ASTM F2739-2008 Standard Guide for Quantitating Cell Viability Within Biomaterial Scaffolds《测定生物材料支架内细胞活性的标准指南》.pdf
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1、Designation: F 2739 08Standard Guide forQuantitating Cell Viability Within Biomaterial Scaffolds1This standard is issued under the fixed designation F 2739; the number immediately following the designation indicates the year oforiginal adoption or, in the case of revision, the year of last revision.
2、 A number in parentheses indicates the year of last reapproval. Asuperscript epsilon () indicates an editorial change since the last revision or reapproval.1. Scope1.1 This guide is a resource of cell viability test methodsthat can be used to assess the number and distribution of viableand non-viabl
3、e cells within porous and non-porous, hard or softbiomaterial scaffolds, such as those used in tissue engineeredmedical products (TEMPs).1.2 In addition to providing a compendium of availabletechniques, this guide describes materials specific interactionswith the cell assays that can interfere with
4、accurate cellviability analysis, and includes guidance on how to avoid,and/or account for, scaffold material/cell viability assay inter-actions.1.3 These methods can be used for 3-D scaffolds containingcells that have been cultured in vitro or for scaffold/cellconstructs that are retrieved after imp
5、lantation in living organ-isms.1.4 This guide does not propose acceptance criteria basedon the application of cell viability test methods.1.5 The values stated in SI units are to be regarded asstandard. No other units of measurement are included in thisstandard.1.6 This standard does not purport to
6、address all of thesafety concerns, if any, associated with its use. It is theresponsibility of the user of this standard to establish appro-priate safety and health practices and determine the applica-bility of regulatory limitations prior to use.2. Referenced Documents2.1 ASTM Standards:2F 748 Prac
7、tice for Selecting Generic Biological Test Meth-ods for Materials and DevicesF 2149 Test Method for Automated Analyses of CellstheElectrical Sensing Zone Method of Enumerating and Siz-ing Single Cell SuspensionsF 2315 Guide for Immobilization or Encapsulation of Liv-ing Cells or Tissue in Alginate G
8、els3. Terminology3.1 Definitions:3.1.1 non-viable cell, na cell not meeting one or more ofthe criteria for viability given in 3.1.2.3.1.2 viable cell, na cell capable of metabolic activity thatis structurally intact with a functioning cell membrane.4. Summary of Guide4.1 It is the intent of this gui
9、de to provide a compendium ofthe commonly used methods for quantitating the number anddistribution of viable and non-viable cells within, or on, abiomaterial scaffold, because cell viability is important param-eter of tissue engineering products used to regenerate or repairlost or diseased tissue. T
10、he methods can be applied to cellsresiding within an intact 3-D scaffold or matrix (that is,non-destructive methods) or to cells that have been removedfrom the scaffold or matrix (that is, destructive methods).4.2 Most of the methods originate from analysis of cellnumber on 2-D surfaces, but have be
11、en adapted for the analysisof cells within 3-D constructs that are typically used inregenerative medicine approaches. The mechanisms and thesensitivity of the assays are discussed. The limitations of theassays due to using standard curves generated from cells on2-D surfaces are described in this doc
12、ument. In addition, theways in which the biomaterial scaffold itself can affect theviability assays are described.4.3 This guide describes combinations of test methodswhich, when used together, will ensure the most accuratemeasure of the number and distribution of viable and non-viable cells.5. Sign
13、ificance and Use5.1 The number and distribution of viable and non-viablecells within, or on the surface of, a biomaterial scaffold is oneof several important characteristics that may determine in vivoproduct performance of cell/biomaterial constructs (see 5.7);therefore there is a need for standardi
14、zed test methods toquantitate cell viability.5.2 There are a variety of static and dynamic methods toseed cells on scaffolds, each with different cell seedingefficiencies. In general, static methods such as direct pipettingof cells on to scaffold surfaces have been shown to have lower1This guide is
15、under the jurisdiction of ASTM Committee F04 on Medical andSurgical Materials and Devices and is the direct responsibility of SubcommitteeF04.43 on Cells and Tissue Engineered Constructs for TEMPs.Current edition approved Aug. 1, 2008. Published September 2008.2For referenced ASTM standards, visit t
16、he ASTM website, www.astm.org, orcontact ASTM Customer Service at serviceastm.org. For Annual Book of ASTMStandards volume information, refer to the standards Document Summary page onthe ASTM website.1Copyright ASTM International, 100 Barr Harbor Drive, PO Box C700, West Conshohocken, PA 19428-2959,
17、 United States.cell seeding efficiencies than dynamic methods that push cellsinto the scaffold interior. Dynamic methods include: injectionof cells into the scaffold, cell seeding on biomaterials containedin spinner flasks or perfusion chambers, or seeding that isenhanced by the application of centr
18、ifugal forces. The methodsdescribed in this guide can assist in establishing cell seedingefficiencies as a function of seeding method and for standard-izing viable cell number within a given methodology.5.3 As described in Guide F 2315, thick scaffolds or scaf-folds highly loaded with cells lead to
19、diffusion limitationsduring culture or implantation that can result in cell death in thecenter of the construct, leaving only an outer rim of viablecells. Spatial variations of viable cells such as this may bequantitated using the tests within this guide. The effectivenessof the culturing method or
20、bioreactor conditions on theviability of the cells throughout the scaffold can also beevaluated with the methods described in this guide.5.4 These test methods can be used to quantitate cells onhard or soft 3-D biomaterials, such as ceramics and polymergels. The test methods also apply to cells seed
21、ed on porouscoatings.5.5 Test methods described in this guide may also be used todistinguish between proliferating and non-proliferating viablecells. Proliferating cells proceed through the DNA synthesis(S) phase and the mitosis (M) phase to produce two daughtercells. Non-proliferating viable cells
22、are in some phase of thecell cycle, but are not necessarily proceeding through the cellcycle culminating in proliferation.5.6 Viable cells may be under stress or undergoing apopto-sis. Assays for evaluating cell stress or apoptosis are notaddressed in this guide.5.7 While cell viability is an import
23、ant characteristic of aTEMP, the biological performance of a TEMP is dependant onadditional parameters. Additional tests to evaluate and confirmthe cell identity, protein expression, genetic profile, lineageprogression, extent of differentiation, activation status, andmorphology are recommended.5.8
24、Fundamental biocompatibility testing of the scaffoldmaterial itself as described in Practice F 748 should be com-pleted prior to using the biomaterial with cells.6. Selection of Test Methods6.1 Table 1 is a compendium of methods that can be used toquantitate cell viability on surfaces or in biomater
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