Development of Atorvastatin Calcium Biloaded Capsules for Oral Administration of Hypercholesterolemia

Author:

Senthilvel Chitra Karthikeyini1ORCID,Karuppaiyan Kavitha2,Pothumani Ananth1,Vedharethinam Ananthi1,Jose Ancy Wilfred1,Muthu Mohamed Jamal Moideen3ORCID,Sherbiny Mohamed El4ORCID,Ebrahim Hasnaa Ali5,Shafey Mohamed El67,Dejene Minilu8ORCID

Affiliation:

1. K. M. College of Pharmacy, Madurai 625107, Melur Road, Uthangudi, Tamil Nadu, India

2. Department of Pharmaceutical Technology, BIT Campus, Anna University, Tiruchirappalli 620024, Tamil Nadu, India

3. College of Pharmacy, Shri Indra Ganesan Institute of Medical Science, Tiruchirappalli 620012, Tamil Nadu, India

4. Department of Basic Medical Sciences, College of Medicine, AlMaarefa University, Riyadh 11597, P.O. Box 71666, Saudi Arabia

5. Department of Basic Medical Sciences, College of Medicine, Princess Nourah bint Abdulrahman University, Riyadh 11671, P.O. Box 84428, Saudi Arabia

6. Department of Anatomy and Embryology, Faculty of Medicine, Mansoura University, Mansoura 35516, Egypt

7. Physiological Sciences Department, Fakeeh College for Medical Sciences, Jeddah, Saudi Arabia

8. Department of Biotechnology, College of Biological and Chemical Engineering, Addis Ababa Science and Technology University, Addis Ababa, Ethiopia

Abstract

The goal of this study was to develop atorvastatin (ATN) calcium biloaded, i.e., immediate release (IR) and sustained release (SR) capsules that would promote the quick onset of action and a better dissolution profile on both the IR and SR aspects. The IR granules were prepared by the wet granulation method, and an aqueous solubility study proved that the IR granules released the ATN within 25 min compared to the pure drug due to the addition of PEG and super disintegrants such as croscarmellose (CC) and crospovidone (CP). The sustained release nanoparticles (SR-NPs) were synthesized using a solvent evaporation technique and an optimal combination of hydrophilic and hydrophobic polymers. The addition of a hydrophobic polymer to a hydrophilic polymer delays drug release, resulting in a sustained and controlled release lasting up to 12 hours. The drug release of ATN from SR nanoparticles followed the Higuchi and Korsmeyer–Peppas models and had first-order kinetics (r2 = ???). Fourier transform infrared spectrophotometry, powder X-ray diffraction, and differential scanning calorimetric analysis were used to test the prepared biloaded capsules, and the results showed that there was no significant interaction between the polymers, excipients, and drug. The SEM and DLS analysis clearly demonstrated that drug particles in a continuous layer were enclosed by polymers at the nanoscale. To summarise, integrating both layers into a single capsule resulted in a superior release profile and patient compliance. Finally, prepared biloaded capsules were discovered to exhibit both an IR and an SR profile.

Funder

AlMaarefa University

Publisher

Hindawi Limited

Subject

Complementary and alternative medicine

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