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Updated: Jun 5, 2026

Preparation and Characterization of Individual and Multi-drug Loaded Physically Entrapped Polymeric Micelles
Published on: August 28, 2015
Formulation and in vitro evaluation of rifampicin loaded porous microspheres
Satish Balakrishna Bhise1, Avinash Bhanudas More, Rajkumar Malayandi
1Biopharmaceutical Research Group, Dpt. of Biopharmaceutics, Govt. College of Pharmacy, Karad, India. satishbhise@gmail.com
Abstract:
Rifampicin (RIF) is a major component in fixed dose combination therapy for the treatment of tuberculosis. RIF has low solubility and high permeability with high dose and hence it is classified as class II drug in Biopharmaceutical Classification System (BCS). RIF has poor and variable bioavailability because of its poor solubility, acid decomposition and, drug and food interaction. The present investigation was aimed to develop RIF loaded porous microspheres as a controlled release dosage form. Eudragit based porous microspheres of RIF were prepared by emulsion solvent diffusion method. Prepared porous microspheres were evaluated for its entrapment efficacy, morphology, thermal behavior, crystalline nature, in-vitro drug release and stability in simulated gastric fluid. The entrapment efficacy of drug loaded microspheres was found to be in the range of 19.04â74.57%. Surface morphology revealed the porous and spherical structure of microspheres. Differential scanning calorimetric studies confirmed that formulation process altered the crystalline nature of RIF. In vitro drug release studies indicated that drug to polymer ratio of 2:1 showed more than 85% drug release over the period of 3 h. Stability studies in simulated gastric fluid (SGF) indicated that low relative decomposition of 18.5% was achieved with high drug to low polymer ratio of 1:4. The results obtained from the present investigation concluded that RIF loaded porous microspheres are suitable for developing oral controlled release dosage form of RIF that can prevent acid decomposition and provide better biopharmaceutical properties. Further more the microspheres can be evaluated for preventing the interaction with isoniazid, other drugs and foodstuffs.
Insights
This study developed rifampicin (RIF) porous microspheres for controlled oral delivery. These microspheres improve RIF bioavailability by preventing acid decomposition and reducing drug interactions.
Area of Science:
- Pharmaceutical Sciences
- Drug Delivery Systems
- Biopharmaceutics
Background:
- Rifampicin (RIF), a key tuberculosis drug, exhibits poor bioavailability due to low solubility and acid decomposition.
- As a BCS Class II drug, RIF requires enhanced delivery systems to overcome its biopharmaceutical limitations.
Purpose of the Study:
- To develop and evaluate rifampicin-loaded porous microspheres as a controlled-release oral dosage form.
- To enhance the stability and biopharmaceutical properties of rifampicin.
Main Methods:
- Rifampicin-loaded porous microspheres were prepared using the emulsion solvent diffusion method with Eudragit.
- Microspheres were characterized for entrapment efficacy, morphology, thermal behavior, crystalline nature, in-vitro drug release, and stability in simulated gastric fluid.
Main Results:
- Entrapment efficacy ranged from 19.04% to 74.57%.
- Surface morphology confirmed porous and spherical microspheres.
- In-vitro release studies showed >85% drug release within 3 hours for a 2:1 drug-to-polymer ratio.
- A 1:4 drug-to-polymer ratio demonstrated minimal decomposition (18.5%) in simulated gastric fluid.
Conclusions:
- Rifampicin-loaded porous microspheres are a promising controlled-release dosage form.
- This formulation can mitigate acid decomposition and improve RIF's biopharmaceutical properties.
- Further evaluation for preventing drug and food interactions is warranted.
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