Jain Beena, Uppal Abha, Gupta Pradeep K, Das Kaustuv
Laser Bio-Medical Applications & Instrumentation Division, Raja Ramanna Center for Advanced Technology, Indore, Madhya Pradesh, India.
Photochem Photobiol. 2009 Jul-Aug;85(4):927-33. doi: 10.1111/j.1751-1097.2009.00545.x. Epub 2009 Mar 20.
Absorption and emission properties of the amphiphilic photosensitizer Chlorin p6 were investigated in aqueous medium in the presence of silica nanoparticles (SiNPs) having positively charged amino groups. The results of these studies reveal that the acid-base ionization equilibrium of Chlorin p6 in aqueous medium is significantly affected as a result of strong electrostatic binding between the negatively charged drug and SiNP. The spectroscopic signature of the drug bound to SiNPs suggests that the tri-anionic form of the drug remains bound to the positively charged SiNPs at pH 8.0. As the pH is progressively decreased the formation of hydrophobic aggregates is disrupted significantly due to the presence of electrostatic binding force, which competes with intermolecular hydrophobic forces. The interplay of hydrophobic and electrostatic forces in the drug-nanoparticle binding process might affect the relative uptake and photodynamic efficacy of the free drug and the drug-nanoparticle complex in cancer cells.
在带正电荷氨基的二氧化硅纳米颗粒(SiNPs)存在下,在水性介质中研究了两亲性光敏剂二氢卟吩p6的吸收和发射特性。这些研究结果表明,由于带负电荷的药物与SiNP之间的强静电结合,水性介质中二氢卟吩p6的酸碱电离平衡受到显著影响。与SiNPs结合的药物的光谱特征表明,在pH 8.0时,药物的三阴离子形式仍与带正电荷的SiNPs结合。随着pH值逐渐降低,由于静电结合力的存在,疏水聚集体的形成受到显著破坏,静电结合力与分子间疏水力相互竞争。药物-纳米颗粒结合过程中疏水和静电力的相互作用可能会影响游离药物和药物-纳米颗粒复合物在癌细胞中的相对摄取和光动力疗效。