Extracellular matrix regulation of fibroblast function: redefining our perspective on skin aging

被引:235
作者
Cole, Megan A. [1 ]
Quan, Taihao [1 ]
Voorhees, John J. [1 ]
Fisher, Gary J. [1 ]
机构
[1] Univ Michigan, Med Sch, Dept Dermatol, 1301 Catherine,Med Sci 1,Room 6447, Ann Arbor, MI 48109 USA
关键词
Aging; Collagen; CCN1; MMP-1; Skin; AGED HUMAN SKIN; TISSUE GROWTH-FACTOR; PROTEIN; 61; CCN1; ABERRANT COLLAGEN HOMEOSTASIS; PHOTODAMAGED HUMAN SKIN; GLYCATION END-PRODUCTS; I COLLAGEN; METALLOPROTEINASE-1; EXPRESSION; DERMAL COLLAGEN; CROSS-LINKING;
D O I
10.1007/s12079-018-0459-1
中图分类号
Q2 [细胞生物学];
学科分类号
071009 ; 090102 ;
摘要
The dermal extracellular matrix (ECM) comprises the bulk of skin and confers strength and resiliency. In young skin, fibroblasts produce and adhere to the dermal ECM, which is composed primarily of type I collagen fibrils. Adherence allows fibroblasts to spread and exert mechanical force on the surrounding ECM. In this state, fibroblasts display a "youthful" phenotype characterized by maintenance of the composition and structural organization of the dermal ECM. During aging, fibroblast-ECM interactions become disrupted due to fragmentation of collagen fibrils. This disruption causes loss of fibroblast spreading and mechanical force, which inextricably lead to an "aged" phenotype; fibroblasts synthesize less ECM proteins and more matrix-degrading metalloproteinases. This imbalance of ECM homeostasis further drives collagen fibril fragmentation in a self-perpetuating cycle. This article summarizes age-related changes in the dermal ECM and the mechanisms by which these changes alter the interplay between fibroblasts and their extracellular matrix microenvironment that drive the aging process in human skin.
引用
收藏
页码:35 / 43
页数:9
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