Optimization of Aloe vera and alginate as encapsulating matrices for Lactobacillus acidophilus using FCCD-RSM approach
In order to maintain the viability of probiotic, the used of prebiotic is important. Aloe vera has been hypothesized to be a prebiotic potential for probiotic. Due to low viability of encapsulated cells, Aloe vera gel was used to be part of enacapsulating matrices for probioctic, Lactobacillus acido...
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Online Access: | http://psasir.upm.edu.my/id/eprint/69471/1/Optimization%20of%20Aloe%20vera%20and%20alginate%20as%20encapsulating%20matrices%20for%20Lactobacillus%20acidophilus%20using%20FCCD-RSM%20approach.pdf http://psasir.upm.edu.my/id/eprint/69471/ |
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my.upm.eprints.694712019-07-04T04:44:02Z http://psasir.upm.edu.my/id/eprint/69471/ Optimization of Aloe vera and alginate as encapsulating matrices for Lactobacillus acidophilus using FCCD-RSM approach Salehuddin, Nur Syahirah Yusoff, Anida Mohammed Yaziz, Hifa Nazirah Ahmad, Siti Aqlima Dahalan, Farrah Aini Abdul Khalil, Khalilah In order to maintain the viability of probiotic, the used of prebiotic is important. Aloe vera has been hypothesized to be a prebiotic potential for probiotic. Due to low viability of encapsulated cells, Aloe vera gel was used to be part of enacapsulating matrices for probioctic, Lactobacillus acidophilus. As a result, optimization of Aloe vera gel with sodium alginate was carried out in order to determine the maximum encapsulation yield. Face centered composite design-response surface methodology (FCCD-RSM) was employed to optimize the sodium alginate concentration and Aloe vera gel (prebiotic) composition during microencapsulation process in performing a better encapsulation yield for L. acidophilus. The encapsulation yield (EY) of encapsulated L. acidophilus was investigated with respect to two variables which were sodium alginate (X1) and Aloe vera gel (X2). Result obtained with polynomial regression model used in this study showed highly significant (0.0013) with R2 value was 0.9138. Aloe vera gel was showed highly significant (p<0.05) effect to the encapsulation yield. The optimum Aloe vera gel and sodium alginate were obtained at 1.12% (v/v) and 1.28% (w/v), respectively. Based on the verification process, the experimental and predicted results were showed not significant difference (p< 0.05). IEEE 2013 Conference or Workshop Item PeerReviewed text en http://psasir.upm.edu.my/id/eprint/69471/1/Optimization%20of%20Aloe%20vera%20and%20alginate%20as%20encapsulating%20matrices%20for%20Lactobacillus%20acidophilus%20using%20FCCD-RSM%20approach.pdf Salehuddin, Nur Syahirah and Yusoff, Anida and Mohammed Yaziz, Hifa Nazirah and Ahmad, Siti Aqlima and Dahalan, Farrah Aini and Abdul Khalil, Khalilah (2013) Optimization of Aloe vera and alginate as encapsulating matrices for Lactobacillus acidophilus using FCCD-RSM approach. In: 2013 IEEE 3rd International Conference on System Engineering and Technology (ICSET 2013), 19-20 Aug. 2013, Faculty of Electrical Engineering, Universiti Teknologi Mara, Shah Alam. (pp. 43-47). 10.1109/ICSEngT.2013.6650140 |
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In order to maintain the viability of probiotic, the used of prebiotic is important. Aloe vera has been hypothesized to be a prebiotic potential for probiotic. Due to low viability of encapsulated cells, Aloe vera gel was used to be part of enacapsulating matrices for probioctic, Lactobacillus acidophilus. As a result, optimization of Aloe vera gel with sodium alginate was carried out in order to determine the maximum encapsulation yield. Face centered composite design-response surface methodology (FCCD-RSM) was employed to optimize the sodium alginate concentration and Aloe vera gel (prebiotic) composition during microencapsulation process in performing a better encapsulation yield for L. acidophilus. The encapsulation yield (EY) of encapsulated L. acidophilus was investigated with respect to two variables which were sodium alginate (X1) and Aloe vera gel (X2). Result obtained with polynomial regression model used in this study showed highly significant (0.0013) with R2 value was 0.9138. Aloe vera gel was showed highly significant (p<0.05) effect to the encapsulation yield. The optimum Aloe vera gel and sodium alginate were obtained at 1.12% (v/v) and 1.28% (w/v), respectively. Based on the verification process, the experimental and predicted results were showed not significant difference (p< 0.05). |
format |
Conference or Workshop Item |
author |
Salehuddin, Nur Syahirah Yusoff, Anida Mohammed Yaziz, Hifa Nazirah Ahmad, Siti Aqlima Dahalan, Farrah Aini Abdul Khalil, Khalilah |
spellingShingle |
Salehuddin, Nur Syahirah Yusoff, Anida Mohammed Yaziz, Hifa Nazirah Ahmad, Siti Aqlima Dahalan, Farrah Aini Abdul Khalil, Khalilah Optimization of Aloe vera and alginate as encapsulating matrices for Lactobacillus acidophilus using FCCD-RSM approach |
author_facet |
Salehuddin, Nur Syahirah Yusoff, Anida Mohammed Yaziz, Hifa Nazirah Ahmad, Siti Aqlima Dahalan, Farrah Aini Abdul Khalil, Khalilah |
author_sort |
Salehuddin, Nur Syahirah |
title |
Optimization of Aloe vera and alginate as encapsulating matrices for Lactobacillus acidophilus using FCCD-RSM approach |
title_short |
Optimization of Aloe vera and alginate as encapsulating matrices for Lactobacillus acidophilus using FCCD-RSM approach |
title_full |
Optimization of Aloe vera and alginate as encapsulating matrices for Lactobacillus acidophilus using FCCD-RSM approach |
title_fullStr |
Optimization of Aloe vera and alginate as encapsulating matrices for Lactobacillus acidophilus using FCCD-RSM approach |
title_full_unstemmed |
Optimization of Aloe vera and alginate as encapsulating matrices for Lactobacillus acidophilus using FCCD-RSM approach |
title_sort |
optimization of aloe vera and alginate as encapsulating matrices for lactobacillus acidophilus using fccd-rsm approach |
publisher |
IEEE |
publishDate |
2013 |
url |
http://psasir.upm.edu.my/id/eprint/69471/1/Optimization%20of%20Aloe%20vera%20and%20alginate%20as%20encapsulating%20matrices%20for%20Lactobacillus%20acidophilus%20using%20FCCD-RSM%20approach.pdf http://psasir.upm.edu.my/id/eprint/69471/ |
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