11
TITLE: Porous aligned ZnSr-doped beta-TCP/silk fibroin scaffolds using ice-templating method for bone tissue engineering applications
AUTHORS: Bicho, D; Canadas, RF; Goncalves, C ; Pina, S; Reis, RL ; Oliveira, JM ;
PUBLISHED: 2021, SOURCE: JOURNAL OF BIOMATERIALS SCIENCE-POLYMER EDITION, VOLUME: 32, ISSUE: 15
INDEXED IN: Scopus WOS CrossRef: 6
IN MY: ORCID
12
TITLE: Natural polymeric biomaterials for tissue engineering
AUTHORS: Sandra Pina; Rui L Reis; Miguel M Oliveira ;
PUBLISHED: 2021, SOURCE: Tissue Engineering Using Ceramics and Polymers, Third Edition
INDEXED IN: Scopus CrossRef: 1
IN MY: ORCID
13
TITLE: Hierarchical HRP-Crosslinked Silk Fibroin/ZnSr-TCP Scaffolds for Osteochondral Tissue Regeneration: Assessment of the Mechanical and Antibacterial Properties
AUTHORS: Ribeiro, VP; Pina, S; Gheduzzi, S; Araujo, AC; Reis, RL ; Oliveira, JM ;
PUBLISHED: 2020, SOURCE: FRONTIERS IN MATERIALS, VOLUME: 7
INDEXED IN: Scopus WOS CrossRef: 13
IN MY: ORCID
14
TITLE: Enzymatically Cross-Linked Silk Fibroin-Based Hierarchical Scaffolds for Osteochondral Regeneration
AUTHORS: Ribeiro, VP; Pina, S; Costa, JB; Cengiz, IF; Garcia Fernandez, L; Fernandez Gutierrez, MD; Paiva, OC; Oliveira, AL ; San Roman, J; Oliveira, JM ; Reis, RL ;
PUBLISHED: 2019, SOURCE: ACS APPLIED MATERIALS & INTERFACES, VOLUME: 11, ISSUE: 4
INDEXED IN: Scopus WOS CrossRef: 85 Handle
IN MY: ORCID
15
TITLE: Collagen-based bioinks for hard tissue engineering applications: a comprehensive review
AUTHORS: Marques, CF; Diogo, GS; Pina, S; Oliveira, JM ; Silva, TH ; Reis, RL ;
PUBLISHED: 2019, SOURCE: JOURNAL OF MATERIALS SCIENCE-MATERIALS IN MEDICINE, VOLUME: 30, ISSUE: 3
INDEXED IN: Scopus WOS CrossRef: 139
IN MY: ORCID
16
TITLE: Scaffolding Strategies for Tissue Engineering and Regenerative Medicine Applications  Full Text
AUTHORS: Pina, S; Ribeiro, VP; Marques, CF; Maia, FR; Silva, TH ; Reis, RL ; Oliveira, JM ;
PUBLISHED: 2019, SOURCE: MATERIALS, VOLUME: 12, ISSUE: 11
INDEXED IN: Scopus WOS CrossRef: 288
IN MY: ORCID
17
TITLE: Lactoferrin-Hydroxyapatite Containing Spongy-Like Hydrogels for Bone Tissue Engineering
AUTHORS: Bastos, AR; da Silva, LP; Maia, FR; Pina, S; Rodrigues, T; Sousa, F; Oliveira, JM ; Cornish, J; Correlo, VM; Reis, RL ;
PUBLISHED: 2019, SOURCE: MATERIALS, VOLUME: 12, ISSUE: 13
INDEXED IN: Scopus WOS CrossRef: 25
IN MY: ORCID
18
TITLE: Indirect printing of hierarchical patient-specific scaffolds for meniscus tissue engineering
AUTHORS: Costa, JB; Silva Correia, J ; Pina, S; Morais, AD; Vieira, S; Pereira, H; Espregueira Mendes, J ; Reis, RL ; Oliveira, JM ;
PUBLISHED: 2019, SOURCE: BIO-DESIGN AND MANUFACTURING, VOLUME: 2, ISSUE: 4
INDEXED IN: Scopus WOS CrossRef: 8 Handle
IN MY: ORCID
19
TITLE: Tissue engineering scaffolds: Future perspectives
AUTHORS: Pina, S; Ribeiro, VP; Paiva, OC; Correlo, VM; Oliveira, JM ; Reis, RL;
PUBLISHED: 2019, SOURCE: Handbook of Tissue Engineering Scaffolds: Volume One
INDEXED IN: Scopus
20
TITLE: Tissue engineering scaffolds
AUTHORS: Sandra Pina; Viviana P Ribeiro; Olga C Paiva; Vitor M Correlo; Miguel M Oliveira ; Rui L Reis;
PUBLISHED: 2019, SOURCE: Handbook of Tissue Engineering Scaffolds: Volume One
INDEXED IN: CrossRef: 6
IN MY: ORCID
Page 2 of 6. Total results: 57.