Kilb Michelle Fiona, Moos Yannik, Eckes Stefanie, Braun Joy, Ritz Ulrike, Nickel Daniela, Schmitz Katja
Clemens-Schöpf-Institute of Organic Chemistry and Biochemistry, Technical University of Darmstadt, Alarich-Weiss-Straße 8, 64287 Darmstadt, Germany.
Akademische Motorsportgruppe Darmstadt e.V., c/o Institut für Verbrennungskraftmaschinen und Fahrzeugantriebe, Otto-Berndt-Straße 2, 64287 Darmstadt, Germany.
Biomedicines. 2021 Nov 11;9(11):1668. doi: 10.3390/biomedicines9111668.
The controlled release of antibiotics prevents the spread of pathogens and thereby improves healing processes in regenerative medicine. However, high concentrations may interfere with healing processes. It is therefore advantageous to use biodegradable materials for a controlled release. In particular, multilayer materials enable differential release at different surfaces. For this purpose, collagen sheets of different properties can be bonded by photochemical crosslinking. Here, we present the development and application of an easily accessible, additively manufactured sample holder to study the controlled release of vancomycin from modularly assembled collagen laminates in two directions. As proof-of-concept, we show that laminates of collagen sheets covalently linked by rose bengal and green light crosslinking (RGX) can be tightly inserted into the device without leakage from the upper to lower cavity. We used this sample holder to detect the release of vancomycin from symmetrically and asymmetrically loaded two-layer and three-layer collagen laminates into the upper and lower cavity of the sample holder. We show that these collagen laminates are characterized by a collagen type-dependent vancomycin release, enabling the control of antibiotic release profiles as well as the direction of antibiotic release.
抗生素的控释可防止病原体扩散,从而改善再生医学中的愈合过程。然而,高浓度可能会干扰愈合过程。因此,使用可生物降解材料进行控释是有利的。特别是,多层材料能够在不同表面实现差异释放。为此,可通过光化学交联将不同性质的胶原片材粘结在一起。在此,我们展示了一种易于获取的、通过增材制造的样品架的开发与应用,用于研究万古霉素从模块化组装的胶原层压板在两个方向上的控释情况。作为概念验证,我们表明通过孟加拉玫瑰红和绿光交联(RGX)共价连接的胶原片材层压板可以紧密插入该装置,且不会从上腔向下腔泄漏。我们使用这个样品架来检测万古霉素从对称和不对称加载的两层及三层胶原层压板释放到样品架的上腔和下腔的情况。我们表明,这些胶原层压板的特征在于万古霉素释放依赖于胶原类型,能够控制抗生素释放曲线以及抗生素释放方向。