Magno Lais N, Bezerra Fábio C, Freire Luiz Eduardo S, Guerra Rubens A, Bakuzis Andris F, Gonçalves Pablo J
Instituto de Física and §Programa de Pós-graduação em Química, Universidade Federal de Goiás , 74690-900 Goiânia, GO, Brazil.
Faculdade Santa Rita de Cássia , Av. Adelina Alves Vilela, n° 393, Jd. Primavera, 75.524-680 Itumbiara, GO, Brazil.
J Phys Chem A. 2017 Mar 9;121(9):1924-1931. doi: 10.1021/acs.jpca.6b10314. Epub 2017 Feb 27.
Modern medicine has been searching for new and more efficient strategies for diagnostics and therapeutics applications. Considering this, porphyrin molecules have received great interest for applications in photodiagnostics and phototherapies, even as magnetic nanoparticles for drug-delivery systems and magnetic-hyperthermia therapy. Aiming to obtain a multifunctional system, which combines diagnostics with therapeutic functions on the same platform, the present study employed UV/vis absorption and fluorescence spectroscopies to evaluate the interaction between meso-tetrakis(p-sulfonatofenyl)porphyrin (TPPS) and maghemite nanoparticles (γ-FeO). These spectroscopic techniques allowed us to describe the dynamics of coupling porphyrins on nanoparticles and estimate the number of 21 porphyrins per nanoparticle. Also, the binding parameters, such as the association constants (K = 8.89 × 10 M) and bimolecular quenching rate constant (k = 2.54 × 10 M s) were obtained. These results suggest a static quenching process where the electrostatic attraction plays an essential role. The work shows that spectroscopic techniques are powerful tools to evaluate the coupling of organic molecules and nanoparticles. Besides, the system studied provides a relevant background for potential applications in bionanotechnology and nanomedicine, such as (1) nanodrug delivery system, (2) photodiagnostics/theranostics, and/or (3) a combined action of photodynamic and hyperthermia therapies, working in a synergetic way.
现代医学一直在寻找用于诊断和治疗应用的新的、更有效的策略。考虑到这一点,卟啉分子在光诊断和光疗法中的应用引起了极大的兴趣,甚至在用于药物递送系统和磁热疗的磁性纳米颗粒方面也是如此。为了获得一个多功能系统,该系统在同一平台上结合诊断和治疗功能,本研究采用紫外/可见吸收光谱和荧光光谱来评估中位四(对磺基苯基)卟啉(TPPS)与磁赤铁矿纳米颗粒(γ-FeO)之间的相互作用。这些光谱技术使我们能够描述卟啉在纳米颗粒上的耦合动力学,并估计每个纳米颗粒上卟啉的数量为21个。此外,还获得了结合参数,如缔合常数(K = 8.89 × 10 M)和双分子猝灭速率常数(k = 2.54 × 10 M s)。这些结果表明存在一个静态猝灭过程,其中静电吸引起着至关重要的作用。这项工作表明光谱技术是评估有机分子与纳米颗粒耦合的有力工具。此外,所研究的系统为生物纳米技术和纳米医学中的潜在应用提供了相关背景,例如(1)纳米药物递送系统,(2)光诊断/治疗诊断,和/或(3)光动力疗法和热疗的联合作用,以协同方式发挥作用。