Publications by authors named "Omar Villa"

Three-dimensional (3D) in vitro models of cell culture aim to fill the gap between the standard two-dimensional cell studies and the in vivo environment. Especially for neural tissue regeneration approaches where there is little regenerative capacity, these models are important for mimicking the extracellular matrix in providing support, allowing the natural flow of oxygen, nutrients, and growth factors, and possibly favoring neural cell regrowth. We have previously demonstrated that a new self-assembling nanostructured biomaterial, based on matrigel, was able to support adult neural stem cell (NSC) culture.

View Article and Find Full Text PDF
Article Synopsis
  • Self-assembling peptides (SAPs) inspired by Bone Marrow Homing Peptide 1 (BMHP1) can form various structures, like fibers and sheets, which show promise for cell culture and regenerative medicine.
  • A variety of 32 BMHP1-SAP sequences were tested, revealing that they share similar secondary structures while differing in their physical properties and effects on neural stem cells (NSCs).
  • In lab experiments, certain BMHP1-SAPs enhanced NSC growth and showed minimal adverse reaction in live tissue, suggesting potential for future applications in regenerative therapies and material science.
View Article and Find Full Text PDF

The understanding of phenomena involved in the self-assembling of bio-inspired biomaterials acting as three-dimensional scaffolds for regenerative medicine applications is a necessary step to develop effective therapies in neural tissue engineering. We investigated the self-assembled nanostructures of functionalized peptides featuring four, two or no glycine-spacers between the self-assembly sequence RADA16-I and the functional biological motif PFSSTKT. The effectiveness of their biological functionalization was assessed via in vitro experiments with neural stem cells (NSCs) and their molecular assembly was elucidated via atomic force microscopy, Raman and Fourier Transform Infrared spectroscopy.

View Article and Find Full Text PDF