The Optimization of Gel Preparations Using the Active Compounds of Arabica Coffee Ground Nanoparticles

被引:36
作者
Nurman, Salfauqi [1 ]
Yulia, Ruka [2 ]
Irmayanti [1 ]
Noor, Erliza [3 ]
Sunarti, Titi Candra [3 ]
机构
[1] Univ Serambi Mekkah, Fac Agr Technol, Dept Agr Ind Engn, Banda Aceh 23245, Indonesia
[2] Univ Serambi Mekkah, Fac Agr Technol, Dept Food Technol, Banda Aceh 23245, Indonesia
[3] Bogor Agr Inst, Fac Agr Technol, Dept Agr Ind Technol, Bogor 16680, Indonesia
关键词
formulation; Box-Behnken; nanogel; SUPERHEATED WATER EXTRACTION; ANTIOXIDANT ACTIVITY; POLYSACCHARIDES; VOLATILE;
D O I
10.3390/scipharm87040032
中图分类号
R9 [药学];
学科分类号
1007 ;
摘要
Arabica coffee (Coffea arabica L.) ground nanoparticles contain phenolics compounds that have anti-inflammatory effects, so they can be used as sources of active compounds in anti-inflammatory gel preparations. This study aims to determine the optimum formulation of anti-inflammatory gel preparations using Arabica coffee ground nanoparticles as active compounds. Treatment optimization was performed using a Response Surface Methodology according to the Box-Behnken Design with a quadratic model in the Design Expert Version 10.0.3.0 software. In this study we used three factors (x): carbopol 940, triethanolamine (TEA), and nanoparticles, each of which consists of three levels, the response (y) observed including the acidity degree (pH), spreadability, viscosity and total phenolic content. ANOVA analysis results show that the quadratic model is very appropriate since it produces a high R2 value and a low PRESS value for all responses, as well as significant p-values (<0.0500) and an insignificant lack of Fit values (p-value> 5%). The optimum formulations for the gel preparations of the Arabica coffee ground nanoparticles obtained in this study are carbopol 940 (0.569%), TEA (0.468%), and nanoparticles (3.000%), which have values w/o an interval (0.994) and a desirable (0.981) response to acidity (5.212), spreadability (5.850 cm), viscosity (3734.244 cps) and total phenolic content (669.227 mu gGAE/g).
引用
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页数:16
相关论文
共 43 条
[1]  
[Anonymous], 2010, Nat. Sci., DOI DOI 10.4236/NS.2010.21006
[2]  
[Anonymous], 2016, J REKAYASA KIM LINGK, DOI DOI 10.23955/RKL.V11I1.4098
[3]  
Ariningsih E., 2016, FORUM PENELIT AGRO E, V34, P1, DOI [10.21082/fae.v34n1.2016.1-20, DOI 10.21082/FAE.V34N1.2016.1-20]
[4]   Introduction to Nanomedicine [J].
Astruc, Didier .
MOLECULES, 2016, 21 (01)
[5]  
Berekaa M. M., 2015, International Journal of Current Microbiology and Applied Sciences, V4, P345
[6]  
Berlian H, 2017, FARMAKA, V15, P29
[7]   Antioxidant and anti-inflammatory activities of phenolic compounds isolated from Melipona beecheii honey [J].
Carlos Ruiz-Ruiz, Jorge ;
Jesus Matus-Basto, Angel ;
Acereto-Escoffie, Pablo ;
Rubi Segura-Campos, Maira .
FOOD AND AGRICULTURAL IMMUNOLOGY, 2017, 28 (06) :1424-1437
[8]   Volatile composition and antioxidant capacity of Arabica coffee [J].
Cheong, Mun Wai ;
Tong, Kau Hin ;
Ong, Jeremy Jian Ming ;
Liu, Shao Quan ;
Curran, Phillip ;
Yu, Bin .
FOOD RESEARCH INTERNATIONAL, 2013, 51 (01) :388-396
[9]   Antioxidant activity and bioactive compounds of lettuce improved by espresso coffee residues [J].
Cruz, Rebeca ;
Gomes, Teresa ;
Ferreira, Anabela ;
Mendes, Eulalia ;
Baptista, Paula ;
Cunha, Sara ;
Pereira, Jose Alberto ;
Ramalhosa, Elsa ;
Casal, Susana .
FOOD CHEMISTRY, 2014, 145 :95-101
[10]  
Danimayotsu AA., 2017, PHAM J INDONES, V3, P25, DOI DOI 10.21776/UB.PJI.2017.003.01.4