The effect of endothelialization on the epidermal differentiation in human three-dimensional skin constructs - A morphological study

被引:3
|
作者
In, M. Khiao [1 ]
Wallmeyer, L. [2 ]
Hedtrich, S. [2 ]
Richardson, K. C. [3 ]
Plendl, J. [1 ]
Kaessmeyer, S. [1 ]
机构
[1] Free Univ Berlin, Inst Vet Anat, Dept Vet Med, D-14195 Berlin, Germany
[2] Free Univ Berlin, Inst Pharm Pharmacol & Toxicol, D-14195 Berlin, Germany
[3] Murdoch Univ, Coll Vet Med, Murdoch, WA 6150, Australia
关键词
Full-thickness skin constructs; human skin; epidermis; keratinocyte; fibroblast; endothelial cell; IN-VITRO RECONSTRUCTION; LAMELLAR BODIES; CYTOCHROME-C; APOPTOSIS; CELLS; ANGIOGENESIS; RELEASE; MODELS; PROLIFERATION; KERATINOCYTES;
D O I
10.3233/CH-151988
中图分类号
R5 [内科学];
学科分类号
1002 ; 100201 ;
摘要
INTRODUCTION: Inducing vascularization in three-dimensional skin constructs continues to be difficult. In this study, two variations of human full-thickness skin constructs were examined. Type KCFB consists of keratinocytes (epidermal equivalent) and fibroblasts that were embedded in a collagen matrix (dermal equivalent). Type KCFB-EC consists of keratinocytes as well as fibroblasts and vascular endothelial cells. The epidermal equivalent of KCFB-EC constructs underwent cellular alterations in their differentiation possibly induced by the presence of endothelial cells. The objective of the study was to assess the effect of endothelial cells, i.e., endothelialization of the dermal equivalent on the differentiation of keratinocytes by comparing the morphology and ultrastructure of the two types of skin constructs, as well as to excised normal human skin. Hypothesis: The differentiation of keratinocytes is influenced by the presence of endothelial cells. METHODS, PATIENTS, MATERIAL: KCFB constructs (keratinocytes, fibroblasts) and KCFB-EC skin constructs (kera-tinocytes, fibroblasts, endothelial cells) were prepared according to Kuchler et al. [25]. After two weeks, the skin constructs were processed for analysis by light microscopy (LM) and electron microscopy (TEM), followed by quantitative, semi-quantitative as well as qualitative assessment. For comparison, analysis by LM and TEM of excised normal human skin was also performed. RESULTS: Both KCFB and KCFB-EC skin constructs and the human skin had all strata of stratified soft-cornified epidermis present. The comparison of the respective layers of the skin constructs brought the following characteristics to light: The KCFB-EC constructs had significantly more mitotic cells in the stratum spinosum, more cell layers in the stratum granulosum and more keratohyalin granules compared to KCFB skin constructs. Additionally, the epidermal architecture was unorganized in the endothelialized constructs and features of excessive epidermal differentiation appeared in KCFB-EC skin constructs. CONCLUSION: The endothelialization of the dermal equivalent caused changes in the differentiation of the epidermis of KCFB-EC skin constructs that may be interpreted as an unbalanced, i.e., uncontrolled or enhanced maturation process.
引用
收藏
页码:157 / 174
页数:18
相关论文
共 50 条
  • [21] Three-dimensional hydrogel constructs for exposing cells to nanoparticles
    Mansfield, Elisabeth
    Oreskovic, Tammy L.
    Rentz, Nikki S.
    Jeerage, Kavita M.
    NANOTOXICOLOGY, 2014, 8 (04) : 394 - 403
  • [22] Three-dimensional porous silk tumor constructs in the approximation of in vivo osteosarcoma physiology
    Tan, Pamela H. S.
    Aung, K. Z.
    Toh, S. L.
    Goh, James C. H.
    Nathan, S. S.
    BIOMATERIALS, 2011, 32 (26) : 6131 - 6137
  • [23] Effect of strain on human dermal fibroblasts in a three-dimensional collagen sponge
    Hara, Masao
    Fujii, Takahiro
    Hashizume, Ron
    Nomura, Yoshihiro
    CYTOTECHNOLOGY, 2014, 66 (05) : 723 - 728
  • [24] Technological advances in three-dimensional skin tissue engineering
    Cai, Runxuan
    Gimenez-Camino, Naroa
    Xiao, Ming
    Bi, Shuguang
    DiVito, Kyle A. A.
    REVIEWS ON ADVANCED MATERIALS SCIENCE, 2023, 62 (01)
  • [25] Three-Dimensional Skin Models of Psoriasis
    Soboleva, Anna G.
    Mezentsev, Alexandre
    Zolotorenko, Alena
    Bruskin, Sergey
    Pirusian, Eleonora
    CELLS TISSUES ORGANS, 2014, 199 (5-6) : 301 - 310
  • [26] Histochemical study of the distribution of epidermal melanoblasts and melanocytes in Asian human skin
    Hirobe, Tomohisa
    Enami, Hisao
    SKIN RESEARCH AND TECHNOLOGY, 2019, 25 (03) : 299 - 304
  • [27] A Morphological Methodology for Three-dimensional Human Face Soft-tissue Landmarks Extraction: A Preliminary Study
    Calignano, F.
    Vezzetti, E.
    AESTHETIC PLASTIC SURGERY, 2011, 35 (03) : 289 - 302
  • [28] Protein-coding and non-coding gene expression analysis in differentiating human keratinocytes using a three-dimensional epidermal equivalent
    Mazar, Joseph
    Sinha, Satyabrata
    Dinger, Marcel E.
    Mattick, John S.
    Perera, Ranjan J.
    MOLECULAR GENETICS AND GENOMICS, 2010, 284 (01) : 1 - 9
  • [29] Three-dimensional neuron-muscle constructs with neuromuscular junctions
    Morimoto, Yuya
    Kato-Negishi, Midori
    Onoe, Hiroaki
    Takeuchi, Shoji
    BIOMATERIALS, 2013, 34 (37) : 9413 - 9419
  • [30] Morphological features in human cortical brain microvessels after head injury:: A three-dimensional and immunocytochemical study
    Rodríguez-Baeza, A
    La Torre, FRD
    Poca, A
    Martí, M
    Garnacho, A
    ANATOMICAL RECORD PART A-DISCOVERIES IN MOLECULAR CELLULAR AND EVOLUTIONARY BIOLOGY, 2003, 273A (01): : 583 - 593