Literature DB >> 27598294

Polycaprolactone Microfibrous Scaffolds to Navigate Neural Stem Cells.

Farrokh Sharifi1, Bhavika B Patel1, Adam K Dzuilko1, Reza Montazami1, Donald S Sakaguchi1, Nastaran Hashemi1.   

Abstract

Fibrous scaffolds have shown promise in tissue engineering due to their ability to improve cell alignment and migration. In this paper, poly(ε-caprolactone) (PCL) fibers are fabricated in different sizes using a microfluidic platform. By using this approach, we demonstrated considerable flexibility in ability to control the size of the fibers. It was shown that the average diameter of the fibers was obtained in the range of 2.6-36.5 μm by selecting the PCL solution flow rate from 1 to 5 μL min-1 and the sheath flow rate from 20 to 400 μL min-1 in the microfluidic channel. The microfibers were used to create 3D microenvironments in order to investigate growth and differentiation of adult hippocampal stem/progenitor cells (AHPCs) in vitro. The results indicated that the 3D topography of the PCL substrates, along with chemical (extracellular matrix) guidance cues supported the adhesion, survival, and differentiation of the AHPCs. Additionally, it was found that the cell deviation angle for 44-66% of cells on different types of fibers was less than 10°. This reveals the functionality of PCL fibrous scaffolds for cell alignment important in applications such as reconnecting serious nerve injuries and guiding the direction of axon growth as well as regenerating blood vessels, tendons, and muscle tissue.

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Year:  2016        PMID: 27598294     DOI: 10.1021/acs.biomac.6b01028

Source DB:  PubMed          Journal:  Biomacromolecules        ISSN: 1525-7797            Impact factor:   6.988


  14 in total

1.  Accelerated neural differentiation of mouse embryonic stem cells on aligned GYIGSR-functionalized nanofibers.

Authors:  Elena A Silantyeva; Wafaa Nasir; Jacqueline Carpenter; Olivia Manahan; Matthew L Becker; Rebecca K Willits
Journal:  Acta Biomater       Date:  2018-06-05       Impact factor: 8.947

2.  RGD-Functionalized Nanofibers Increase Early GFAP Expression during Neural Differentiation of Mouse Embryonic Stem Cells.

Authors:  Diana L Philip; Elena A Silantyeva; Matthew L Becker; Rebecca K Willits
Journal:  Biomacromolecules       Date:  2019-02-18       Impact factor: 6.988

3.  Transport of Maternally Administered Pharmaceutical Agents Across the Placental Barrier In Vitro.

Authors:  Rajeendra L Pemathilaka; Nima Alimoradi; David E Reynolds; Nicole N Hashemi
Journal:  ACS Appl Bio Mater       Date:  2022-04-05

Review 4.  Retinal Tissue Bioengineering, Materials and Methods for the Treatment of Glaucoma.

Authors:  Sanaz Behtaj; Andreas Öchsner; Yuri G Anissimov; Maksym Rybachuk
Journal:  Tissue Eng Regen Med       Date:  2020-05-10       Impact factor: 4.169

5.  Placenta-on-a-Chip: In Vitro Study of Caffeine Transport across Placental Barrier Using Liquid Chromatography Mass Spectrometry.

Authors:  Rajeendra L Pemathilaka; Jeremy D Caplin; Saurabh S Aykar; Reza Montazami; Nicole N Hashemi
Journal:  Glob Chall       Date:  2019-02-18

6.  Polycaprolactone electrospun fiber scaffold loaded with iPSCs-NSCs and ASCs as a novel tissue engineering scaffold for the treatment of spinal cord injury.

Authors:  XianHu Zhou; GuiDong Shi; BaoYou Fan; Xin Cheng; XiaoLei Zhang; Xu Wang; Shen Liu; Yan Hao; ZhiJian Wei; LianYong Wang; ShiQing Feng
Journal:  Int J Nanomedicine       Date:  2018-10-10

7.  Asymmetrical 3D Nanoceria Channel for Severe Neurological Defect Regeneration.

Authors:  Yun Qian; Qixin Han; Xiaotian Zhao; Hui Li; Wei-En Yuan; Cunyi Fan
Journal:  iScience       Date:  2019-01-14

8.  Vertically-Aligned Functionalized Silicon Micropillars for 3D Culture of Human Pluripotent Stem Cell-Derived Cortical Progenitors.

Authors:  Alessandro Cutarelli; Simone Ghio; Jacopo Zasso; Alessandra Speccher; Giorgina Scarduelli; Michela Roccuzzo; Michele Crivellari; Nicola Maria Pugno; Simona Casarosa; Maurizio Boscardin; Luciano Conti
Journal:  Cells       Date:  2019-12-30       Impact factor: 6.600

9.  High-Yield Production of Aqueous Graphene for Electrohydrodynamic Drop-on-Demand Printing of Biocompatible Conductive Patterns.

Authors:  Amir Ehsan Niaraki Asli; Jingshuai Guo; Pei Lun Lai; Reza Montazami; Nicole N Hashemi
Journal:  Biosensors (Basel)       Date:  2020-01-17

10.  Viability of Neural Cells on 3D Printed Graphene Bioelectronics.

Authors:  Jingshuai Guo; Amir Ehsan Niaraki Asli; Kelli R Williams; Pei Lun Lai; Xinwei Wang; Reza Montazami; Nicole N Hashemi
Journal:  Biosensors (Basel)       Date:  2019-09-20
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