1. bookVolume 35 (2022): Issue 4 (December 2022)
Journal Details
License
Format
Journal
eISSN
2300-6676
First Published
30 May 2014
Publication timeframe
4 times per year
Languages
English
Open Access

A comparative review on High-Performance Liquid Chromatography (HPLC), Ultra Performance Liquid Chromatography (UPLC) & High-Performance Thin Layer Chromatography (HPTLC) with current updates

Published Online: 09 Feb 2023
Volume & Issue: Volume 35 (2022) - Issue 4 (December 2022)
Page range: 224 - 228
Received: 27 Sep 2022
Accepted: 09 Nov 2022
Journal Details
License
Format
Journal
eISSN
2300-6676
First Published
30 May 2014
Publication timeframe
4 times per year
Languages
English

1. Rogatsky E. 2D or not 2D. Column-switching techniques, multidimensional separations and chromatography: Approaches and definitions. J Chromat Separation Techniq. 2012;03:08.10.4172/2157-7064.1000159 Search in Google Scholar

2. GmbH KWG. HPLC Principles and parameters. KNAUER. [https://www.knauer.net/en/Systems-Solutions/Analytical-HPLC-UHPLC/HPLC-Basics-principles-and-parameters] (access: 26.09.2022) Search in Google Scholar

3. Basharat R, Kotra V, Loong LY, Mathews A, Kanakal MM, Devi CBP. A Mini-review on ultra performance liquid chromatography. Orient J Chem. 2021;37(4):847-57.10.13005/ojc/370411 Search in Google Scholar

4. HPTLC instrumentation: an overview. PharmaTutor. [https://www.pharmatutor.org/articles/high-performance-thin-layer-chromatography-hptlc-instrumentation-overview] (access: 22.09.2022) Search in Google Scholar

5. Chawla G, Ranjan C. Principle, Instrumentation, and applications of UPLC: A novel technique of liquid chromatography. Open Chem J. 2016;3(1).10.2174/1874842201603010001 Search in Google Scholar

6. Srivastava M. An Overview of HPTLC: A modern analytical technique with excellent potential for automation, optimization, hyphenation, and multidimensional applications. High-Performance Thin-Layer Chromatography (HPTLC). 2011:3-24.10.1007/978-3-642-14025-9_1 Search in Google Scholar

7. Mulubwa M, Rheeders MLD, Grobler A, Viljoen M. Development and validation of High Performance Liquid Chromatography Tandem Mass Spectrometry (HPLC-MS/MS) Method for determination of tenofovir in small volumes of human plasma. J Chromatogr Sep Tech. 2016;06(7).10.4172/2157-7064.1000300 Search in Google Scholar

8. Patel R, Patel M, Kashyap B, Patel B. Development and validation of HPTLC method for estimation of carbamazepine in formulations and its in vitro release study. Chromatogr Res Int. 2011; Article ID 684369.10.4061/2011/684369 Search in Google Scholar

9. Patil M. Chrominfo: Advantages and disadvantages of gas chromatography. Chrominfo. 2021. [https://chrominfo.blogspot.com/2019/03/advantages-and-disadvantages-of-gas.html] (access: 22.09.2022) Search in Google Scholar

10. Swartz M, Krull I. Developing and validating stability-indicating methods. LC-GC North America. 2005;23:586-93. Search in Google Scholar

11. Hemalatha K, Kistayya C, Nizamuddhin ND, Dastiagiriamma D. Simultaneous estimation of new analytical method development and validation of glecaprevir and pibrentasvir by High Performance Liquid Chromatography. Innov Int J Med Pharm Sci. 2018;3(Suppl.1): 5-8. Search in Google Scholar

12. Fekete S, Schappler J, Veuthey JL, Guillarme D. Current and future trends in UHPLC. TrAC Trends in Analytical Chemistry. 2014;63:2-13.10.1016/j.trac.2014.08.007 Search in Google Scholar

13. Chasset T, Häbe TT, Ristivojevic P, Morlock GE. Profiling and classification of French propolis by combined multivariate data analysis of planar chromatograms and scanning direct analysis in real time mass spectra. J Chromatogr A. 2016;1465:197-204.10.1016/j.chroma.2016.08.04527599799 Search in Google Scholar

Recommended articles from Trend MD