Characterization of immortalized human epidermolysis bullosa simplex (KRT5) cell lines: Trimethylamine N-oxide protects the keratin cytoskeleton against disruptive stress condition

被引:33
作者
Chamcheu, Jean Christopher [1 ]
Lorie, Elizabeth Pavez [1 ]
Akgul, Baki [2 ]
Bannbers, Elin [1 ]
Virtanen, Marie [1 ]
Gammon, Luke [2 ]
Moustakas, Aristidis [3 ]
Navsaria, Harshad [2 ]
Vahlquist, Anders [1 ]
Torma, Hans [1 ]
机构
[1] Univ Uppsala Hosp, Dept Med Sci Dermatol & Venereol, SE-75185 Uppsala, Sweden
[2] Barts & London Queen Marys Sch Med & Dent, ICMS, Ctr Cutaneous Res, London, England
[3] Uppsala Univ, Ludwig Inst Canc Res, Biomed Ctr, Uppsala, Sweden
关键词
Chemical chaperone; Cytoprotection; EBS-cell lines; Genetic skin disorder; Human papilloma virus 16 E6/E7; Heat stress; Keratin Organotypic epidermis; TMAO; CHEMICAL CHAPERONES; MOLECULAR-MECHANISM; HUMAN EPIDERMIS; MUTANT KERATIN; IN-VIVO; EXPRESSION; OSMOLYTE; SKIN; UREA; DIFFERENTIATION;
D O I
10.1016/j.jdermsci.2008.11.003
中图分类号
R75 [皮肤病学与性病学];
学科分类号
100206 ;
摘要
Background: Epidermolysis bullosa simplex (EBS) is an autosomal inherited mechano-bullous disease, characterized by intraepidermal blistering and skin fragility caused by mutations in the keratin (KRT) 5 or 14 genes. Despite a vast knowledge about the intermediate filament pathology in this disease, the progress in therapy has been slow. Animal models and well-characterized continuous cell Culture models of EBS are needed prior to clinical testing. Objectives: Our aim was to generate immortalized cell lines as an in vitro model for the study of EBS and test a chemical chaperone, trimethylamine N-oxide (TMAO), as a putative novel therapy. Methods: We generated four immortalized cell lines, two each from an EBS patient with a KIRT5-mutation (V186L) and a healthy control, using human papillornavirus 16 (HPV16) E6E7 as transducer. Cell lines were established in serum-free and serum-containing medium and assessed for growth characteristics, keratin expression profiles, ability to differentiate in organotypic cultures, and response to heat stress with and without the presence of TMAO. Results: All cell lines have been expanded >160 population doublings and their cellular characteristics are similar. However, the formation of cytoplasmic keratin filament aggregates in response to heat-shock treatment differed between EBS and normal cell lines. Notably, serum-free established EBS-cell line was most vulnerable to heat shock but both cell lines exhibited significant reduction in the number of keratin aggregates containing cells by TMAO. Conclusion: The immortalized cell lines represent a suitable model for studying novel therapies for EBS. TMAO is a promising new agent for future development as a novel EBS therapy. (C) 2008 Japanese Society for Investigative Dermatology. Published by Elsevier Ireland Ltd. All rights reserved.
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收藏
页码:198 / 206
页数:9
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