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ASTM F 2902 : 2024

Current

Current

The latest, up-to-date edition.

Standard Guide for Assessment of Absorbable Polymeric Implants

Available format(s)

Hardcopy , PDF

Language(s)

English

Published date

15-10-2024

€61.92
Excluding VAT

Committee
F 04
DocumentType
Guide
Pages
17
PublisherName
American Society for Testing and Materials
Status
Current
Supersedes

1.1This guide describes general guidelines for the chemical, physical, mechanical, biocompatibility, and preclinical assessments of implantable synthetic polymeric absorbable devices. This guide also describes evaluation methods that are potentially useful and should be considered when assessing absorbable implants or implant components.

1.2The described evaluations may assist a manufacturer in establishing the safety and effectiveness of an absorbable implant device. However, these polymeric material-oriented guidelines do not necessarily reflect the total needs for any particular implant application (for example, orthopedic, cardiovascular, sutures, and dermal fillers), which may require additional and potentially essential application-specific evaluations.

1.3This guide is intended to cover all forms of absorbable polymeric components and devices, including solid (for example, injection-molded) and porous (for example, fibrous) forms. This guide is also intended to cover devices fabricated from amorphous and/or semicrystalline absorbable polymer systems.

1.4This guide has been generated with principal emphasis on the evaluation of devices formed from synthetic polymers that degrade in vivo primarily through hydrolysis (for example, α-hydroxy-polyesters). Evaluation methods suggested herein may or may not be applicable to implants formed from materials that, upon implantation, are substantially degraded through other mechanisms (for example, enzymatically induced degradation).

1.5This guide references and generally describes various means to assess absorbable materials, components, and devices. The user needs to refer to specific test methods for additional details. Additionally, some of the recommended test methods may require modification to address the properties of a particular device, construct, or application.

1.6Adherence to all aspects of these guidelines is not mandatory, in that assessments and tests listed within this guide are not necessarily relevant for all absorbable implant systems and applications.

1.7Absorbable polymers used as a matrix to control the in vivo release of bioactive agents (drugs, antimicrobials, and so forth) may be evaluated according to many of the methods described herein. However, additional test methods not covered by this guide will likely be needed to evaluate a bioactive agent’s composition, loading, release kinetics, safety, and efficacy, as well as its interaction with the degradants released from the absorbable polymers during the clinical use.

1.8Composites of absorbable polymers with ceramics and/or metals may be evaluated according to many of the methods described herein. However, additional test methods not covered by this guide will likely be needed to evaluate the composite’s other component(s).

1.9The values stated in SI units are to be regarded as standard. No other units of measurement are included in this standard.

1.10This 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, health, and environmental practices and determine the applicability of regulatory limitations prior to use.

1.11This international standard was developed in accordance with internationally recognized principles on standardization established in the Decision on Principles for the Development of International Standards, Guides and Recommendations issued by the World Trade Organization Technical Barriers to Trade (TBT) Committee.

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ASTM F 2150 : 2019 Standard Guide for Characterization and Testing of Biomaterial Scaffolds Used in Regenerative Medicine and Tissue-Engineered Medical Products
ASTM F 3160 : 2021 Standard Guide for Metallurgical Characterization of Absorbable Metallic Materials for Medical Implants
ASTM F 3510 : 2021 Standard Guide for Characterizing Fiber-Based Constructs for Tissue-Engineered Medical Products
ASTM F 2502 : 2024 Standard Specification and Test Methods for Absorbable Plates and Screws for Internal Fixation Implants
ASTM F 3384 : 2021 Standard Specification for Polydioxanone Polymer Resins for Surgical Implants
ASTM F 3142 : 2016 Standard Guide for Evaluation of <emph type="bdit">in vitro</emph> Release of Biomolecules from Biomaterials Scaffolds for TEMPs
ASTM F 2579 : 2018 Standard Specification for Amorphous Poly(lactide) and Poly(lactide-co-glycolide) Resins for Surgical Implants
ASTM F 1983 : 2023 Standard Practice for Assessment of Selected Tissue Effects of Absorbable Biomaterials for Implant Applications
ASTM F 3036 : 2021 Standard Guide for Testing Absorbable Stents
ASTM F 1925 : 2022 Standard Specification for Semi-Crystalline Poly(lactide) Polymer and Copolymer Resins for Surgical Implants

ASTM F 1925 : 2024 Standard Specification for Semi-Crystalline Poly(lactide) Polymer and Copolymer Resins for Surgical Implants
ASTM F 2313 : 2024 Standard Specification for Poly(glycolide) and Poly(glycolide-co-lactide) Resins for Surgical Implants with Mole Fractions Greater Than or Equal to 70 % Glycolide
ASTM F 1635 : 2016 Standard Test Method for <emph type="bdit">in vitro</emph> Degradation Testing of Hydrolytically Degradable Polymer Resins and Fabricated Forms for Surgical Implants
ASTM E 96/E96M : 2024 Standard Test Methods for Gravimetric Determination of Water Vapor Transmission Rate of Materials
ASTM E 96/E96M : 2024 : REV A Standard Test Methods for Gravimetric Determination of Water Vapor Transmission Rate of Materials
ASTM F 2579 : 2024 Standard Specification for Amorphous Poly(lactide) and Poly(lactide-co-glycolide) Resins for Surgical Implants
ASTM F 1635 : 2024 Standard Test Method for  <emph type="ital">in vitro</emph> Degradation Testing of Hydrolytically Degradable Polymer Resins and Fabricated Forms for Surgical Implants

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