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Ann Dermatol Venereol 2002 May;129(5 Pt 2):831-6

Alopecia areata: update on therapy


The management of patients with alopecia areata is obviously not restricted to the prescription of a treatment inducing hair growth. It requires thorough exploration (history of hair loss, treatments and concomitant pathologies), detailed clinical examination of the integument and palpation of the thyroid. The patient must, systematically, be given a simple explanation of his/her pathology, thus avoiding any feelings of mystery, hopelessness and guilt and hence paradoxically turning alopecia into "just another disease", even if flares are unpredictable and cannot always be treated. Innovations over the past few years have not met dermatologist's expectations: in particular immunosuppressors administered locally have not shown efficacy in human, as opposed to animal models of alopecia areata. Moreover, we must remain critical and rigorous with regard to "false" innovations: several recent publications are, methodologically, open to criticism. Older products provide clear descriptions of their indications and use, and relatively standardize the therapeutic approach to alopecia. Some of them lead to hair growth on the treated area: localized immuno-therapy that in certain cases induces hair growth where other treatments have failed. PUVA-therapy, however, because of frequent relapses on withdrawal and the characteristic recurrence of alopecia, rapidly leads to the use of high cumulative doses; balneo-PUVA therapy is effective with lower doses (PUVA-turban). Recently, UVB TL01 has shown efficacy in anecdotal studies. Local corticosteroids; notably injectable and anthralin, an old treatment which remains a useful therapeutic approach in alopecia areata plaques and in the ophiasic forms in children and adults. Finally, among the available treatment arms, systemic corticosteroids still have a place in recent extended forms: although still under experimentation, the bolus appears efficient during the primary episodes of alopecia areata, when administered within the first three months


Clin Exp Dermatol 2002 Jul;27(5):366-72

Clinical relevance of hair microscopy in alopecia.


Hair microscopy can clarify the cause of hair loss in a range of diagnoses. Most of these are associated with hair breakage, the rest are related to lack of growth. Hair breakage may be due to excessive trauma or underlying susceptibility, where structural clues may be present. Lack of growth reflects follicular dynamics and represents the central mechanism of most common causes of alopecia. In such conditions, microscopy only reveals nonspecific confirmation of short anagen. Although this may assist clinical diagnosis, microscopy in alopecia only allows exclusion of diagnoses related to hair breakage. Confidence in the outcome of hair microscopy is based on the size of the sample of hairs, the length of the hair, the characteristics of the observations and the experience of the person undertaking the microscopy.


Br J Nurs. 2003 May 8-21;12(9):550-8.

Case study of alopecia universalis and web-based news groups.


This article presents findings from an 18-month case study of a web-based news group used by individuals with alopecia universalis. Content analysis of 228 episodes of web-based communication that occurred in relation to themes of discussion was undertaken, supported by the use of concept mapping (Northcott, 1996). Analysis identified a core concept relating to that of a community of shared experience together with four supportive themes. The themes were the search for understanding and meaning, carrying on, seeking balance between past, present and future, and relating to new self, others, and the world. The article discusses the increased growth in the use of the web as a vehicle for exploring health concerns and the specific ethical and methodological issues raised by research in this area.


Clin Immunol. 2003 Mar;106(3):181-7.

Transfer of alopecia areata in the human scalp graft/Prkdc(scid) (SCID) mouse system is characterized by a TH1 response.


Alopecia areata is an autoimmune condition directed at hair follicles, which results in loss of hair. We have previously demonstrated that it is possible to transfer hair loss, along with the immunohistologic findings of alopecia areata, to human scalp grafts on Prkdc(scid) (SCID) mice by injection of autologous activated lesional T-cells. This study examines the cytokine profile of T-cells and follicular epithelium following transfer of hair loss. Two consistent findings significantly (P < 0.01) associated with hair loss were production of interferon-gamma-inducible protein-10 kDa (IP-10) by follicular epithelium (13/13), and production of INF-gamma by infiltrating T-cells (10/12). Noninjected control grafts regrew hair, and were generally negative for IP-10 (positive 2/9), and INF-gamma (positive 2/9), but expressed of IL-10 on the follicular epithelium (7/9). These data support an INF-gamma TH1 pathogenesis for hair loss in alopecia areata.







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