Stem cell growth and migration on nanofibrous scaffolds and micro-fluidic channels on Silicon-Chip were studied by using neural stem cells isolated from adult rats\u27 brain. Electrospinning and lithographic technique were used for developing nanofibrous-polylactic acid (PLA) and polyurethane (PU) based-scaffolds and micro-fluidic channels on Si-Chips respectively. Immunocytochemical and morphological analysis showed better cell-matrix interaction with profound adhesion, proliferation and migration on the developed scaffolds. Cell culture assay with microfluidic channel revealed the ability of developed channel system in guiding neuronal stem cell growth towards specified directions. These studies extend the possibility of using developed n...
We design a microfluidic patterned co-culture system for mouse mesenchymal stem cells mMSCs and neur...
Nanomedicine is one of the most promising areas of nanotechnology, aspiring to use nanoparticles and...
We fabricated a nanocomposite substrate made of nanofibers on micropillar arrays by photolithography...
Stem cell growth and migration on nanofibrous scaffolds and micro-fluidic channels on Silicon-Chip w...
Controlling cellular orientation, proliferation, and differentiation is valuable in designing organ ...
Neural tissue engineering aims at developing novel approaches for the treatment of diseases of the n...
Neural tissue engineering aims at developing novel approaches for the treatment of diseases of the n...
Objectives: The selection of a good quality scaffold is an essential strategy for tissue engineering...
Paracrine signals produced from stem cells influence tissue regeneration by inducing the differentia...
Introduction: Due to the ability to mimic in vivo cellular microenvironments, the development of mul...
The brain-on-a-chip technology aims to provide an efficient and economic in vitro platform for brain...
The brain-on-a-chip technology aims to provide an efficient and economic in vitro platform for brain...
Nerve tissue engineering requires suitable precursor cells as well as the necessary biochemical and ...
In this study, we fabricated a three-dimensional (3D) scaffold using industrial polylactic acid (PLA...
Biomaterials are essential for the development of innovative biomedical and therapeutic applications...
We design a microfluidic patterned co-culture system for mouse mesenchymal stem cells mMSCs and neur...
Nanomedicine is one of the most promising areas of nanotechnology, aspiring to use nanoparticles and...
We fabricated a nanocomposite substrate made of nanofibers on micropillar arrays by photolithography...
Stem cell growth and migration on nanofibrous scaffolds and micro-fluidic channels on Silicon-Chip w...
Controlling cellular orientation, proliferation, and differentiation is valuable in designing organ ...
Neural tissue engineering aims at developing novel approaches for the treatment of diseases of the n...
Neural tissue engineering aims at developing novel approaches for the treatment of diseases of the n...
Objectives: The selection of a good quality scaffold is an essential strategy for tissue engineering...
Paracrine signals produced from stem cells influence tissue regeneration by inducing the differentia...
Introduction: Due to the ability to mimic in vivo cellular microenvironments, the development of mul...
The brain-on-a-chip technology aims to provide an efficient and economic in vitro platform for brain...
The brain-on-a-chip technology aims to provide an efficient and economic in vitro platform for brain...
Nerve tissue engineering requires suitable precursor cells as well as the necessary biochemical and ...
In this study, we fabricated a three-dimensional (3D) scaffold using industrial polylactic acid (PLA...
Biomaterials are essential for the development of innovative biomedical and therapeutic applications...
We design a microfluidic patterned co-culture system for mouse mesenchymal stem cells mMSCs and neur...
Nanomedicine is one of the most promising areas of nanotechnology, aspiring to use nanoparticles and...
We fabricated a nanocomposite substrate made of nanofibers on micropillar arrays by photolithography...