Decellularized xenogenic or allogenic heart valves have been used as starter matrix for tissue-engineering of valve replacements with (pre-)clinical promising results However, xenografts are associated with the risk of immunogenic reactions or disease transmission and availability of homografts is limited Alternatively, biodegradable synthetic materials have been used to successfully create tissue-engineered heart valves (TEHV) However, such TEHV are associated with substantial technological and logistical complexity and have not yet entered clinical use Here, decellularized TEHV, based on biodegradable synthetic materials and homologous cells, are introduced as an alternative starter matrix for guided tissue regeneration Decellularization ...
Tissue-engineered heart valves are proposed as novel viable replacements granting longer durability ...
The development of viable and functional tissue-engineered heart valves (TEHVs) is a challenge that,...
Tissue-engineered heart valves are proposed as novel viable replacements granting longer durability ...
Decellularized xenogenic or allogenic heart valves have been used as starter matrix for tissue-engin...
Heart valve tissue engineering based on decellularized xenogenic or allogenic starter matrices has s...
The tissue-engineered heart valve portends a new era in the field of valve replacement. Decellulariz...
The quest for the ideal heart valve replacement is ongoing as current substitutes, such as mechanica...
Richard Hopkins of Brown University presented a lecture on October 14, 2003 at 3:00 pm in the Suddat...
A tissue engineered heart valve (TEHV) could serve as a living, implantable valve replacement that w...
Heart valve tissue-guided regeneration aims to offer a functional and viable alternative to current ...
Heart valve replacement represents the most common surgical therapy for end-stage valvular heart dis...
Current research on valvular heart repair has focused on tissue-engineered heart valves (TEHV) becau...
Background: Heart valve disease is a clinically serious condition. The replacement of damaged valves...
Well documented shortcomings of current heart valve substitutes – biological and mechanical prosthes...
ich ysic lin, g, en m y h lity sin h th vie fo t va ate 1. INT The m disease biopro good s risk of b...
Tissue-engineered heart valves are proposed as novel viable replacements granting longer durability ...
The development of viable and functional tissue-engineered heart valves (TEHVs) is a challenge that,...
Tissue-engineered heart valves are proposed as novel viable replacements granting longer durability ...
Decellularized xenogenic or allogenic heart valves have been used as starter matrix for tissue-engin...
Heart valve tissue engineering based on decellularized xenogenic or allogenic starter matrices has s...
The tissue-engineered heart valve portends a new era in the field of valve replacement. Decellulariz...
The quest for the ideal heart valve replacement is ongoing as current substitutes, such as mechanica...
Richard Hopkins of Brown University presented a lecture on October 14, 2003 at 3:00 pm in the Suddat...
A tissue engineered heart valve (TEHV) could serve as a living, implantable valve replacement that w...
Heart valve tissue-guided regeneration aims to offer a functional and viable alternative to current ...
Heart valve replacement represents the most common surgical therapy for end-stage valvular heart dis...
Current research on valvular heart repair has focused on tissue-engineered heart valves (TEHV) becau...
Background: Heart valve disease is a clinically serious condition. The replacement of damaged valves...
Well documented shortcomings of current heart valve substitutes – biological and mechanical prosthes...
ich ysic lin, g, en m y h lity sin h th vie fo t va ate 1. INT The m disease biopro good s risk of b...
Tissue-engineered heart valves are proposed as novel viable replacements granting longer durability ...
The development of viable and functional tissue-engineered heart valves (TEHVs) is a challenge that,...
Tissue-engineered heart valves are proposed as novel viable replacements granting longer durability ...