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Biomaterials
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July 27, 2010
Biochemical and biomechanical gradients for directed bone marrow stromal cell differentiation toward tendon and bone
Ram I Sharma, Jess G Snedeker
Plos One
|
February 23, 2012
Paracrine interactions between mesenchymal stem cells affect substrate driven differentiation toward tendon and bone phenotypes
Ram I Sharma, Jess G Snedeker
Journal of Biomedical Materials Research. Part A
|
March 5, 2004
Poly(ethylene glycol) enhances cell motility on protein-based poly(ethylene glycol)-polycarbonate substrates: a mechanism for cell-guided ligand remodeling
Ram I Sharma, Joachim Kohn, Prabhas V Moghe
Journal of Tissue Engineering
|
January 23, 2015
The extracellular matrix: Structure, composition, age-related differences, tools for analysis and applications for tissue engineering
Jaspreet K Kular, Shouvik Basu, Ram I Sharma
Molecules (Basel, Switzerland)
|
March 15, 2018
Recent Advances in Modified Cellulose for Tissue Culture Applications
James C Courtenay, Ram I Sharma, Janet L Scott
Small (Weinheim an Der Bergstrasse, Germany)
|
January 8, 2011
Nanomaterials can dynamically steer cell responses to biological ligands
Ram I Sharma, Jean E Schwarzbauer, Prabhas V Moghe
Tissue Engineering. Part A
|
July 3, 2008
Nanoscale variation of bioadhesive substrates as a tool for engineering of cell matrix assembly
Ram I Sharma, David I Shreiber, Prabhas V Moghe
Biomaterials
|
March 11, 2006
Albumin-derived nanocarriers: substrates for enhanced cell adhesive ligand display and cell motility
Ram I Sharma, Marian Pereira, Jean E Schwarzbauer, et al.
Biomedical Microdevices
|
December 2, 2010
A novel method for assessing adherent single-cell stiffness in tension: design and testing of a substrate-based live cell functional imaging device
Guido Bartalena, Reto Grieder, Ram I Sharma, et al.
Tissue Engineering
|
May 24, 2007
Engineered cell-adhesive nanoparticles nucleate extracellular matrix assembly
Marian Pereira, Ram I Sharma, Rebecca Penkala, et al.
Page
of 2
Search research articles
Search
Showing results (1-10 of 15) with videos related to
Sort By:
Page
of 2
Biomaterials
|
July 27, 2010
Biochemical and biomechanical gradients for directed bone marrow stromal cell differentiation toward tendon and bone
Ram I Sharma, Jess G Snedeker
Plos One
|
February 23, 2012
Paracrine interactions between mesenchymal stem cells affect substrate driven differentiation toward tendon and bone phenotypes
Ram I Sharma, Jess G Snedeker
Journal of Biomedical Materials Research. Part A
|
March 5, 2004
Poly(ethylene glycol) enhances cell motility on protein-based poly(ethylene glycol)-polycarbonate substrates: a mechanism for cell-guided ligand remodeling
Ram I Sharma, Joachim Kohn, Prabhas V Moghe
Journal of Tissue Engineering
|
January 23, 2015
The extracellular matrix: Structure, composition, age-related differences, tools for analysis and applications for tissue engineering
Jaspreet K Kular, Shouvik Basu, Ram I Sharma
Molecules (Basel, Switzerland)
|
March 15, 2018
Recent Advances in Modified Cellulose for Tissue Culture Applications
James C Courtenay, Ram I Sharma, Janet L Scott
Small (Weinheim an Der Bergstrasse, Germany)
|
January 8, 2011
Nanomaterials can dynamically steer cell responses to biological ligands
Ram I Sharma, Jean E Schwarzbauer, Prabhas V Moghe
Tissue Engineering. Part A
|
July 3, 2008
Nanoscale variation of bioadhesive substrates as a tool for engineering of cell matrix assembly
Ram I Sharma, David I Shreiber, Prabhas V Moghe
Biomaterials
|
March 11, 2006
Albumin-derived nanocarriers: substrates for enhanced cell adhesive ligand display and cell motility
Ram I Sharma, Marian Pereira, Jean E Schwarzbauer, et al.
Biomedical Microdevices
|
December 2, 2010
A novel method for assessing adherent single-cell stiffness in tension: design and testing of a substrate-based live cell functional imaging device
Guido Bartalena, Reto Grieder, Ram I Sharma, et al.
Tissue Engineering
|
May 24, 2007
Engineered cell-adhesive nanoparticles nucleate extracellular matrix assembly
Marian Pereira, Ram I Sharma, Rebecca Penkala, et al.
Page
of 2