A New Medical Device Rigeneracons Allows to Obtain Viable Micro-Grafts From Mechanical Disaggregation of Human Tissues

Author:

Trovato Letizia1,Monti Manuela2,del Fante Claudia3,Cervio Marila3,Lampinen Milla4,Ambrosio Lucia5,Redi Carlo Alberto2,Perotti Cesare3,Kankuri Esko4,Ambrosio Gennaro5,Rodriguez Y. Baena Ruggero6,Pirozzi Giuseppe7,Graziano Antonio1

Affiliation:

1. Human Brain Wave srl; Turin Italy

2. Research Center of Regenerative Medicine; Fondazione IRCCS Policlinico San Matteo; Pavia Italy

3. Immunohaematology and Transfusion Service; Apheresis and Cell Therapy Unit, Fondazione IRCCS Policlinico San Matteo; Pavia Italy

4. Faculty of Medicine; Department of Pharmacology; University of Helsinki; Helsinki Finland

5. Department of Neuroscience; Reproductive and Odontostomatologic Sciences, Federico II University of Naples; Naples Italy

6. Department of Clinico Surgical; Diagnostic and Pediatric Sciences, School of Dentistry, University of Pavia; Pavia Italy

7. Department of Research; Istituto Nazionale Tumori-Fondazione G. Pascale; Naples Italy

Publisher

Wiley

Subject

Cell Biology,Clinical Biochemistry,Physiology

Reference11 articles.

1. Mesenchymal stem cells as a potent cell source for articular cartilage regeneration;Baghaban Eslaminejad;World J Stem Cells,2014

2. Sinus lift tissue engineering using autologous pulp micro-grafts: A case report of bone density evaluation;Brunelli;J Indian Soc Periodontol.,2013

3. A new medical device, based on rigenera protocol, in the management of complex wounds;Giaccone;J Stem Cells Res, Rev Rep,2014

4. Periodontal tissue generation using autologous dental ligament micro-grafts: Case report with 6 months follow-up;Graziano;Ann Oral Maxillofac Surg,2013

5. Dental pulp stem cells: A promising tool for bone regeneration;Graziano;Stem Cell Rev,2008a

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