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Functional improvement in spinal cord injury-induced neurogenic bladder by bladder augmentation using bladder acellular matrix graft in the rat

机译:大鼠膀胱无细胞基质移植物通过膀胱增强对脊髓损伤诱导神经源性膀胱的功能改善

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摘要

Spinal cord injury (SCI) rostral to the lumbosacral level causes bladder hyperreflexia and detrusor-sphincter dyssynergia (DSD), which are accompanied by bladder hypertrophy. We hypothesize that bladder augmentation using a bladder acellular matrix graft (BAMG) can improve the function of SCI-mediated neurogenic bladder. In female rats (n = 35), SCI was induced by transection of the spinal cord at the lower thoracic level. Eight weeks following spinalization, bladder augmentation using BAMG was performed after hemicystectomy of the hypertrophic bladder. Cystometrography was performed at 8 weeks after spinalization and again at 8 weeks after augmentation. Several urodynamic parameters were measured and the grafted bladder was histologically evaluated. Thirty one rats were alive 8 weeks after spinalization. Twenty two (71%) rats developed hyperreflexic bladders and nine (29%) rats had underactive bladders before bladder augmentation. Twenty six rats survived until 8 weeks after augmentation. Urodynamic parameters showed improvement in some bladder functions in both hyperreflexic and underactive bladders after augmentation. In addition, bladder compliance was increased in hyperreflexic bladders and decreased in underactive bladders. Bladder augmentation decreased bladder capacity in high-capacity rats and increased it in low-capacity rats. Histological evaluation showed complete regeneration of BAMG in SCI-induced neurogenic bladder at 8 weeks after augmentation. This is the first report suggesting that the voiding function in SCI-induced neurogenic bladder can be improved by augmentation using BAMG. Improved voiding function was accompanied by histological regeneration of BAMG.
机译:腰injury部水平的脊髓损伤(SCI)会引起膀胱反射亢进和逼尿肌括约肌功能障碍(DSD),并伴有膀胱肥大。我们假设使用膀胱脱细胞基质移植物(BAMG)进行的膀胱增强可以改善SCI介导的神经源性膀胱的功能。在雌性大鼠(n = 35)中,脊髓横断在较低的胸廓水平时可诱发SCI。脊柱植入后八周,在​​肥大性膀胱半囊切除术后使用BAMG进行膀胱扩张。脊柱镜检查后第8周和增强后第8周再次进行膀胱镜检查。测量了几个尿动力学参数,并组织学评估了移植膀胱。脊髓结扎后8周有31只大鼠存活。在进行膀胱增强之前,有22只(71%)大鼠发展为高反射性膀胱,而9只(29%)大鼠患有膀胱活动不足。 26只大鼠存活至增强后8周。泌尿动力参数显示,增强后的高反射性膀胱和活动不足性膀胱的某些膀胱功能有所改善。此外,在高反射性膀胱中,膀胱顺应性增加,而在活动不足的膀胱中,膀胱顺应性降低。膀胱增大会降低高容量大鼠的膀胱容量,而在低容量大鼠中则增加膀胱容量。组织学评估显示,增强后8周,BAMG在SCI诱导的神经源性膀胱中完全再生。这是第一个报告,表明通过使用BAMG增强可以改善SCI诱导的神经源性膀胱的排尿功能。排尿功能的改善伴有BAMG的组织学再生。

著录项

  • 来源
    《World Journal of Urology》 |2007年第2期|207-213|共7页
  • 作者单位

    Department of Urology Veterans Affairs Medical Center University of California 4150 Clement Street San Francisco CA 94121 USA;

    Department of Urology Veterans Affairs Medical Center University of California 4150 Clement Street San Francisco CA 94121 USA;

    Department of Urology Veterans Affairs Medical Center University of California 4150 Clement Street San Francisco CA 94121 USA;

    Department of Urology Veterans Affairs Medical Center University of California 4150 Clement Street San Francisco CA 94121 USA;

    Department of Urology Veterans Affairs Medical Center University of California 4150 Clement Street San Francisco CA 94121 USA;

    Department of Urology Veterans Affairs Medical Center University of California 4150 Clement Street San Francisco CA 94121 USA;

    Department of Urology Veterans Affairs Medical Center University of California 4150 Clement Street San Francisco CA 94121 USA;

    Department of Urology Veterans Affairs Medical Center University of California 4150 Clement Street San Francisco CA 94121 USA;

    Department of Urology Faculty of Medicine Shimane University Izumo 693-8501 Japan;

    Department of Urology Veterans Affairs Medical Center University of California 4150 Clement Street San Francisco CA 94121 USA;

    Department of Urology Veterans Affairs Medical Center University of California 4150 Clement Street San Francisco CA 94121 USA;

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  • 原文格式 PDF
  • 正文语种 eng
  • 中图分类
  • 关键词

    Bladder acellular matrix graft; Bladder augmentation; Spinal cord injury; Neurogenic bladder; Tissue engineering;

    机译:膀胱脱细胞基质移植;膀胱增大;脊髓损伤;神经源性膀胱;组织工程;

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