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首页> 外文期刊>Cells tissues organs >Morphology and function of ovine articular cartilage chondrocytes in 3-d hydrogel culture.
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Morphology and function of ovine articular cartilage chondrocytes in 3-d hydrogel culture.

机译:3-d水凝胶培养中绵羊关节软骨软骨细胞的形态和功能。

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摘要

Different cell- and biomaterial-based tissue engineering techniques are under investigation to restore damaged tissue. Strategies that use chondrogenic cells or tissues in combination with bioresorbable delivery materials are considered to be suitable to regenerate bio-artificial cartilage. Three-dimensional (3-D) cell embedding techniques can provide anchorage-independent cell growth and homogenous spatial cell arrangement, which play a key role in the maintenance of the characteristic phenotype and thus the formation of differentiated tissue. We developed a new injectable high water content (90%) hydrogel formulation with 5% sodium alginic acid and 5% gelatin as a temporary supportive intercellular matrix for 3-D cell culture. The objective was to determine whether the in vitro hydrogel culture of chondrocytes could preserve hyaline characteristics and thus could provide cartilage regeneration in vitro. Chondrocytes harvested from knee joints of skeletally mature sheep were cultured 3-D in hydrogel (7 x 10(6) cells/ml, 2.8-mul beads) for up to 10 weeks. Cell morphology and viability were evaluated with light microscopy, and proliferative activity was assessed with antibromodeoxyuridine immunofluorescence. Expression of collagens type I (COL1) and II (COL2), cartilage proteoglycans (PG) and hyaluronan synthases (HAS) were studied immunohistochemically. We observed that up to 36% of chondrocytes proliferated, while almost 100% presented a differentiated spheroidal phenotype. After an initial decrease at 2 weeks, cell density recovered to 85% of the initial absolute value at 10 weeks. Expression of hyaline matrix molecules resembled the in vivo pattern with increasing spatial deposition of PG and COL2. The proportion of PG-positive cells increased from initially 13 to 53% after 10 weeks, in contrast to consistently 100% COL2-positive cells. We conclude that 3-D hydrogel culture, even without mechanical stimulation or growth factor application, can keep chondrocytes in a differentiated state and provides a chondrogenic cell environment for in vitro cartilage regeneration for at least 10 weeks. Moreover, this hydrogel appears to be a suitable cell delivery material for subsequent in vivo implantation.
机译:正在研究不同的基于细胞和生物材料的组织工程技术,以恢复受损的组织。将软骨细胞或组织与可生物吸收的输送材料结合使用的策略被认为适合于再生生物-人工软骨。三维(3-D)细胞包埋技术可以提供不依赖锚固的细胞生长和同质的空间细胞排列,这在维持特征表型以及分化组织的形成中起着关键作用。我们开发了一种新的可注射高含水量(90%)水凝胶制剂,其中含有5%海藻酸钠和5%明胶作为3-D细胞培养的临时支持细胞间基质。目的是确定软骨细胞的体外水凝胶培养是否可以保留透明质酸,从而可以在体外提供软骨再生。从骨骼成熟的绵羊的膝关节收获的软骨细胞在水凝胶(7 x 10(6)细胞/ml,2.8-mul珠)中进行3-D培养长达10周。用光学显微镜评估细胞形态和活力,并用抗溴脱氧尿苷免疫荧光评估增殖活性。免疫组织化学研究了I型胶原蛋白(COL1)和II型胶原蛋白(COL2),软骨蛋白聚糖(PG)和透明质酸合酶(HAS)的表达。我们观察到多达36%的软骨细胞增生,而几乎100%的软骨细胞表现出分化的球状表型。在2周时开始下降后,细胞密度在10周时恢复到初始绝对值的85%。透明质酸分子的表达类似于体内模式,随着PG和COL2的空间沉积增加。与持续100%的COL2阳性细胞相比,PG阳性细胞的比例从最初的13%增加到10周后的53%。我们得出结论,即使没有机械刺激或生长因子应用,3-D水凝胶培养也可以将软骨细胞保持在分化状态,并为体外软骨再生提供软骨细胞环境至少10周。而且,该水凝胶似乎是用于随后的体内植入的合适的细胞递送材料。

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