Augenklinik, Luzerner Kantonsspital, Luzern, Switzerland.
Medizinische Fakultät, Universität Zürich, Zürich, Switzerland.
Klin Monbl Augenheilkd. 2021 Apr;238(4):346-348. doi: 10.1055/a-1354-6565. Epub 2021 Apr 30.
There are a variety of protocols for manufacturing autologous serum (AS) eye drops. The Lucerne protocol for the production of AS eye drops uses a slightly reduced gravitational (g)-force and time for the centrifugation process (2500 × g for 10 minutes), compared to previously published optimised protocols, to obtain high levels of epitheliotropic growth factors (3000 × g for 15 minutes). The goal of this study was to compare the concentrations of growth factors, albumin and lysozyme in autologous serum eye drops manufactured with these protocols.
Blood from 5 healthy volunteers was placed in plastic tubes without an anticoagulant. Tubes from each donor were left in a vertical position for 2 hours at room temperature to facilitate coagulation, followed by centrifugation at either 2500 × g for 10 minutes or at 3000 × g for 15 minutes at room temperature. The serum levels of beta nerve growth factor (β-NGF), transforming growth factor β1 (TGF-β1), epidermal growth factor (EGF), hepatocyte growth factor (HGF), platelet-derived growth factor BB (PDGF-BB) and vascular endothelial growth factor A (VEGF-A) were measured in triplicate with a multi-analyte Simple Plex platform. The Simple Plex cartridge allows each sample to be run in triplicate for each analyte and prevents any interaction between the antibody components for each biomarker. The serum level of albumin was measured by turbidimetric immunoassay Tina-quant and of lysozyme by single radial immunodiffusion assay.
For all analytes, the reduced g-force and centrifugation time did not result in a significant difference in serum levels.
The Lucerne protocol for the production of autologous serum eye drops with reduced g-force and a shorter centrifugation time does not affect the concentrations of the main epitheliotropic growth factors, albumin and lysozyme, in AS eye drops.
有多种制造自体血清(AS)滴眼液的方案。与之前发表的优化方案相比,卢塞恩生产 AS 滴眼液的方案使用稍低的重力(g)力和离心时间(2500×g 离心 10 分钟)来获得高浓度的上皮细胞营养生长因子(3000×g 离心 15 分钟)。本研究的目的是比较使用这两种方案生产的自体血清滴眼液中生长因子、白蛋白和溶菌酶的浓度。
将 5 名健康志愿者的血液放入无抗凝剂的塑料管中。每位供体的管在室温下垂直放置 2 小时以促进凝血,然后在室温下以 2500×g 离心 10 分钟或 3000×g 离心 15 分钟。使用多分析物 Simple Plex 平台以三倍重复测量 β 神经生长因子(β-NGF)、转化生长因子 β1(TGF-β1)、表皮生长因子(EGF)、肝细胞生长因子(HGF)、血小板衍生生长因子 BB(PDGF-BB)和血管内皮生长因子 A(VEGF-A)的血清水平。Simple Plex 试剂盒允许每个样本在每个分析物上进行三倍重复运行,并防止每个生物标志物的抗体成分之间发生任何相互作用。白蛋白的血清水平通过比浊免疫测定 Tina-quant 测定,溶菌酶的血清水平通过单扩散免疫测定测定。
对于所有分析物,降低的 g 力和离心时间不会导致血清水平显著差异。
卢塞恩方案使用降低的 g 力和较短的离心时间生产自体血清滴眼液不会影响 AS 滴眼液中主要上皮营养生长因子、白蛋白和溶菌酶的浓度。