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Piattaforma di Ingegneria Tissutale

Description

La piattaforma di ingegneria dei tessuti è impegnata su due fronti integrati della ricerca traslazionale: la ricerca di base e la ricerca applicata, in particolare in ambito cardiovascolare. Questa piattaforma consente la caratterizzazione meccanica e strutturale dei tessuti nativi e bioingegnerizzati e lo studio in vitro ed in vivo dello sviluppo di tessuto de novo. Inoltre, offre modelli strutturali deterministici per la crescita e la rigenerazione di tessuto e software customizzati per la caratterizzazione strutturale dei tessuti e per lo studio quantitativo di sezioni istologiche. Da un punto di vista traslazionale, la piattaforma di ingegneria dei tessuti si focalizza sulle applicazioni cliniche nel contesto delle malattie cardiovascolari, ponendo maggiore enfasi sullo sviluppo di medical device, sul loro posizionamento e sullo studio di meccanismi minimamente invasivi di deployment. In particolare, la piattaforma è focalizzata sullo sviluppo di cardiac patch, valvole cardiache ingegnerizzate, vascular graft e chordae tendineae bioingegnerizzate. I nuovi laboratori di ingegneria tissutale sono dotati di sistemi di ultima generazione e consta-no  di  due  macro  unità:  la  prima  di  biofabbricazione,  la  cui  strumentazione  include  una  piattaforma  di  bioprinting  basata  su  un  braccio  robotizzato  a  sei  gradi  di  libertà,  strumenti  per  elettrofilatura  ed  elettrodeposizione,  ed  una di caratterizzazione dei materiali e costrutti ingegnerizzati che include macchinari  per  le  prove  meccaniche,  per  la  caratterizzazione  istologica  e  della micro e macro struttura.

Expertise

  • Sviluppo di dispositivi cardiovascolari come cardiac patch, vascular graft e valvole cardiache;
  • Sintesi di polimeri con ampio grado di degradazione per lo sviluppo di dispositivi medici;
  • Decellularizzazione di organi e tessuti;
  • Caratterizzazione strutturale ed istologica di tessuti nativi ed ingegnerizzati;
  • Sviluppo e prototipazione di sistemi per il posizionamento ed impianto in modalità minimamente invasiva dei dispositivi medici;
  • Modellazione dei fenomeni che regolano la crescita e la rigenerazione del tessuto.

Facilities & Equipment

ATTREZZATURE TECNOLOGICHE 

  • Modelli numerici predittivi per la crescita e la rigenerazione del tessuto;  
  • Software per analisi quantitativa di sezioni istologiche;  
  • Software per la generazione di reti fibrose stocasticamente generate; 
  • Metodi innovativi di analisi morfologica di materiali micro e nano-strutturati; 
  • Sviluppo   ed   ottimizzazione   di   valvole   cardiache   ingegnerizzate   tramite l’uso di un braccio robotico a sei gradi di libertà; 
  • Apparati per elettrodeposizione con e senza mandrino; 
  • Strumentazione per la caratterizzazione meccanica dei dispositivi ingegnerizzati in seno ai progetti TECP, TEHV e TEVG. 

Contacts:

adamore@fondazionerimed.com

Collaboration:

  • University of Pittsburgh (PITT), Pittsburgh, USA 
  • University of Pittsburgh Medical Center (UPMC), Pittsburgh (PA), USA 
  • Policlinico di Milano, Milano, Italy 
  • Advances Solutions Life Sciences (ASLS) Inc. – Louisville (KY), USA 
  • IRCCS ISMETT, Palermo, Italy 
  • ATeN Center, University of Palermo 
  • Telea Biotech – Tissue Engineering Biomedical Technologies, Italy 
  • JOMDD, Tokyo, Japan 
  • Columbia University Irving Medical Center (CUIMC), New York (NY), USA 

Hardware

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Publications

Journal Paper
Photo-oxidation crosslinked, glutaraldehyde crosslinked, or enzyme and hydrostatic pressure processed decellularized biomaterials for cardiovascular repair do not affect host response in a rat right ventricular outflow flow tract reconstruction (RVOT) model
Parnaz Boodagh †, Laura Modica De Mohac, PhD , Yasurani Hayashi , Danila Vella, PhD , Sang-Ho Ye , Federica Cosentino, PhD , Taro Fujii , Emily Gorge , Garrett Coyan , Laubrie Soto Joan Dario, PhD , Gaetano Burriesci, PhD , William R Wagner , Antonio D'Amore, Ph.D.
Journal of Biomedical Materials Research: Part B - Applied Biomaterials, 113(2):e35529, 2025.
https://doi.org/10.1002/jbm.b.35529
Journal Paper
In Vitro Evaluation of Biomaterials for Heart Valve Prosthesis: High Hydrostatic and Enzymatic Treatments as Alternative for Bio-Derived Materials
Danila Vella, PhD †, Parnaz Boodagh , Laura Modica De Mohac, PhD , Sang-Ho Ye , Federica Cosentino, PhD , Federica Scaglione , Sofia Dei Bardi , Giulia Polizzi , Garrett Coyan , William R. Wagner , Gaetano Burriesci, PhD , Antonio D'Amore, Ph.D. *
Journal of Biomedical Materials Research: Part B - Applied Biomaterials, 113(6): e35592, 2025.
https://doi.org/10.1002/jbm.b.35592
Journal Paper
Redefining vascular repair: revealing cellular responses on PEUU—gelatin electrospun vascular grafts for endothelialization and immune responses on in vitro models
M. A. Rodríguez Soto , A. Riverso-Cortes , I. Orjuela-Garzon , I Fernandez-Calderon , C. Rodriguez , N. Suarez Vargas , C. Ostos , C. Muñoz Camargo , J. C. Cruz, , S. Kim , Antonio D'Amore, Ph.D. , W. R. Wagner , J. C. Briceño ,
Frontiers in Bioengineering and Biotechnology
https://doi.org/10.3389/fbioe.2024.1410863
Journal Paper
Polyester urethane urea (PEUU) functionalization for enhanced anti-thrombotic performance: advancing regenerative cardiovascular devices through innovative surface modifications
M.A. Rodriguez-Soto , A.M. Aragón , N.A. Suarez , M. Ayala-Velásquez , G. Peralta-Peluffo , J.C. Cruz , C. Muñoz Camargo , S. Kim , Antonio D'Amore, Ph.D. , W.R. Wagner , J.C. Briceño
Frontiers Bioengineering and Biotechnology
https://doi.org/10.3389/fbioe.2023.1257778
Dissemination
Comparative Assessment of Prosthetic Biomaterials for Cardiac Applications
Danila Vella, PhD †, Parnaz Boodagh †, Laura Modica De Mohac, PhD , Sang-Ho Ye , Federica Cosentino, PhD , Federica Scaglione , William Wagner , Antonio D'Amore, Ph.D. , Gaetano Burriesci, PhD
Proceedings of the 9th World Congress on Electrical Engineering and Computer Systems and Sciences (EECSS’23), ICBES 137, 2023. DOI: 10.11159/icbes23.137
https://avestia.com/EECSS2023_Proceedings/files/paper/ICBES/ICBES_137.pdf
Journal Paper
Blood Vessel Detection Algorithm For Tissue Engineering And Quantitative Histology
Arianna Adamo, PhD , Alessandro Bruno , Giorgio Menallo , Maria Giovanna Francipane, Ph.D. , Marco Fazzari , Roberto Pirrone , Edoardo Ardizzone , William R Wagner , Antonio D'Amore
Annals of Biomedical Engineering, 50(4):387-400, 2022
https://link.springer.com/article/10.1007/s10439-022-02923-2
Journal Paper
A Cell-free Biodegradable Synthetic Artificial Ligament for the Reconstruction of Anterior Cruciate Ligament (ACL) in a Rat Model
Y. Kawakami , K. Nonaka , N. Fukase , Antonio D'Amore, Ph.D. , Y. Murata , P. Quinn , S. Luketich , K. Takayama , T. Matsumoto , J. H. Cummins , M. Kurosaka , R. Kuroda , W. R. Wagner , F. H. Fu , J. Huard
Acta Biomaterialia
https://doi.org/10.1016/j.actbio.2020.10.037
Journal Paper
Photo-oxidation crosslinked, glutaraldehyde crosslinked, or enzyme and hydrostatic pressure processed decellularized biomaterials for cardiovascular repair do not affect host response in a rat right ventricular outflow flow tract reconstruction (RVOT) model
Parnaz Boodagh †, Laura Modica De Mohac, PhD , Yasurani Hayashi , Danila Vella, PhD , Sang-Ho Ye , Federica Cosentino, PhD , Taro Fujii , Emily Gorge , Garrett Coyan , Laubrie Soto Joan Dario, PhD , Gaetano Burriesci, PhD , William R. Wagner , Antonio D'Amore, Ph.D. *
Journal of Biomedical Materials Research: Part B - Applied Biomaterials, 113(2):e35529 (2025)
https://doi.org/10.1002/jbm.b.35529
Journal Paper
Development of a semi-automated, bulk seeding device for large animal model implantation of tissue engineered vascular grafts
E. M. Cunnane , K. L. Lorentz , L. Soletti , A. K. Ramaswamy , T. K. Chung , D. G. Haskett , S. K. Luketich , E. T. Tzeng , Antonio D'Amore, Ph.D. , W. R. Wagner , J. S. Weinbaum , D. A. Vorp
Frontiers in Bioengineering and Biotechnology
https://doi.org/10.3389/fbioe.2020.597847
Journal Paper
In vivo functional assessment of a novel degradable metal and elastomeric scaffold-based tissue engineered heart valve
Garrett N. Coyan , Antonio D'Amore, Ph.D. , Yasumoto Matsumura , Drake D. Pedersen , Samuel K. Luketich , Vesselin Shanov , William E. Katz , Tirone E. David , William R. Wagner , Vinay Badhwar

The Journal of Thoracic and Cardiovascular Surgery

https://doi.org/10.1016/j.jtcvs.2018.09.128
Journal Paper
Evaluation of Microscopic Structure−Function Relationships of PEGylated Small Intestinal Submucosa Vascular Grafts for Arteriovenous Connection
Karen T. Valencia-Rivero , Juan C. Cruz , Nicolle Wagner-Gutierrez , Antonio D'Amore, Ph.D. , Maria C. Miranda , Rocío López , Albert Guerrero , William Wagner , Néstor Sandoval , Juan C. Briceño
ACS Applied Bio Materials
https://doi.org/10.1021/acsabm.9b00158
Journal Paper
Intramyocardial injection of a fully synthetic hydrogel attenuates left ventricular remodeling post myocardial infarction
Yasumoto Matsumura , Yang Zhu , Hongbin Jiang , Antonio D'Amore, Ph.D. , Samuel K. Luketich , Verena Charwat , Tomo Yoshizumi , Hideyoshi Sato , Brenda Yang , Takafumi Uchibori , Kevin E. Healy , William R. Wagner

Biomaterials

https://doi.org/10.1016/j.biomaterials.2019.119289
Journal Paper
Heart valve scaffold fabrication: Bioinspired control of macro-scale morphology, mechanics and micro-structure
Antonio D'Amore, Ph.D. , Samuel K Luketich , Giuseppe M Raffa , Salim Olia , Giorgio Menallo , Antonino Mazzola , Flavio D'Accardi , Tamir Grunberg , Xinzhu Gu , Michele Pilato , Marina V Kameneva , Vinay Badhwar , William R Wagner
Biomaterials
https://doi.org/10.1016/j.biomaterials.2017.10.011
Journal Paper
An exploratory study on the preparation and evaluation of a “same-day” adipose stem cell–based tissue-engineered vascular graft
Darren G. Haskett , Kamiel S. Saleh , Katherine L. Lorentz , Alexander D. Josowitz , Samuel K. Luketich , Justin S. Weinbaum , Lauren E. Kokai , Antonio D'Amore, Ph.D. , Kacey G. Marra , J. Peter Rubin , William R. Wagner , David A. Vorp

The Journal of Thoracic and Cardiovascular Surgery

https://doi.org/10.1016/j.jtcvs.2018.05.120
Journal Paper
Heart valve scaffold fabrication: Bioinspired control of macro-scale morphology, mechanics and micro-structure
Antonio D'Amore, Ph.D. , Samuel K. Luketich , Giuseppe M. Raffa , Salim Olia , Giorgio Menallo , Antonino Mazzola , Flavio D'Accardi , Tamir Grunberg , Xinzhu Gu , Michele Pilato , Marina V. Kameneva , Vinay Badhwar , William R. Wagner

Biomaterials

https://doi.org/10.1016/j.biomaterials.2017.10.011
Journal Paper
Aging of the skeletal muscle extracellular matrix drives a stem cell fibrogenic conversion
Kristen M. Stearns-Reider , Antonio D'Amore, Ph.D. , Kevin Beezhold , Benjamin Rothrauff , Loredana Cavalli , William R. Wagner , David A. Vorp , Alkiviadis Tsamis , Sunita Shinde , Changqing Zhang , Aaron Barchowsky , Thomas A. Rando , Rocky S. Tuan , Fabrisia Ambrosio
Aging Cells
https://doi.org/10.1111/acel.12578
Patent
Retrievable self-expanding non- thrombogenic low-profile percutaneous atrioventricular valve prosthesis
Vinay Badhwar , Young Jae Chun , Antonio D'Amore, Ph.D. , David S. Schwartzman , William R. Wagner
US patent issued in 03-03-2026, publication number: US 12,564,492. Licensed to Neoolife Inc. in 10-2020.
https://patents.google.com/patent/US10583004B2/en?inventor=%22Antonio%2bd%27Amore%22&oq=%22Antonio%2bd%27Amore%22
Journal Paper
In Vivo Functional Evaluation of Tissue-Engineered Vascular Grafts Fabricated Using Human Adipose-Derived Stem Cells from High Cardiovascular Risk Populations
Jeffrey T. Krawiec , Justin S. Weinbaum , Han-Tsung Liao , Aneesh K. Ramaswamy , Dominic J. Pezzone , Alexander D. Josowitz , Antonio D'Amore, Ph.D. , J. Peter Rubin , William R. Wagner , David A. Vorp
Tissue Engineering Part A
https://doi.org/10.1089/ten.tea.2015.0379
Journal Paper
Extracellular matrix fiber microarchitecture is region-specific in bicuspid aortic valve-associated ascending aortopathy
Alkiviadis Tsamis , Julie A. Phillippi , Ryan G. Koch , Patrick G. Chan , Jeffrey T. Krawiec , Antonio D'Amore, Ph.D. , Simon C. Watkins , William R. Wagner , David A. Vorp , Thomas G. Gleason

The Journal of Thoracic and Cardiovascular Surgery

https://doi.org/10.1016/j.jtcvs.2016.02.019
Journal Paper
Correlations between transmural mechanical and morphological properties in porcine thoracic descending aorta
Ali Hemmasizadeh , Alkiviadis Tsamis , Rabee Cheheltani , Soroush Assari , Antonio D'Amore, Ph.D. , Michael Autieri , Mohammad F. Kiani , Nancy Pleshko , William R. Wagner , Simon C. Watkins , David Vorp , Kurosh Darvish

Journal of the Mechanical Behavior of Biomedical Materials

https://doi.org/10.1016/j.jmbbm.2015.03.004
Dissemination
Collagen fiber architecture in the longitudinal-radial plane of ascending aorta is distinctly different among bicuspid aortic valve and tricuspid aortic valve patients with ascending aortic aneurysm
A. Tsamis , J.A. Phillippi , S. Pasta , Antonio D'Amore, Ph.D. , S. Watkins , W. Wagner , D. Vorp , T. Gleason
Cardiovascular Pathology
Book/Book Chapter
Biomechanics and Finite Element Analysis
Michael Sacks , Antonio D'Amore, Ph.D. , Hobson Chistopher
Biomaterials Science: An Introduction to Materials in Medicine, 3rd ed., Chapter I.1.4 "Biomechanics and Finite Element Analysis." Eds. Ratner, Hoffman, Schoen & Lemons. Elsevier Publisher, 2012. ISBN 9780123746269
Dissemination
Controlling micro-structure to enhance de novo extracellular matrix deposition in elastomeric scaffolds for cardiac tissue regeneration
Antonio D'Amore, Ph.D. , J. Stella , R. Hoff , N. Amoroso , M. Sacks , W. R. Wagner
Journal of Tissue Engineering and Regenerative Medicine
Dissemination
Extracellular Matrix Hydrogels Prepared from Porcine Dermis and Urinary Bladder: Structure, Mechanics and In Vivo Remodeling
M. Wolf , K. Daly , E. Brennan-Pierce , S. Johnson , C. Carruthers , Antonio D'Amore, Ph.D. , S. Nagarkar , S. Velankar , S. Badylak
Glycobiology
Dissemination
Unseeded Engineered Valve Leaflets Retain Function and Remodel After Implant in Sheep Right Pulmonary Outflow Tract
A. S Bayoumi , Antonio D'Amore, Ph.D. , E. Aikawa , N. Amoroso , S. E New , A. Cubberley , P. Chen , K. Shapero , R.F Padera , F. J Schoen , W. R Wagner , M. S Sacks , J. E Mayer
CIRCULATION
https://dx.doi.org/http://circ.ahajournals.org/cgi/content/meeting_abstract/126/21_MeetingAbstracts/A19201
Book/Book Chapter
The mechanics of native and engineered cardiac soft tissues
Michael S. Sacks , S. Wognum , J. Stella , E. Joyce , Antonio D'Amore, Ph.D. ,
Comprehensive Biomaterials, Page 27 of 42 Chapter 94 “The Mechanics of Native and Engineered Cardiac Soft Tissue”. Volume 3, 113-132. Elsevier Publisher, 2011. ISBN: 9780080553023
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