The Effect of Multilayered Electrospun PLLA Nanofibers Coated with Human Amnion or Bladder ECM Proteins on Epithelialization and Smooth Muscle Regeneration in the Rabbit Bladder

Author:

Gholami Keykavoos1,Seyedjafari Ehsan2,Mahdavi Fatemeh Sadat2,Naghdipoor Mehdi1,Mesbah Gholamreza13,Zahmatkesh Parisa1,Akbarzadehmoallemkolaei Milad4,Baghdadabad Leila Zareian1,Pandian Shiv Kumar5,Meilika Kirolos N6,Aghamir Seyed Mohammad Kazem1ORCID

Affiliation:

1. Urology Research Center Tehran University of Medical Sciences Tehran Iran

2. Department of Biotechnology College of Science University of Tehran Tehran 1416753955 Iran

3. AshianGanoTeb Biopharmaceutical Company Golestan University of Medical Sciences Gorgan Iran

4. Animal Model Integrated Network (AMIN) Universal Scientific Education and Research Network (USERN) Tehran Iran

5. Chelsea and Westminster Hospital NHS Foundation Trust London UK

6. Urology Service Department of Surgery Memorial Sloan Kettering Cancer Center New York NY 1416753955 USA

Abstract

AbstractNanofibrous scaffolds have attracted much attention in bladder reconstruction approaches due to their excellent mechanical properties. In addition, their biological properties can be improved by combination with biological materials. Taking into account the advantages of nanofibrous scaffolds and decellularized extracellular matrix (dECM) in tissue engineering, scaffolds of poly‑L‑lactic acid (PLLA) coated with decellularized human amnion membrane (hAM) or sheep bladder (SB)‐derived ECM proteins are developed (amECM‐coated PLLA and sbECM‐coated PLLA, respectively). The bladder regenerative potential of modified electrospun PLLA scaffolds is investigated in rabbits. The presence of ECM proteins is confirmed on the nanofibers’ surface. Coating the surface of the PLLA nanofibers improves cell adhesion and proliferation. Histological and immunohistochemical evaluations show that rabbits subjected to cystoplasty with a multilayered PLLA scaffold show de novo formation and maturation of the multilayered urothelial layer. However, smooth muscle bundles (myosin heavy chain [MHC] and α‐smooth muscle actin [α‐SMA] positive) are detected only in ECM‐coated PLLA groups. All groups show no evidence of a diverticulumor fistula in the urinary bladder. These results suggest that the biofunctionalization of electrospun PLLA nanofibers with ECM proteins can be a promising option for bladder tissue engineering. Furthermore, hAM can also replace animal‐sourced ECM proteins in bladder tissue regeneration approaches.

Publisher

Wiley

Subject

Materials Chemistry,Polymers and Plastics,Biomaterials,Bioengineering,Biotechnology

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