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Updated: Apr 11, 2026

Evaluation of Biomaterials for Bladder Augmentation using Cystometric Analyses in Various Rodent Models
Published on: August 9, 2012
Quick note on tissue engineering-based surgical measures to treat patients with neurogenic bladder-due
Abstract:
To treat the neurogenic bladder-due detrusor/urethral rhabdosphincter dyssynergia, early combined clean intermittent catheterization/ pharmacotherapy (anticholinergic-, β3-adrenoceptor agonist drugs) management may be at times crowned with success of preserving an adequate bladder compliance and renal safe conditions.The persistence, instead, of elevated bladder filling pressure levels with high voiding pressure/uroflow values, together with aberrant urethral rhabdosphincter electromyographic findings, make necessary the resort to surgery strategies, among which - a part from rhabdosphincterotomy or alternatively intrasphincteric botulinum A toxin injection or urethral stent insertion - the bladder augmentation cystoplasty, with either reconfigurated bowel- or gastric segment, is today the most efficacious surgical measure to increase the bladder urinary storage meanwhile lowering bladder filling pressure. Given the enterocistoplasty-dependent both potential systemic metabolic imbalances - such as hyperchloremic acidosis/hypokaliemia, hyperoxaluria, bone demineralization, chologenic diarrhoea/steatorrhoea, vit B12 deficiency - together with bowel prosthetic mucus overproduction-due recurrent stone formation, and, sometimes, malignant complications particularly at the intestinal-urinary tract suture line, tissue engineering techniques have been taken into consideration, more than twenty years ago, as alternative measure for bladder augmentation cystoplasty, until to reach successful clinical validation just in patients suffering from either congenital dysraphism- or acquired spinal cord injury-dependent neurogenic bladder. Nevertheless, also the tissue engineering-made augmentation cistoplasty, as well as that bowel-based one, unfortunately remains influenced by spinal cord neuropathydue dysfunctional effects, hence the tissue engineering research could be today directed to suitably overcome such disadvantageous conditions.
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