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Effect of Photon Radiations in Semi-Rigid Artificial Tissue Sensitized by Protoporphyrin IX Encapsulated with Silica Nanoparticles

机译:用二氧化硅纳米粒子封装的原卟啉Ix致敏的半刚性人工组织光子辐射的影响

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This study involves the synthesis of Protoporphyrin IX (PpIX) encapsulated with Silica Nanoparticles (SiNPs) as an application for Photodynamic therapy. Semi-rigid artificial tissues with optical features similar to human tissue were used as sample materials to ascertain the efficacy of PpIX encapsulated with SiNPs. The disparity in optical characteristics (transmittance, reflectance, scattering, and absorption) of tissues treated with encapsulated PpIX and naked PpIX under light exposure (Intensity at 408 nm ~1.19 mW/cm~2) was explored. The optimal exposure times required for naked PpIX and SiNPs encapsulated PpIX to engulf Red Blood Cells (RBCs) in the artificial tissue were subsequently measured. Comparative analysis showed that the encapsulated PpIX has a 91.5 % higher efficacy than naked PpIX. The results prove the applicability of PpIX encapsulated with SiNP on artificial tissue and possible use on human tissue.
机译:该研究涉及用二氧化硅纳米粒子(SINP)包封的原始卟啉IX(PPIX)的合成作为光动力治疗的应用。使用与人体组织类似的光学特征的半刚性人工组织用作样品材料,以确定ppix包封用SINPS的疗效。探讨了用封装的PPIX和裸PPIX处理的光学特性(透射率,反射,散射和吸收)在轻暴露下(408nm〜1.19mW / cm〜2)处理的组织的差异。随后测量裸PPIX和SINPS封装PPIX的最佳暴露时间随后测量人工组织中的吞噬红细胞(RBCS)。比较分析表明,包封的PPIX具有比裸PPIX更高的效率为91.5%。结果证明了PPIX在人工组织上用SINP包封的适用性,对人类组织进行了可能使用。

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