Natesan Subramanian, Krishnaswami Venkateshwaran, Ponnusamy Chandrasekar, Madiyalakan Madi, Woo Thomas, Palanisamy Rajaguru
Laboratory for Lipid Based Systems, Department of Pharmaceutical Technology, Bharathidasan Institute of Technology, Anna University, Tiruchirappalli, Tamilnadu, India.
Laboratory for Lipid Based Systems, Department of Pharmaceutical Technology, Bharathidasan Institute of Technology, Anna University, Tiruchirappalli, Tamilnadu, India.
Mater Sci Eng C Mater Biol Appl. 2017 Aug 1;77:935-946. doi: 10.1016/j.msec.2017.03.179. Epub 2017 Apr 4.
A nanoparticulate photodynamic approach was employed with an objective to achieve enhanced production of singlet oxygen (O), for the management of posterior segment eye diseases like age related macular degeneration. The hypocrellin B (HB) loaded poly lactide-co-glycolide nanoparticle formulations were incorporated with nano silver (HBS-NPs). The optimized HBS-NPs contained 2.60±0.06mg/mL of HB and showed (i) 135.6 to 828.2nm size range, and (ii) negative zeta potential with a narrow polydispersity index. The DSC thermograms suggested the amorphous nature of HB inside the HBS-NPs. With the average encapsulation efficiency of 92.9±1.79%, the drug release from the HBS-NPs followed a biphasic pattern with an initial burst of 3.50% during first 8h followed by a sustained release of 47.82% within 3days. The interaction between nano silver and HB as assessed by the increase in spectral intensity of Raman spectrum demonstrates that HB may be attached over the nano silver. Generation of reactive oxygen species (ROS) by HBS-NPs was significantly higher than that of HB/HB-NPs. The singlet oxygen generating efficiency assessed using EPR spectrometer follows the order of nano silver>HB-NPs>pure HB drug solution>HBS-NPs. The HBS-NPs had a concentration and time dependent phototoxicity on A549 (human adeno lung carcinoma) cells in the presence of light providing a superior phototoxic effect (82.2% at 50μM) at 2h irradiation. The CAM treated with HBS-NPs showed a significant anti-angiogenic effect compared to a blank formulation. In vivo biodistribution studies revealed that intravenous administration of HBS-NPs lead into significant exposure to the posterior segment of the eye. This proof of principle study demonstrates that HB based nanoparticles may be a valuable new tool for application in ocular photodynamic therapy for the treatment of AMD in future.
采用纳米颗粒光动力方法的目的是增强单线态氧(O)的产生,用于治疗诸如年龄相关性黄斑变性等后段眼部疾病。将负载竹红菌素B(HB)的聚乳酸-羟基乙酸纳米颗粒制剂与纳米银(HBS-NPs)结合。优化后的HBS-NPs含有2.60±0.06mg/mL的HB,显示出(i)135.6至828.2nm的尺寸范围,以及(ii)具有窄多分散指数的负zeta电位。DSC热重曲线表明HBS-NPs内部的HB为无定形性质。平均包封效率为92.9±1.79%,HBS-NPs的药物释放遵循双相模式,最初8小时内有3.50%的突释,随后3天内持续释放47.82%。通过拉曼光谱强度增加评估的纳米银与HB之间的相互作用表明HB可能附着在纳米银上。HBS-NPs产生的活性氧(ROS)明显高于HB/HB-NPs。使用EPR光谱仪评估的单线态氧产生效率遵循纳米银>HB-NPs>纯HB药物溶液>HBS-NPs的顺序。在光照下,HBS-NPs对A549(人肺腺癌)细胞具有浓度和时间依赖性光毒性,在2小时照射时提供了优异的光毒性作用(50μM时为82.2%)。与空白制剂相比,用HBS-NPs处理的鸡胚绒毛尿囊膜显示出显著的抗血管生成作用。体内生物分布研究表明,静脉注射HBS-NPs会导致眼部后段有显著暴露。这项原理验证研究表明,基于HB的纳米颗粒可能是未来用于眼部光动力疗法治疗AMD的一种有价值的新工具。