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Dive into the research topics where Manuel Chacón is active.

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Featured researches published by Manuel Chacón.


Investigative Ophthalmology & Visual Science | 2017

Silk Fibroin Films for Corneal Endothelial Regeneration: Transplant in a Rabbit Descemet Membrane Endothelial Keratoplasty

Natalia Vázquez; Carlos A. Rodríguez-Barrientos; Salvador Aznar-Cervantes; Manuel Chacón; José Luis Cenis; Ana Cristina Riestra; Ronald M. Sanchez-Avila; Mairobi Persinal; Agustín Brea-Pastor; Luis Fernández-Vega Cueto; Alvaro Meana; Jesus Merayo-Lloves

Purpose Develop a silk fibroin (SF)-based artificial endothelial graft for its use in a rabbit Descemet membrane endothelial keratoplasty (DMEK). Methods Human and rabbit artificial corneal endothelial grafts were developed through the culture of human and rabbit corneal endothelial cells (CECs) on SF films. Rabbit artificial SF endothelial grafts were transplanted in a DMEK surgery into a rabbit in vivo model. Results SF artificial endothelial grafts showed the characteristic endothelial markers: zonula occludens (ZO-1) and Na+/K+ ATPase. In a rabbit model of DMEK surgery, SF artificial endothelial graft restored the corneal transparency and thickness at 6 week of follow-up. Anterior segment optical coherence tomography revealed the SF graft as a fully integrated component in the corneal tissue, displaying a similar corneal thickness and endothelial cell count when compared with its healthy contralateral cornea. Histologic analysis showed that the SF artificial endothelial graft was attached and integrated on the surface of the corneal stroma without a significant inflammatory reaction, and rabbit CECs consisted in a monolayer that showed their characteristic markers ZO-1 and Na+/K+ ATPase, suggesting proper intercellular junctions and cellular pump function. Conclusions We have developed SF films with biological properties that supported the growth of rabbit and human CECs, which showed normal morphology and characteristic markers; and with mechanical properties that allowed its use in a DMEK surgery, proving its in vivo functionality in a rabbit model of endothelial dysfunction.


Histology and Histopathology | 2015

Keratin-chitosan membranes as scaffold for tissue engineering of human cornea.

Natalia Vázquez; Manuel Chacón; Alvaro Meana; Yolanda Menéndez-Menéndez; Amaia Ferrero-Gutierrez; David Cereijo-Martín; Miguel Naveiras; Jesús Merayo-Lloves


Investigative Ophthalmology & Visual Science | 2013

Keratin-chitosan membranes as scaffold for tissue engineering of human cornea

Alvaro Meana; Natalia Vázquez; Manuel Chacón; Yolanda Menéndez-Menéndez; Amaia Ferrero-Gutierrez; Jesus Merayo-Lloves


Investigative Ophthalmology & Visual Science | 2011

Effectiveness of Heated Hematic Derivatives (Autologous Serum & Plasma Rich in Growth Factors) in Corneal Epithelial Wound Healing

Claudia Nunez; Jesús Merayo-Lloves; Guilherme Ferrara; Ignacio Alcalde; Manuel Chacón; Carlos Alonso-Ron; Eduardo Anitua


Ocular Surface | 2017

Autologous method for ex vivo expansion of human limbal epithelial progenitor cells based on plasma rich in growth factors technology

Ana Cristina Riestra; Natalia Vázquez; Manuel Chacón; S. Berisa; Ronald M. Sanchez-Avila; Gorka Orive; Eduardo Anitua; Alvaro Meana; Jesus Merayo-Lloves


Investigative Ophthalmology & Visual Science | 2017

Tissue engineered silk fibroin endothelial graft in a Descemet's membrane keratoplasty.

Jesus Merayo-Lloves; José Luis Cenis; Salvador David Aznar; Manuel Chacón; Natalia Vázquez; Carlos-Alberto Rodriguez-Barrientos; Mairobi Medina; Iriana Zambrano; Ana Cristina Riestra; Alvaro Meana


Investigative Ophthalmology & Visual Science | 2016

Anterior lens capsule for endothelial grafts production.

Carlos-Alberto Rodriguez-Barrientos; Alvaro Meana; Manuel Chacón; Natalia Vázquez; Judith Zavala; Jorge E Valdez; Jesus Merayo-Lloves


Investigative Ophthalmology & Visual Science | 2016

PRGF-Endoret®: A new approach in the treatment of limbal stem cell deficiency.

Jesus Merayo-Lloves; Ana Cristina Riestra; Alvaro Meana; Natalia Vázquez; Manuel Chacón; Mairobi Persinal; Gorka Orive; Eduardo Anitua


Investigative Ophthalmology & Visual Science | 2016

Graphene oxide membranes for ocular tissue engineering.

Alvaro Meana; Iriana Zambrano; Manuel Chacón; Natalia Vázquez; Juan José Fernández; Adolfo Fernández; Pablo Fanjul; Clara Blanco; Zoraida González; Rosa Menéndez; Jesus Merayo-Lloves


Investigative Ophthalmology & Visual Science | 2015

PRGF-Endoret® in corneal tissue engineering

Ana Cristina Riestra; Natalia Vázquez; Manuel Chacón; Eva García; Alvaro Meana; Gorka Orive; Eduardo Anitua; Jesus Merayo-Lloves

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Carlos Belmonte

Spanish National Research Council

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Gorka Orive

Biotechnology Institute

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