Lu Xiuling, Howard Melissa D, Mazik Marta, Eldridge Joshua, Rinehart John J, Jay Michael, Leggas Markos
Department of Pharmaceutical Sciences, University of Kentucky, Lexington, Kentucky 40536-0082, USA.
AAPS J. 2008;10(1):133-40. doi: 10.1208/s12248-008-9013-z. Epub 2008 Mar 4.
The pre-administration of dexamethasone (DEX) has previously been shown to enhance the anti-tumor efficacy of chemotherapeutic agents. The delivery of anti-inflammatory agents specifically to tumors via nanoparticle carriers is expected to promote the effectiveness of chemotherapeutic agents while avoiding systemic toxicities. The process for preparing solid lipid nanoparticles containing anti-inflammatory agents using the nanotemplate engineering method was optimized. Due to the solubilization of DEX in the bulk aqueous phase, its more lipophilic palmitate ester was synthesized and incorporated in nanoparticles that included a pegylating agent, PEG6000 mono-stearate, as part of the formulation. The stealth properties of these nanoparticles were demonstrated to be enhanced compared to latex particles by measuring the adsorption of radioiodinated IgG (185 microg vs. 6.7 microg IgG/mg NP). In addition, the uptake of (14)C-labeled nanoparticles by murine macrophages was shown to decrease from 36.6% to 14.7% of the nanoparticles/mg cell protein as the amount of pegylating agent in the formulation increased from 0 to 4 mg/mL. The high loading values and low burst effect observed for these DEX palmitate-containing nanoparticles in addition to their stealth properties are expected to allow for the delivery of sufficient amounts of DEX to tumors to enhance the uptake of chemotherapeutic agents.
先前已证明,地塞米松(DEX)的预处理可增强化疗药物的抗肿瘤疗效。通过纳米颗粒载体将抗炎剂特异性递送至肿瘤有望提高化疗药物的有效性,同时避免全身毒性。使用纳米模板工程方法制备含抗炎剂的固体脂质纳米颗粒的过程得到了优化。由于DEX在大量水相中可溶解,因此合成了其亲脂性更强的棕榈酸酯,并将其掺入包含聚乙二醇化剂聚乙二醇6000单硬脂酸酯的纳米颗粒中作为制剂的一部分。通过测量放射性碘化IgG的吸附量(185微克对6.7微克IgG/毫克纳米颗粒),证明这些纳米颗粒的隐形特性比乳胶颗粒有所增强。此外,随着制剂中聚乙二醇化剂的量从0增加到4毫克/毫升,小鼠巨噬细胞对(14)C标记纳米颗粒的摄取量从纳米颗粒/毫克细胞蛋白的36.6%降至14.7%。除了具有隐形特性外,这些含DEX棕榈酸酯的纳米颗粒具有高载药量和低突释效应,有望将足够量的DEX递送至肿瘤,以提高化疗药物的摄取。