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骨髓基质细胞在小肠黏膜下层上的生长:组织工程膀胱的一种替代细胞来源。

Growth of bone marrow stromal cells on small intestinal submucosa: an alternative cell source for tissue engineered bladder.

作者信息

Zhang Yuanyuan, Lin Hsueh-Kung, Frimberger Dominic, Epstein Robert B, Kropp Bradley P

机构信息

Department of Urology, University of Oklahoma Health Sciences Center, 920 SL Young Boulevard, WP 3150, Oklahoma City, OK 73190, USA.

出版信息

BJU Int. 2005 Nov;96(7):1120-5. doi: 10.1111/j.1464-410X.2005.05741.x.

Abstract

OBJECTIVE

To assess the potential use of bone marrow stromal cell (BMSC)-seeded biodegradable scaffold for bladder regeneration in a canine model, by characterizing BMSCs and comparing them to bladder smooth muscle cells (SMCs) by immunohistochemistry, growth capability, and contractility.

MATERIALS AND METHODS

Bone marrow was taken by direct needle aspiration from the femurs of five beagle dogs for the in vitro study. Mononuclear cells were isolated by Ficoll-Paque density gradient centrifugation and cultivated in medium 199 with 10% fetal bovine serum. BMSCs were characterized by cell proliferation, in vitro contractility, immunohistochemical analysis, and the growth pattern on small intestinal submucosa (SIS) scaffolds compared to bladder SMC cultures from the same dogs. Another six dogs had a hemicystectomy and bladder augmentation with BMSC-seeded (two), bladder cells including urothelial cells plus SMC-seeded SIS (two) and unseeded SIS scaffolds (two). The six dogs were followed for 10 weeks after augmentation.

RESULTS

In vitro BMSCs had a significant contractile response to calcium-ionophore, with a mean (sem) 36 (2)%, relative contraction (P < 0.01), which was similar to bladder SMCs but markedly different from fibroblasts. BMSCs also expressed alpha-smooth muscle actin by immunohistochemical staining and Western blotting, but did not express desmin or myosin. In vivo, both BMSC-seeded and bladder cell-seeded SIS grafts had solid smooth-muscle bundle formation throughout the graft.

CONCLUSIONS

BMSCs had a similar cell proliferation, histological appearance and contractile phenotype as primary cultured bladder SMCs. SIS supported three-dimensional growth of BMSCs in vitro, and BMSC-seeded SIS scaffold promoted bladder regeneration in a canine model. BMSCs may serve as an alternative cell source in urological tissue engineering.

摘要

目的

通过对骨髓基质细胞(BMSC)进行特性鉴定,并通过免疫组织化学、生长能力和收缩性将其与膀胱平滑肌细胞(SMC)进行比较,评估接种BMSC的可生物降解支架在犬模型中用于膀胱再生的潜在用途。

材料与方法

通过直接针吸从五只比格犬的股骨采集骨髓用于体外研究。通过Ficoll-Paque密度梯度离心分离单核细胞,并在含有10%胎牛血清的199培养基中培养。与来自同一只犬的膀胱SMC培养物相比,通过细胞增殖、体外收缩性、免疫组织化学分析以及在小肠黏膜下层(SIS)支架上的生长模式对BMSC进行特性鉴定。另外六只犬进行了半膀胱切除术,并分别用接种BMSC的SIS支架(两个)、包含尿路上皮细胞加SMC的膀胱细胞接种的SIS支架(两个)和未接种细胞的SIS支架(两个)进行膀胱扩大术。扩大术后对这六只犬进行了10周的随访。

结果

体外实验中,BMSC对钙离子载体有显著的收缩反应,平均(标准误)相对收缩率为36(2)%(P < 0.01),这与膀胱SMC相似,但与成纤维细胞明显不同。通过免疫组织化学染色和蛋白质印迹法,BMSC也表达α-平滑肌肌动蛋白,但不表达结蛋白或肌球蛋白。在体内,接种BMSC和接种膀胱细胞的SIS移植物在整个移植物中均有坚实的平滑肌束形成。

结论

BMSC具有与原代培养的膀胱SMC相似的细胞增殖、组织学外观和收缩表型。SIS在体外支持BMSC的三维生长,接种BMSC的SIS支架在犬模型中促进了膀胱再生。BMSC可能成为泌尿外科组织工程中的一种替代细胞来源。

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