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  • Frontiers | Specifications for Innovative, Enabling Biomaterials Based . . .
    We cannot always hide behind statements that our biomaterials are safe because they pass industry-standard biological safety tests when we do not have clear evidence of the potential biocompatibility pathways There are no specifications for silicone-based biomaterials that are based on biocompatibility pathways
  • A review on nanoparticles: characteristics, synthesis . . . - Frontiers
    Cutting-edge properties of NPs such as; nature, biocompatibility, anti-inflammatory and antibacterial activity, effective drug delivery, bioactivity, bioavailability, tumor targeting, and bio-absorption have led to a growth in the biotechnological, and applied microbiological applications of NPs
  • Nanocellulose: From Fundamentals to Advanced Applications
    Owing to its nanoscale, nanocellulose exhibits various advantageous features than the bulk material, encompassing nanoscale effect, biocompatibility, biodegradability, high specific surface area, high crystallinity, purity, amphiphilic nature, surface chemical reactivity, barrier properties, high mechanical strength, green and non-toxic (Chen
  • Resorbable conductive materials for optimally interfacing . . . - Frontiers
    Their biocompatibility, non-immunogenicity, and non-carcinogenic properties have been regularly pointed out Their mechanical properties can be tuned to match those of very soft (skin) to very hard (bone) tissues Their kinetics of degradation can be tuned from weeks to several years, for short- or long-term drug delivery or implant use
  • Surface Modification of Aliphatic Polyester to Enhance Biocompatibility
    Abstract Aliphatic polyester is a kind of biodegradable implantable polymers, which shows promise as scaffolds in tissue engineering, drug carrier, medical device, and so on To further improve its biocompatibility and cell affinity, many techniques have been used to modify the surface of the polyester In the present paper, the key factors of influencing biocompatibility of aliphatic
  • Challenge of material haemocompatibility for microfluidic . . . - Frontiers
    The definition of biocompatibility is the ability of a biomaterial to operate as intended without causing unwanted and inappropriate effects in the host (Williams, 2008) The focus of biocompatibility tests is generally in cell and tissue responses: viability, oxidative stress and enzymatic changes (Bélanger and Marois, 2001; Picone et al , 2019)
  • Blood-Contacting Biomaterials: In Vitro Evaluation of the . . . - Frontiers
    Abstract Hemocompatibility of blood-contacting biomaterials is one of the most important criteria for their successful in vivo applicability Thus, extensive in vitro analyses according to ISO 10993-4 are required prior to clinical applications In this review, we summarize essential aspects regarding the evaluation of the hemocompatibility of biomaterials and the required in vitro analyses
  • Stent thrombosis: a contemporary guide to definitions, risk factors . . .
    The latest generation of drug-eluting stents (DES), characterized by enhanced biocompatibility, thinner struts, and improved polymer coatings, has significantly reduced rates of stent thrombosis and myocardial infarction (69)
  • Smart biomaterials: as active immune modulators to shape . . . - Frontiers
    The direct translation of smart biomaterials specifically designed for active immune modulation is an emerging area, with few products having reached full market approval based explicitly on such mechanisms Silk fibroin nerve conduits: Silk fibroin has garnered attention for nerve regeneration due to its biocompatibility and tunable properties
  • Frontiers | First Food and Drug Administration Cleared Thin-Film . . .
    Biocompatibility is defined as the ability of a medical device or material to perform with an appropriate host response in a specific application (definition per ISO 10993:2018, Biological Evaluation of Medical Devices)





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