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Analytical Method Development: SOP for Plume Geometry Analysis Method Development – V 2.0

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Analytical Method Development: SOP for Plume Geometry Analysis Method Development – V 2.0

Standard Operating Procedure for Plume Geometry Analysis Method in Analytical Method Development


Department Analytical Method Development
SOP No. SOP/AMD/245/2025
Supersedes SOP/AMD/245/2022
Page No. Page 1 of 13
Issue Date 21/05/2025
Effective Date 23/05/2025
Review Date 21/05/2026

1. Purpose

To define the procedure for developing and executing a validated method for plume geometry analysis of nasal spray pumps and metered-dose inhalers (MDIs) using visual

capture and image processing techniques, ensuring reproducibility and conformance to design specifications.

2. Scope

This SOP applies to all nasal and inhalation products tested by the Analytical Method Development (AMD) team during method development, device validation, and stability studies.

3. Responsibilities

  • Analytical Scientist: Responsible for method setup, execution, data acquisition, and interpretation.
  • QC Analyst: Assists with sample handling, equipment preparation, and records management.
  • QA Executive: Reviews and approves plume geometry validation and testing records.
See also  Analytical Method Development: SOP for Establishing System Suitability Criteria - V 2.0

4. Accountability

The Head of Analytical Method Development is accountable for the scientific integrity, reproducibility, and regulatory compliance of plume geometry testing.

5. Procedure

5.1 Equipment Setup

  1. Use a high-speed digital camera with frame rate ≥ 1000 fps.
  2. Set up a vertical clamping system for consistent spray orientation.
  3. Background: Use matte black screen with alignment grid.
  4. Lighting: Use diffused white light from both sides to eliminate shadows and glare.

5.2 Sample Preparation

  1. Select 3 units from the production or development batch.
  2. Shake each device for 10 seconds before testing.
  3. Prime each unit with 3 actuations into waste container.

5.3 Image Capture and Plume Visualization

  1. Position nozzle 3 cm from the camera.
  2. Actuate spray and capture high-speed video of plume for 1 second.
  3. Save video frames for image analysis using validated software.

5.4 Image Analysis and Parameter Measurement

  1. Use image analysis software to determine:
    • Plume angle: Measured between outer edges of spray
    • Spray width: Lateral spread at defined distance (typically 3 cm)
    • Symmetry: Comparison of left and right halves of the plume
    • Shape: Conical or oval categorization
See also  Analytical Method Development: Sample Handling in Microbiological Testing - V 2.0

5.5 Acceptance Criteria

  1. Plume angle: Typically between 30° to 70° (depending on device specification).
  2. Symmetry index: ≥ 0.85 (ratio of symmetrical plume halves).
  3. Shape: Should resemble a uniform cone or consistent oval shape.

5.6 Method Validation

  1. Repeatability: Triplicate sprays from each of 3 units; calculate % RSD for plume angle (≤ 10%).
  2. Robustness: Evaluate effect of ambient conditions (e.g., 15–30°C).
  3. Intermediate precision: Test performed by two analysts on separate days.

5.7 Documentation

  1. Maintain original images, angle measurements, analyst comments, and raw data sheets.
  2. Attach the validated image report to batch release documents or development files.

6. Abbreviations

  • MDI: Metered Dose Inhaler
  • RSD: Relative Standard Deviation
  • QA: Quality Assurance
  • AMD: Analytical Method Development

7. Documents

  1. Plume Geometry Data Log – Annexure-1
  2. Image Capture Log Sheet – Annexure-2
  3. Plume Geometry Validation Report – Annexure-3

8. References

  • FDA Guidance: Nasal Spray and Inhalation Product Testing
  • USP <601>: Aerosols, Nasal Sprays, and MDIs
  • ICH Q2(R1): Validation of Analytical Procedures

9. SOP Version

Version: 2.0

10. Approval Section

Prepared By Checked By Approved By
Signature
Date
Name Tanvi Bhatt Kunal Joshi Sunita Reddy
Designation Analytical Scientist QA Reviewer Head – AMD
Department Analytical Method Development QA Analytical Method Development

11. Annexures

Annexure-1: Plume Geometry Data Log

Device ID Plume Angle (°) Spray Width (cm) Symmetry Index Shape Status
NSP-001 52 3.8 0.91 Conical Pass

Annexure-2: Image Capture Log Sheet

Date Camera ID Tested By Image Ref. No. Ambient Temp (°C)
20/05/2025 CAM-HD-04 Tanvi Bhatt IMG-PG-20250520-01 24.3

Annexure-3: Plume Geometry Validation Report

Method for plume geometry analysis validated for nasal spray NSP-25. Spray angle average: 52°, symmetry index 0.91, % RSD for triplicates: 3.8%. Method acceptable for routine testing and regulatory filing.

Revision History:

Revision Date Revision No. Details Reason Approved By
21/05/2025 2.0 Added symmetry index and image processing tool criteria Annual Review and Validation Enhancement Sunita Reddy
05/04/2022 1.0 Initial Release New SOP QA Head
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Standard Operating Procedures V 1.0

  • Aerosols
  • Analytical Method Development
  • Bioequivalence Bioavailability Study
  • Capsule Formulation
  • Clinical Studies
  • Creams
  • Data Integrity
  • Dental Dosage Forms
  • Drug Discovery
  • Environment, Health and Safety
  • Formulation Development
  • Gels
  • Good Distribution Practice
  • Good Warehousing Practices
  • In-Process Control
  • Injectables
  • Liquid Orals
  • Liposome and Emulsion Formulations
  • Lotions
  • Lyophilized Products
  • Maintenance Dept.
  • Medical Devices
  • Metered-Dose Inhaler
  • Microbiology Testing
  • Nanoparticle Formulation
  • Nasal Spray Formulations
  • Nebulizers
  • Ocular (Eye) Dosage Forms
  • Ointments
  • Otic (Ear) Dosage Forms
  • Pharmacovigilance
  • Powder & Granules
  • Purchase Departments
  • Quality Assurance
  • Quality Control
  • Raw Material Stores
  • Regulatory Affairs
  • Tablet Manufacturing
  • Rectal Dosage Forms
  • Transdermal Patches
  • Vaginal Dosage Forms
  • Validations and Qualifications

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NEW! Revised SOPs – V 2.0

  • Aerosols V 2.0
  • Analytical Method Development V 2.0
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  • BA-BE Studies V 2.0
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  • Injectables V 2.0
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