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Updated: Aug 29, 2025

Preparation and Characterization of Individual and Multi-drug Loaded Physically Entrapped Polymeric Micelles
Published on: August 28, 2015
Preparation of a camptothecin analog FLQY2 self-micelle solid dispersion with improved solubility and bioavailability
Yi Wang1, Wenchao Wang1, Endian Yu1
1College of Pharmaceutical Sciences, Zhejiang University of Technology, No. 1 Gongda Road, Hangzhou, 313000, People's Republic of China.
Background:
7-p-trifluoromethylphenyl-FL118 (FLQY2) is a camptothecin analog with excellent antitumor efficacy against various solid tumors. However, its poor solubility and low bioavailability limited the development of the drug. Polyvinyl caprolactam-polyvinyl acetate-polyethylene glycol graft copolymer (Soluplus®), an emerging carrier for preparing solid dispersion (SD), encapsulated FLQY2 to circumvent the above limitations.
Results:
In this project, FLQY2-SD was prepared by solvent evaporation method and self-assembled into micelles in aqueous solutions owing to the amphiphilic nature of Soluplus®. The physicochemical characterizations demonstrated that FLQY2 existed in a homogeneous amorphous form in SD and was rapidly dissolved. The micelles did not affect cytotoxicity or cellular uptake of FLQY2 in vitro, and the oral bioavailability was increased by 12.3-fold compared to the FLQY2 cyclodextrin suspension. The pharmacokinetics of FLQY2-SD showed rapid absorption, accumulation in the intestine, and slow elimination via fecal. Metabolite identification studies showed 14 novel metabolites were identified, including 12 phase I metabolites (M1-M12) and 2 phase II metabolites (M13-M14), of which M2 (oxidation after decarboxylation) and M7 (dioxolane ring cleavage) were the primary metabolites in the positive mode and negative mode, respectively. The tumor growth inhibition rate (TGI, 81.1%) of FLQY2-SD (1.5 mpk, p.o./QW) in tumor-bearing mice after oral administration was higher than that of albumin-bound Paclitaxel (15 mpk, i.v./Q4D) and Irinotecan hydrochloride (100 mpk, i.p./QW).
Conclusions:
The successful preparation, pharmacokinetics, and pharmacodynamics studies of FLQY2-SD showed that the solubility and bioavailability of FLQY2 were improved, which facilitated the further druggability development of FLQY2.
Insights
This study developed a novel solid dispersion (SD) of 7-p-trifluoromethylphenyl-FL118 (FLQY2) using Soluplus® to overcome poor solubility and bioavailability. The resulting FLQY2-SD significantly enhanced oral bioavailability and demonstrated superior antitumor efficacy in preclinical models.
Area of Science:
- Pharmaceutical Sciences
- Drug Delivery Systems
- Medicinal Chemistry
Background:
- 7-p-trifluoromethylphenyl-FL118 (FLQY2) exhibits potent antitumor activity against solid tumors.
- Poor aqueous solubility and low bioavailability hinder the clinical development of FLQY2.
- Soluplus®, a graft copolymer, is explored as a carrier for FLQY2 solid dispersion (SD).
Purpose of the Study:
- To enhance the solubility and oral bioavailability of FLQY2.
- To develop and characterize FLQY2-loaded solid dispersion (FLQY2-SD) using Soluplus®.
- To evaluate the in vivo pharmacokinetic and pharmacodynamic profile of FLQY2-SD.
Main Methods:
- FLQY2-SD prepared via solvent evaporation method.
- Physicochemical characterization of FLQY2-SD, including amorphous state and dissolution.
- In vitro cytotoxicity, cellular uptake, in vivo pharmacokinetic studies in mice, and tumor growth inhibition assays.
Main Results:
- FLQY2-SD self-assembled into micelles, exhibiting rapid dissolution and homogeneous amorphous form.
- Oral bioavailability of FLQY2-SD increased 12.3-fold compared to cyclodextrin suspension.
- FLQY2-SD demonstrated significant tumor growth inhibition (81.1%) in mice, outperforming existing treatments.
Conclusions:
- Successful preparation of FLQY2-SD using Soluplus® significantly improved FLQY2 solubility and bioavailability.
- FLQY2-SD exhibits promising pharmacokinetic and pharmacodynamic properties for further drug development.
- This formulation strategy facilitates the clinical translation of FLQY2 as an anticancer agent.
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