Department of Neurosurgery, University of California San Francisco, San Francisco, California, United States of America.
PLoS One. 2011;6(11):e27728. doi: 10.1371/journal.pone.0027728. Epub 2011 Nov 21.
Effective regulation of transgene product in anatomically circumscribed brain tissue is dependent on the pharmacokinetics of the regulating agent, the kinetics of transcriptional activation and degradation of the transgene product. We evaluated rapamycin-regulated AAV2-GDNF expression in the rat brain (striatum). Regulated (a dual-component system: AAV2-FBZhGDNF + AAV2-TF1Nc) and constitutive (CMV-driven) expression vectors were compared. Constitutively active AAV2-GDNF directed stable GDNF expression in a dose-dependent manner and it increased for the first month, thereafter reaching a plateau that was maintained over a further 3 months. For the AAV2-regGDNF, rapamycin was administered in a 3-days on/4-days off cycle. Intraperitoneal, oral, and direct brain delivery (CED) of rapamycin were evaluated. Two cycles of rapamycin at an intraperitoneal dose of 10 mg/kg gave the highest GDNF level (2.75±0.01 ng/mg protein). Six cycles at 3 mg/kg resulted in lower GDNF values (1.36±0.3 ng/mg protein). Interestingly, CED of rapamycin into the brain at a very low dose (50 ng) induced GDNF levels comparable to a 6-week intraperitoneal rapamycin cycle. This study demonstrates the effectiveness of rapamycin regulation in the CNS. However, the kinetics of the transgene in brain tissue, the regulator dosing amount and schedule are critical parameters that influence the kinetics of accumulation and zenith of the encoded transgene product.
有效调节转基因产品在解剖上限定的脑组织中取决于调节剂的药代动力学、转基因产物的转录激活和降解动力学。我们评估了雷帕霉素调节的 AAV2-GDNF 在大鼠脑(纹状体)中的表达。比较了调节型(双组分系统:AAV2-FBZhGDNF+AAV2-TF1Nc)和组成型(CMV 驱动)表达载体。组成型激活的 AAV2-GDNF 以剂量依赖性方式指导稳定的 GDNF 表达,并在第一个月内增加,此后达到一个维持超过 3 个月的平台。对于 AAV2-regGDNF,雷帕霉素以 3 天 ON/4 天 OFF 的周期给药。评估了腹腔内、口服和直接脑给药(CED)的雷帕霉素。腹腔内 10mg/kg 的雷帕霉素两个周期可获得最高的 GDNF 水平(2.75±0.01ng/mg 蛋白)。3mg/kg 的 6 个周期导致较低的 GDNF 值(1.36±0.3ng/mg 蛋白)。有趣的是,CED 进入大脑的非常低剂量(50ng)的雷帕霉素可诱导与 6 周腹腔内雷帕霉素周期相当的 GDNF 水平。本研究证明了雷帕霉素在中枢神经系统中的调节作用。然而,转基因在脑组织中的动力学、调节剂的剂量和方案是影响编码转基因产物积累和峰值的关键参数。