Solomon Melani A, Lemera Jenkins, D'Souza Gerard G M
a Department of Pharmaceutical Sciences , MCPHS University , Boston , MA , USA.
J Liposome Res. 2016 Sep;26(3):246-60. doi: 10.3109/08982104.2015.1105820. Epub 2016 Jan 18.
Three-dimensional tumor spheroid cultures are a better representative of in vivo solid tumors than monolayer cultures and should be used for testing potential nanotherapeutics in vitro.
To develop techniques to test the disposition and efficacy of nanocarrier formulations in spheroids in a cost-effective manner amenable to high-throughput testing.
Spheroids were obtained using a modified liquid overlay technique in a 96-well plate. Several nanocarrier formulations were prepared and tested in the spheroid model. The disposition of the formulations in the spheroids was determined by confocal microscopy while the effect of the drug-loaded formulations was assessed in terms of the cell viability, loss of membrane integrity, induction of caspases and inhibition of growth of the spheroids.
The surface charge of the formulations influenced the accumulation of the nanocarrier and drug in the spheroid, with the cationic formulation accumulating to the greatest extent. Also, the smallest particle size formulation, micelles, penetrated to the greatest extent in the spheroid. The iRGD tumor-penetrating peptide co-administered with unmodified liposomes exhibited both high accumulation and penetration. The effect studies revealed that the formulations that penetrated or accumulated to the highest extent in the spheroid exhibited better antitumor activity compared to the other formulations.
The 96-well plate format spheroid model developed in the study can be used toward the rational selection of nanocarrier therapeutics prior to their testing in in vivo models.
与单层培养相比,三维肿瘤球体培养能更好地代表体内实体瘤,应在体外用于测试潜在的纳米治疗药物。
开发以具有成本效益且适用于高通量测试的方式来测试纳米载体制剂在球体中的分布和疗效的技术。
使用改良的液体覆盖技术在96孔板中获得球体。制备了几种纳米载体制剂并在球体模型中进行测试。通过共聚焦显微镜确定制剂在球体中的分布,同时从细胞活力、膜完整性丧失、半胱天冬酶的诱导以及球体生长抑制方面评估载药制剂的效果。
制剂的表面电荷影响纳米载体和药物在球体中的积累,阳离子制剂积累程度最大。此外,最小粒径的制剂,即胶束,在球体中的渗透程度最大。与未修饰脂质体共同给药的iRGD肿瘤穿透肽表现出高积累和高渗透。效果研究表明,与其他制剂相比,在球体中渗透或积累程度最高的制剂表现出更好的抗肿瘤活性。
本研究中开发的96孔板形式的球体模型可用于在纳米载体治疗药物进行体内模型测试之前进行合理选择。