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通过固定于合成细胞外基质中上调骨细胞分化。

Upregulation of bone cell differentiation through immobilization within a synthetic extracellular matrix.

作者信息

Evangelista Marta B, Hsiong Susan X, Fernandes Rui, Sampaio Paula, Kong Hyun-Joon, Barrias Cristina C, Salema Roberto, Barbosa Mário A, Mooney David J, Granja Pedro L

机构信息

INEB-Instituto de Engenharia Biomédica, Laboratório de Biomateriais, Porto, Portugal.

出版信息

Biomaterials. 2007 Sep;28(25):3644-55. doi: 10.1016/j.biomaterials.2007.04.028. Epub 2007 May 3.

Abstract

There is a need for new therapeutic strategies to treat bone defects caused by trauma, disease or tissue loss. Injectable systems for cell transplantation have the advantage of allowing the use of minimally invasive surgical procedures, and thus for less discomfort to patients. In the present study, it is hypothesized that Arg-Gly-Asp (RGD)-coupled in a binary (low and high molecular weight) injectable alginate composition is able to influence bone cell differentiation in a three-dimensional (3D) structure. Viability, metabolic activity, cytoskeleton organization, ultrastructure and differentiation (alkaline phosphatase (ALP), von Kossa, alizarin red stainings and osteocalcin quantification) of immobilized cells were assessed. Cells within RGD-modified alginate microspheres were able to establish more interactions with the synthetic extracellular matrix as visualized by confocal laser scanning microscope and transmission electron microscopy imaging, and presented a much higher level of differentiation (more intense ALP and mineralization stainings and higher levels of osteocalcin secretion) when compared to cells immobilized within unmodified alginate microspheres. These findings demonstrate that peptides covalently coupled to alginate were efficient in influencing cell behavior within this 3D system, and may provide adequate preparation of osteoblasts for cell transplantation.

摘要

需要新的治疗策略来治疗由创伤、疾病或组织缺失引起的骨缺损。用于细胞移植的可注射系统具有允许使用微创手术程序的优点,因此对患者的不适较小。在本研究中,假设在二元(低分子量和高分子量)可注射藻酸盐组合物中偶联的精氨酸-甘氨酸-天冬氨酸(RGD)能够在三维(3D)结构中影响骨细胞分化。评估了固定化细胞的活力、代谢活性、细胞骨架组织、超微结构和分化(碱性磷酸酶(ALP)、冯·科萨、茜素红染色和骨钙素定量)。通过共聚焦激光扫描显微镜和透射电子显微镜成像观察到,RGD修饰的藻酸盐微球内的细胞能够与合成细胞外基质建立更多相互作用,并且与固定在未修饰藻酸盐微球内的细胞相比,呈现出更高水平的分化(更强的ALP和矿化染色以及更高水平的骨钙素分泌)。这些发现表明,与藻酸盐共价偶联的肽在影响该3D系统内的细胞行为方面是有效的,并且可能为细胞移植提供成骨细胞的充分制备。

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