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10.1016/j.msec.2020.111534

http://scihub22266oqcxt.onion/10.1016/j.msec.2020.111534
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33255087!7500399!33255087
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suck abstract from ncbi

pmid33255087      Mater+Sci+Eng+C+Mater+Biol+Appl 2021 ; 118 (?): 111534
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  • Synthesis and characterization of novel organo-hydrogel based agar, glycerol and peppermint oil as a natural drug carrier/release material #MMPMID33255087
  • Alpaslan D; Dudu TE; Aktas N
  • Mater Sci Eng C Mater Biol Appl 2021[Jan]; 118 (?): 111534 PMID33255087show ga
  • The very recent Covid-19 pandemic has made the need to understand biocompatible polymers as support material in drug delivery systems and controlled release clearer, especially for organo-hydrogels. This study aims to synthesize various new polymeric materials called gels, hydrogels, and organo-hydrogels according to the monomer used and to investigate their use as drug release systems. The agar-glycerol (AG) pair was used to synthesize the polymers, N, N, methylene bisacrylamide (MBA, m) and glutaraldehyde (GA, g) were used as cross-linkers and peppermint oil (PmO) was included to obtain the organo-hydrogels. Therefore, one AG gel and two p (AG-m) and p (GA-g) hydrogels were synthesized within the scope of the study. Six different organo-hydrogels based on p(AG-m-PmO) or p (AG-g-PmO) were also synthesized by varying the amount of peppermint oil. Paracetamol and carboplatin were selected as the sample drugs. Synthesized gels, hydrogels and organo-hydrogels were characterized by FTIR and SEM analysis. Additionally, swelling behaviors of the synthesized gels were investigated in different media (ID water, tap water, ethanol, acetone, ethanol/ID water (1:1), acetone/ID water (1:1) and gasoline) and at different pHs. Moreover, it was determined that organo-hydrogels were blood compatible and had antioxidant properties based on hemolysis, blood clotting and antioxidant analysis. Therefore, the release of paracetamol (a known antipyretic-painkiller, recommended and used in the treatment of Covid-19) and carboplatin (widely used in cancer treatment) were studied. Evidently, as the amount of PMO oil increases, the -OH groups in organo-hydrogels will increase and the chemical and physical bonding rates will increase; therefore it was observed that increasing peppermint oil in the organo-hydrogels structure to 0.3 mL stimulated the release of the drugs. For instance, maximum paracetamol release amount from p(AG-g-PmO) and p(AG-m-PmO) organo-hydrogels was calculated to be 72.3% at pH 7.4 and 69.8% at pH 2.0, respectively. The maximum carboplatin release amount from p(AG-g-PmO) and p(AG-m-PmO) organo-hydrogels was calculated to be 99.7% at pH 7.4 and 100% at pH 7.4, respectively. It was concluded that the synthesized organo-hydrogels might easily be used as drug carrier and controlled drug release materials.
  • |*Drug Liberation[MESH]
  • |Acetaminophen/pharmacology[MESH]
  • |Agar/*chemical synthesis[MESH]
  • |Antioxidants/analysis[MESH]
  • |Blood Coagulation[MESH]
  • |Carboplatin/pharmacology[MESH]
  • |Drug Carriers/*chemistry[MESH]
  • |Glycerol/*chemical synthesis[MESH]
  • |Hemolysis[MESH]
  • |Humans[MESH]
  • |Hydrogels/*chemical synthesis[MESH]
  • |Hydrogen-Ion Concentration[MESH]
  • |Kinetics[MESH]
  • |Mentha piperita[MESH]
  • |Phenols/analysis[MESH]
  • |Plant Oils/*chemical synthesis[MESH]


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