Alexander Amit, Saraf Swarnlata, Saraf Shailendra
University Institute of Pharmacy, Pt. Ravishankar Shukla University, Raipur Chhattisgarh, Pin: 492010, India.
Curr Drug Deliv. 2016;13(4):621-30. doi: 10.2174/1567201813666160204114000.
Hydrogels are the polymeric network, which can retain large amount of water. Thus, these delivery systems always remained an issue of intensive research among the scientist fraternity.
In this piece of work, we have reconnoitered the significance of the PEGylated anticancer loaded drug onto poloxamer based thermoresponsive injectable hydrogel to understand the role of delivery system.
To accomplish the objective, firstly it was necessary to improve the solubility of the melphalan, achieved by PEGylation of the drug with two grades of linear methoxy poly ethylene glycol (M-PEG), viz. M-PEG 2000 and 5000 Da to form a PEGylated melphalan conjugate (MLPEG). In our previous study, we have found that the prepared conjugates were efficiently enhanced the solubility of the melphalan and significantly reduced the hemolytic effect due to the presence of the PEG chains. Thus, in the present work, the prepared conjugates (MLPEG 5000 and 2000) were loaded to the thermosensitive Poloxamer 407 (P407) gel to produce an injectable hydrogel (MPX). To underline the reduction of the initial burst of the drug at the site of action, one of the hydrogels was prepared in the presence of the NaCl salt.
This in turn, tightened the PEO chains and remarkably reduced the drug's initial burst from the delivery system as only 43 % of drug was released during 2 hours from MPX-CG hydrogel. Moreover, a lower diffusion coefficient (D) was noticed for MPX-CG gel as compared with MPX-7.4 gel. To confirm the depot formation, prepared hydrogels were administered to Wistar rats via subcutaneous and intramuscular routes.
Thus, P407 based injectable hydrogel could play an important role for the delivery of a low dose-alkylating agent with reduced host cytotoxicity.
水凝胶是一种聚合物网络,能够保留大量水分。因此,这些递送系统一直是科学界深入研究的课题。
在这项工作中,我们探究了聚乙二醇化抗癌药物负载于泊洛沙姆基温敏可注射水凝胶的意义,以了解递送系统的作用。
为实现该目标,首先需要提高美法仑的溶解度,通过用两种不同分子量的线性甲氧基聚乙二醇(M-PEG),即M-PEG 2000和5000 Da对药物进行聚乙二醇化来实现,从而形成聚乙二醇化美法仑共轭物(MLPEG)。在我们之前的研究中,我们发现所制备的共轭物有效提高了美法仑的溶解度,并由于聚乙二醇链的存在显著降低了溶血效应。因此,在本工作中,将所制备的共轭物(MLPEG 5000和2000)负载到热敏性泊洛沙姆407(P407)凝胶中,以制备可注射水凝胶(MPX)。为强调药物在作用部位初始突释的减少,其中一种水凝胶是在氯化钠盐存在的情况下制备的。
这反过来收紧了聚环氧乙烷链,并显著减少了药物从递送系统的初始突释,因为在2小时内只有43%的药物从MPX-CG水凝胶中释放出来。此外,与MPX-7.4凝胶相比,MPX-CG凝胶的扩散系数(D)更低。为确认药物储库的形成,将制备的水凝胶通过皮下和肌肉内途径给予Wistar大鼠。
因此,基于P407的可注射水凝胶在递送低剂量烷化剂并降低宿主细胞毒性方面可能发挥重要作用。