Decellularized tissue-engineered heart valves (DTEHVs) showed remarkable results in translational animal models, leading to recellularization within hours after implantation. This is crucial to enable tissue remodeling. To investigate if the presence of scaffold remnants before implantation is responsible for the fast recellularization of DTEHVs, an in vitro mesofluidic system was used. Human granulocyte and agranulocyte fractions were isolated, stained, brought back in suspension, and implemented in the system. Three different types of biomaterials were exposed to the circulating blood cells, consisting of decellularized tissue-engineered constructs (DTECs) with or without scaffold remnants or only bare scaffold. After 5 h of testing, the ...
In situ tissue engineering using bioresorbable material implants - or scaffolds - that harness the p...
In situ vascular tissue engineering aims to regenerate vessels “at the target site” using synthetic ...
There is a persistent and growing clinical need for readily-available substitutes for heart valves a...
Decellularized tissue-engineered heart valves (DTEHVs) showed remarkable results in translational an...
Heart valve diseases and blood vessel lesions are important causes of mortality and morbidity worldw...
BackgroundAutologous recellularization of decellularized heart valve scaffolds is a promising challe...
Data on in vitro engineered "off the shelf" matrices support the concept of endogenous cellular repo...
Heart valve tissue engineering based on decellularized xenogenic or allogenic starter matrices has s...
Recent studies on decellularized tissue engineered heart valves (DTEHVs) showed rapid host cell repo...
In situ tissue engineering using bioresorbable material implants - or scaffolds - that harness the p...
In situ vascular tissue engineering aims to regenerate vessels “at the target site” using synthetic ...
There is a persistent and growing clinical need for readily-available substitutes for heart valves a...
Decellularized tissue-engineered heart valves (DTEHVs) showed remarkable results in translational an...
Heart valve diseases and blood vessel lesions are important causes of mortality and morbidity worldw...
BackgroundAutologous recellularization of decellularized heart valve scaffolds is a promising challe...
Data on in vitro engineered "off the shelf" matrices support the concept of endogenous cellular repo...
Heart valve tissue engineering based on decellularized xenogenic or allogenic starter matrices has s...
Recent studies on decellularized tissue engineered heart valves (DTEHVs) showed rapid host cell repo...
In situ tissue engineering using bioresorbable material implants - or scaffolds - that harness the p...
In situ vascular tissue engineering aims to regenerate vessels “at the target site” using synthetic ...
There is a persistent and growing clinical need for readily-available substitutes for heart valves a...