ISSN

0974-4150 (Online)
0974-4169 (Print)


Author(s): Badiginchala Navya Sai, Hindustan Abdul Ahad, Haranath Chinthaginjala, Bake Meharajunnisa, Siriguppa Dheeraj, Mallem Venkata Barath

Email(s): navyasai88@gmail.com

DOI: 10.52711/0974-4150.2023.00032   

Address: Badiginchala Navya Sai1*, Hindustan Abdul Ahad2, Haranath Chinthaginjala1, Bake Meharajunnisa1, Siriguppa Dheeraj1, Mallem Venkata Barath2
1Department of Pharmaceutics, Raghavendra Institute of Pharmaceutical Education and Research (RIPER)-Autonomous, Ananthapuramu-515001, AP, India.
2Department of Industrial Pharmacy, Raghavendra Institute of Pharmaceutical Education and Research (RIPER)-Autonomous, Ananthapuramu-515001, AP, India.
*Corresponding Author

Published In:   Volume - 16,      Issue - 3,     Year - 2023


ABSTRACT:
The goal of the current work was to explore the human organic cation uptake transporter and its critical function in biological transportation. The hOCT is extensively articulated in the liver and has been found to have a broad range of substrate selectivity, which is encoded by the SLC22A1 gene. OCT1 promotes molecular diffusion, enabling nutrients to enter the cell. OCT1 can aid in the absorption of drugs used to treat illnesses like cancer, according to recent research. Functionally impaired OCT1, whose appearance levels are associated with responses to a variety of medications, is the root cause of drug resistance. One of the important pharmacological targets employed in pharmacogenomic studies has recently been proposed as OCT1. The entire OCT1 gene contains a few single nucleotide polymorphisms. Also unknown are the specific changes or interactions with other proteins required for OCT1 to recognize a range of ligands. The authors presented the most recent OCT1 findings in this review to stimulate further investigation into this crucial uptake transporter.


Cite this article:
Badiginchala Navya Sai, Hindustan Abdul Ahad, Haranath Chinthaginjala, Bake Meharajunnisa, Siriguppa Dheeraj, Mallem Venkata Barath. Human Organic Cation Transporter Use and Drug Target Responses. Asian Journal of Research in Chemistry 2023; 16(3):205-0. doi: 10.52711/0974-4150.2023.00032

Cite(Electronic):
Badiginchala Navya Sai, Hindustan Abdul Ahad, Haranath Chinthaginjala, Bake Meharajunnisa, Siriguppa Dheeraj, Mallem Venkata Barath. Human Organic Cation Transporter Use and Drug Target Responses. Asian Journal of Research in Chemistry 2023; 16(3):205-0. doi: 10.52711/0974-4150.2023.00032   Available on: https://ajrconline.org/AbstractView.aspx?PID=2023-16-3-2


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