Analytical Method Development: HPLC Method Development for API – V 2.0
SOP for High-Performance Liquid Chromatography (HPLC) Method Development for Active Pharmaceutical Ingredients
Department |
Analytical Method Development |
SOP No. |
SOP/AMD/067/2025 |
Supersedes |
SOP/AMD/067/2022 |
Page No. |
Page 1 of 14 |
Issue Date |
19/05/2025 |
Effective Date |
20/05/2025 |
Review Date |
19/05/2026 |
1. Purpose
This SOP outlines the standardized procedure for developing, optimizing, and validating High-Performance Liquid Chromatography (HPLC) methods for quantitative and qualitative analysis of Active Pharmaceutical
Ingredients (APIs) to ensure reliability, accuracy, and regulatory compliance.
2. Scope
This procedure applies to all method development and validation activities performed for APIs in the Analytical Method Development (AMD) laboratory using HPLC systems. It covers reversed-phase, ion-exchange, and normal-phase chromatographic techniques used for API purity, assay, and impurity profiling.
3. Responsibilities
- Analytical Chemist: Conducts literature review, selects method conditions, prepares samples and standards, performs HPLC runs, and documents data.
- Reviewer: Reviews chromatograms, verifies peak assignments, evaluates system suitability, and ensures data integrity.
- QA Officer: Verifies compliance with GMP, GLP, and ICH Q2(R1) standards.
- Head – AMD: Authorizes finalized and validated HPLC methods for further use in QC or regulatory submission.
4. Accountability
The Head of AMD is accountable for the overall execution, validation, and approval of the HPLC method developed for API analysis.
5. Procedure
5.1 Preliminary Assessment
- Conduct a literature review to gather information from:
- Pharmacopoeias (USP, IP, Ph. Eur.)
- Scientific journals
- Reference standards and existing methods
- Assess physicochemical properties of the API:
- pKa, solubility, UV absorbance maxima
- Log P, molecular weight
- Document findings in Annexure-1: Method Feasibility Assessment Sheet.
5.2 Selection of Chromatographic Conditions
- Column: Choose appropriate stationary phase (e.g., C18, C8, Phenyl).
- Mobile Phase: Begin with commonly used aqueous-organic combinations (Water:Acetonitrile or Water:Methanol) and adjust pH/buffer as required.
- Detection: Use UV at λmax of API or PDA scanning between 200–400 nm.
- Flow Rate: Typically 1.0 mL/min (optimize as needed).
- Injection Volume: Usually 10–20 µL.
- Log selected conditions in Annexure-2: Chromatographic Condition Record.
5.3 Standard and Sample Preparation
- Prepare primary standard stock solution using certified API reference substance.
- Prepare working standards by serial dilution.
- Prepare sample solution using appropriate solvent system; ensure clarity by filtration (0.45 µm).
- Record preparation details in Annexure-3: Solution Preparation Log.
5.4 Method Optimization
- Evaluate key parameters:
- Retention time and peak shape
- Theoretical plates (N)
- Resolution (Rs ≥ 2.0 for adjacent peaks)
- Tailing factor (Tf ≤ 2.0)
- Optimize by adjusting:
- pH of mobile phase (if ionizable compounds)
- Gradient elution program (if peak overlap)
- Column temperature (to improve selectivity)
- Summarize findings in Annexure-4: Optimization Summary.
5.5 System Suitability Criteria
- Perform 5 replicate injections of standard solution.
- Evaluate:
- % RSD of peak area (≤ 2.0%)
- Retention time reproducibility
- Plate count and resolution
- Record results in Annexure-5: System Suitability Checklist.
5.6 Method Validation
- Specificity: Inject blank, placebo, and known impurities to ensure no co-elution with API.
- Linearity: Prepare at least five concentrations (e.g., 50%, 75%, 100%, 125%, 150%); R² ≥ 0.999.
- Accuracy: Perform recovery studies at 80%, 100%, and 120% levels; acceptance 98–102%.
- Precision: Evaluate repeatability and intermediate precision (RSD ≤ 2.0%).
- LOD/LOQ: Determine using signal-to-noise ratio or standard deviation/slope method.
- Robustness: Vary flow rate, temperature, pH, and column brand.
- Compile results in Annexure-6: Validation Report.
6. Abbreviations
- HPLC: High-Performance Liquid Chromatography
- API: Active Pharmaceutical Ingredient
- PDA: Photodiode Array
- RSD: Relative Standard Deviation
- LOD: Limit of Detection
- LOQ: Limit of Quantification
- SOP: Standard Operating Procedure
7. Documents
- Method Feasibility Assessment Sheet – Annexure-1
- Chromatographic Condition Record – Annexure-2
- Solution Preparation Log – Annexure-3
- Optimization Summary – Annexure-4
- System Suitability Checklist – Annexure-5
- Validation Report – Annexure-6
8. References
- USP General Chapter <621> – Chromatography
- ICH Q2(R1) – Validation of Analytical Procedures
- Pharmacopoeia of India – HPLC Monographs
- FDA Guidance on Analytical Procedures and Methods Validation
9. SOP Version
Version: 2.0
10. Approval Section
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Approved By |
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11. Annexures
Annexure-1: Method Feasibility Assessment Sheet
API Name |
Solubility |
UV Max (nm) |
Preferred Mobile Phase |
Analyst |
Sample API |
Freely Soluble |
230 nm |
Water:ACN (60:40) |
Sunita Reddy |
Annexure-2: Chromatographic Condition Record
Column |
Mobile Phase |
Flow Rate |
Detection |
Temp |
C18, 250 × 4.6 mm, 5 µm |
Buffer:ACN (60:40) |
1.0 mL/min |
UV 230 nm |
30°C |
Annexure-3: Solution Preparation Log
Solution |
Concentration |
Solvent |
Filtered |
Prepared By |
Standard |
100 µg/mL |
Mobile Phase |
Yes (0.45 µm) |
Rajesh Kumar |
Annexure-4: Optimization Summary
Parameter |
Variation |
Observation |
Conclusion |
Mobile Phase Ratio |
60:40 vs 50:50 |
Better resolution at 60:40 |
Selected |
Annexure-5: System Suitability Checklist
Injection No. |
Retention Time |
Peak Area |
Tailing Factor |
Plate Count |
1 |
6.23 |
145637 |
1.10 |
7200 |
Annexure-6: Validation Report
Parameter |
Criteria |
Result |
Status |
Accuracy |
98–102% |
99.5% |
Pass |
Precision |
RSD ≤ 2.0% |
0.88% |
Pass |
Linearity |
R² ≥ 0.999 |
0.9994 |
Pass |
LOD |
S/N ≥ 3 |
Detected at 0.5 µg/mL |
Pass |
LOQ |
S/N ≥ 10 |
Validated at 1.5 µg/mL |
Pass |
Revision History:
Revision Date |
Revision No. |
Details |
Reason |
Approved By |
04/05/2025 |
2.0 |
Expanded validation and optimization protocol for API purity and assay |
Annual Review |
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