Publication:
NonViral Gene Delivery of Growth and Differentiation Factor 6 (GDF6) to whole bovine Intervertebral Disc

cris.virtual.author-orcid0000-0002-6742-003X
cris.virtual.author-orcid0000-0003-2583-9702
cris.virtual.author-orcid0000-0002-9005-0655
cris.virtualsource.author-orcid544376ed-6caf-419e-8edb-c2cb5610213e
cris.virtualsource.author-orcid72f1bbf5-5644-440f-9cda-b2b02bc5cb53
cris.virtualsource.author-orcidcd421a9d-5167-4eec-a4eb-592fc7e84fed
cris.virtualsource.author-orcidb45b7422-97de-484f-9a83-b0bf5fbacd4b
cris.virtualsource.author-orcidd9b15728-d399-4747-a56b-aab7bb3b5dfa
cris.virtualsource.author-orcidca7b7138-fe4f-4995-8bf0-7a7da3cd819f
datacite.rightsmetadata.only
dc.contributor.authorMay, Rahel Deborah
dc.contributor.authorFrauchiger, Daniela Angelika
dc.contributor.authorGazdhar, Amiq
dc.contributor.authorGeiser, Thomas
dc.contributor.authorBenneker, Lorin Michael
dc.contributor.authorGantenbein, Benjamin
dc.date.accessioned2024-10-24T16:26:44Z
dc.date.available2024-10-24T16:26:44Z
dc.date.issued2015
dc.description.abstractQuestion: Low back pain is an increasing global health problem, which is associated with intervertebral disc (IVD) damage and de- generation. Major changes occur in the nucleus pulposus (NP), with the degradation of the extracellular matrix (ECM) [1]. Further studies showed that growth factors from the transforming growth factor (TGF) and bone morphogenic proteins (BMP) family may induce chondrogenic differentiation of mesenchymal stem cells (MSC) [2]. Focusing on non-viral gene therapies and their possible translation into the clinics, we investigated if GDF6 (syn. BMP13 or CDMP2) can induce regeneration of degraded NP. We hypothesized that IVD transfected with plasmid over-expressing GDF6 also up-regulates other NP- and chondrogenic cell markers and enhances ECM deposition. Methods: Bovine IVD cells were isolated by pronase/collagenase II overnight digestion. After monolayer expansion up to passage 3, cells were transfected with the plasmid pGDF6 (RG211366, Origene, SF) or with green fluorescence protein (GFP) control using the NeonÒ transfection system (Invitrogen, Basel), both equipped with a Cy- tomegalovirus (CMV) promotor to induce over-expression. We tested a range of yet unpublished parameters for each of the primary disc cells to optimize efficiency. To test a non-viral gene therapy applied directly to 3D whole organ culture, bovine IVDs were harvested from fresh tails obtained from the abattoir within 5 h post-mortem [3]. Discs were then pre-incubated for 24 h in high glucose Dulbecco’s Modified Eagle Medium and 5 % fetal calf serum. Each disc was transfected by injection of 5 lg of plasmid GDF6 (Origene, RG211366) into the center by 25G needle and using Hamilton sy- ringe. Electroporation was performed using 2-needle array electrode or tweezertrodes; 8 pulses at 200mv/cm with an interval of 10 ms were applied using ECM830 Square Wave Electroporation System (Harvard Apparatus, MA) (Fig. 1). After transfection discs were cultured for 72 h to allow expression of GFP or GDF6. Discs were then fixed, cryosectioned and analysed by immunofluorescence against GDF6. Results: We successfully transfected bovine NP and AF cells in monolayer culture with the two plasmids using a 1,400 V, 20 ms and 2 pulses with a *25 % efficiency using 0.15 M cells and 3 lg DNA (Fig. 1). Organ IVD culture transfection revealed GFP6 positive staining in the centre of the disc using 2-needle array electrode. Results from tweezertrodes did not show any GFP posi- tive cells. Conclusions: We identified novel parameters to successfully transfect primary bovine IVD cells. For transfection of whole IVD explants electroporation parameters need to be further optimized. Acknowledgments: This study was supported by the Lindenhof Foundation ‘‘Forschung und Lehre’’ (Project no. 13-02-F). References 1. Roughly PJ (2004) Spine (Phila) 29:2691–2699 2. 3. Clarke LE, McConell JC, Sherratt MJ, Derby B, Richardson SM, Hoyland JA (2014) Arthritis Res Ther 16:R67 Chan SC, Gantenbein-Ritter B (2012) J Vis Exp 60(60):e3490
dc.description.noteoral presentation
dc.description.sponsorshipInstitut für chirurgische Technologien und Biomechanik (ISTB)
dc.description.sponsorshipDepartement Klinische Forschung, Forschungsgruppe Pneumologie (Erwachsene)
dc.description.sponsorshipUniversitätsklinik für Pneumologie
dc.description.sponsorshipUniversitätsklinik für Orthopädische Chirurgie und Traumatologie
dc.identifier.urihttps://boris-portal.unibe.ch/handle/20.500.12422/138031
dc.language.isoen
dc.publisher.placeBerlin
dc.relation.conferenceBiospine.org, Proceedings of the 5th International Congress on Biotechnologies for Spinal Surgery
dc.relation.organizationDCD5A442C26EE17DE0405C82790C4DE2
dc.relation.organizationDCD5A442BB14E17DE0405C82790C4DE2
dc.relation.organizationDCD5A442BCD5E17DE0405C82790C4DE2
dc.relation.organizationDCD5A442BADEE17DE0405C82790C4DE2
dc.relation.organizationDCD5A442C068E17DE0405C82790C4DE2
dc.relation.schoolDCD5A442C27BE17DE0405C82790C4DE2
dc.subject.ddc600 - Technology::610 - Medicine & health
dc.subject.ddc500 - Science::570 - Life sciences; biology
dc.titleNonViral Gene Delivery of Growth and Differentiation Factor 6 (GDF6) to whole bovine Intervertebral Disc
dc.typeconference_item
dspace.entity.typePublication
oairecerif.author.affiliationInstitut für chirurgische Technologien und Biomechanik (ISTB)
oairecerif.author.affiliationInstitut für chirurgische Technologien und Biomechanik (ISTB)
oairecerif.author.affiliationDepartement Klinische Forschung, Forschungsgruppe Pneumologie (Erwachsene)
oairecerif.author.affiliationUniversitätsklinik für Pneumologie
oairecerif.author.affiliationUniversitätsklinik für Orthopädische Chirurgie und Traumatologie
oairecerif.author.affiliationInstitut für chirurgische Technologien und Biomechanik (ISTB)
oairecerif.author.affiliation2Universitätsklinik für Pneumologie
oairecerif.author.affiliation2Departement Klinische Forschung, Forschungsgruppe Pneumologie (Erwachsene)
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unibe.description.ispublishedunpub
unibe.eprints.legacyId75846
unibe.refereedtrue
unibe.subtype.conferencespeech

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