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Amir A Zadpoor

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Articles 119
Citations 1663
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Recent Articles
1.
van Paassen R, Tumer N, van der Heijden R, Eijkenboom J, Zadpoor A, Bierma-Zeinstra S, et al.
J ISAKOS . 2025 Mar; :100849. PMID: 40074201
Introduction: Patellofemoral pain (PFP) is suggested as a precursor of patellofemoral osteoarthritis (PFOA) later in life. This hypothesis is based on shared risk factors for both diseases, such as deviating...
2.
Huang C, Wang Y, Yang F, Shi Y, Zhao S, Li X, et al.
Acta Biomater . 2025 Feb; PMID: 39993520
Additively manufactured (AM) biodegradable zinc alloys hold huge potential as promising candidates for bone defect and fracture repair, thanks to their suitable biodegradation rates and acceptable biocompatibility. However, the mechanical...
3.
Verstegen M, Coppes R, Beghin A, De Coppi P, Gerli M, de Graeff N, et al.
Nat Med . 2025 Feb; 31(2):409-421. PMID: 39901045
Organoids are innovative three-dimensional and self-organizing cell cultures of various lineages that can be used to study diverse tissues and organs. Human organoids have dramatically increased our understanding of developmental...
4.
Garner E, Meynen A, Scheys L, Wu J, Zadpoor A
J Orthop Res . 2024 Jul; 42(11):2535-2544. PMID: 39004739
Effective treatment of large acetabular defects remains among the most challenging aspects of revision total hip arthroplasty (THA), due to the deficiency of healthy bone stock and degradation of the...
5.
Zheng Y, Huang C, Li Y, Gao J, Yang Y, Zhao S, et al.
Acta Biomater . 2024 May; 182:139-155. PMID: 38750914
Additively manufactured (AM) biodegradable zinc (Zn) alloys have recently emerged as promising porous bone-substituting materials, due to their moderate degradation rates, good biocompatibility, geometrically ordered microarchitectures, and bone-mimicking mechanical properties....
6.
Yarali E, Mirzaali M, Ghalayaniesfahani A, Accardo A, Diaz-Payno P, Zadpoor A
Adv Mater . 2024 Apr; 36(31):e2402301. PMID: 38580291
4D (bio-)printing endows 3D printed (bio-)materials with multiple functionalities and dynamic properties. 4D printed materials have been recently used in biomedical engineering for the design and fabrication of biomedical devices,...
7.
Putra N, Moosabeiki V, Leeflang M, Zhou J, Zadpoor A
Acta Biomater . 2024 Feb; 178:340-351. PMID: 38395100
Additively manufactured (AM) biodegradable porous iron-manganese (FeMn) alloys have recently been developed as promising bone-substituting biomaterials. However, their corrosion fatigue behavior has not yet been studied. Here, we present the...
8.
Eijkel B, Apachitei I, Fratila-Apachitei L, Zadpoor A
Front Bioeng Biotechnol . 2024 Feb; 12:1332771. PMID: 38375457
The antibacterial biofunctionality of bone implants is essential for the prevention and treatment of implant-associated infections (IAI). co-culture models are utilized to assess this and study bacteria-host cell interactions at...
9.
Yarali E, Klimopoulou M, David K, Boukany P, Staufer U, Fratila-Apachitei L, et al.
Acta Biomater . 2024 Feb; 177:228-242. PMID: 38325707
The Poisson's ratio and elastic modulus are two parameters determining the elastic behavior of biomaterials. While the effects of elastic modulus on the cell response is widely studied, very little...
10.
Mirzaali M, Zadpoor A
APL Bioeng . 2024 Jan; 8(1):010901. PMID: 38250670
Meta-biomaterials, engineered materials with distinctive combinations of mechanical, physical, and biological properties stemming from their micro-architecture, have emerged as a promising domain within biomedical engineering. Correspondingly, meta-implants, which serve as...