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Evaluation of triacetin on mechanical strength and free surface energy of PHBHHx: The prevention of intra-abdominal adhesion

dc.contributor.authorYildirim, Meryem Akkurt
dc.contributor.authorDemirbilek, Murat
dc.contributor.authorKizilbey, Kadriye
dc.contributor.authorKaplan, Engin
dc.contributor.authorTurkoglu, Nelisa
dc.date.accessioned2026-06-27T14:50:13Z
dc.date.issued2023
dc.description.abstractSeveral polymers are used for the preparation of biomaterials as membranes and films for tissue engineering applications. The most common plasticizer is PEG to obtain polymer-based biomaterials. On the other hand, triacetin is a non-toxic, FDA-approved plasticizer mostly used in the food industry. In this study, we used triacetin as a plasticizer to obtain hydrophobic membranes for the prevention of intra-abdominal adhesion. We selected a well-known polymer named PHBHHx which is a bacterial polyester generally used as supporting material for cell attachments in regenerative tissue applications. We evaluated the triacetin as a plasticizer and its effect on mechanical, thermal, surface area, pore size, and surface energy. The hydrophobic/hydrophilic contrast of a biomaterial surface determines the biological response. Surface hydrophobicity is critical for the cellular response. The contact angle tests of PHBHHx revealed that the hydrophilicity of the membrane was decreased following triacetin blending. Modification of the PHBHHx membrane by blending with triacetin caused a significant decrease in cell adhesion. The cell attachment rates of PHBHHx membranes were as 95 +/- 5% on the first day, 34.5 +/- 0.9% on third day, and 23 +/- 1.5% on the fifth day, respectively. The rates of cell attachments on PHBHHx/ triacetin membranes were determined as 79 +/- 2.5% for the first day, 33 +/- 2.7% for the third day, and 13 +/- 2.1% for the fifth day, respectively. Besides, triacetin blending decreased the surface area from 38.790 to 32.379 m2/g. The elongation at breaks was observed as 128% for PHBHHx and 171% for PHBHHx/triacetin.en
dc.description.sponsorshipYildiz Technical University scientific research project [FOA-2019-3614]
dc.description.urihttps://doi.org/10.1177/08839115221149726
dc.identifier.doi10.1177/08839115221149726
dc.identifier.eissn1530-8030
dc.identifier.endpage283
dc.identifier.issn0883-9115
dc.identifier.issue3
dc.identifier.startpage270
dc.identifier.urihttps://hdl.handle.net/20.500.14981/65386
dc.identifier.volume38
dc.identifier.wos000949034700001
dc.language.isoeng
dc.publisherSAGE PUBLICATIONS LTD
dc.relation.ispartofJOURNAL OF BIOACTIVE AND COMPATIBLE POLYMERS
dc.subjectTriacetin
dc.subjectadhesion
dc.subjectPHBHHx
dc.subjectsurface charge
dc.subjectcell adhesion
dc.subjectPHYSICAL-PROPERTIES
dc.subjectSTEM-CELLS
dc.subjectSCAFFOLDS
dc.subjectBIODEGRADATION
dc.subjectBIOMATERIALS
dc.subjectBEHAVIORS
dc.subjectPOLYHYDROXYALKANOATES
dc.subjectBIOCOMPATIBILITY
dc.subjectPROLIFERATION
dc.subjectMORPHOLOGY
dc.subjectBiotechnology & Applied Microbiology
dc.subjectMaterials Science
dc.subjectPolymer Science
dc.titleEvaluation of triacetin on mechanical strength and free surface energy of PHBHHx: The prevention of intra-abdominal adhesion
dc.typeArticle
dspace.entity.typePublication
local.import.sourceWOS

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