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SELECTBIO Conferences Bioprinting & 3D Printing in the Life Sciences

Chiara Novi's Biography



Chiara Novi, QA & RA Manager, Tsunami S.r.l.

Born in Modena (MO) 26 April 1985 (Italy).
Biotechnology First Level Degree cum laude, University of Modena and Reggio Emilia,
Italy (July 2007): Internship First Level Degree thesis, Laboratory of Molecular Oncology
“Generation of fusion protein TAT-p30 C/EBPalpha. University of Modena and Reggio
Emilia, Italy.
Medical and Pharmaceutical Biotechnology Second Level Degree cum laude, University
of Modena and Reggio Emilia, Italy (September 2009): Internship Second Level Degree
thesis, Laboratory of Molecular Oncology, The biological effects of C/EBPalpha in K562
cells depend on the potency of the N-terminal regulatory region, not on specificity of the
DNA binding domain, University of Modena and Reggio Emilia, Italy.
PhD degree Doctorate School in Science and Technologies for Health Products (January
2013): Internship Functional antagonism between nociceptin/orphanin FQ and
corticotropin-releasing factor in rat anxiety-related behaviors: involvement of the
serotonergic system. Internship, Laboratory of Cell Pahramacolgy, University of Modena
and Reggio Emilia, Italy.
Clinical Research Associated (CRA) in MediData S.r.l. Modena: The main tasks are
defined by good clinical practice guidelines for monitoring clinical trials, such as those
elaborated by the International Conference on Harmonisation of Technical Requirements
for Registration of Pharmaceuticals for Human Use (ICH) (February 2013 – April 2014).
Quality Assurance and Regulatory Affairs Manager in Tsunami S.r.l., Biomedical
company in Mirandola (MO) – Italy (May 2014 – present).

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A Novel Laser Sintered-Titanium Cage Favors Human Osteoprogenitors Performance For Improved Intervertebral Discs Replacement

Friday, 14 October 2016 at 10:00

Add to Calendar ▼2016-10-14 10:00:002016-10-14 11:00:00Europe/LondonA Novel Laser Sintered-Titanium Cage Favors Human Osteoprogenitors Performance For Improved Intervertebral Discs ReplacementBioprinting and 3D Printing in the Life Sciences in Cambridge, UKCambridge, UKSELECTBIOenquiries@selectbiosciences.com

A new laser-sintered titanium disc (LSTD) with mesh-shaped architecture was introduced considering attachment, colonization and mineralizing matrix formation by BM-MSC. Our findings reveal a better biocompatibility and an improved osteoinductive property of the new LSTD for more performing approaches in vertebral surgery.


Add to Calendar ▼2016-10-13 00:00:002016-10-14 00:00:00Europe/LondonBioprinting and 3D Printing in the Life SciencesBioprinting and 3D Printing in the Life Sciences in Cambridge, UKCambridge, UKSELECTBIOenquiries@selectbiosciences.com