Literature DB >> 21945896

Factorial analysis of adaptable properties of self-assembling peptide matrix on cellular proliferation and neuronal differentiation of pluripotent embryonic carcinoma.

Qianqian Li1, Wai Hung Cheung, King L Chow, Rutledge G Ellis-Behnke, Ying Chau.   

Abstract

An integrative and quantitative approach for systematically studying the effects of changing the matrix environment on pluripotent cell viability and neuronal differentiation was demonstrated. This approach, based on factorial analysis and a self-assembling peptide (SAP) matrix, was exemplified using P19 as a pluripotent cell model. In a two-level, three-factor factorial design of experiments, three niche factors, namely, culture dimensionality, fixed biochemical signal and mechanical stiffness, were simultaneously investigated. We found that cell growth was slowed in matrices containing IKVAV epitopes on the SAP constructs, and neuronal differentiation was promoted synergistically by culturing in a three-dimensional matrix and in the presence of IKVAV. Variation of the storage modulus from around 262 Pa to 672 Pa had no significant effect on either viability or differentiation. This approach should be applicable to studying how niche properties that are tunable using SAPs affect the behavior of pluripotent cells in general, thus generating guidelines for constructing artificial matrices. FROM THE CLINICAL EDITOR: In this basic science study, an integrative and quantitative approach to study the effects of matrix environment on pluripotent cell viability and neuronal differentiation is demonstrated. Approaches, like the one described in this paper, are applicable to studying how self assembling peptides affect the behavior of pluripotent cells in general.
Copyright © 2012 Elsevier Inc. All rights reserved.

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Year:  2011        PMID: 21945896     DOI: 10.1016/j.nano.2011.09.001

Source DB:  PubMed          Journal:  Nanomedicine        ISSN: 1549-9634            Impact factor:   5.307


  4 in total

1.  Self-assembling peptides for stem cell and tissue engineering.

Authors:  Philip D Tatman; Ethan G Muhonen; Sean T Wickers; Albert O Gee; Eung-Sam Kim; Deok-Ho Kim
Journal:  Biomater Sci       Date:  2016-02-15       Impact factor: 6.843

2.  Enhancement of Neural Stem Cell Survival, Proliferation, Migration, and Differentiation in a Novel Self-Assembly Peptide Nanofibber Scaffold.

Authors:  Sajad Sahab Negah; Zabihollah Khaksar; Hadi Aligholi; Shahin Mohammad Sadeghi; Sayed Mostafa Modarres Mousavi; Hadi Kazemi; Ali Jahanbazi Jahan-Abad; Ali Gorji
Journal:  Mol Neurobiol       Date:  2016-11-23       Impact factor: 5.590

3.  Mechanical Characteristics of SPG-178 Hydrogels: Optimizing Viscoelastic Properties through Microrheology and Response Surface Methodology

Authors:  Mansooreh-Sadat Seyedkarimi; Hamid Mirzadeh; Aliasghar Mohammadi; Shadab Bagheri-Khoulenjani
Journal:  Iran Biomed J       Date:  2019-11-03

Review 4.  Clever Experimental Designs: Shortcuts for Better iPSC Differentiation.

Authors:  Ryota Yasui; Keisuke Sekine; Hideki Taniguchi
Journal:  Cells       Date:  2021-12-15       Impact factor: 6.600

  4 in total

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