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TITLE: Engineered dual-scale poly (ε-caprolactone) scaffolds using 3D printing and rotational electrospinning for bone tissue regeneration
AUTHORS: Boyang Huang; Enes Aslan; Zhengyi Jiang; Evangelos Daskalakis; Mohan Jiao; Ali Aldalbahi; Cian Vyas; Paulo Bártolo;
PUBLISHED: 2020, SOURCE: Additive Manufacturing, VOLUME: 36
INDEXED IN: CrossRef: 29
IN MY: ORCID
52
TITLE: Engineering the biological performance of hierarchical nanostructured poly(ε-carpolactone) scaffolds for bone tissue engineering
AUTHORS: Weiguang Wang; Zihan Lu; Jiashen Li; Paulo Bártolo;
PUBLISHED: 2020, SOURCE: CIRP Annals, VOLUME: 69, ISSUE: 1
INDEXED IN: CrossRef: 6
IN MY: ORCID
53
TITLE: Aligned multi-walled carbon nanotubes with nanohydroxyapatite in a 3D printed polycaprolactone scaffold stimulates osteogenic differentiation
AUTHORS: Boyang Huang; Cian Vyas; Jae Jong Byun; Mohamed El-Newehy; Zhucheng Huang; Paulo Bártolo;
PUBLISHED: 2020, SOURCE: Materials Science and Engineering: C, VOLUME: 108
INDEXED IN: CrossRef: 75
IN MY: ORCID
54
TITLE: Highly swelling pH-responsive microgels for dual mode near infra-red fluorescence reporting and imaging
AUTHORS: Mingning Zhu; Dongdong Lu; Qing Lian; Shanglin Wu; Wenkai Wang; Andrew A Lyon; Weiguang Wang; Paulo Bártolo; Mark Dickinson; Brian R Saunders;
PUBLISHED: 2020, SOURCE: Nanoscale Advances, VOLUME: 2, ISSUE: 9
INDEXED IN: CrossRef: 9
IN MY: ORCID
55
TITLE: Three-Dimensional Printing and Electrospinning Dual-Scale Polycaprolactone Scaffolds with Low-Density and Oriented Fibers to Promote Cell Alignment
AUTHORS: Cian Vyas; Gokhan Ates; Enes Aslan; Jack Hart; Boyang Huang; Paulo Bartolo;
PUBLISHED: 2020, SOURCE: 3D Printing and Additive Manufacturing, VOLUME: 7, ISSUE: 3
INDEXED IN: CrossRef: 49
IN MY: ORCID
56
TITLE: Novel Poly(ɛ-caprolactone)/Graphene Scaffolds for Bone Cancer Treatment and Bone Regeneration
AUTHORS: Yanhao Hou; Weiguang Wang; Paulo Bártolo;
PUBLISHED: 2020, SOURCE: 3D Printing and Additive Manufacturing, VOLUME: 7, ISSUE: 5
INDEXED IN: CrossRef: 28
IN MY: ORCID
57
TITLE: 3D Printing of Polycaprolactone–Polyaniline Electroactive Scaffolds for Bone Tissue Engineering
AUTHORS: Arie Wibowo; Cian Vyas; Glen Cooper; Fitriyatul Qulub; Rochim Suratman; Andi Isra Mahyuddin; Tatacipta Dirgantara; Paulo Bartolo;
PUBLISHED: 2020, SOURCE: Materials, VOLUME: 13, ISSUE: 3
INDEXED IN: CrossRef: 89
IN MY: ORCID
58
TITLE: A Study of Physico-Mechanical Properties of Hollow Glass Bubble, Jute Fibre and Rubber Powder Reinforced Polypropylene Compounds with and without MuCell® Technology for Lightweight Applications
AUTHORS: Yinping Tao; Srichand Hinduja; Robert Heinemann; Anselmo Gomes; Paulo Jorge Bártolo;
PUBLISHED: 2020, SOURCE: Polymers, VOLUME: 12, ISSUE: 11
INDEXED IN: CrossRef: 11
IN MY: ORCID
59
TITLE: Carbon Nanomaterials for Electro-Active Structures: A Review
AUTHORS: Weiguang Wang; Yanhao Hou; Dean Martinez; Darwin Kurniawan; Wei-Hung Chiang; Paulo Bartolo;
PUBLISHED: 2020, SOURCE: Polymers, VOLUME: 12, ISSUE: 12
INDEXED IN: CrossRef: 20
IN MY: ORCID
60
TITLE: The Potential of Polyethylene Terephthalate Glycol as Biomaterial for Bone Tissue Engineering
AUTHORS: Mohamed H Hassan; Abdalla M Omar; Evangelos Daskalakis; Yanhao Hou; Boyang Huang; Ilya Strashnov; Bruce D Grieve; Paulo Bártolo;
PUBLISHED: 2020, SOURCE: Polymers, VOLUME: 12, ISSUE: 12
INDEXED IN: CrossRef: 39
IN MY: ORCID
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