Related Experiment Video
Updated: Apr 24, 2026

Isolation and Genome Analysis of Single Virions using 'Single Virus Genomics'
Published on: May 26, 2013
Use of MMV as a Single Worst-Case Model Virus in Viral Filter Validation Studies
Eva Gefroh1, Houman Dehghani2, Megan McClure2
1Purification Process Development, Amgen Inc., Seattle, WA; and Biosafety Development, Amgen Inc., Seattle, WA gefrohe@amgen.com.
Abstract:
Typical platform processes for biopharmaceutical products derived from animal cell lines include a parvovirus filtration unit operation to provide viral safety assurance of the drug product. The industry has adopted this platform unit operation and gained a wider understanding of its performance attributes, leading to the possibility of streamlined approaches to virus clearance validation. Here, the concept of virus validation on a parvovirus-grade filter with a single worst-case model virus is presented. Several lines of evidence, including published literature and Amgen's own data, support the use of a parvovirus, such as mouse minute virus (MMV), as a worst-case model virus to assess virus removal by parvovirus filters. The evidence presented includes a discussion of the design and manufacture of virus filters with a size exclusion mechanism for removal. Next, the characteristics of different model viruses are compared and a risk assessment on the selection of the relevant model viruses for clearance studies is presented. Finally, a comprehensive summary of literature and Amgen data is provided, comparing the clearance of larger viruses against MMV. Together, this analysis provides a strong scientific rationale for the use of a single, worst-case model virus for assessing virus removal by parvovirus filters, which will ultimately allow for more efficient and streamlined viral clearance study designs.
Lay Abstract:
Demonstrating the virus clearance capability of a purification process is an important aspect of biopharmaceutical process development. A key component of the viral safety of the process is the inclusion of a parvovirus-grade filter as an effective and robust virus removal step. Traditional methodologies for viral clearance studies have been based on a conservative, data-intensive approach, but recent trends in the field of virus clearance and process development show evolution towards streamlined and more efficient study designs that are based on understanding the mechanism of viral clearance by downstream unit operations. The publication of scientific datasets and awareness of the underlying mechanisms involved with these unit operations have fueled this trend. Here, the concept of virus validation on a parvovirus-grade filter using a parvovirus as single, worst-case model virus is presented. Multiple lines of evidence are provided to support this proposal, including a review of published literature and Amgen historical data. The adoption of this approach provides benefits in terms of cost savings for executing viral clearance studies, but it also simplifies the necessary dataset and focuses on only supplying value-added information to demonstrate the viral safety of the process.
Insights
This study proposes using a single, worst-case model virus, like mouse minute virus (MMV), for parvovirus filter validation. This streamlined approach enhances viral clearance study efficiency and reduces costs in biopharmaceutical development.
Area of Science:
- Biopharmaceutical Process Development
- Viral Safety
- Filtration Technology
Background:
- Parvovirus filtration is critical for viral safety in biopharmaceutical manufacturing.
- Traditional viral clearance studies are data-intensive and conservative.
- Evolving trends favor streamlined, mechanism-based validation approaches.
Purpose of the Study:
- To present a concept for virus validation using a single, worst-case model parvovirus for parvovirus-grade filters.
- To provide a scientific rationale for using a single model virus in viral clearance studies.
- To support more efficient and streamlined viral clearance study designs.
Main Methods:
- Review of published literature on parvovirus filters and model viruses.
- Analysis of historical data from Amgen on virus clearance.
- Risk assessment for selecting relevant model viruses for clearance studies.
- Comparison of clearance capabilities for different viruses against mouse minute virus (MMV).
Main Results:
- Mouse minute virus (MMV) is supported as a worst-case model virus for parvovirus filters.
- Parvovirus filters utilize size exclusion mechanisms for virus removal.
- Data indicates MMV can effectively represent the clearance of larger viruses.
Conclusions:
- A single, worst-case model virus approach simplifies viral clearance studies.
- This streamlined validation enhances efficiency and reduces costs.
- The proposed approach strengthens the scientific basis for viral safety assurance.

