Marley J Dewey
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Explore the profile of Marley J Dewey including associated specialties, affiliations and a list of published articles.
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23
Citations
270
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Recent Articles
1.
Liao R, Dewey M, Rong J, Johnson S, DAngelo W, Hussey G, et al.
Sci Adv
. 2024 Oct;
10(42):eadn1852.
PMID: 39423278
Aseptic loosening of orthopedic implants is an inflammatory disease characterized by immune cell activation, chronic inflammation, and destruction of periprosthetic bone, and is one of the leading reasons for prosthetic...
2.
Walker S, Lucas K, Dewey M, Badylak S, Hussey G, Flax J, et al.
Small
. 2024 Oct;
:e2405505.
PMID: 39358943
Extracellular vesicles (EVs) are particles released from cells that facilitate intercellular communication and have tremendous diagnostic and therapeutic potential. Bulk assays lack the sensitivity to detect rare EV subsets relevant...
3.
Walker S, Lucas K, Dewey M, Badylak S, Hussey G, Flax J, et al.
bioRxiv
. 2024 May;
PMID: 38746341
Extracellular vesicles (EVs) are particles secreted by all cells that carry bioactive cargo and facilitate intercellular communication with roles in normal physiology and disease pathogenesis. EVs have tremendous diagnostic and...
4.
Dewey M, Timmer K, Blystone A, Lu C, Harley B
J Biomed Mater Res A
. 2023 Oct;
112(3):336-347.
PMID: 37861296
Current treatments for craniomaxillofacial (CMF) defects motivate the design of instructive biomaterials that can promote osteogenic healing of complex bone defects. We report methods to promote in vitro osteogenesis of...
5.
Dewey M, Chang R, Nosatov A, Janssen K, Crotts S, Hollister S, et al.
Acta Biomater
. 2023 Oct;
172:249-259.
PMID: 37806375
Regenerative biomaterials for musculoskeletal defects must address multi-scale mechanical challenges. Repairing craniomaxillofacial bone defects, which are often large and irregularly shaped, requires close conformal contact between implant and defect margins...
6.
Dewey M, Chang R, Nosatov A, Janssen K, Crotts S, Hollister S, et al.
bioRxiv
. 2023 Sep;
PMID: 37732275
Regenerative biomaterials for musculoskeletal defects must address multi-scale mechanical challenges. We are developing biomaterials for craniomaxillofacial bone defects that are often large and irregularly shaped. These require close conformal contact...
7.
Dewey M, Collins A, Tiffany A, Barnhouse V, Lu C, Kolliopoulos V, et al.
Biomaterials
. 2023 Jan;
294:122015.
PMID: 36701999
The design of biomaterials to regenerate bone is likely to increasingly require modifications that reduce bacterial attachment and biofilm formation as infection during wound regeneration can significantly impede tissue repair...
8.
Ren X, Dejam D, Oberoi M, Dahan N, Zhou Q, Huang K, et al.
Biomater Adv
. 2022 Dec;
145:213262.
PMID: 36565669
Custom synthesis of extracellular matrix (ECM)-inspired materials for condition-specific reconstruction has emerged as a potentially translatable regenerative strategy. In skull defect reconstruction, nanoparticulate mineralized collagen glycosaminoglycan scaffolds (MC-GAG) have demonstrated...
9.
Kolliopoulos V, Dewey M, Polanek M, Xu H, Harley B
Front Bioeng Biotechnol
. 2022 Dec;
10:1034701.
PMID: 36466348
Craniomaxillofacial (CMF) bone injuries present a major surgical challenge and cannot heal naturally due to their large size and complex topography. We are developing a mineralized collagen scaffold that mimics...
10.
Crum R, Capella-Monsonis H, Chang J, Dewey M, Kolich B, Hall K, et al.
Acta Biomater
. 2022 Nov;
155:113-122.
PMID: 36423817
Matrix-bound nanovesicles (MBV) are a distinct subtype of extracellular vesicles that are firmly embedded within biomaterials composed of extracellular matrix (ECM). MBV both store and transport a diverse, tissue specific...