Electrospinning is a rapidly developing technique for producing micro or polymer-based nanofiber with high-quality characteristics in the textile industry, especially wound dressing, tissue engineering materials, drug delivery systems or coating techniques in the medical world.聽This technique uses electrostatic forces to form fibers at nano or micro scale.聽This technique could obtain a 10 nm diameter.聽One of the most influential parameters is the viscosity of the solution.聽The viscosity of the solution will determine the morphology of the nanofiber membrane.聽Research from Sukigara et al.聽(2003) stated that long and fine fibers could not be obtained with solutions that have low viscosity.聽On the other hand,聽high viscosity will bring irregularities in the fibers produced by this process.聽So, the determination of solution viscosity has an important role in producing high-quality nanofiber.
Several studies have been conducted to produce nanofibers with the best quality using polymers such as Polyvinyl Alcohol (PVA), Polycaprolactone (PCL), Polyethylene Oxide (PEO) and other polymers.聽PVA is a polymer that is famous for its hydrophilic properties which easily form hydrogen bonds from its chains.聽PVA with a concentration of 10 wt% in water can be used as聽electrospinning聽material聽with a high voltage of 5-20 kV with the results of nano-sized fibers.聽The weakness of this result is the appearance of clots or聽beads along the fiber, and it is not expected because it will affect the mechanical properties of the fiber because PVA molecules tend to that have strong bonds and are difficult to pull in by voltage differences and eventually form clots.聽For this reason, additional material is needed to reduce the appearance of these clots.聽These additives can be active components, such as聽Aloe vera聽extract聽which also has other effects on the fibers.
The study conducted by Abdullah (2014) showed that聽Aloe vera could attach to the PVA chain and possess a suitable structure to be applied as a biomaterial because of its biodegradability, biocompatibility, and non-toxic properties.聽Aloe vera聽has already used in biomaterials as an additive that can support the healing process of wounds in wound dressing.聽Aloe vera聽has also been widely used to treat burns over the years.聽Furthermore, a study from Isfandiary et al. (2017) on the use of聽Aloe vera聽in chitosan and collagen-based wound pads showed that the presence of聽Aloe vera in these biomaterials gives benefits to be applied as a wound dressing.聽The results of a聽review article聽from Venugopal et al. (2014) and Khan et al. (2018) reported that the presence of聽Aloe vera聽in a mixture of nanoparticles had been proven to accelerate wound healing and provide better treatment for wounds.聽Aloe vera聽also has good antibacterial properties.
The conducted research aims to see the effect of viscosity of PVA and聽Aloe vera聽mixture resulted from differences in the used concentration for the characteristics of produced nanofibers.聽The concentration of Aloe vera were 0, 2.5, 5, 7.5, and ten wt% with PVA concentrations of 10 wt%.聽Both are then mixed with a ratio of PVA and聽Aloe vera聽of 70:30.聽The solution produced from this mixing process is then processed through electrospinning with a high voltage of 19 kV and the distance between the needle and collector is 20 cm.聽The produced nanofiber sheets were then characterized using Fourier Transform Infrared聽(FTIR),聽Scanning Electron Microscope聽(SEM),聽Differential Scanning Calorimetry聽(DSC), and degradation test using聽Phosphate Buffer Saline聽(SBF).
The result of functional group characterization using FTIR showed that there was an absorption shift in the sample due to the hydrogen bond between PVA and聽Aloe vera.聽The use of聽Aloe vera聽in this mixture also increases the size of the fiber as the concentration of聽Aloe vera聽is聽increased.聽The results of the thermal analysis using DSC showed that there was a shift in glass transition temperature and melting point temperature.聽It provides information about the durability of the sample. However, the shift is not too drastic.聽The results of the degradation test imply that the PVA chain is complicated and the existence of聽Aloe vera聽in the mixture can extend the time required by the sample to be degraded so that it shortens the rate of degradation of the membrane.
From the results of this research, it can be concluded that the addition of聽Aloe vera聽to the PVA solution to make nanofiber membranes through聽electrospinning聽can improve the characteristics, in terms of morphology, thermal analysis and degradation.聽For future research, it is necessary to study the effects of various parameters that affect the聽electrospinning聽process聽and optimize the results of the obtained nanofiber membrane.
Author: Alfian Pramudita Putra, S.T., M.Sc.
Our research has been presented at the聽8听th聽International Conference on Theoretical, and Applied Physics (ICTAP) in 2018聽and the results were published on the following link:
D. Hikmawati, A. R., Rohmadanik, A. P. Putra, Siswanto, and Aminatun, 鈥淭he Effect of Aloe vera Extract Variation in Electrospun Polyvinyl Alcohol (PVA)-Aloe vera-based Nanofiber Membrane鈥, J. Physics: Conf. Series 1120 (2018) 012096.聽





