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Polycaprolactone-thiophene-conjugated carbon nanotube meshes as scaffolds for cardiac progenitor cells

Year: 2014

Journal: JOURNAL OF BIOMEDICAL MATERIALS RESEARCH PART B-APPLIED BIOMATERIALS, Vol. 102, p 1553-1561, 20150722

Authors: Wickham, Abeni M.; Islam, M. Mirazul; Mondal, Debasish; Phopase, Jaywant; Sadhu, Veera; Tamas, Eva; Polisetti, Naresh; Richter-Dahlfors, Agneta; Liedberg, Bo; Griffith, May

Organizations: Linkoping Univ, Integrat Regenerat Med IGEN Ctr, Linkoping, Sweden; Linkoping Univ, Dept Phys Chem & Biol, Linkoping, Sweden; Karolinska Inst, Dept Neurosci, Swedish Med Nanosci Ctr, Stockholm, Sweden; Linkoping Univ, Dept Clin & Expt Med, Linkoping, Sweden; Linkoping Univ, Dept Med & Hlth Sci, Div Cardiovasc Dis, Linkoping, Sweden; Cty Council Ostergotland, Dept Cardiothorac Surg UHL, Linkoping, Sweden; Nanyang Technol Univ, Ctr Biomimet Sensor Sci, Singapore 639798, Singapore

The myocardium is unable to regenerate itself after infarct, resulting in scarring and thinning of the heart wall. Our objective was to develop a patch to buttress and bypass the scarred area, while allowing regeneration by incorporated cardiac stem/progenitor cells (CPCs). Polycaprolactone (PCL) was fabricated as both sheets by solvent casting, and fibrous meshes by electrospinning, as potential patches, to determine the role of topology in proliferation and phenotypic changes to the CPCs. Thiophene-conjugated carbon nanotubes (T-CNTs) were incorporated to enhance the mechanical strength. We showed that freshly isolated CPCs from murine hearts neither attached nor spread on the PCL sheets, both with and without T-CNT. As electrospun meshes, however, both PCL and PCL/T-CNT supported CPC adhesion, proliferation, and differentiation. The incorporation of T-CNT into PCL resulted in a significant increase in mechanical strength but no morphological changes to the meshes. In turn, proliferation, but not differentiation, of CPCs into cardiomyocytes was enhanced in T-CNT containing meshes. We have shown that changing the topology of PCL, a known hydrophobic material, dramatically altered its properties, in this case, allowing CPCs to survive and differentiate. With further development, PCL/T-CNT meshes or similar patches may become a viable strategy to aid restoration of the postmyocardial infarction myocardium. (C) 2014 Wiley Periodicals, Inc.