首页|具有近红外激光响应的复合水凝胶的构建及其抗菌性研究

具有近红外激光响应的复合水凝胶的构建及其抗菌性研究

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本研究探索了一种用于口腔光热治疗(PTT)、响应近红外激光(NIR)的光热型墨鱼骨源β-磷酸三钙基复合水凝胶——PGS-Cu/PTCP水凝胶。该材料的孔隙率、力学性能、光热抗菌性能及生物相容性均有利于促进骨缺损的重建。在光热性能测试中,该新型水凝胶样品经1。05 W/cm2功率密度的808 nm近红外激光照射420 s后温度达到了 49。4 ℃,展示出了优良的光热转换能力,光热转换效率达到了 29。6%,在非金属非碳基水凝胶材料中处于较高水平。细胞毒性测试显示所有样品对L929细胞都具有低细胞毒性,证实了其对人体的安全性。抗菌性能测试显示,经近红外激光照射的PGS-Cu/PTCP水凝胶显著降低了大肠杆菌和金黄色葡萄球菌的存活率,抗菌效果显著。该新型材料能高效地将近红外激光的光能转化为热能,实现体内精准光热抗菌,显著提高了口腔骨修复材料的应用安全性,具有重要的临床意义。
Construction of Near-Infrared Laser-Responsive Composite Hydrogel and Its Antibacterial Study
Objective This study investigates a novel photothermal composite hydrogel(PGS-Cu/PTCP)derived from cuttlebone β-tricalcium phosphate,which is responsive to near-infrared(NIR)laser for oral photothermal therapy(PTT).This study can potentially contribute to enhancements in the safety and efficacy of bone-defect reconstruction materials via the incorporation of photothermal and antibacterial properties.Methods A PGS-Cu/PTCP hydrogel was synthesized using cuttlebone β-tricalcium phosphate,polyvinyl alcohol,gelatin,sodium alginate,copper ions,and polydopamine.The porosity,mechanical properties,photothermal antibacterial activity,and biocompatibility of the hydrogel were evaluated.Photothermal performance was assessed by irradiating the hydrogel samples with an 808 nm NIR laser at different power settings,and the temperature changes were recorded using an infrared thermal imaging camera.Cytotoxicity tests were conducted using L929 fibroblast cells,and antibacterial performance was tested against Escherichia coli and Staphylococcus aureus.Results and Discussions The PGS-Cu/PTCP hydrogel exhibits excellent porosity,which is beneficial for nutrient supply and waste removal in bone-tissue engineering.Under 808 nm NIR laser irradiation at 1.05 W,the hydrogel's temperature reached 49.4 ℃ within 420 s,thus indicating high photothermal conversion efficiency(Fig.3).The hydrogel shows low cytotoxicity and>90%cell viability for L929 cells(Fig.2).Antibacterial tests showed significantly reduced survival rates of Escherichia coli and Staphylococcus aureus upon NIR irradiation,which differ considerably from those of non-irradiated samples(Fig.5).The combination of copper ions and polydopamine in the hydrogel contributed to its superior antibacterial properties,which is likely owing to the disruption of bacterial membranes and enhanced photothermal effects.Conclusions The novel PGS-Cu/PTCP hydrogel efficiently converts NIR light into thermal energy,thus providing precise in-vivo photothermal antibacterial activity.This material significantly enhances the safety of oral bone-repair applications,thereby rendering it a promising candidate for future clinical use in maxillofacial-bone reconstruction.

near-infrared laseroral maxillofacial repair materialshydrogelantibacterial properties

苟诗然、冼家如、庞浡奇、李萌婷、杨平

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海南大学化学化工学院,海南 海口 570228

四川口腔医院,四川成都 610015

中国科学院光电技术研究所自适应光学重点实验室,四川 成都 610299

近红外激光 口腔颌骨修复材料 水凝胶 抗菌性

2024

中国激光
中国光学学会 中科院上海光机所

中国激光

CSTPCD北大核心
影响因子:2.204
ISSN:0258-7025
年,卷(期):2024.51(21)