Objective(s): One of the main constraints of collagen hydrogel scaffolds for using in tissue engineering is mechanical weakness. Plastic compression (PC) is a physical method to overcome the mechanical limitation of collagen hydrogel. Materials and Methods: In this study, the effects of pH on mechanical and biological properties of PC hydrogels were investigated. Collagen hydrogels were fabricated at neutral (pH=7.4) and alkaline pH (pH=8.5), and then underwent plastic compression to prepare final hydrogels. The stability, mechanical properties, morphology and cell compatibility of hydrogels were investigated. Results: The results illustrated that increasing in polymerization pH was associated with improvement in both tensile strength and e...
Reconstituted collagen hydrogels are often used for in vitro studies of cell-matrix interaction and ...
<div><p>Collagen I hydrogels are commonly used to mimic the extracellular matrix (ECM) for tissue en...
Central Nervous System (CNS) repair has been a challenge, due to limited CNS tissue regenerative cap...
Collagen gels hold great promise in the field of tissue engineering as collagen is highly biocompati...
Among various natural biopolymers, type I collagen gels have demonstrated the highest potential as b...
The effect of the production factors yielding a functional dermal substitute was investigated by mea...
The effect of the production factors yielding a functional dermal substitute was investigated by mea...
Collagen gels have been widely studied for applications in tissue engineering because of their biolo...
The goal of tissue engineering is to create the functional engineered tissue to replace or repair th...
Collagen gels have been widely studied for applications in tissue engineering because of their biolo...
Thesis: Ph. D., Massachusetts Institute of Technology, Department of Materials Science and Engineeri...
BACKGROUND: Biological hydrogels provide a conducive three-dimensional extracellular matrix environm...
Hydrogel materials have been an area of research over the past 50 years. These polymer materials hav...
Cartilage defects occur frequently and can lead to osteoarthritis. Hydrogels are a promising regener...
Cartilage defects occur frequently and can lead to osteoarthritis. Hydrogels are a promising regener...
Reconstituted collagen hydrogels are often used for in vitro studies of cell-matrix interaction and ...
<div><p>Collagen I hydrogels are commonly used to mimic the extracellular matrix (ECM) for tissue en...
Central Nervous System (CNS) repair has been a challenge, due to limited CNS tissue regenerative cap...
Collagen gels hold great promise in the field of tissue engineering as collagen is highly biocompati...
Among various natural biopolymers, type I collagen gels have demonstrated the highest potential as b...
The effect of the production factors yielding a functional dermal substitute was investigated by mea...
The effect of the production factors yielding a functional dermal substitute was investigated by mea...
Collagen gels have been widely studied for applications in tissue engineering because of their biolo...
The goal of tissue engineering is to create the functional engineered tissue to replace or repair th...
Collagen gels have been widely studied for applications in tissue engineering because of their biolo...
Thesis: Ph. D., Massachusetts Institute of Technology, Department of Materials Science and Engineeri...
BACKGROUND: Biological hydrogels provide a conducive three-dimensional extracellular matrix environm...
Hydrogel materials have been an area of research over the past 50 years. These polymer materials hav...
Cartilage defects occur frequently and can lead to osteoarthritis. Hydrogels are a promising regener...
Cartilage defects occur frequently and can lead to osteoarthritis. Hydrogels are a promising regener...
Reconstituted collagen hydrogels are often used for in vitro studies of cell-matrix interaction and ...
<div><p>Collagen I hydrogels are commonly used to mimic the extracellular matrix (ECM) for tissue en...
Central Nervous System (CNS) repair has been a challenge, due to limited CNS tissue regenerative cap...