FORMULATION OF CELLULOSE ACETATE NANOFIBER CONTAINS BITTER MELON FRUIT EXTRACT (MOMORDICA CHARANTIA L.) WITH EVALUATION OF ANTIOXIDANT AND ANTIBACTERIAL ACTIVITY IN VITRO

Diabetes mellitus (DM) is a disease that has the potential to cause hyperglycemia, resulting in neuropathy and allowing unnoticed wounds to appear. In the wound healing process for DM sufferers, the inflammatory phase is prolonged and uncontrolled. Based on previous research, preparations that can...

Full description

Saved in:
Bibliographic Details
Main Author: Nurrani, Bintang
Format: Final Project
Language:Indonesia
Online Access:https://digilib.itb.ac.id/gdl/view/82500
Tags: Add Tag
No Tags, Be the first to tag this record!
Institution: Institut Teknologi Bandung
Language: Indonesia
id id-itb.:82500
spelling id-itb.:825002024-07-08T14:43:43ZFORMULATION OF CELLULOSE ACETATE NANOFIBER CONTAINS BITTER MELON FRUIT EXTRACT (MOMORDICA CHARANTIA L.) WITH EVALUATION OF ANTIOXIDANT AND ANTIBACTERIAL ACTIVITY IN VITRO Nurrani, Bintang Indonesia Final Project antibacterial, antioxidant, electrospin, Momordica charantia L., nanofiber. INSTITUT TEKNOLOGI BANDUNG https://digilib.itb.ac.id/gdl/view/82500 Diabetes mellitus (DM) is a disease that has the potential to cause hyperglycemia, resulting in neuropathy and allowing unnoticed wounds to appear. In the wound healing process for DM sufferers, the inflammatory phase is prolonged and uncontrolled. Based on previous research, preparations that can control wounds in diabetes also need to be improved to maintain wound contraction by creating an adhesive layer. To overcome these problems, one alternative is to formulate nanofiber (NF) preparations containing plant extracts, such as paria fruit extract (Momordica charantia L.) (EP), which is expected to increase wound healing activity. The NF-EP formula was developed by optimizing the process with an electrospin tool which was carried out simultaneously with optimizing the concentration of cellulose acetate and EP. Then, nanofiber characterization was carried out, namely organoleptic, particle size, thickness, wetting ability, swelling ability, encapsulation efficiency, and in vitro release; and testing for antioxidant and antibacterial activity was carried out. The optimal process for the electrospin device is with a humidity level of 75%, a distance between the collector and the spinneret of 13 cm, a flow rate of 1 mL/hour, a needle diameter of 0.83 mm, and a voltage of ~14 kV. The optimal formula was 8% cellulose acetate (w/v to solvent), 1% EP (w/w to cellulose acetate), and Ac-DMAc solvent (2:1 v/v). NF-EP is white, has a rougher surface than NF, and feels thinner than NF. Then, the NF-EP characterization is particle size 127.4 ± 29.20 nm, thickness 40.33 ± 2.52 µm, wetting ability 68.13 ± 3.31°, mechanical ability 71.61 ± 2.2416 KPa, swelling ability 4433.86 ± 460.32%, encapsulation efficiency (EE) 70.22 ± 3.47%, and in vitro release close to the Korsmayer-Peppas mathematical model. The antioxidant and antibacterial activity of NF-EP is not better than EP, but NF-EP has an absorption capacity 45 times higher than its initial weight which supports wound healing activity. text
institution Institut Teknologi Bandung
building Institut Teknologi Bandung Library
continent Asia
country Indonesia
Indonesia
content_provider Institut Teknologi Bandung
collection Digital ITB
language Indonesia
description Diabetes mellitus (DM) is a disease that has the potential to cause hyperglycemia, resulting in neuropathy and allowing unnoticed wounds to appear. In the wound healing process for DM sufferers, the inflammatory phase is prolonged and uncontrolled. Based on previous research, preparations that can control wounds in diabetes also need to be improved to maintain wound contraction by creating an adhesive layer. To overcome these problems, one alternative is to formulate nanofiber (NF) preparations containing plant extracts, such as paria fruit extract (Momordica charantia L.) (EP), which is expected to increase wound healing activity. The NF-EP formula was developed by optimizing the process with an electrospin tool which was carried out simultaneously with optimizing the concentration of cellulose acetate and EP. Then, nanofiber characterization was carried out, namely organoleptic, particle size, thickness, wetting ability, swelling ability, encapsulation efficiency, and in vitro release; and testing for antioxidant and antibacterial activity was carried out. The optimal process for the electrospin device is with a humidity level of 75%, a distance between the collector and the spinneret of 13 cm, a flow rate of 1 mL/hour, a needle diameter of 0.83 mm, and a voltage of ~14 kV. The optimal formula was 8% cellulose acetate (w/v to solvent), 1% EP (w/w to cellulose acetate), and Ac-DMAc solvent (2:1 v/v). NF-EP is white, has a rougher surface than NF, and feels thinner than NF. Then, the NF-EP characterization is particle size 127.4 ± 29.20 nm, thickness 40.33 ± 2.52 µm, wetting ability 68.13 ± 3.31°, mechanical ability 71.61 ± 2.2416 KPa, swelling ability 4433.86 ± 460.32%, encapsulation efficiency (EE) 70.22 ± 3.47%, and in vitro release close to the Korsmayer-Peppas mathematical model. The antioxidant and antibacterial activity of NF-EP is not better than EP, but NF-EP has an absorption capacity 45 times higher than its initial weight which supports wound healing activity.
format Final Project
author Nurrani, Bintang
spellingShingle Nurrani, Bintang
FORMULATION OF CELLULOSE ACETATE NANOFIBER CONTAINS BITTER MELON FRUIT EXTRACT (MOMORDICA CHARANTIA L.) WITH EVALUATION OF ANTIOXIDANT AND ANTIBACTERIAL ACTIVITY IN VITRO
author_facet Nurrani, Bintang
author_sort Nurrani, Bintang
title FORMULATION OF CELLULOSE ACETATE NANOFIBER CONTAINS BITTER MELON FRUIT EXTRACT (MOMORDICA CHARANTIA L.) WITH EVALUATION OF ANTIOXIDANT AND ANTIBACTERIAL ACTIVITY IN VITRO
title_short FORMULATION OF CELLULOSE ACETATE NANOFIBER CONTAINS BITTER MELON FRUIT EXTRACT (MOMORDICA CHARANTIA L.) WITH EVALUATION OF ANTIOXIDANT AND ANTIBACTERIAL ACTIVITY IN VITRO
title_full FORMULATION OF CELLULOSE ACETATE NANOFIBER CONTAINS BITTER MELON FRUIT EXTRACT (MOMORDICA CHARANTIA L.) WITH EVALUATION OF ANTIOXIDANT AND ANTIBACTERIAL ACTIVITY IN VITRO
title_fullStr FORMULATION OF CELLULOSE ACETATE NANOFIBER CONTAINS BITTER MELON FRUIT EXTRACT (MOMORDICA CHARANTIA L.) WITH EVALUATION OF ANTIOXIDANT AND ANTIBACTERIAL ACTIVITY IN VITRO
title_full_unstemmed FORMULATION OF CELLULOSE ACETATE NANOFIBER CONTAINS BITTER MELON FRUIT EXTRACT (MOMORDICA CHARANTIA L.) WITH EVALUATION OF ANTIOXIDANT AND ANTIBACTERIAL ACTIVITY IN VITRO
title_sort formulation of cellulose acetate nanofiber contains bitter melon fruit extract (momordica charantia l.) with evaluation of antioxidant and antibacterial activity in vitro
url https://digilib.itb.ac.id/gdl/view/82500
_version_ 1822009795966664704