PVP/CA/ROSELLA CALYX EXTRACT COMPOSITE NANOFIBERS: ITS FABRICATION USING ELECTROSPINNING AND ITS APPLICATIONS AS WOUND DRESSING

Colonies of bacteria on a wound surface can cause infection and chronic wound. On the other hand, wound must quickly be healed to prevent disfunctionality of the skin. One way to prevent wound infection by bacteria is by using a wound dressing. Now, many researchers have produced wound dressings fro...

Full description

Saved in:
Bibliographic Details
Main Author: NUR'AINI (NIM : 20214038), HANNY
Format: Theses
Language:Indonesia
Online Access:https://digilib.itb.ac.id/gdl/view/22357
Tags: Add Tag
No Tags, Be the first to tag this record!
Institution: Institut Teknologi Bandung
Language: Indonesia
id id-itb.:22357
spelling id-itb.:223572017-09-27T14:41:05ZPVP/CA/ROSELLA CALYX EXTRACT COMPOSITE NANOFIBERS: ITS FABRICATION USING ELECTROSPINNING AND ITS APPLICATIONS AS WOUND DRESSING NUR'AINI (NIM : 20214038), HANNY Indonesia Theses INSTITUT TEKNOLOGI BANDUNG https://digilib.itb.ac.id/gdl/view/22357 Colonies of bacteria on a wound surface can cause infection and chronic wound. On the other hand, wound must quickly be healed to prevent disfunctionality of the skin. One way to prevent wound infection by bacteria is by using a wound dressing. Now, many researchers have produced wound dressings from fibers with small diameter (micrometers to nanometers), since these fibers mimic the structure of tissue that helps the wound healing process. In addition, bacteria can also be prevented by inserting anti bacterial content into the fiber membranes of wound dressings. This research reports the fibers membranes made from polyvinylpyrrolidone (PVP) and cellulose acetate (CA) polymers using electrospinning method. Roselle calyx extract (RCE) as an active anti-bacterial ingredient was composited into the polymers. PVP/CA/RCE composite fibers were electrospun with varying solution concentration and flowrate. A larger concentration of the RCE could reduce the average diameter of fibers and increase the pH of fibers. The obtained FTIR spectra indicated that the PVP/CA/RCE composite fibers contain functional groups of PVP, CA and RCE. Besides, a larger flowrate produced fibers with beads and larger average diameter. While from the degree of swelling and antibacterial activity tests, it was found that a smaller diameter of fibers results in a larger amount of swelling and a higher antibacterial 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 Colonies of bacteria on a wound surface can cause infection and chronic wound. On the other hand, wound must quickly be healed to prevent disfunctionality of the skin. One way to prevent wound infection by bacteria is by using a wound dressing. Now, many researchers have produced wound dressings from fibers with small diameter (micrometers to nanometers), since these fibers mimic the structure of tissue that helps the wound healing process. In addition, bacteria can also be prevented by inserting anti bacterial content into the fiber membranes of wound dressings. This research reports the fibers membranes made from polyvinylpyrrolidone (PVP) and cellulose acetate (CA) polymers using electrospinning method. Roselle calyx extract (RCE) as an active anti-bacterial ingredient was composited into the polymers. PVP/CA/RCE composite fibers were electrospun with varying solution concentration and flowrate. A larger concentration of the RCE could reduce the average diameter of fibers and increase the pH of fibers. The obtained FTIR spectra indicated that the PVP/CA/RCE composite fibers contain functional groups of PVP, CA and RCE. Besides, a larger flowrate produced fibers with beads and larger average diameter. While from the degree of swelling and antibacterial activity tests, it was found that a smaller diameter of fibers results in a larger amount of swelling and a higher antibacterial activity.
format Theses
author NUR'AINI (NIM : 20214038), HANNY
spellingShingle NUR'AINI (NIM : 20214038), HANNY
PVP/CA/ROSELLA CALYX EXTRACT COMPOSITE NANOFIBERS: ITS FABRICATION USING ELECTROSPINNING AND ITS APPLICATIONS AS WOUND DRESSING
author_facet NUR'AINI (NIM : 20214038), HANNY
author_sort NUR'AINI (NIM : 20214038), HANNY
title PVP/CA/ROSELLA CALYX EXTRACT COMPOSITE NANOFIBERS: ITS FABRICATION USING ELECTROSPINNING AND ITS APPLICATIONS AS WOUND DRESSING
title_short PVP/CA/ROSELLA CALYX EXTRACT COMPOSITE NANOFIBERS: ITS FABRICATION USING ELECTROSPINNING AND ITS APPLICATIONS AS WOUND DRESSING
title_full PVP/CA/ROSELLA CALYX EXTRACT COMPOSITE NANOFIBERS: ITS FABRICATION USING ELECTROSPINNING AND ITS APPLICATIONS AS WOUND DRESSING
title_fullStr PVP/CA/ROSELLA CALYX EXTRACT COMPOSITE NANOFIBERS: ITS FABRICATION USING ELECTROSPINNING AND ITS APPLICATIONS AS WOUND DRESSING
title_full_unstemmed PVP/CA/ROSELLA CALYX EXTRACT COMPOSITE NANOFIBERS: ITS FABRICATION USING ELECTROSPINNING AND ITS APPLICATIONS AS WOUND DRESSING
title_sort pvp/ca/rosella calyx extract composite nanofibers: its fabrication using electrospinning and its applications as wound dressing
url https://digilib.itb.ac.id/gdl/view/22357
_version_ 1821120746338910208