Seidenstuecker Michael, Schmeichel Thomas, Ritschl Lucas, Vinke Johannes, Schilling Pia, Schmal Hagen, Bernstein Anke
G.E.R.N. Tissue Replacement, Regeneration & Neogenesis, Department of Orthopedics and Trauma Surgery, Medical Center-Albert-Ludwigs-University of Freiburg, Faculty of Medicine, Albert-Ludwigs-University of Freiburg, Hugstetter Straße 55, 79106 Freiburg, Germany.
Institute for Applied Biomechanics, Offenburg University, Badstraße 24, 77652 Offenburg, Germany.
Materials (Basel). 2021 Mar 9;14(5):1303. doi: 10.3390/ma14051303.
This work aimed to determine the influence of two hydrogels (alginate, alginate-di-aldehyde (ADA)/gelatin) on the mechanical strength of microporous ceramics, which have been loaded with these hydrogels. For this purpose, the compressive strength was determined using a Zwick Z005 universal testing machine. In addition, the degradation behavior according to ISO EN 10993-14 in TRIS buffer pH 5.0 and pH 7.4 over 60 days was determined, and its effects on the compressive strength were investigated. The loading was carried out by means of a flow-chamber. The weight of the samples (manufacturer: Robert Mathys Foundation (RMS) and Curasan) in TRIS solutions pH 5 and pH 7 increased within 4 h (mean 48 ± 32 mg) and then remained constant over the experimental period of 60 days. The determination surface roughness showed a decrease in the value for the ceramics incubated in TRIS compared to the untreated ceramics. In addition, an increase in protein concentration in solution was determined for ADA gelatin-loaded ceramics. The macroporous Curasan ceramic exhibited a maximum failure load of 29 ± 9.0 N, whereas the value for the microporous RMS ceramic was 931 ± 223 N. Filling the RMS ceramic with ADA gelatin increased the maximum failure load to 1114 ± 300 N. The Curasan ceramics were too fragile for loading. The maximum failure load decreased for the RMS ceramics to 686.55 ± 170 N by incubation in TRIS pH 7.4 and 651 ± 287 N at pH 5.0.
本研究旨在确定两种水凝胶(海藻酸盐、海藻酸二醛(ADA)/明胶)对已负载这些水凝胶的微孔陶瓷机械强度的影响。为此,使用Zwick Z005万能试验机测定抗压强度。此外,还测定了根据ISO EN 10993 - 14标准在pH 5.0和pH 7.4的TRIS缓冲液中60天内的降解行为,并研究了其对抗压强度的影响。负载过程通过流动室进行。pH 5和pH 7的TRIS溶液中样品(制造商:罗伯特·马西斯基金会(RMS)和库拉桑)的重量在4小时内增加(平均48±32毫克),然后在60天的实验期内保持恒定。测定表面粗糙度显示,与未处理的陶瓷相比,在TRIS中孵育的陶瓷的值有所下降。此外,对于负载ADA明胶的陶瓷,溶液中的蛋白质浓度有所增加。大孔库拉桑陶瓷的最大破坏载荷为29±9.0 N,而微孔RMS陶瓷的值为931±223 N。用ADA明胶填充RMS陶瓷可将最大破坏载荷提高到1114±300 N。库拉桑陶瓷太脆弱,无法进行负载。通过在pH 7.4的TRIS中孵育,RMS陶瓷的最大破坏载荷降至686.55±170 N,在pH 5.0时降至651±287 N。