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Mol Cell Endocrinol 2002 Dec 30;198(1-2):89-95

Androgens and alopecia.


Androgens have profound effects on scalp and body hair in humans. Scalp hair grows constitutively in the absence of androgens, while body hair growth is dependent on the action of androgens. Androgenetic alopecia, referred to as male pattern hair loss (MPHL) in men and female pattern hair loss (FPHL) in women, is due to the progressive miniaturization of scalp hair. Observations in both eunuchs, who have low levels of testicular androgens, and males with genetic 5alpha-reductase (5alphaR) deficiency, who have low levels of dihydrotestosterone (DHT), implicate DHT as a key androgen in the pathogenesis of MPHL in men. The development of finasteride, a type 2-selective 5alphaR inhibitor, further advanced our understanding of the role of DHT in the pathophysiology of scalp alopecia. Controlled clinical trials with finasteride demonstrated improvements in scalp hair growth in treated men associated with reductions in scalp DHT content, and a trend towards reversal of scalp hair miniaturization was evident by histopathologic evaluation of scalp biopsies. In contrast to its beneficial effects in men, finasteride did not improve hair growth in postmenopausal women with FPHL. Histopathological evaluation of scalp biopsies confirmed that finasteride treatment produced no benefit on scalp hair in these women. These findings suggest that MPHL and FPHL are distinct clinical entities, with disparate pathophysiologies. Studies that elucidate the molecular mechanisms by which androgens regulate hair growth would provide greater understanding of these differences.


Bone Marrow Transplant 2002 Nov;30(9):593-7

Relationship between irreversible alopecia and exposure to cyclophosphamide, thiotepa and carboplatin (CTC) in high-dose chemotherapy.


Reversible alopecia is a commonly observed, important and distressing complication of chemotherapy. Permanent alopecia, however, is rare after standard-dose therapy, but has occasionally been observed after high-dose chemotherapy with cyclophosphamide, thiotepa and carboplatin (CTC). We evaluated the relationships between total exposure to these three compounds and their different metabolites in the high-dose CTC regimen, and the subsequent development of irreversible alopecia. Twenty-four patients received two or three courses of high-dose CTC, each followed by peripheral blood progenitor cell transplantation. Plasma levels of cyclophosphamide, its active metabolite 4-hydroxycyclophosphamide, thiotepa, its active metabolite tepa, and carboplatin were determined, and the area-under-the-plasma concentration-versus-time curves (AUC) of the compounds were calculated. Eight of the 24 patients included in the study developed permanent alopecia, while seven had normal hair regrowth and nine patients developed incomplete and/or thin hair regrowth. The carboplatin AUC and the summed AUC of thiotepa and tepa were both significantly associated with increasing irreversibility of hair loss. These results suggest that high exposure to carboplatin and the sum of the thiotepa and tepa exposure may lead to the development of permanent alopecia. This knowledge could guide therapeutic drug monitoring in order to prevent the occurrence of permanent alopecia and thereby improve the patients' quality of life.


Pediatr Dermatol 2002 Mar-Apr;19(2):155-8

Alopecia areata in infants and newborns.


Alopecia areata is a common cause of nonscarring hair loss in children and adults. In newborns and very young infants, however, it is thought to be extremely rare. In this article we describe five cases of alopecia areata in patients less than 6 months of age and briefly discuss the pertinent differential diagnosis of infants and newborns with both patchy and complete hair loss. We propose that alopecia areata may be more common in this age group than the literature suggests.


Dermatol Clin 2001 Oct;19(4):711-26, ix

Hair and systemic disease.


Hair loss (alopecia) occurs as a manifestation of numerous systemic diseases, but usually can be categorized into one of five general groups: telogen effluvium, anagen arrest, follicular destruction, hair miniaturization, and hair shaft defects. An excess of hair also can be evidence of internal disease, and there are two general categories of increased hair density: hypertrichosis and hirsutism. The basic categories of hair disease and the systemic conditions associated with them are discussed. The history, physical examination, and histopathologic data usually are sufficient to categorize the form of hair disorder and may provide a clue to the nature of the underlying systemic disease.


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