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J. Anat 2003 Jan;202(1):125-31
Mouse models for human hair loss disorders.
The outer surface of the hand, limb and body is covered by the epidermis, which is elaborated into a number of specialized appendages, evolved not only to protect and reinforce the skin but also for social signalling. The most prominent of these appendages is the hair follicle. Hair follicles are remarkable because of their prolific growth characteristics and their complexity of differentiation. After initial embryonic morphogenesis, the hair follicle undergoes repeated cycles of regression and regeneration throughout the lifetime of the organism. Studies of mouse mutants with hair loss phenotypes have suggested that the mechanisms controlling the hair cycle probably involve many of the major signalling molecules used elsewhere in development, although the complete pathway of hair follicle growth control is not yet understood. Mouse studies have also led to the discovery of genes underlying several human disorders. Future studies of mouse hair-loss mutants are likely to benefit the understanding of human hair loss as well as increasing our knowledge of mechanisms controlling morphogenesis and tumorigenesis.
Zhongguo Xiu Fu Chong Jian Wai Ke Za Zhi 1999 Jan;13(1):28-30
The clinical application of scalp expansion in the repair of cicatricial baldness in children
OBJECTIVE: To introduce the clinical application of the expanded graft from scalp in the repair of cicatricial baldness in children. METHODS: 45 cases with baldness following burn from 1988 to 1998 were reported. All of these patients (age ranged from 5-11 years) were treated by soft tissue expander. RESULTS: 5 cases were followed up for 1-2 years, the clinical results showed that the result from the graft of scalp expansion was satisfactory, and the long-term follow-up revealed that the hair in expended area and that in normal area was almost the same except the orientation of hair distribution had some difference. CONCLUSION: The head scalp expansion might be the first choice in the repair of cicatricial baldness following burn.
Skin Res Technol 2002 May;8(2):106-11
Contrast enhanced phototrichogram pinpoints scalp hair changes in androgen sensitive areas of male androgenetic alopecia.
BACKGROUND/AIM: In male androgenetic alopecia (AGA), global changes of scalp hair observed on many years are the cumulative result of discrete changes. Such changes reflect structural and/or functional modifications occurring at the level of individual hair follicles. The patterning of scalp hair loss is the phenotypic expression of clusters of hormone sensitive follicles located in specific scalp areas.The aim of this study was to evaluate, in 21 untreated male subjects with AGA, the relation between various hair measurements using a new validated photographic method with clinical staging (modified Norwood-Hamilton scale) as compared with five controls. METHODS: As recently demonstrated by comparison with transverse sectioning of scalp biopsies, dynamic changes occurring at the level of individual hair follicles can be accurately explored with the contrast enhanced phototrichogram technique (CE-PTG). This is a further improvement of the PTG (combined analysis of two photographs taken at 48 h interval) using contrast enhancement together with the scalp immersion proxigraphy method. Visible hair counts per unit area were first evaluated on photographs without and with CE. Then other scalp hair variables (anagen hair counts and proportion of thin hair (
J Am Acad Dermatol 2002 Apr;46(4):517-23
Changes in hair weight and hair count in men with androgenetic alopecia after treatment with finasteride, 1 mg, daily.
BACKGROUND: Finasteride, a type II 5alpha-reductase inhibitor, reduces scalp and serum dihydrotestosterone and has been shown to be effective in men with androgenetic alopecia (AGA). OBJECTIVE: The purpose of this study was to determine the effect of finasteride on scalp hair weight in men with AGA. METHODS: Sixty-six men with AGA received finasteride, 1 mg/d, or placebo in a 48-week study, and 49 men continued in a 48-week extension. Efficacy was assessed by scalp hair weights and hair counts. RESULTS: As expected, hair counts improved with finasteride (net mean percent change +/- SE [95% CI] compared with placebo = 9.2% +/- 2.8% [3.8, 14.6] and 15.4% +/- 3.2% [9.1, 21.7] at 48 and 96 weeks, respectively; P <.01 for both time points), and net improvements in hair weight were greater (25.6% +/- 3.6% [18.5, 32.7] and 35.8% +/- 4.6% [26.7, 44.8] at 48 and 96 weeks, respectively; P <.001 for both time points). Finasteride was generally well tolerated. CONCLUSION: In this study, finasteride, 1 mg, increased hair weight in men with AGA. Hair weight increased to a larger extent than hair count, implying that factors other than the number of hairs, such as increased growth rate (length) and thickness of hairs, contribute to the beneficial effects of finasteride in treated men.
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