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J Invest Dermatol 2002 Dec;119(6):1237-43

Loss of cell adhesion in Dsg3bal-Pas mice with homozygous deletion mutation (2079del14) in the desmoglein 3 gene.


Pemphigus encompasses a group of autoimmune blistering diseases with circulating pathogenic autoantibodies recognizing several proteins, including the desmosomal cadherin, desmoglein 3. Targeted disruption of the Dsg3 gene by homologous recombination (Dsg3tm1stan) in mouse results in fragility of the skin and oral mucous membranes, analogous to the human disease. In addition, the Dsg3tm1stan mice develop phenotypic runting and hair loss, identical to that of the mouse mutant, Dsg3bal-2J. The Dsg3bal-2J mice are homozygous for a 1 bp insertion (2275insT) in the Dsg3 gene resulting in a nonfunctional Dsg3 mRNA. In this study, we characterized an allelic mutation, Dsg3bal-Pas, with clinical features similar to those in Dsg3bal-2J. We have identified a 14 bp deletion in exon 13 of the Dsg3 gene resulting in a frameshift and premature termination codon 7 bp downstream from the site of the deletion and causing a truncation of the desmoglein 3 polypeptide by 199 amino acids, eliminating virtually all of the intracellular domain. We demonstrate that, although a Dsg3 mRNA transcript was detectable in Dsg3bal-Pas skin, the corresponding protein for desmoglein 3 was completely absent in the oral mucosal epithelium of homozygous Dsg3bal-Pas compared with that of +/Dsg3bal-Pas mice. No significant changes in the expression of desmogleins 1 and 2 were detected. To elucidate a potential mechanism causing loss of cell adhesion in the Dsg3bal-Pas mice, we generated a myc-tagged truncated Dsg3bal-Pas desmoglein 3 protein and expressed it in keratinocytes. The myc-tagged truncated Dsg3bal-Pas desmoglein 3 protein was found predominantly in the cytoplasm possibly due to increased proteolytic degradation. Cell surface staining was also detected but was jagged, not linear along the cell-cell border like that observed for the full-length desmoglein 3. The expression of the myc-tagged truncated Dsg3bal-Pas desmoglein 3 protein resulted in a reduction in staining of other desmosomal proteins, including desmoglein 1 and 2, plakophilin 2, and plakoglobin. In addition, the cells expressing myc-tagged truncated Dsg3bal-Pas desmoglein 3 protein underwent dramatic changes in cell morphology and exhibited striking extensive filopodia. Collectively, these data showed that the perturbation of desmoglein 3 found in the Dsg3bal-Pas mice resulted in disadhesion of keratinocytes manifested with blistering phenotype.


J Am Acad Dermatol 2002 Nov;47(5):795

Female pattern hair loss.


In this issue of the Journal (pages 733-9), Shum et al1 describe 4 female patients with increased androgens whose central scalp hair loss responded to finasteride. This is an important observation and one that highlights why the term androgenetic or androgenic alopecia, as used to describe the hereditary pattern balding of men, should be replaced with the term female pattern hair loss when applied to women.2 It is clear that only a small but distinct subset of women with central scalp pattern hair loss, such as the patients presented in the report by Shum et al, has signs of hyperandrogenism such as acne, hirsutism, and irregular periods with or without elevation of serum androgens. Therefore these women may have hair loss resulting from a different mechanism and may respond differently to treatments targeted at androgen blockade than women with a similar type of hair loss but without evidence of hyperandrogenism. Certainly these women with hyperandrogenemia may develop, in contradistinction to those without hyperandrogenemia, a Hamilton pattern of hair loss (male pattern baldness). Many of these women may, on more careful evaluation, have polycystic ovarian syndrome.

It is not surprising that a 5-reductase inhibitor such as finasteride, which has documented efficacy in men with androgenetic alopecia3,4 and has been shown to advantageously affect hirsutism,5,6 may cause hair growth in women with female pattern hair loss and hyperandrogenism. The fact that finasteride has not previously been shown to induce hair growth in postmenopausal women with “androgenetic alopecia”7 speaks for (1) adoption of different terminology for this type of hair loss in women and (2) separate evaluation of the different subgroups of women with female pattern hair loss as recently described,2 that is, early onset with and without hyperandrogenemia and late onset/postmenopausal with and without hyperandrogenemia. We should not be too quick to rule out efficacy of a potential therapeutic agent in all women with female pattern hair loss without first testing it in all the various subsets of women.

Clearly, finasteride may be an effective treatment for women with early-onset female pattern hair loss and hyperandrogenemia, but definitive results would require a large, well-controlled trial. Such a trial would likely necessitate inclusion of a “placebo” run-in phase with an oral contraceptive, both to protect these women of child-bearing potential from getting pregnant while taking a drug known to cause genital abnormalities in male fetuses and to rule out any effect from the oral contraceptive alone on female pattern hair loss (a study that needs to be conducted in any case). Anecdotal reports, such as that presented by Shum et al,1 should ignite interest in evaluating finasteride and other 5-reductase inhibitors, either type II or combination type I/II, in women with female pattern hair loss, a group of patients whose current treatment options are extremely limited.


Br J Dermatol 2002 Jun;146(6):992-9

Effects of minoxidil 2% vs. cyproterone acetate treatment on female androgenetic alopecia: a controlled, 12-month randomized trial.


BACKGROUND: Hormone studies have demonstrated the androgen-dependent character of female androgenetic alopecia, but there have been few controlled studies of therapies for alopecia in women. OBJECTIVES: To compare topical minoxidil 2% and cyproterone acetate in the treatment of female alopecia. METHODS: Sixty-six women with female-pattern alopecia were randomly assigned for 12 cycles into two groups, 33 received two local applications (2 mL day-1) of topical minoxidil 2% plus combined oral contraceptive and 33 received cyproterone acetate 52 mg day-1 plus ethinyl oestradiol 35 microg for 20 of every 28 days. RESULTS: A mean reduction of 2.4 +/- 6.2 per 0.36 cm2 in hairs of diameter > 40 microm was observed in the cyproterone acetate group (P = 0.05) and a mean increase of 6.5 +/- 9 per 0.36 cm2 in the minoxidil group (P < 0.001). Comparison of the total number of hairs at 12 months and the body mass index (BMI) revealed a borderline positive correlation in the cyproterone acetate group (r = 0.39, P = 0.06) and a negative correlation in the minoxidil group (r = -0.42, P < 0.05). No significant difference was observed in the total number of hairs among cyproterone acetate patients according to the presence or absence of other symptoms of hyperandrogenism, whereas in the minoxidil group, the total number of new hairs was higher in patients with isolated alopecia (Delta = 8.1; P < 0.05). Variations in scalp seborrhoea were significant in both groups, but the result was better (for acne and hirsutism as well) in the cyproterone acetate group than in the minoxidil group (P < 0.001). CONCLUSIONS: Minoxidil treatment was more effective in the absence of other signs of hyperandrogenism, hyperseborrhoea, and menstrual cycle modifications when the BMI was low, and when nothing argued in favour of biochemical hyperandrogenism. Cyproterone acetate treatment was more effective when other signs were present and when the BMI was elevated, factors that favoured a diagnosis of biochemical hyperandrogenism.


Dermatol Surg 2002 Jan;28(1):66-74

Prevention of temporal alopecia following rhytidectomy: the prophylactic use of minoxidil. A study of 60 patients.


BACKGROUND: Temporal hair loss that results from traumatized hair follicles following rhytidectomy is an unsightly complication that can distress both the patient and the operating surgeon. Topical minoxidil is a proven therapy for androgenic alopecia and female senile alopecia. It has also been found to be useful in preventing the hair loss that commonly follows hair transplantation. OBJECTIVE: To analyze through a retrospective study the effect of topical minoxidil on the incidence of temporal hair loss following facelift procedures. To our knowledge this is the first study to investigate the role of minoxidil in preventing post-rhytidectomy temporal alopecia. METHODS: The charts of 60 women with a mean age of 58 years who underwent primary cervicofacial rhytidectomy were studied. Either a standard SMAS/flap technique or pliation was done in all cases. Each patient received either 2% or 5% topical minoxidil for 2 weeks before surgery and for 4 weeks after surgery, with a 5-day break period beginning on the day of surgery. Patients were monitored for complications immediately postoperatively and in 3-6 months of follow-up. RESULTS: Almost 80% of the patients underwent SMAS/flap procedures. Transient temporal alopecia was noted in only one patient, 6 weeks after discontinuing minoxidil. This resolved within 4 weeks of its reintroduction. The only other complications noted included minor hematomas (3.3%), skin slough/infection (1.7%), minor transient and localized edema (8.3%), minor ecchymosis (1.7%), a unilateral neuropraxia of the buccal nerve lasting 3 months (1.7%), and a minor temporary unilateral skin depression (1.7%). Side effects of minoxidil were not observed. CONCLUSION: On comparing our findings to results of larger rhytidectomy series in which minoxidil was not used prophylactically, and our experience before using minoxidil, we conclude that minoxidil plays a role in effectively preventing the temporal hair loss that occurs following primary cervicofacial rhytidectomies. We also found that minoxidil did not negatively impact on the risk of hematoma formation, skin necrosis, edema, or ecchymosis. Side effects of minoxidil did not present a problem.


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