PEMANFAATAN AKTIVITAS ANTIMIKROBA SAPONIN DAUN PEPAYA PADA KEMASAN KELOBOT JAGUNG
This study aimed to utilize saponins from papaya leaves as antifungal on maize husk packaging. Crude and semi-pure saponins were extracted from papaya leaves using Soxhlet and Ultrasonic-Assisted Extraction (UAE) methods. The total saponin contents were determined using UV-Vis spectrophotometry. The...
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Bogor Agricultural University; Indonesian Food Technologist Association (IAFT)
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doaj-fe1db88db8c04ddb99f4cbf6a35348d02020-11-24T22:47:55ZengBogor Agricultural University; Indonesian Food Technologist Association (IAFT)Jurnal Teknologi dan Industri Pangan1979-77882087-751X2016-06-01271687710.6066/jtip.2016.27.1.68PEMANFAATAN AKTIVITAS ANTIMIKROBA SAPONIN DAUN PEPAYA PADA KEMASAN KELOBOT JAGUNGSri Wahyuningsih0Nugraha E. Suyatma1Harsi D. Kusumaningrum2Program Studi Ilmu Pangan, Sekolah Pasca Sarjana, Institut Pertanian Bogor, Bogor, IndonesiaDepartemen Ilmu dan Teknologi Pangan, Fakultas Teknologi Pertanian, Institut Pertanian Bogor, Bogor, Indonesia2) Departemen Ilmu dan Teknologi Pangan, Fakultas Teknologi Pertanian, Institut Pertanian Bogor, Bogor 3) Southeast Asian Food and Agricultural Science and Technology Center, Institut Pertanian Bogor, Bogor, IndonesiaThis study aimed to utilize saponins from papaya leaves as antifungal on maize husk packaging. Crude and semi-pure saponins were extracted from papaya leaves using Soxhlet and Ultrasonic-Assisted Extraction (UAE) methods. The total saponin contents were determined using UV-Vis spectrophotometry. Their ability to inhibit Aspergillus niger was tested by macrodillution method. The extracts were also applied to maize husk by soaking it for 5 minutes at concentration of 10, 20 and 25 mg/mL. The parameters observed were physical and mechanical properties (tensile strength and elongation), water vapor transmission rate (WVTR), total plate count (TPC) and mold and yeast counts (MYC) after 25 days of storage at room temperature (±28ºC). Drying of young papaya leaves using cabinet dryer resulted in the highest yield of crude saponin (12.96 ± 0.26%). Total saponin content in crude saponin extract was 115.43 mg/g, while in semi-pure saponin extract was 480.19 mg/g. Crude saponin and semi-pure saponin extract at concentration of 25 mg/mL could inhibit the growth of A. niger for 1.35 and 0.36 log CFU/mL, respectively after 24 hours. The WVTR test indicated that treatment with a concentration of 25 mg/mL of crude saponin extracts showed the lowest transmission. The addition of crude saponin and semi-pure saponin extract to the maize husk at the concentration of 10, 20 and 25 mg/mL was able to inhibit the microbial growth, represented by constant number in TPC and MYC for 25 days storage. This study showed that crude saponin and semi-pure saponin extract could improve the functional properties of maize husk as packaging materials. http://journal.ipb.ac.id/index.php/jtip/article/view/14748crude saponinsmaize huskpapaya leavessemi-pure saponins |
collection |
DOAJ |
language |
English |
format |
Article |
sources |
DOAJ |
author |
Sri Wahyuningsih Nugraha E. Suyatma Harsi D. Kusumaningrum |
spellingShingle |
Sri Wahyuningsih Nugraha E. Suyatma Harsi D. Kusumaningrum PEMANFAATAN AKTIVITAS ANTIMIKROBA SAPONIN DAUN PEPAYA PADA KEMASAN KELOBOT JAGUNG Jurnal Teknologi dan Industri Pangan crude saponins maize husk papaya leaves semi-pure saponins |
author_facet |
Sri Wahyuningsih Nugraha E. Suyatma Harsi D. Kusumaningrum |
author_sort |
Sri Wahyuningsih |
title |
PEMANFAATAN AKTIVITAS ANTIMIKROBA SAPONIN DAUN PEPAYA PADA KEMASAN KELOBOT JAGUNG |
title_short |
PEMANFAATAN AKTIVITAS ANTIMIKROBA SAPONIN DAUN PEPAYA PADA KEMASAN KELOBOT JAGUNG |
title_full |
PEMANFAATAN AKTIVITAS ANTIMIKROBA SAPONIN DAUN PEPAYA PADA KEMASAN KELOBOT JAGUNG |
title_fullStr |
PEMANFAATAN AKTIVITAS ANTIMIKROBA SAPONIN DAUN PEPAYA PADA KEMASAN KELOBOT JAGUNG |
title_full_unstemmed |
PEMANFAATAN AKTIVITAS ANTIMIKROBA SAPONIN DAUN PEPAYA PADA KEMASAN KELOBOT JAGUNG |
title_sort |
pemanfaatan aktivitas antimikroba saponin daun pepaya pada kemasan kelobot jagung |
publisher |
Bogor Agricultural University; Indonesian Food Technologist Association (IAFT) |
series |
Jurnal Teknologi dan Industri Pangan |
issn |
1979-7788 2087-751X |
publishDate |
2016-06-01 |
description |
This study aimed to utilize saponins from papaya leaves as antifungal on maize husk packaging. Crude and semi-pure saponins were extracted from papaya leaves using Soxhlet and Ultrasonic-Assisted Extraction (UAE) methods. The total saponin contents were determined using UV-Vis spectrophotometry. Their ability to inhibit Aspergillus niger was tested by macrodillution method. The extracts were also applied to maize husk by soaking it for 5 minutes at concentration of 10, 20 and 25 mg/mL. The parameters observed were physical and mechanical properties (tensile strength and elongation), water vapor transmission rate (WVTR), total plate count (TPC) and mold and yeast counts (MYC) after 25 days of storage at room temperature (±28ºC). Drying of young papaya leaves using cabinet dryer resulted in the highest yield of crude saponin (12.96 ± 0.26%). Total saponin content in crude saponin extract was 115.43 mg/g, while in semi-pure saponin extract was 480.19 mg/g. Crude saponin and semi-pure saponin extract at concentration of 25 mg/mL could inhibit the growth of A. niger for 1.35 and 0.36 log CFU/mL, respectively after 24 hours. The WVTR test indicated that treatment with a concentration of 25 mg/mL of crude saponin extracts showed the lowest transmission. The addition of crude saponin and semi-pure saponin extract to the maize husk at the concentration of 10, 20 and 25 mg/mL was able to inhibit the microbial growth, represented by constant number in TPC and MYC for 25 days storage. This study showed that crude saponin and semi-pure saponin extract could improve the functional properties of maize husk as packaging materials. |
topic |
crude saponins maize husk papaya leaves semi-pure saponins |
url |
http://journal.ipb.ac.id/index.php/jtip/article/view/14748 |
work_keys_str_mv |
AT sriwahyuningsih pemanfaatanaktivitasantimikrobasaponindaunpepayapadakemasankelobotjagung AT nugrahaesuyatma pemanfaatanaktivitasantimikrobasaponindaunpepayapadakemasankelobotjagung AT harsidkusumaningrum pemanfaatanaktivitasantimikrobasaponindaunpepayapadakemasankelobotjagung |
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