Skip to Content
Merck
CN
  • Human adipose-derived mesenchymal stem cells accelerate decellularized neobladder regeneration.

Human adipose-derived mesenchymal stem cells accelerate decellularized neobladder regeneration.

Regenerative biomaterials (2020-04-17)
Victoria Moreno-Manzano, Maravillas Mellado-López, Maria Jose Morera-Esteve, Ana Alastrue-Agudo, Viviana Bisbal-Velasco, Jerónimo Forteza-Vila, Ángel Serrano-Aroca, César David Vera-Donoso
ABSTRACT

Decellularized natural bladder matrices (neobladders) represent an exciting means to regenerate the bladder following bladder cancer-associated cystectomy. In this study, we compare the evolution of decellularized matrices with recellularized matrices by seeding it with human adipose-derived mesenchymal stem cells (ADSC) after implantation following partial cystectomy in rats. We discovered significant anatomical differences since 10 days after neobladder implantation with the ADSC-containing matrices promoting a significant recovery of mature p63- and cytokeratin 7-positive urothelium. We also discovered significantly induced expression of the vimentin mesoderm marker in the submucosal layer in ADSC-seeded matrices. Interestingly, we found a higher expression of smooth muscle actin in transversal and longitudinal smooth muscle layers with ADSC-seeded matrices. Furthermore, ADSC also showed increased vascularization and nerve innervation of the neobladder as determined by the distribution of CD31 and S100β reactivity, respectively. We believe that ADSC and their paracrine-acting pro-regenerative secretome within decellularized matrices represent an efficient bladder substitution strategy; however, we require a fuller understanding of the mechanisms involved before clinical studies can begin.

MATERIALS
Product Number
Brand
Product Description

Sigma-Aldrich
Phalloidin–Tetramethylrhodamine B isothiocyanate, sequence from Amanita phalloides(synthetic: peptide sequence)
Sigma-Aldrich
Anti-Mitochondria Antibody, surface of intact mitochondria, clone 113-1, clone 113-1, Chemicon®, from mouse