Sabrina Maharani
Universitas Negeri Semarang

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Literature Review: Analysis and Validation of the Effectiveness of Antidiabetic Drugs in the Biological Matrix Using the HPLC (High Performance Liquid Chromatography) Method Syahwa Aulia Fernanda; Naila Tirsta Az-zahra; Teresa Savitri Setyoasih; Ghefira Najwa Akmila; Sekar Bekti Pertiwi; Sabrina Maharani
Al Makki Health Informatics Journal Vol. 3 No. 2 (2025): Al Makki Health Informatics Journal
Publisher : Al Makki Publisher

Show Abstract | Download Original | Original Source | Check in Google Scholar | DOI: 10.57185/t5763640

Abstract

High-Performance Liquid Chromatography (HPLC) is a widely used analytical method for the separation, identification, and quantification of compounds in complex biological matrices, such as plasma, serum, and urine. This article discusses the analysis and validation of the effectiveness of antidiabetic drugs using HPLC, focusing on sample preparation, column selection, mobile phase, and detectors used. Method validation is performed to ensure parameters such as specificity, linearity, precision, accuracy, limit of detection (LOD), and limit of quantification (LOQ) are met. Literature study from 18 journals showed that HPLC is a sensitive, specific, and efficient method for antidiabetic drug analysis. Preparation techniques such as protein precipitation and solid-phase extraction provide optimal results in minimizing biological matrix interferences. In addition, the Photodiode Array (PDA) detector proved superior in terms of sensitivity and analyzability at low concentrations compared to other detectors. By fulfilling all validation parameters, HPLC can be relied upon as a primary method for the analysis of antidiabetic drugs in biological matrices.
A Review Stability Studies of Tablet Dosage Forms and Their Influence on Physicochemical Characteristics: A Review Weka Nabil Ubhayahita Sambarana; Aulya Elsa Safitri; Hasna Aulia Qisthi; Faradila Elsa Anggraeni; Juanita Mulia Mahbubah; Salzha Noor Fajrina Febrianti; Delta Happy Friantina; Sabrina Maharani
Indonesian Journal of Global Health Research Vol. 8 No. 2 (2026): Indonesian Journal of Global Health Research
Publisher : GLOBAL HEALTH SCIENCE GROUP

Show Abstract | Download Original | Original Source | Check in Google Scholar | DOI: 10.37287/ijghr.v8i2.1811

Abstract

Tablet dosage forms generally exhibit better stability compared to liquid formulations; however, stability testing remains essential to evaluate both physical and chemical parameters. This study aimed to compare the stability of tablet formulations under various testing conditions in terms of their physicochemical properties. This study aimed to compare the stability of tablet formulations under various testing conditions in terms of their physical and chemical properties. This study employed a literature review approach. Scientific articles were retrieved from Scopus, ScienceDirect, PubMed, MDPI, Web of Science, and Google Scholar, as well as national databases such as GARUDA and SINTA-indexed journals database using the used keywords such as “tablet,” “formulation,” “optimization,” “stability evaluation,” and “stability studies.” The search covered publications from 2016 to 2026. A total of 2,201 articles were initially identified and then screened based on their relevance to the research topic. The main inclusion criterion was studies focusing on the stability of tablet dosage forms, particularly those evaluating both physical stability (such as hardness, friability, and disintegration time) and chemical stability (including active ingredient content and degradation). Based on these criteria, 8 relevant articles were selected and further analyzed to evaluate the physicochemical stability of tablet formulations. The findings indicate that several tablet formulations experienced deterioration in physical and chemical parameters, including changes in hardness, disintegration time, and decreased active ingredient content. These alterations were primarily associated with changes in excipient properties and interactions with environmental factors such as light exposure and moisture. Furthermore, inappropriate storage conditions contributed to the instability of the formulations. The stability of tablet dosage forms is therefore influenced by both formulation factors and storage conditions. The application of drug–excipient compatibility studies (DECS) and crystallo-co-agglomeration techniques during the formulation stage, along with proper control of temperature and humidity and the use of suitable packaging such as aluminium blisters and silica gel are crucial to maintaining tablet stability during storage.