Chakrabarty Subhasis, Ghosh Bijaya, Giri Tapan K, Khanam Jasmina
NSHM College of Pharmaceutical Technology, NSHM Knowledge Campus, Kolkata Group of Institutions, 124 BL Saha Road, Kolkata-700053, West Bengal, India.
Bijaya Ghosh, NSHM College of Pharmaceutical Technology, NSHM Knowledge Campus, Kolkata Group of Institutions, 124 BL Saha Road, Kolkata-700053, West Bengal, India.
Curr Drug Deliv. 2018;15(7):965-971. doi: 10.2174/1567201815666180503122309.
For the narrow therapeutic index anti-epileptic drugs, monitoring of plasma concentration is a necessity for avoiding complications related to fluctuation of plasma level.
The work was aimed at extracting gabapentin by transdermal reverse iontophoresis to investigate its feasibility for noninvasive therapeutic drug monitoring.
Gabapentin was delivered in phosphate buffer (pH 7.4) at a therapeutic concentration range of 2-10 µg/ml. The same media was also used in receiver compartment. Extractions were carried out under an electric field of 5 V (current intensity range 0.3 -0.5 mA/cm2), provided by a custom-made power source for a period of 4 h. Samples were withdrawn at hourly intervals and drug content was analyzed by HPLC.
Results indicated that gabapentin extraction occurred at both anode and cathode with cathodal extractions showing higher value at all concentrations. Extraction rates at both the chambers were affected by time, the first hour extraction was notably higher than the later hours. Highest extraction rate was noted at pH 5. Surprisingly, anodal extraction was found to show greater positive correlation with current intensity compared to cathodal extraction.
As gabapentin carried no net charge at pH 7.4, orientation mediated electromigration was suggested to be the cause.
对于治疗指数狭窄的抗癫痫药物,监测血浆浓度对于避免与血浆水平波动相关的并发症是必要的。
本研究旨在通过透皮反向离子电渗法提取加巴喷丁,以研究其用于无创治疗药物监测的可行性。
在磷酸盐缓冲液(pH 7.4)中以2-10μg/ml的治疗浓度范围递送加巴喷丁。接收室中也使用相同的介质。在由定制电源提供的5V电场(电流强度范围0.3-0.5mA/cm2)下进行提取4小时。每隔一小时取样,通过高效液相色谱法分析药物含量。
结果表明,加巴喷丁在阳极和阴极均有提取,阴极提取在所有浓度下均显示出更高的值。两个腔室的提取率均受时间影响,第一小时的提取率明显高于后续小时。在pH 5时观察到最高提取率。令人惊讶的是,与阴极提取相比,阳极提取与电流强度显示出更大的正相关性。
由于加巴喷丁在pH 7.4时不带净电荷,因此认为定向介导的电迁移是其原因。