Tomczak Dorota, Borysiak Sławomir, Kuczko Wiesław, Nowicka Ariadna B, Osmałek Tomasz, Strzemiecka Beata, Wichniarek Radosław
Institute of Chemical Technology and Engineering, Poznan University of Technology, Berdychowo 4, 60-965 Poznan, Poland.
Faculty of Mechanical Engineering, Poznan University of Technology, Piotrowo 3, 61-138 Poznan, Poland.
Materials (Basel). 2024 Jan 9;17(2):322. doi: 10.3390/ma17020322.
In this study, caffeine-loaded photoresin composites with homogeneous structures, suitable for additive manufacturing of transdermal microneedle systems, were obtained. The properties of the composites with varying caffeine concentrations (0.1-0.4% /) were investigated for carbon-carbon double bond conversion using Fourier Transform Infrared Spectroscopy, surface wettability and mechanical properties using a static tensile test and nanoindentation, and caffeine release in ethanol using UV-Vis. The caffeine concentration did not affect the final degree of double bond conversion, which was confirmed in tensile tests, where the strength and Young's modulus of caffeine-loaded samples had comparable values to control ones. Samples with 0.1 and 0.2% caffeine content showed an increase in nanohardness and reduced elastic modulus of 50 MPa and 1.5 MPa, respectively. The good wettability of the samples with water and the increase in surface energy is a favorable aspect for the dedicated application of the obtained composite materials. The amount of caffeine released into the ethanol solution at 1, 3 and 7 days reached a maximum value of 81%, was higher for the lower concentration of caffeine in the sample and increased over time. The conducted research may enhance the potential application of composite materials obtained through the digital light processing method in additive manufacturing.
在本研究中,获得了具有均匀结构、适用于透皮微针系统增材制造的含咖啡因光固化树脂复合材料。使用傅里叶变换红外光谱研究了不同咖啡因浓度(0.1 - 0.4% /)的复合材料的碳 - 碳双键转化率,通过静态拉伸试验和纳米压痕研究了表面润湿性和机械性能,并使用紫外 - 可见光谱研究了咖啡因在乙醇中的释放情况。咖啡因浓度不影响双键转化的最终程度,这在拉伸试验中得到了证实,含咖啡因样品的强度和杨氏模量与对照样品具有相当的值。咖啡因含量为0.1%和0.2%的样品分别显示纳米硬度增加,弹性模量降低了50 MPa和1.5 MPa。样品对水具有良好的润湿性且表面能增加,这对于所获得的复合材料的特定应用是一个有利方面。在1天、3天和7天时释放到乙醇溶液中的咖啡因量达到最大值81%,样品中咖啡因浓度较低时释放量更高且随时间增加。所进行的研究可能会增强通过数字光处理方法获得的复合材料在增材制造中的潜在应用。