Author(s):
Rahul Kadiyan, Sheenu Gautam, Bhumika Kumar, Pravat Kumar Sahoo
Email(s):
rahulkadiyan73@gmail.com , bhumika201993@gmail.com
DOI:
10.52711/0974-360X.2024.00477
Address:
Rahul Kadiyan1, Sheenu Gautam2, Bhumika Kumar3*, Pravat Kumar Sahoo1
1Delhi Pharmaceutical Sciences and Research University, Sec-3, M.B. Road, Pushp Vihar, New Delhi 110017.
2Indian Pharmacopoeia Commission, Ministry of Health and Family Welfare, Govt. of India Sector-23, Raj Nagar, Ghaziabad - 201 002.
3School of Pharmacy, Sharda University, 16, Knowledge Park III, Greater Noida, Uttar Pradesh 201310.
4Delhi Pharmaceutical Sciences and Research University, Sec-3, M.B. Road, Pushp Vihar, New Delhi 110017.
*Corresponding Author
Published In:
Volume - 17,
Issue - 7,
Year - 2024
ABSTRACT:
Methotrexate is a folic acid inhibitor that works by inhibiting the enzyme dihydrofolate reductase and naringenin is an active phytochemical compound found in citrus fruits as a glycoside conjugate and has a number of therapeutic attributes, including inhibitory and anti-inflammatory effect on chemokine production, which is linked to the pathophysiology of psoriasis. The present investigation provides a simple, efficient, and predictable reverse phase high performance liquid chromatography (RP-HPLC) technique for estimating methotrexate and naringenin in pharmaceutical dose form. Inertsil ODS-3 (15 cm × 4.6 mm, 5µm) was the stationary phase, phosphate buffer pH 6.0 was the mobile phase A and acetonitrile was used as mobile phase B. The flow rate of the gradient was 1.0mL/min, and the eluents were detected through a UV detector at 302 nm. Methotrexate and naringenin retention times were reported to be 6.980 and 21.317 minutes, respectively. The devised technique was verified in accordance with the ICH guidelines Q2 (R1) was determined to be linear with a range of 50–150 ppm for methotrexate and 100-300 ppm for naringenin. The devised approach was effectively employed for methotrexate and naringenin testing in a combination dose form.
Cite this article:
Rahul Kadiyan, Sheenu Gautam, Bhumika Kumar, Pravat Kumar Sahoo. Research Journal of Pharmacy and Technology.2024; 17(7):3050-4. doi: 10.52711/0974-360X.2024.00477
Cite(Electronic):
Rahul Kadiyan, Sheenu Gautam, Bhumika Kumar, Pravat Kumar Sahoo. Research Journal of Pharmacy and Technology.2024; 17(7):3050-4. doi: 10.52711/0974-360X.2024.00477 Available on: https://www.rjptonline.org/AbstractView.aspx?PID=2024-17-7-10
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