Author(s): Ramesh Balasaheb Nawale, Sanjeev Kumar Sahu, Manish Vyas

Email(s): nawale_ramesh@yahoo.co.in

DOI: 10.52711/0974-360X.2026.00330   

Address: Ramesh Balasaheb Nawale*, Sanjeev Kumar Sahu, Manish Vyas
Department of Pharmaceutical Chemistry, Lovely Professional University, Phagwara, Punjab, India.
*Corresponding Author

Published In:   Volume - 19,      Issue - 5,     Year - 2026


ABSTRACT:
The study aims to enhance the oral bioavailability and solubility of Atorvastatin, and Fenofibrate classified as a class (II) based on the Biopharmaceutical Classification System (BCS) used for treating hypertension. Hence, a combination nano suspension was developed using a high-speed homogenization. The selection of stabilizers was initially done using a One-Factor-At-A-Time method, considering particle size and potential. A Box-Behnken design with 3 factors and 3 levels was employed in 15 experimental trials to study how stabilizer concentration, homogenization speed and homogenization duration is impacting Zeta potential, Poly dispersity Index and Particle size. The combination of Poloxamer 407 and Polyvinylpyrrolidone were identified as the optimal stabilizer mix. The resulting nano suspension displayed a reduced particle size of 183.9nm and a zeta potential of -22.9mV. SEM images showed that the particles were spherical in shape. Further investigation with FT-IR, DSC, and X-ray diffraction studies substantiated the compatibility between the drugs and stabilizers used. The optimal formulation was used and yielded an expected solubility of the drug of 91.26±8.24µg/mL and 74.32±9.11 with the combination stabilizer with more than 90% drug release within the first hour. The formulation also showed Cmax (2.97-fold) and AUC0-24h(2.49-fold) for Atorvastatin nano formulation, while for FNF nano formulation an increase in the value of Cmax (3.74-fold) and AUC0-24h (3.17-fold) was evident, highlighting the effectiveness of the nano suspension in improving solubility, absorption, and bioavailability due to lesser particle size with a higher effective surface area that may facilitate solubility and possibly improve release.


Cite this article:
Ramesh Balasaheb Nawale, Sanjeev Kumar Sahu, Manish Vyas. Advanced Oral Formulation of Atorvastatin and Fenofibrate: Solubility Enhancement and Bioavailability Optimization using Nanosuspension. Research Journal Pharmacy and Technology. 2026;19(5):2297-2. doi: 10.52711/0974-360X.2026.00330

Cite(Electronic):
Ramesh Balasaheb Nawale, Sanjeev Kumar Sahu, Manish Vyas. Advanced Oral Formulation of Atorvastatin and Fenofibrate: Solubility Enhancement and Bioavailability Optimization using Nanosuspension. Research Journal Pharmacy and Technology. 2026;19(5):2297-2. doi: 10.52711/0974-360X.2026.00330   Available on: https://www.rjptonline.org/AbstractView.aspx?PID=2026-19-5-51


REFERENCES:
1.    Staels B, Dallongeville J, Auwerx J, Schoonjans K, Leitersdorf E, Fruchart JC. Mechanism of action of fibrates on lipid and lipoprotein metabolism. Circulation. 1998; 98(19): 2088-2093.
2.    Jacobson TA, Zimmerman FH. Fibrates in combination with statins in the management of dyslipidemia. J Clin Hypertens (Greenwich). 2006; 8(1): 35-41.
3.    Fiévet C, Staels B. Combination therapy of statins and fibrates in the management of cardiovascular risk. CurrOpinLipidol. 2009; 20(6): 505-511.
4.    Vinay VNV, Venkatesh K, Phanindra K, Keerthi S, Swetha K. Formulation and evaluation of solid dispersions of fenofibrate for dissolution rate enhancement. J Chem Pharm Res. 2012; 4(11): 4752-4756.
5.    Meola TR, Schultz HB, Peressin KF, Prestidge CA. Enhancing the oral bioavailability of simvastatin with silica-lipid hybrid particles: the effect of supersaturation and silica geometry. Eur J Pharm Sci. 2020; 150: 105336.
6.    Chary SS, Bhikshapathi DVRN, Rajesham VV, Penakalapati SR, Sandhya P, Sadasivam RK. Formulation and evaluation of nano formulation of BTK inhibitor by Box-Behnken design and high-pressure homogenization for enhanced bioavailability and reducing the effects of food. Int J Appl Pharm. 2025; 17(4): 521-528.
7.    Chary SS, Bhikshapathi DVRN, Vamsi NM, Kumar JP. Optimizing entrectinib nanosuspension: quality by design for enhanced oral bioavailability and minimized fast-fed variability. Bionanoscience. 2024; 14(4): 4551-4569.
8.    Jain N, Raghuwanshi R, Jain D. Development and validation of RP-HPLC method for simultaneous estimation of atorvastatin calcium and fenofibrate in tablet dosage forms. Indian J Pharm Sci. 2008; 70(2): 263-265.
9.    Górniak A, Czapor-Irzabek H, Złocińska A, Gawin-Mikołajewicz A, Karolewicz B. Screening of fenofibrate-simvastatin solid dispersions in the development of fixed-dose formulations for the treatment of lipid disorders. Pharmaceutics. 2023; 15(2)603.
10.    Hashem FM, Al-Sawahli MM, Nasr M, Ahmed OAA. Custom fractional factorial designs to develop atorvastatin self-nanoemulsifying and nanosuspension delivery systems – enhancement of oral bioavailability. Drug Des DevelTher. 2015; 93141-3152.
11.    Rangaraj N, Pailla SR, Chowta P, Sampathi S. Fabrication of ibrutinib nanosuspension by quality by design approach: intended for enhanced oral bioavailability and diminished fast fed variability. AAPS PharmSciTech. 2019; 20(8): 307.
12.    Tipduangta P, Takieddin K, Fábián L, Belton P, Qi S. A new low melting-point polymorph of fenofibrate prepared via talc induced heterogeneous nucleation. Cryst Growth Des. 2015; 15(10): 5011-5020.
13.    Choudhary A, Rana AC, Aggarwal G, Kumar V, Zakir F. Development and characterization of an atorvastatin solid dispersion formulation using skimmed milk for improved oral bioavailability. Acta Pharm Sin B. 2012; 2(4):421-428.

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DOI: 10.52711/0974-360X 

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