2018
DOI: 10.1016/j.actbio.2018.04.012
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An electrospun fiber reinforced scaffold promotes total meniscus regeneration in rabbit meniscectomy model

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Cited by 52 publications
(58 citation statements)
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“…As with other processing technologies, synthetic polymers are usually more affordable and more convenient to work with, allowing better control and reproducibility, whereas natural materials offer biocompatibility and biomimicry that are crucial for cellular growth and function . A growing number of studies report the utilization of dECM as the base material for the production of electrospun scaffolds for artificial tissue engineering . To allow a stable dECM electrospinning process, the dECM solution should be made spinnable, i.e., to possess certain viscoelastic properties and to denature the protein tertiary chain conformations .…”
Section: Decm Processing Approachesmentioning
confidence: 99%
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“…As with other processing technologies, synthetic polymers are usually more affordable and more convenient to work with, allowing better control and reproducibility, whereas natural materials offer biocompatibility and biomimicry that are crucial for cellular growth and function . A growing number of studies report the utilization of dECM as the base material for the production of electrospun scaffolds for artificial tissue engineering . To allow a stable dECM electrospinning process, the dECM solution should be made spinnable, i.e., to possess certain viscoelastic properties and to denature the protein tertiary chain conformations .…”
Section: Decm Processing Approachesmentioning
confidence: 99%
“…Our group has recently suggested an alternative approach to manipulate the microstructural properties of cardiac dECM materials using electrospinning technology . Compared to the production of a native dECM patch, this technology allows better control over construct properties and can be effectively upscaled.…”
Section: Applications Of Processed Decm‐based Materialsmentioning
confidence: 99%
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“…Por isto, alguns estudos escolhem materiais naturais (38,42) como o colágeno(48) e a seda (18,22). Um dos métodos para a produção de scaffold de matriz extracelular é o processo de descelularização de meniscos (1,19,25,27,29,44,58). Estes dispositivos irão oferecer uma estrutura regenerada similar ao tecido natural(25) mas, com propriedades mecânicas limitadas (9).…”
Section: Metodologiaunclassified
“…Estes dispositivos irão oferecer uma estrutura regenerada similar ao tecido natural(25) mas, com propriedades mecânicas limitadas (9). Para contornar este problema, adição de materiais ou de outros métodos de processamentos podem ser empregadas ao menisco descelularizado (1,58).…”
Section: Metodologiaunclassified