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Sökning: WFRF:(Khan Samiullah) > (2020-2023)

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1.
  • Khan, Bangul, et al. (författare)
  • Recent progress in thermosensitive hydrogels and their applications in drug delivery area
  • 2023
  • Ingår i: MedComm – Biomaterials and Applications. - 2769-643X .- 2769-643X. ; 2:3
  • Tidskriftsartikel (refereegranskat)abstract
    • The scientific community has widely recognized thermosensitive hydrogelsas highly biocompatible material withimmense potential in drug deliverysystems. When the temperature of these hydrogels approaches that ofhuman body, a phase change occurs, enhancing their usefulness in a rangeof medical scenarios. This review article highlighted the background ofthermosensitive hydrogels, their properties, and their applications intransdermal, oral, ophthalmic, intravaginal, nasal, rectal, cancer therapy,and cell‐loaded drug delivery systems. The literature suggests numerousadvantages of these hydrogels over conventional drug delivery systems andfind applications in various fields, such as therapeutic systems, fillingprocesses, and sustained drug delivery systems. One of their key benefits isthe ability to eliminate invasive procedures like surgery, providing anoninvasive alternative for drug administration. Moreover,theystreamlinethe formulation process for both hydrophilic and hydrophobic drugdelivery systems, simplifying the development of effective treatments.The thermosensitive hydrogels have been found to be green materials withnegligible side effects and desirable drug delivery properties. Thethermosensitive hydrogel's sustained‐release characteristics, immunogenic-ity, and biodegradability have also gained increased interest. Some of thedisadvantages of thermosensitive hydrogels include delayed temperatureresponse, weak mechanical characteristics, and poor biocompatibility,which limits their potential use in drug delivery applications.
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2.
  • Din, Salah Ud, et al. (författare)
  • The Purification and Characterization of a Cutinase-like Enzyme with Activity on Polyethylene Terephthalate (PET) from a Newly Isolated Bacterium Stenotrophomonas maltophilia PRS8 at a Mesophilic Temperature
  • 2023
  • Ingår i: Applied Sciences (Switzerland). - : MDPI AG. - 2076-3417. ; 13:6
  • Tidskriftsartikel (refereegranskat)abstract
    • A polyethylene terephthalate (PET)-degrading bacterium identified as Stenotrophomonas maltophilia PRS8 was isolated from the soil of a landfill. The degradation of the PET bottle flakes and the PET prepared as a powder were assessed using live cells, an extracellular medium, or a purified cutinase-like enzyme. These treated polymers were analyzed using Fourier transform infrared spectroscopy (FTIR) and scanning electron microscopy (SEM). The depolymerization products, identified using HPLC and LC-MS, were terephthalic acid (TPA), mono(2-hydroxyethyl)-TPA (MHET), and bis(2-hydroxyethyl)-TPA (BHET). Several physicochemical factors were optimized for a better cutinase-like enzyme production by using unique single-factor and multi-factor statistical models (the Plackett–Burman design and the central composite design software). The enzyme was purified for homogeneity through column chromatography using Sephadex G-100 resin. The molecular weight of the enzyme was approximately 58 kDa. The specific activity on para nitrophenyl butyrate was estimated at 450.58 U/mg, with a purification of 6.39 times and a yield of 48.64%. The enzyme was stable at various temperatures (30–40 °C) and pH levels (8.0–10.0). The enzyme activity was significantly improved by the surfactants (Triton X-100 and Tween-40), organic solvent (formaldehyde), and metals (NiCl2 and Na2SO4). The extracellular medium containing the cutinase-type enzyme showed a depolymerization yield of the PET powder comparable to that of Idonella skaiensis IsPETase and significantly higher than that of Humicola insolens thermostable HiCut (HiC) cutinase. This study suggests that S. maltophilia PRS8 is able to degrade PET at a mesophilic temperature and could be further explored for the sustainable management of plastic waste.
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