Buchwalder Sébastien, Nicolier Cléo, Hersberger Mario, Bourgeois Florian, Hogg Andreas, Burger Jürgen
School of Biomedical and Precision Engineering, University of Bern, Güterstrasse 24/26, 3010 Bern, Switzerland.
Graduate School for Cellular and Biomedical Sciences, University of Bern, Mittelstrasse 43, 3012 Bern, Switzerland.
Polymers (Basel). 2023 Jun 1;15(11):2557. doi: 10.3390/polym15112557.
While water vapor transmission rate (WVTR) measurement is standardly used to assess material permeability, a system able to quantify liquid water transmission rate (WTR) measurement is highly desirable for implantable thin film barrier coatings. Indeed, since implantable devices are in contact or immersed in body fluids, liquid WTR was carried out to obtain a more realistic measurement of the barrier performance. Parylene is a well-established polymer which is often the material of choice for biomedical encapsulation applications due to its flexibility, biocompatibility, and attractive barrier properties. Four grades of parylene coatings were tested with a newly developed permeation measurement system based on a quadrupole mass spectrometer (QMS) detection method. Successful measurements of gas and water vapor and the water transmission rates of thin parylene films were performed and validated, comparing the results with a standardized method. In addition, the WTR results allowed for the extraction of an acceleration transmission rate factor from the vapor-to-liquid water measurement mode, which varies from 4 to 4.8 between WVTR and WTR. With a WTR of 72.5 µm g m day, parylene C displayed the most effective barrier performance.
虽然水蒸气透过率(WVTR)测量通常用于评估材料的渗透性,但对于可植入薄膜阻隔涂层而言,能够量化液态水透过率(WTR)测量的系统是非常需要的。实际上,由于可植入设备会接触或浸入体液中,因此进行液态WTR测量以获得对阻隔性能更实际的测量。聚对二甲苯是一种成熟的聚合物,由于其柔韧性、生物相容性和出色的阻隔性能,它通常是生物医学封装应用的首选材料。使用基于四极杆质谱仪(QMS)检测方法的新开发的渗透测量系统对四种等级的聚对二甲苯涂层进行了测试。成功进行了气体、水蒸气以及聚对二甲苯薄膜的水透过率测量并进行了验证,并将结果与标准化方法进行了比较。此外,WTR结果使得能够从气-液水测量模式中提取加速透过率因子,该因子在WVTR和WTR之间为4至4.8。聚对二甲苯C的WTR为72.5 µm g m day,显示出最有效的阻隔性能。