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Jasper Van Hoorick

Explore the profile of Jasper Van Hoorick including associated specialties, affiliations and a list of published articles. Areas
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Articles 27
Citations 435
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Recent Articles
1.
Agten H, Van Hoven I, Van Hoorick J, Van Vlierberghe S, Luyten F, Bloemen V
Front Bioeng Biotechnol . 2024 Apr; 12:1386692. PMID: 38665810
Osteochondral defects are deep joint surface lesions that affect the articular cartilage and the underlying subchondral bone. In the current study, a tissue engineering approach encompassing individual cells encapsulated in...
2.
Agten H, Van Hoven I, Viseu S, Van Hoorick J, Van Vlierberghe S, Luyten F, et al.
Biotechnol Bioeng . 2022 Jul; 119(10):2950-2963. PMID: 35781799
Articular cartilage defects have limited healing potential and, when left untreated, can lead to osteoarthritis. Tissue engineering focuses on regenerating the damaged joint surface, preferably in an early stage. Here,...
3.
Sayer S, Zandrini T, Markovic M, Van Hoorick J, Van Vlierberghe S, Baudis S, et al.
Sci Rep . 2022 Jun; 12(1):10196. PMID: 35715691
No abstract available.
4.
Sayer S, Zandrini T, Markovic M, Van Hoorick J, Van Vlierberghe S, Baudis S, et al.
Sci Rep . 2022 May; 12(1):8626. PMID: 35606455
Multi-photon lithography (MPL) has proven to be a suitable tool to precisely control the microenvironment of cells in terms of the biochemical and biophysical properties of the hydrogel matrix. In...
5.
Holzl K, Fursatz M, Gocerler H, Schadl B, Zigon-Branc S, Markovic M, et al.
J Tissue Eng Regen Med . 2021 Dec; 16(2):207-222. PMID: 34861104
Cartilage damage typically starts at its surface, either due to wear or trauma. Treatment of these superficial defects is important in preventing degradation and osteoarthritis. Biomaterials currently used for deep...
6.
Arslan A, Vanmol K, Dobos A, Natale A, Van Hoorick J, Roose P, et al.
Biomacromolecules . 2021 Nov; 22(12):4919-4932. PMID: 34723502
Implementation of hydrogel precursors in two-photon polymerization (2PP) technology provides promising opportunities in the tissue engineering field thanks to their soft characteristics and similarity to extracellular matrix. Most of the...
7.
Pien N, Pezzoli D, Van Hoorick J, Copes F, Vansteenland M, Albu M, et al.
Mater Sci Eng C Mater Biol Appl . 2021 Oct; 130:112460. PMID: 34702535
The present work targets the development of collagen-based hydrogel precursors, functionalized with photo-crosslinkable methacrylamide moieties (COL-MA), for vascular tissue engineering (vTE) applications. The developed materials were physico-chemically characterized in terms...
8.
Ionescu O, Mignon A, Minsart M, Van Hoorick J, Gardikiotis I, Caruntu I, et al.
Macromol Biosci . 2021 Sep; 21(11):e2100230. PMID: 34491617
Wound dressings under the form of films constituted of modified alginate (methacrylated alginate - AlgMA) versus a gelatine derivative containing norbornene functionalities (GelNB) are developed and evaluated for their moisturizing...
9.
Van Damme L, Van Hoorick J, Blondeel P, Van Vlierberghe S
Biomacromolecules . 2021 May; 22(6):2408-2418. PMID: 33950675
Nowadays, breast implants, lipofilling, and microsurgical free tissue transfer are the most often applied procedures to repair soft tissue defects resulting from mastectomies/lumpectomies following breast cancer. Due to the drawbacks...
10.
Dobos A, Gantner F, Markovic M, Van Hoorick J, Tytgat L, Van Vlierberghe S, et al.
Biofabrication . 2021 Feb; 13(1):015016. PMID: 33586666
'Organ-on-chip' devices which integrate three-dimensional (3D) cell culture techniques with microfluidic approaches have the capacity to overcome the limitations of classical 2D platforms. Although several different strategies have been developed...