Gene delivery holds great promise for bioengineering, biomedical applications, biosensors, diagnoses, and gene therapy. In particular, the influence of topography on gene delivery is considered to be an attractive approach due to low toxicity and localized delivery properties. Even though many gene vectors and transfection systems have been developed to enhance transfection potential and combining it with other forms of stimulations could even further enhance it. Topography is an interesting surface property that has been shown to stimulate differentiation, migration, cell morphology, and cell mechanics. Therefore, it is envisioned that topography might also be able to stimulate transfection. In this study, we tested the hypothesis "topogra...
Surface topography impacts on cell growth and differentiation, but it is not trivial to generate def...
Abstract Background Mesenchymal stem cells (MSCs) are multipotent stem cells that can be isolated an...
Because human embryonic stem (hES) cells can differentiate into virtually any cell type in the human...
Gene delivery holds great promise for bioengineering, biomedical applications, biosensors, diagnoses...
Substrate-mediated nonviral gene delivery (SMD) represents a burgeoning area of interest in the fiel...
Abstract — Stem/progenitor cells hold a great promise for application in several therapies due to th...
Nucleic acids have clear clinical potential for gene therapy. Plasmid DNA (pDNA) was the first nucle...
The success of gene therapy relies largely on an effective targeted gene delivery system. Till recen...
Stem cell mediated gene delivery has steadily gained momentum in the past decade as a new strategy t...
Gene delivery to primary human cells is a technology of critical interest to both life science resea...
In terms of biomaterial development and implant technology, the cellular response can be affected by...
The contact of cells and surface topography plays a major role in the control of cell growth, differ...
The cell-based approach in gene therapy arises as a promising strategy to provide safe, targeted, an...
Human mesenchymal stem cells (hMSCs) are primary cells with high clinical relevance that could be en...
Background: Our current understanding of how the unique tumour microenvironment influences the effic...
Surface topography impacts on cell growth and differentiation, but it is not trivial to generate def...
Abstract Background Mesenchymal stem cells (MSCs) are multipotent stem cells that can be isolated an...
Because human embryonic stem (hES) cells can differentiate into virtually any cell type in the human...
Gene delivery holds great promise for bioengineering, biomedical applications, biosensors, diagnoses...
Substrate-mediated nonviral gene delivery (SMD) represents a burgeoning area of interest in the fiel...
Abstract — Stem/progenitor cells hold a great promise for application in several therapies due to th...
Nucleic acids have clear clinical potential for gene therapy. Plasmid DNA (pDNA) was the first nucle...
The success of gene therapy relies largely on an effective targeted gene delivery system. Till recen...
Stem cell mediated gene delivery has steadily gained momentum in the past decade as a new strategy t...
Gene delivery to primary human cells is a technology of critical interest to both life science resea...
In terms of biomaterial development and implant technology, the cellular response can be affected by...
The contact of cells and surface topography plays a major role in the control of cell growth, differ...
The cell-based approach in gene therapy arises as a promising strategy to provide safe, targeted, an...
Human mesenchymal stem cells (hMSCs) are primary cells with high clinical relevance that could be en...
Background: Our current understanding of how the unique tumour microenvironment influences the effic...
Surface topography impacts on cell growth and differentiation, but it is not trivial to generate def...
Abstract Background Mesenchymal stem cells (MSCs) are multipotent stem cells that can be isolated an...
Because human embryonic stem (hES) cells can differentiate into virtually any cell type in the human...