Peningkatan Pati Resisten Tepung Sorgum Termodifikasi Melalui Fermentasi dan Siklus Pemanasan Bertekanan-Pendinginan
Sorghum can be utilized as raw material to produce resistant starch because of its high amylose content. Resistant starch is the starch that is resistant to gastric acid hydrolysis and it cannot be digested by pancreatic digestive enzymes, it cannot be absorbed in the human small intestine, but it c...
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Bogor Agricultural University
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doaj-ce80b7bb44004ac9828f5f55e2a94c292020-11-25T00:47:21ZengBogor Agricultural UniversityJurnal Ilmu Pertanian Indonesia0853-42172443-34622018-04-01231102010.18343/jipi.23.1.10Peningkatan Pati Resisten Tepung Sorgum Termodifikasi Melalui Fermentasi dan Siklus Pemanasan Bertekanan-PendinginanRaden Haryo Bimo Setiarto0Nunuk Widhyastuti1Denny Setiadi2Laboratorium Mikrobiologi Pangan, Bidang Mikrobiologi, Pusat Penelitian Biologi LIPI, Jl. Raya Jakarta-Bogor Km 46, Kawasan CSC Cibinong, Bogor 16911Laboratorium Mikrobiologi Pangan, Bidang Mikrobiologi, Pusat Penelitian Biologi LIPI, Jl. Raya Jakarta-Bogor Km 46, Kawasan CSC Cibinong, Bogor 16911Fakultas Farmasi, Institut Sains dan Teknologi Nasional, Jalan Moh Kahfi II, Srengseng Sawah, Jagakarsa, Jakarta Selatan 12630Sorghum can be utilized as raw material to produce resistant starch because of its high amylose content. Resistant starch is the starch that is resistant to gastric acid hydrolysis and it cannot be digested by pancreatic digestive enzymes, it cannot be absorbed in the human small intestine, but it can be fermented by intestinal microbial in the colon. This study aims to increase the levels of resistant starch in modified sorghum flour by lactic acid bacteria fermentation and autoclaving-cooling cycling. Parameters analyzed in this study were proximate analysis starch digestibility, amylose content, total starch, reducing sugar, RDS (rapidly digestible starch), SDS (slowly digestible starch), and resistant starch. The combination treatment of fermentation and 2 cycles of autoclaving-cooling (FAC-2S) is the best treatment because it was able to produce the highest resistant starch content (39.06% dw) and it increased resistant starch 8.1 fold when compared with control. Improvement the number of autoclaving-cooling cycles was applied will increase the resistant starch content and decrease the digestibility of modified sorghum flour. High amylose content in modified sorghum flour is useful in the formation of resistant starch.http://journal.ipb.ac.id/index.php/JIPI/article/view/21156autoclaving-coolingfermentationmodified sorghum flourresistant starch |
collection |
DOAJ |
language |
English |
format |
Article |
sources |
DOAJ |
author |
Raden Haryo Bimo Setiarto Nunuk Widhyastuti Denny Setiadi |
spellingShingle |
Raden Haryo Bimo Setiarto Nunuk Widhyastuti Denny Setiadi Peningkatan Pati Resisten Tepung Sorgum Termodifikasi Melalui Fermentasi dan Siklus Pemanasan Bertekanan-Pendinginan Jurnal Ilmu Pertanian Indonesia autoclaving-cooling fermentation modified sorghum flour resistant starch |
author_facet |
Raden Haryo Bimo Setiarto Nunuk Widhyastuti Denny Setiadi |
author_sort |
Raden Haryo Bimo Setiarto |
title |
Peningkatan Pati Resisten Tepung Sorgum Termodifikasi Melalui Fermentasi dan Siklus Pemanasan Bertekanan-Pendinginan |
title_short |
Peningkatan Pati Resisten Tepung Sorgum Termodifikasi Melalui Fermentasi dan Siklus Pemanasan Bertekanan-Pendinginan |
title_full |
Peningkatan Pati Resisten Tepung Sorgum Termodifikasi Melalui Fermentasi dan Siklus Pemanasan Bertekanan-Pendinginan |
title_fullStr |
Peningkatan Pati Resisten Tepung Sorgum Termodifikasi Melalui Fermentasi dan Siklus Pemanasan Bertekanan-Pendinginan |
title_full_unstemmed |
Peningkatan Pati Resisten Tepung Sorgum Termodifikasi Melalui Fermentasi dan Siklus Pemanasan Bertekanan-Pendinginan |
title_sort |
peningkatan pati resisten tepung sorgum termodifikasi melalui fermentasi dan siklus pemanasan bertekanan-pendinginan |
publisher |
Bogor Agricultural University |
series |
Jurnal Ilmu Pertanian Indonesia |
issn |
0853-4217 2443-3462 |
publishDate |
2018-04-01 |
description |
Sorghum can be utilized as raw material to produce resistant starch because of its high amylose content. Resistant starch is the starch that is resistant to gastric acid hydrolysis and it cannot be digested by pancreatic digestive enzymes, it cannot be absorbed in the human small intestine, but it can be fermented by intestinal microbial in the colon. This study aims to increase the levels of resistant starch in modified sorghum flour by lactic acid bacteria fermentation and autoclaving-cooling cycling. Parameters analyzed in this study were proximate analysis starch digestibility, amylose content, total starch, reducing sugar, RDS (rapidly digestible starch), SDS (slowly digestible starch), and resistant starch. The combination treatment of fermentation and 2 cycles of autoclaving-cooling (FAC-2S) is the best treatment because it was able to produce the highest resistant starch content (39.06% dw) and it increased resistant starch 8.1 fold when compared with control. Improvement the number of autoclaving-cooling cycles was applied will increase the resistant starch content and decrease the digestibility of modified sorghum flour. High amylose content in modified sorghum flour is useful in the formation of resistant starch. |
topic |
autoclaving-cooling fermentation modified sorghum flour resistant starch |
url |
http://journal.ipb.ac.id/index.php/JIPI/article/view/21156 |
work_keys_str_mv |
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