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通过壳聚糖脱乙酰度控制唾液腺分支结构的形成。

Controlling branching structure formation of the salivary gland by the degree of chitosan deacetylation.

机构信息

Department of Otolaryngology, National Taiwan University Hospital and College of Medicine, Taipei, Taiwan.

出版信息

Acta Biomater. 2013 Sep;9(9):8214-23. doi: 10.1016/j.actbio.2013.06.002. Epub 2013 Jun 14.

Abstract

The salivary gland is characterized by ramified epithelial branches, a specific tissue structure responsible for saliva production and regulation. To regenerate the salivary gland function, it is important to establish the tissue structure. Chitosan is a deacetylated derivative of chitin with wide biomedical applications. Because of its deacetylated nature, chitosan has different properties when prepared with different degrees of deacetylation (DDA). However, the impact of chitosan DDA on the effect of regulating tissue structure formation remains unexplored. In this study, the embryonic murine submandibular gland (SMG) was used as a model to investigate the role of chitosan DDA in regulating tissue structure formation of the salivary gland. When chitin substrates with different DDA were used, the branching numbers of cultured SMG explants changed. Similar effects were observed in the culture with chitosan prepared using different degrees of acetylation. The mRNA expressions of type I and type III collagen were elevated in SMG explants with enhanced branching morphogenesis, as was the protein level. In addition to the amounts of collagen, type I and type III collagen fibers were spatially present in the epithelial-mesenchymal junction of developing branches in the culture with chitosan of a specific range of DDA. The branch-promoting effect of chitosan DDA was abolished when SMG explants were treated with collagenase, both early in the stage of branch initiation and with the establishment of the branching structure. The branch-promoting effect of chitosan DDA disappeared when antisense oligonucleotides were applied to specifically block type III collagen. This study demonstrates for the first time that DDA of chitosan affects tissue structure formation. The different proportions of side-chain components of chitin derivatives regulate structural formation of cultured SMG, indicating that DDA is an important parameter using chitosan as a biomaterial for tissue structure formation of the salivary glands.

摘要

唾液腺的特征是分支的上皮分支,这是一种特定的组织结构,负责唾液的产生和调节。为了再生唾液腺功能,建立组织结构很重要。壳聚糖是壳聚糖的去乙酰化衍生物,具有广泛的生物医学应用。由于其去乙酰化性质,壳聚糖在不同脱乙酰度(DDA)下制备时具有不同的性质。然而,壳聚糖 DDA 对调节组织结构形成的影响仍未得到探索。在这项研究中,胚胎鼠下颌下腺(SMG)被用作模型,以研究壳聚糖 DDA 在调节唾液腺组织结构形成中的作用。当使用不同 DDA 的壳聚糖底物时,培养的 SMG 外植体的分支数发生变化。在用不同乙酰化程度制备的壳聚糖培养中观察到类似的效果。在增强分支形态发生的 SMG 外植体中,I 型和 III 型胶原的 mRNA 表达升高,蛋白水平也是如此。除了胶原蛋白的量外,在具有特定 DDA 范围的壳聚糖培养物中,发育中的分支上皮-间充质交界处存在 I 型和 III 型胶原纤维。当用胶原酶处理 SMG 外植体时,壳聚糖 DDA 的促分支作用被消除,无论是在分支起始的早期阶段还是在分支结构建立时。当应用针对 III 型胶原的反义寡核苷酸特异性阻断时,壳聚糖 DDA 的促分支作用消失。本研究首次证明壳聚糖的 DDA 影响组织结构的形成。壳聚糖衍生物侧链成分的不同比例调节培养的 SMG 的结构形成,表明 DDA 是作为唾液腺组织结构形成的生物材料使用壳聚糖的一个重要参数。

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