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  • Optimization of carboxylate-terminated poly(amidoamine) dendrimer-mediated cisplatin formulation.

Optimization of carboxylate-terminated poly(amidoamine) dendrimer-mediated cisplatin formulation.

Drug development and industrial pharmacy (2013-11-19)
Hitesh Kulhari, Deep Pooja, Mayank K Singh, Abhay S Chauhan
ABSTRACT

Abstract Cisplatin is mainly used in the treatment of ovarian, head and neck and testicular cancer. Poor solubility and non-specific interactions causes hurdles in the development of successful cisplatin formulation. There were few reports on poly(amidoamine) (PAMAM) dendrimer-cisplatin complexes for anticancer treatment. But the earlier research was mainly focused on therapeutic effect of PAMAM dendrimer-cisplatin complex, with less attention paid on the formulation development of these complexes. Objective of the present study is to optimize and validate the carboxylate-terminated, EDA core PAMAM dendrimer-based cisplatin formulation with respect to various variables such as dendrimer core, generation, drug entrapment, purification, yield, reproducibility, stability, storage and in-vitro release. Dendrimer-cisplatin complex was prepared by an efficient method which significantly increases the % platinum (Pt) content along with the product yield. Dendrimers showed reproducible (∼27%) platinum loading by weight. Variation in core and generations does not produce significant change in the % Pt content. Percentage Pt content of dendrimeric formulation increases with increase in drug/dendrimer mole ratio. Formulation with low drug/dendrimer mole ratio showed delayed release compared to the higher drug/dendrimer mole ratio; these dendrimer formulations are stable in room temperature. In vitro release profiles of the stored dendrimer-cisplatin samples showed comparatively slow release of cisplatin, which may be due to formation of strong bond between cisplatin and dendrimer. This study will contribute to create a fine print for the formulation development of PAMAM dendrimer-cisplatin complexes.

MATERIALS
Product Number
Brand
Product Description

Sigma-Aldrich
cis-Diamineplatinum(II) dichloride, ≥99.9% trace metals basis
USP
Transplatin, United States Pharmacopeia (USP) Reference Standard
Cisplatin impurity A, European Pharmacopoeia (EP) Reference Standard
Sigma-Aldrich
trans-Platinum(II)diammine dichloride
Sigma-Aldrich
cis-Diammineplatinum(II) dichloride, crystalline
Cisplatin, European Pharmacopoeia (EP) Reference Standard