نوع مقاله : پژوهشی
نویسندگان
1 دانشگاه گیلان، دانشکده فنی، گروه نساجی، صندوق پستی 3756
2 تهران، دانشگاه آزاد اسلامی، واحد علوم و تحقیقات، گروه مهندسی نساجی، کد 1477893855
چکیده
کلیدواژهها
موضوعات
عنوان مقاله [English]
نویسندگان [English]
Hypothesis: Natural hydrogels, owing to their biocompatibility and high moisture absorption capacity, are widely recognized as suitable candidates for wound healing applications. Surface activation of hydrogels using cold plasma
technology, through the increasing of polar oxygen containing functional groups significantly improves surface hydrophilicity. These physicochemical modifications promote enhanced interactions between the hydrogel surface and the biological environment, thereby improving their overall performance in biomedical applications.
In this project, the main goal is to fabricate a super-hydrophilic hydrogel layer based on polysaccharides by employing cold plasma surface modification.
Methods: 2% (wt/v) of tragacanth (Tg), alginate (Alg), and chitosan (Cs) solutions were prepared, and two-component and three-component solutions were fabricated in different mass ratios. To provide a proper crosslinking for a three-component hydrogel, two different crosslinkers of calcium chloride and tannic acid were used After molding and drying, the surface of the hydrogels was modified using cold plasma technology. For the physicochemical characterization of the hydrogels, scanning electron microscopy, contact angle, swelling, gel content, mechanical strength, and FTIR-ATR spectroscopy tests were carried out.
Findings: The three-component hydrogel of Tg/Alg/Cs (1/1/1), crosslinked by tannic acid and modified by cold plasma treatment, was selected as optimum hydrogel. Plasma treatment markedly enhanced surface hydrophilicity, reducing the water contact angle from about 76° to 20°. The tensile testing showed a reduction in mechanical strength from about 1.82 MPa for non-treated hydrogel to 0.62 MPa for plasma-treated hydrogel. The result of FTIR ATR confirmed the enhancement of hydrogen-bonding among functional groups and activating of amides in hydrogel surfaces treated by cold plasma. Overall, the plasma activated three-component hydrogel could be introduced as a promising candidate for wound healing applications.
کلیدواژهها [English]