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Christopher S OBryan

Explore the profile of Christopher S OBryan including associated specialties, affiliations and a list of published articles. Areas
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Articles 17
Citations 333
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Recent Articles
1.
OBryan C, Ni Y, Taylor C, Angelini T, Schulze K
Langmuir . 2024 Feb; 40(8):4228-4235. PMID: 38357880
Simple synthetic and natural hydrogels can be formulated to have elastic moduli that match biological tissues, leading to their widespread application as model systems for tissue engineering, medical device development,...
2.
OBryan C, Murdoch T, Strickland D, Rose K, Bendejacq D, Lee D, et al.
Langmuir . 2023 Jan; 39(5):1740-1749. PMID: 36637895
Polymer adsorption at the solid/liquid interface depends not only on the chemical composition of the polymer but also on the specific placement of the monomers along the polymer sequence. However,...
3.
Rose K, Marino E, OBryan C, Murray C, Lee D, Composto R
Soft Matter . 2022 Nov; 18(47):9045-9056. PMID: 36416054
The effect of nanoscale defects on nanoparticle dynamics in defective tetra-poly(ethylene glycol) (tetra-PEG) hydrogels is investigated using single particle tracking. In a swollen nearly homogeneous hydrogel, PEG-functionalized quantum dot (QD)...
4.
OBryan C, Rosenfeld J, Zhang A, Keller A, Bendejacq D, Kagan C, et al.
J Colloid Interface Sci . 2022 Feb; 614:522-531. PMID: 35121510
Polymer and small molecules are often used to modify the wettability of mineral surfaces which facilitates the separation of valuable minerals such as molybdenum disulfide (MoS) from gangue material through...
5.
OBryan C, Kabb C, Sumerlin B, Angelini T
ACS Appl Bio Mater . 2022 Jan; 2(4):1509-1517. PMID: 35026924
The yielding and jamming behaviors of packed granular-scale microgels enable their use as a support medium for 3D printing stable shapes made from liquid phases; under low levels of applied...
6.
OBryan C, Zhang Q, Lele T, Angelini T
Bio Protoc . 2021 Apr; 10(23):e3847. PMID: 33889659
The linker of nucleoskeleton and cytoskeleton (LINC) complex is responsible for tethering the nucleus to the cytoskeleton, providing a pathway for the cell's nucleus to sense mechanical signals from the...
7.
OBryan C, Brady-Mine A, Tessmann C, Spotz A, Angelini T
Soft Matter . 2021 Mar; 17(14):3886-3894. PMID: 33683242
Capillary forces acting at the interfaces of soft materials lead to deformations over the scale of the elastocapillary length. When surface stresses exceed a material's yield stress, a plastocapillary effect...
8.
Bhattacharjee T, Gil C, Marshall S, Uruena J, OBryan C, Carstens M, et al.
ACS Biomater Sci Eng . 2021 Jan; 2(10):1787-1795. PMID: 33440476
The demands of tissue engineering have driven a tremendous amount of research effort in 3D tissue culture technology and, more recently, in 3D printing. The need to use 3D tissue...
9.
Morley C, Tordoff J, OBryan C, Weiss R, Angelini T
Soft Matter . 2020 Jul; 16(28):6684. PMID: 32639490
Correction for '3D aggregation of cells in packed microgel media' by Cameron D. Morley et al., Soft Matter, 2020, DOI: 10.1039/d0sm00517g.
10.
Morley C, Tordoff J, OBryan C, Weiss R, Angelini T
Soft Matter . 2020 Jun; 16(28):6572-6581. PMID: 32589183
In both natural and applied contexts, investigating cell self-assembly and aggregation within controlled 3D environments leads to improved understanding of how structured cell assemblies emerge, what determines their shapes and...