Department of Medical Engineering and Technology, Kitasato University School of Allied of Health Sciences, 1-15-1 Kitasato, Sagamihara, Kanagawa, 252-0373, Japan.
Research Facility of Regenerative Medicine and Cell Design, Kitasato University School of Allied of Health Sciences, 1-15-1 Kitasato, Sagamihara, Kanagawa, 252-0373, Japan.
Sci Rep. 2019 Jul 23;9(1):10685. doi: 10.1038/s41598-019-47153-0.
Quality control of tissues and organs for transplant is important to confirm their safety and effectiveness for regenerative medicine. However, quality evaluation is only carried out using a limited range of inspection criteria, because many of the available evaluation tests are invasive. In order to explore the potential of 2-[F]fluoro-2-deoxy-D-glucose ([F]FDG)-bioradiography as a non-invasive test for estimation of the safety, soundness, and effectiveness of tissues for transplantation, [F]FDG uptake and cell viability or metabolism were investigated using a reconstructed human epidermal model (RHEM). We developed an imaging system, and suitable bioradiographic image acquisition conditions and its effectiveness were investigated. [F]FDG uptake increased in agreement with DNA content as a marker of cell numbers and for histological assessment during cell proliferation and keratinization. [F]FDG uptake was significantly decreased in good agreement with the viability of tissues used with various hazardous chemical treatments. [F]FDG uptake by the tissues was decreased by hypothermia treatment and increased by hypoxia treatment while maintaining cell viability in the tissue. Therefore, [F]FDG-bioradiography can be useful to estimate cell viability or metabolism in this RHEM. This method might be utilized as a non-invasive test for quality evaluation of tissues for transplantation.
组织和器官用于移植的质量控制对于确认其在再生医学中的安全性和有效性非常重要。然而,质量评估仅使用有限的检查标准进行,因为许多可用的评估测试都是侵入性的。为了探索 2-[F]氟-2-脱氧-D-葡萄糖([F]FDG)-生物放射摄影术作为评估移植组织安全性、健全性和有效性的非侵入性测试的潜力,我们使用重建的人类表皮模型 (RHEM) 研究了[F]FDG 摄取和细胞活力或代谢。我们开发了一种成像系统,并研究了合适的生物放射摄影图像采集条件及其有效性。[F]FDG 摄取与作为细胞数量标记的 DNA 含量一致增加,并在细胞增殖和角化过程中进行组织学评估。[F]FDG 摄取与用各种危险化学品处理的组织的活力显著降低,与组织的活力降低非常一致。低温处理可降低组织对[F]FDG 的摄取,缺氧处理可增加组织对[F]FDG 的摄取,同时保持组织中的细胞活力。因此,[F]FDG 生物放射摄影术可用于估计该 RHEM 中的细胞活力或代谢。该方法可用于评估移植组织的质量评估的非侵入性测试。