Author(s): Ankita P. Kawtikwar, V. N. Deshmukh, D. A. Bhagwat

Email(s): pskawtikwar@rediffmail.com , ankitapusad64@gmail.com

DOI: 10.52711/0974-360X.2025.00799   

Address: Ankita P. Kawtikwar1, V. N. Deshmukh1, D. A. Bhagwat2
1Sudhakarrao Naik Institute of Pharmacy, Pusad, Maharashtra, India.
2Bharati Vidyapeeth College of Pharmacy, Kolhapur, Maharashtra, India.
*Corresponding Author

Published In:   Volume - 18,      Issue - 11,     Year - 2025


ABSTRACT:
Cancer remains a leading cause of global mortality due to its aggressive progression and systemic impact. Conventional chemotherapeutic agents, although effective, often suffer from non-specificity and associated systemic toxicity. In this study, a novel camptothecin (CPT)-loaded cubosomal drug delivery system was developed to boost therapeutic efficacy and reduce side effects. Cubosomes—nanoscale lipid-based carriers—were prepared using a microfluidization method with glyceryl monooleate and Poloxamer 407. A Quality by Design (QbD) approach employing Box-Behnken Design (BBD) was used to optimize formulation parameters such as the concentration of lipid and surfactant and the number of microfluidizer cycles. Thirteen trial batches were analyzed to evaluate critical quality attributes including particle size, zeta potential, and drug entrapment efficiency. The optimized formulation shown a particle size of 101.7nm, zeta potential of -33mV, and entrapment efficiency of 99.8%. FTIR studies confirmed successful drug encapsulation with preservation of the active lactone form of camptothecin. Stability assessments showed physical integrity under varied storage conditions. Cytotoxicity studies using the MTT assay contrary to MCF-7 breast cancer cells revealed a dose-dependent response, with an IC50 of 49.79µg/ml, indicating significant anticancer potential. Overall, the camptothecin-loaded cubosomal formulation demonstrated favorable physicochemical properties, enhanced cytotoxicity, and strong potential as a targeted delivery system for cancer therapy.


Cite this article:
Ankita P. Kawtikwar, V. N. Deshmukh, D. A. Bhagwat. Formulation and Characterization of Camptothecin Cubosomes for Anti-Cancer Treatment. Research Journal Pharmacy and Technology. 2025;18(11):5545-0. doi: 10.52711/0974-360X.2025.00799

Cite(Electronic):
Ankita P. Kawtikwar, V. N. Deshmukh, D. A. Bhagwat. Formulation and Characterization of Camptothecin Cubosomes for Anti-Cancer Treatment. Research Journal Pharmacy and Technology. 2025;18(11):5545-0. doi: 10.52711/0974-360X.2025.00799   Available on: https://www.rjptonline.org/AbstractView.aspx?PID=2025-18-11-61


REFERENCES:
1.    Gulland A. Global cancer prevalence is growing at “alarming pace,” says er565rde WHO. BMJ. 2014; 348 :g1338 doi:10.1136/bmj.g1338
2.    https://www.who.int/news-room/fact-sheets/detail/cancer
3.    Scanlon EF. The process of metastasis. Cancer. 1985 Mar 15; 55(6): 1163-6
4.    Sever R, Brugge JS. Signal transduction in cancer. Cold Spring Harbor Perspectives in Medicine. 2015 Apr 1; 5(4): a006098.
5.    Reyes-Reyes EM, Jin Z, Vaisberg AJ, Hammond GB, Bates PJ. Physangulidine A, a withanolide from Physalis angulata, perturbs the cell cycle and induces cell death by apoptosis in prostate cancer cells. Journal of Natural Products. 2013 Jan 25; 76(1): 2-7. 
1.    Fares J, Fares MY, Khachfe HH, Salhab HA, Fares Y. Molecular principles of metastasis: a hallmark of cancer revisited. Signal Ransduction and Targeted Therapy. 2020 Mar 12; 5(1): 28. 
6.    Dhupal M, Chowdhury D. Phytochemical-based nanomedicine for advanced cancer theranostics: Perspectives on clinical trials to clinical use. International Journal of Nanomedicine. 2020 Nov 19: 9125-57.
7.    Rapalli VK, Waghule T, Hans N, Mahmood A, Gorantla S, Dubey SK, Singhvi G. Insights of lyotropic liquid crystals in topical drug delivery for targeting various skin disorders. Journal of Molecular Liquids. 2020 Oct 1;  315: 113771. 
8.    Singhvi G, Banerjee S, Khosa A. Lyotropic liquid crystal nanoparticles: a novel improved lipidic drug delivery system. InOrganic materials as smart nanocarriers for drug delivery 2018 Jan 1: 471-517. 
9.    Nadpara NP, Thumar RV, Kalola VN, Patel PB. Quality by design (QBD): A complete review. Int J Pharm Sci Rev Res. 2012; 17(2): 20-8.
10.    Kumar VP, Gupta NV. A review on quality by design approach (QBD) for pharmaceuticals. Int. J. Drug Dev. Res. 2015; 7(1): 52-60.
11.    Yu LX, Amidon G, Khan MA, Hoag SW, Polli J, Raju GK, Woodcock J. Understanding pharmaceutical quality by design. The AAPS Journal. 2014 Jul; 16: 771-83. 
12.    Amra K, Momin M. Formulation evaluation of ketoconazole microemulsion‐loaded hydrogel with nigella oil as a penetration enhancer. Journal of Cosmetic Dermatology. 2019 Dec; 18(6): 1742-50.
13.    Kesharwani D, Paul SD, Paliwal R, Satapathy T. Development, QbD based optimization and in vitro characterization of Diacerein loaded nanostructured lipid carriers for topical applications. Journal of Radiation Research and Applied Sciences. 2023 Jun 1; 16(2): 100565.







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