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Development of Gold-Based Phototheranostic Nanoagents through a Bioinspired Route and Their Applications in Photodynamic Therapy

机译:通过生物悬浮路线及其在光动力学疗法中的应用的基于金光热氧化物纳米

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Green synthesis of nanoparticles using phytoconstituents has been widely accepted. However, further applications for delivery, diagnosis, and therapy are not yet fully established. Thus, bioinspired nanomedicinal diagnostic agents have been developed with antioxidant, diagnostic, as well as therapeutic properties. The sustainable biological synthesis of fluorescent gold nanoparticles 14 using Syzygium cumini fruit extract presents a simplified process for the production of surface-functionalized nanoparticles with good antioxidant potential. The gold-based phototheranostic nanoagents (PTNAs) were engineered by conjugating nanoparticles either with a photosensitizer (rose bengal or pyridyl porphyrin) or with an imaging agent (rhodamine B). The assembled PTNAs were revealed to possess good fluorescent properties and to generate singlet oxygen, and showed antimicrobial properties when irradiated with low-cost green LED light. All of the processes and properties (synthesis, antioxidant potential, percent conjugation, fluorescence, singlet oxygen generation, and antimicrobial photodynamic therapy) of PTNAs synthesized using S. cumini were characterized and compared with those synthesized using chitosan. The antimicrobial effect of photodynamic therapy using developed PTNAs was characterized by confocal laser scanning microscopy (CLSM). The development of bioinspired PTNAs described herein will find applications of photodynamic therapy for the treatment of cancer and microbial infection.
机译:广泛接受使用植物植物植物纳米粒子的绿色合成。但是,尚未完全建立交付,诊断和治疗的进一步应用。因此,已经用抗氧化剂,诊断和治疗性开发了生物透明的纳米身体诊断剂。使用Syzygium Cumini果提取物的荧光金纳米粒子14的可持续生物合成呈现了具有良好抗氧化潜力的表面官能化纳米颗粒的简化方法。通过用光敏剂(玫瑰孟加拉卟啉卟啉)或成像剂(罗丹明B)将纳米颗粒缀合纳米颗粒,通过将纳米颗粒进行缀合纳米颗粒的基于金的光热氧化纳米蛋白(PTNA)。揭示组装的PTNA以具有良好的荧光特性并产生单线氧,并在用低成本的绿色LED光线照射时显示出抗微生物性能。使用S. Cumini合成的PTNA的所有方法和性质(合成,抗氧化势,缀合,荧光,偏光含量百分比),并与使用壳聚糖合成的PTNA进行了表征。通过共聚焦激光扫描显微镜(CLSM)表征了使用发育PTNA的光动力治疗的抗微生物效应。本文所述的生物悬浮PTNA的发展将发现光动力治疗用于治疗癌症和微生物感染的应用。

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