳化工大学 化学工程学院,辽宁 沈阳 110142;

2. 沈阳化工大学 制药与生物工程学院辽宁 沈阳 110142

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摘要 

以泊洛沙姆407、泊洛沙姆188以及羧甲基壳聚糖制备的空白凝胶为基质,结合用反溶剂法制得的姜黄素纳米混悬液,制备姜黄素纳米混悬温敏性水凝胶,并采用星点设计-响应面法优化其处方和制备工艺.以凝胶被模拟泪液稀释前后的相变温度t1t2为因变量,拟合方程,分析方差以及比较分析预测值和实际值,寻找温敏性水凝胶制备的最佳工艺和处方.FT-IRSEMXRDUV-Vis以及透析袋法被用于分析剂型制备的成功与否以及体外性能考察.研究结果表明:在泊洛沙姆407和泊洛沙姆188的质量分数比为51,羧甲基壳聚糖的体积分数为145%,以及戊二醛体积分数为 3%的条件下,制备的温敏性水凝胶的胶凝温度预测值和实测值的偏差在±1%以内,且该温敏性水凝胶在室温下呈流动态,并经模拟泪液稀释后为33 ℃,满足胶凝的基本要求.本研究为该制剂在临床的应用提供了一种新思路

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关键词:  姜黄素')" href="#">

姜黄素  纳米混悬液  温敏性水凝胶;星点设计-响应面法    

Abstract: 

Curcumin nano-suspension thermosensitive hydrogel was prepared with blank gel prepared by Poloxamer 407 (P407),Poloxamer 188 (P188) and carboxymethyl chitosan (CMC) as matrix,combined with curcumin nano-suspension prepared by anti-solvent method.The formulation and preparation process of curcumin nano-suspension were optimized by star point design-response surface method.Taking the phase transition temperatures t1 and t2 of gel before and after being diluted by simulated tears as dependent variables.The fitting equation,variance analysis and comparison of predicted and actual values were used to find the best process formula for the preparation of temperature sensitive hydrogels.FT-IR,SEM,XRDUV-Vis and dialysis bag method were used to evaluate the success of preparation and in vitro performance.The results showed that when the mass fraction ratio of P407 to P188 was 51,the volume fraction of CMC was 14.5%,and the volume fraction of GA was 3%,the deviation between the predicted and measured gelation temperature of the prepared thermosensitive hydrogel was within ± 1%,and it showed a dynamic flow at room temperature,and it was 33 after diluted with simulated tears,which meets the basic requirements of gelling.This research provides a new idea for the clinical application of the preparation.

Key words:  curcumin')" href="#">

curcumin    nano suspension    thermosensitive hydrogel    star point design-response surface method

               出版日期:  2022-10-30      发布日期:  2024-03-22      整期出版日期:  2022-10-30
ZTFLH: 

TQ469

 
基金资助: 

辽宁省教育厅一般项目(L2016023); 辽宁省科技厅博士科研启动基金(20141083

通讯作者:  李磊   
作者简介:  李佳佳(1995—) ,女,安徽六安人,硕士研究生在读,主要从事中药复方、药代动力学、药物新剂型的研究.
引用本文:    
李佳佳, 宁偎锋, 李磊.

采用星点设计-响应面法优化姜黄素纳米混悬温敏性水凝胶的处方和制备工艺 [J]. 沈阳化工大学学报, 2022, 36(5): 403-411.
LI Jia-jia, NING Wei-feng, LI Lei.

Optimization of Formulation and Preparation Technology of Curcumin Nanoscale Suspension Thermosensitive Hydrogel by Central Composite Design Response Surface Methodology . Journal of Shenyang University of Chemical Technology, 2022, 36(5): 403-411.

链接本文:  
https://xuebao.syuct.edu.cn/CN/10.3969/j.issn.2095-2198.2022.05.004  或          https://xuebao.syuct.edu.cn/CN/Y2022/V36/I5/403

参考文献:

1GERA M,SHARMA N,GHOSH M,et al.Nanoformulations of Curcumin:an Emerging Paradigm for Improved Remedial ApplicationJ.Oncotarget,2017,8(39):66680-66698.

2AHANGARI N,KARGOZAR S,GHAYOUR-MOBARHAN M,et al.Curcumin in Tissue Engineering:a Traditional Remedy for Modern MedicineJ.BioFactors,2019,45(2):135-151.

3]李雯博,蒋乐章,樊旭,.姜黄素抑制肝癌细胞HepG2增殖及干细胞标志物表达[J.湖北医药学院学报,2019,38(6):539-543.

4]周亚宾,华进,戚伶俐,.姜黄素预处理对急性缺血再灌注模型大鼠肝脏的保护作用[J.吉林大学学报(医学版),2020,46(2):297-301,433.

5]刘国安,冉苗苗,许欣欣,.抗氧化与促氧化-姜黄素抗癌机制[J.生命的化学,2019,39(3):472-477.

6WEI Y M,PU X L,ZHAO L.Preclinical Studies for the Combination of Paclitaxel and Curcumin in Cancer Therapy(Review)J.Oncol Rep,2017,37(6):3159-3166.

7]董淑琦.姜黄素促进自噬改善顺铂所致认知障碍的研究[D.泉州:华侨大学,201980.

8DAVIS B MPAHLITZSCH MGUO L,et al.Topical Curcumin Nanocarriers are Neuroprotective in Eye DiseaseJ.Scientific Reports,2018,8(1):11066.

9]徐晓勇,马凤森,黄颖聪.酮咯酸新型制剂的研究进展[J.现代药物与临床,2016,31(1):116-121.

10]宋亚南.温度诱导的聚(N-异丙基丙烯酰胺)/聚乙烯亚胺微凝胶悬浮液的相转变行为[D.沈阳:沈阳化工大学,2019:48.

11]李翔,刘亚丽,张鹏,.姜黄素眼用纳米混悬凝胶剂对大鼠硒性白内障的治疗作用[J.中国实验方剂学杂志,2017,23(22):9-13.

12]董丹丹,郑岩,刘会珍,等.田蓟苷纳米混悬剂冻干粉缓释片制备工艺研究[J.中草药,2019,50(12):2841-2847.

13]张雅稚,张洪,彭锐.泊那替尼纳米混悬剂的制备及体外释放度考察[J.广东药学院学报,2014,30(5):544-548.

14]邹清,谈唯,宁青,.厚朴酚纳米晶体混悬剂的制备及质量评价[J.中国药房,201930(15)2037-2041.

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