161
TITLE: Biomaterials for drug delivery patches
AUTHORS: Santos, LF; Correia, IJ; Silva, AS; Mano, JF;
PUBLISHED: 2018, SOURCE: EUROPEAN JOURNAL OF PHARMACEUTICAL SCIENCES, VOLUME: 118, ISSUE: 66
INDEXED IN: Scopus WOS CrossRef: 106 Handle
IN MY: ORCID
162
TITLE: The effects of platelet lysate patches on the activity of tendon-derived cells
AUTHORS: Costa Almeida, R; Franco, AR; Pesqueira, T; Oliveira, MB; Babo, PS; Leonor, IB; Mano, JF; Reis, RL ; Gomes, ME;
PUBLISHED: 2018, SOURCE: ACTA BIOMATERIALIA, VOLUME: 68
INDEXED IN: Scopus WOS CrossRef: 23
IN MY: ORCID
163
TITLE: Preparation of Well-Dispersed Chitosan/Alginate Hollow Multilayered Microcapsules for Enhanced Cellular Internalization
AUTHORS: Ribeiro, C; Borges, J; Costa, AMS; Gaspar, VM; Bermudez, VD; Mano, JF;
PUBLISHED: 2018, SOURCE: MOLECULES, VOLUME: 23, ISSUE: 3
INDEXED IN: Scopus WOS CrossRef: 31
IN MY: ORCID
164
TITLE: Strategic Advances in Formation of Cell-in-Shell Structures: From Syntheses to Applications
AUTHORS: Kim, BJ; Cho, H; Park, JH; Mano, JF; Choi, IS;
PUBLISHED: 2018, SOURCE: ADVANCED MATERIALS, VOLUME: 30, ISSUE: 14
INDEXED IN: Scopus WOS CrossRef: 106
IN MY: ORCID
165
TITLE: Cell-based microarrays using superhydrophobic platforms patterned with wettable regions
AUTHORS: Oliveira, MB; Mano, JF;
PUBLISHED: 2018, SOURCE: Methods in Molecular Biology, VOLUME: 1771
INDEXED IN: Scopus CrossRef: 2
IN MY: ORCID
166
TITLE: Nanostructured Biopolymer/Few-Layer Graphene Freestanding Films with Enhanced Mechanical and Electrical Properties
AUTHORS: Silva, C; Caridade, SG; Cunha, E; Sousa, MP; Rocha, H; Mano, JF; Paiva, MC; Alves, NM;
PUBLISHED: 2018, SOURCE: MACROMOLECULAR MATERIALS AND ENGINEERING, VOLUME: 303, ISSUE: 4
INDEXED IN: Scopus WOS CrossRef: 6
IN MY: ORCID
167
TITLE: Patterned superhydrophobic surfaces to process and characterize biomaterials and 3D cell culture
AUTHORS: Neto, AI; Levkin, PA; Mano, JF;
PUBLISHED: 2018, SOURCE: MATERIALS HORIZONS, VOLUME: 5, ISSUE: 3
INDEXED IN: Scopus WOS CrossRef: 51
IN MY: ORCID
168
TITLE: Sequentially Moldable and Bondable Four-Dimensional Hydrogels Compatible with Cell Encapsulation
AUTHORS: Oliveira, MB; Bastos, HXS; Mano, JF;
PUBLISHED: 2018, SOURCE: BIOMACROMOLECULES, VOLUME: 19, ISSUE: 7
INDEXED IN: Scopus WOS CrossRef: 20
IN MY: ORCID
169
TITLE: Tuneable spheroidal hydrogel particles for cell and drug encapsulation
AUTHORS: Bjorge, IM; Costa, AMS; Silva, AS; Vidal, JPO; Norega, JM; Mano, JF;
PUBLISHED: 2018, SOURCE: SOFT MATTER, VOLUME: 14, ISSUE: 27
INDEXED IN: WOS
IN MY: ORCID
170
TITLE: Bioinspired bone therapies using naringin: applications and advances
AUTHORS: Lavrador, P; Gaspar, VM; Mano, JF;
PUBLISHED: 2018, SOURCE: DRUG DISCOVERY TODAY, VOLUME: 23, ISSUE: 6
INDEXED IN: Scopus WOS CrossRef: 49
IN MY: ORCID
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