Oommen Varghese
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Associate Professor
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Recent Grants
Grant: Close
Glycosaminoglycans and Oligonucleotides Joining Forces to Break Tumor Resistance (GOBREAK)
Open Date: 2021-10-08
Close Date: 2024-02-29
Grant: Close
Engineering Gene Activated Biomaterial to Induce Bone Formation
Open Date: 2021-01-01
Close Date: 2024-12-31
Grant: Close
Programmable Oligonucleotide Delivery System for next-generation siRNA Prostate cancer thErapy
Open Date: 2020-10-01
Close Date: 2023-01-01
Grant: Close
Cartilaginous tissue regeneration by non-viral gene therapy; taking the hurdles towards efficient delivery
Open Date: 2020-09-01
Close Date: 2024-08-31
Grant: Close
Strategies for stem cell survival
Open Date: 2014-07-01
Close Date: 2019-06-30
Articles (11)
Physically and Chemically Crosslinked Hyaluronic Acid-Based Hydrogels Differentially Promote Axonal Outgrowth from Neural Tissue Cultures
Our aim was to investigate axonal outgrowth from different tissue models on soft biomaterials based on hyaluronic acid (HA). We hypothesized that HA-based hydrogels differentially promote axonal outgrowth from different neural tissues. Spinal cord sliced cultures (SCSCs) and dorsal root ganglion cultures (DRGCs) were maintained on a collagen gel, a physically crosslinked HA-based hydrogel (Healon 5®) and a novel chemically crosslinked HA-based hydrogel, with or without the presence of neurotrophic factors (NF). Time-lapse microscopy was performed after two, five and eight days, where axonal outgrowth was assessed by automated image analysis. Neuroprotection was investigated by PCR. Outgrowth was observed in all groups; however, in the collagen group, it was scarce. At the middle timepoint, outgrowth from SCSCs was superior in both HA-based groups compared to collagen, regardless of the presence of NF. In DRGCs, the outgrowth in Healon 5® with NF was significantly higher compared to the rest of the groups. PCR revealed upregulation of NeuN gene expression in the HA-based groups compared to controls after excitotoxic injury. The differences in neurite outgrowth from the two different tissue models suggest that axons differentially respond to the two types of biomaterials.
Year:
2024
Collaborators (10)
Yuji Teramura
Uppsala University
Susanna Miettinen
Professor, Head of the Adult Stem Cell Group
University of Tampere
Nikos Schizas
Uppsala University
Laura Creemers
Associate professor
Universitair Medisch Centrum Utrecht
Vadim Le Joncour
University of Helsinki
Oommen P Oommen
University of Tampere
Gemma Mestres
Associate Professor (Senior lecturer)
Uppsala University
Keying Zhu
Karolinska Institutet
Sumanta Samanta
University of Tampere
Vijay Singh Parihar
University of Tampere

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