F04.45 - Adventitious Agents Safety
Adventitious Agents Safety
General Information
SCOPE
1.1 This guide is intended as a resource for individuals and organizations involved in the production, delivery, and regulation of tissue engineered medical products (TEMPs). The safety from contamination by potentially infectious adventitious agents is important in the development of all TEMPs as well as their components. This guide addresses how to assess safety risks associated with adventitious agents and their byproducts. These agents currently include bacteria, fungi, mycoplasma, viruses, endotoxins, transmissible spongiform encephalopathies (TSEs), and parasitic organisms. This guide does not address TEMPs with live animal cells, tissues or organs, or human cells, including stem cells, grown on any animal feeder cells. Also excluded is patient follow-up testing.
1.2 This guide does not apply to any medical products of human origin regulated by the U.S. Food and Drug Administration under 21 CFR Parts 16 and 1270 and 21 CFR Parts 207, 807 and 1271. This guide does apply to cellular therapies regulated under the PHS (Public Health Service) act.
1.3 This standard does not purport to address all of the safety concerns, if any, associated with its use. It is the responsibility of the user of this standard to establish appropriate safety and health practices and to determine the applicability of regulatory limitations prior to use.
- Guide9 pagesEnglish language
SIGNIFICANCE AND USE
TEMPs may be composed of biological products (for example, human cells, organs, tissues, derivatives, and processed biologics), biomaterials (for example, substrates and scaffolds composed of polymers or collagen), and biomolecules (for example, recombinant proteins, alginates, and hyaluronates) (see Terminology F2312). Those TEMPs that contain human viable cells, organs, or tissues differ in terms of adventitious agent safety from other TEMPs because of the need to preserve viability of the organ, tissue, or cellular components. The need for preservation of viability limits processing options for the reduction or elimination of adventitious agents. Examples of TEMPs are listed in Classification F2211.
To ensure production and use of TEMPs with minimal risks associated with microorganisms and other adventitious agents, a multi-tiered approach is required. Donor testing, as well as testing of components and raw materials by sufficiently sensitive assays that are state of the art is usually necessary. Compliance with good manufacturing practices (GMPs) and good tissue practices (GTPs), where applicable, is required (21 CFR 210, 211, 820, 1270, and 1271). Although some of the components of the TEMPs may be processed to remove potential microbiological contaminants, viable tissues and cellular components are generally unable to withstand rigorous processing without losing functionality. For those TEMPs containing tissues or cells for which banking is not possible, even greater reliance on donor screening, component testing, and manufacturing controls is required. When more upfront testing is possible, there is generally greater confidence in the safety of the final product. Process validation can enhance confidence in the ability of the TEMPs' producer to minimize risks from adventitious agents.
Throughout this guide, the reader is referred to other documents that may provide specific information that can be applied in the manufacture and testing of TEMPs. Although ...
SCOPE
1.1 This guide is intended as a resource for individuals and organizations involved in the production, delivery, and regulation of tissue engineered medical products (TEMPs). The safety from contamination by potentially infectious adventitious agents is important in the development of all TEMPs as well as their components. This guide addresses how to assess safety risks associated with adventitious agents and their byproducts. These agents currently include bacteria, fungi, mycoplasma, viruses, endotoxins, transmissible spongiform encephalopathies (TSEs), and parasitic organisms. This guide does not address TEMPs with live animal cells, tissues or organs, or human cells, including stem cells, grown on any animal feeder cells. Also excluded is patient follow-up testing.
1.2 This guide does not apply to any medical products of human origin regulated by the U.S. Food and Drug Administration under 21 CFR Parts 16 and 1270 and 21 CFR Parts 207, 807 and 1271. This guide does apply to cellular therapies regulated under the PHS (Public Health Service) act.
1.3 The values stated in SI units are to be regarded as standard. No other units of measurement are included in this standard.
1.4 This standard does not purport to address all of the safety concerns, if any, associated with its use. It is the responsibility of the user of this standard to establish appropriate safety and health practices and to determine the applicability of regulatory limitations prior to use.
WITHDRAWN RATIONALE
This guide was intended as a resource for individuals and organizations involved in the production, delivery, and regulation of tissue engineered medical products (TEMPs).
Formerly under the jurisdiction of Committee F04 on Medical and Surgical Materials and Devices, this guide was withdrawn in January 2020 in accordance with section 10.6.3 of the Regulations Governing ASTM Technical Committees, which requires that standards shall be upd...
- Guide9 pagesEnglish language
Frequently Asked Questions
F04.45 is a Technical Committee within ASTM International. It is named "Adventitious Agents Safety". This committee has published 2 standards.
F04.45 develops ASTM standards in the area of Information technology. Currently, there are 2 published standards from this technical committee.
ASTM is a standardization organization that develops and publishes standards to support industry, commerce, and regulatory requirements.
A Technical Committee (TC) in ASTM is a group of experts responsible for developing international standards in a specific technical area. TCs are composed of national member body delegates and work through consensus to create standards that meet global industry needs. Each TC may have subcommittees (SCs) and working groups (WGs) for specialized topics.