Increased elastic modulus of plasma polymer coatings reinforced with detonation nanodiamond particles improves osteogenic differentiation of mesenchymal stem cells

scientific article published on 27 April 2018

Increased elastic modulus of plasma polymer coatings reinforced with detonation nanodiamond particles improves osteogenic differentiation of mesenchymal stem cells is …
instance of (P31):
scholarly articleQ13442814

External links are
P356DOI10.3906/BIY-1711-26
P932PMC publication ID6353295
P698PubMed publication ID30814881

P50authorPavel N. NesterenkoQ45277568
Milena KeremidarskaQ89502948
P2093author name stringBrett Paull
Aleš Iglič
Ita Junkar
Natalia Krasteva
Dimitar Mitev
Ekaterina Radeva
Joseph Šepitka
Kamelia Hristova-Panusheva
P2860cites workBone tissue engineering: recent advances and challengesQ27007788
Matrix elasticity directs stem cell lineage specificationQ27860761
Transmembrane crosstalk between the extracellular matrix--cytoskeleton crosstalkQ28206345
Cell shape, cytoskeletal tension, and RhoA regulate stem cell lineage commitmentQ28255124
Tissue cells feel and respond to the stiffness of their substrateQ29547613
Tailored surface modification by ion implantation and laser treatmentQ33296681
Material properties of the cell dictate stress-induced spreading and differentiation in embryonic stem cellsQ33708241
Mechanotransduction in development: a growing role for contractilityQ34186278
Role of mechanical factors in fate decisions of stem cells.Q35083175
Challenges and barriers to improving care of the musculoskeletal patient of the future - a debate article and global perspectiveQ35386402
Plasma deposition for biomedical applications: a brief reviewQ35592736
Burden of major musculoskeletal conditions.Q35622610
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Bone tissue engineering via nanostructured calcium phosphate biomaterials and stem cellsQ35755131
Biomaterial strategies for engineering implants for enhanced osseointegration and bone repairQ36137494
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Mechanical control of tissue and organ developmentQ37730278
Directed stem cell differentiation: the role of physical forcesQ37766246
Silicon-polymer hybrid materials for drug delivery.Q37855825
Mechanically induced osteogenic lineage commitment of stem cellsQ38134209
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Improving the fracture toughness and the strength of epoxy using nanomaterials--a review of the current statusQ38501461
Biomolecular surface coating to enhance orthopaedic tissue healing and integrationQ42591822
Fibronectin modulation of cell shape and lipogenic gene expression in 3T3-adipocytesQ42820082
Bone tissue engineering and regeneration: from discovery to the clinic--an overviewQ42976992
Orthopaedic surgeon workforce and volume assessment for total hip and knee replacement in the United States: preparing for an epidemicQ46483543
Directing osteogenic and myogenic differentiation of MSCs: interplay of stiffness and adhesive ligand presentationQ47378092
Effect of reinforcement particle size on the tribological properties of nano-diamond filled polytetrafluoroethylene based coatingQ47585544
The cytoskeleton and cell signaling: component localization and mechanical couplingQ47801990
Large-sliding contact elements accurately predict levels of bone-implant micromotion relevant to osseointegrationQ57008890
Stimulation of fracture healing: osteobiologics, bone stimulators, and beyondQ83024300
Reinforcement of a PMMA resin for fixed interim prostheses with nanodiamondsQ83557141
P433issue2
P921main subjectdetonation nanodiamondQ1439836
mesenchymal stem cellQ1922379
P304page(s)195-203
P577publication date2018-04-27
P1433published inTurkish Journal of BiologyQ15716521
P1476titleIncreased elastic modulus of plasma polymer coatings reinforced with detonation nanodiamond particles improves osteogenic differentiation of mesenchymal stem cells
P478volume42

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