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Exp Gerontol 2002 Aug-Sep;37(8-9):981-90
Molecular mechanisms of androgenetic alopecia.
Androgenetic alopecia (AGA) is hereditary and androgen-dependent, progressive thinning of the scalp hair that follows a defined pattern. While the genetic involvement is pronounced but poorly understood, major advances have been achieved in understanding principal elements of the androgen metabolism involved: androgen-dependent processes are predominantly due to the binding of dihydrotestosterone (DHT) to the androgen receptor (AR). DHT-dependent cell functions depend on the availability of weak androgens, their conversion to more potent androgens via the action of 5 alpha-reductase, low enzymatic activity of androgen inactivating enzymes, and functionally active AR present in high numbers. The predisposed scalp exhibits high levels of DHT, and increased expression of the AR. Conversion of testosterone to DHT within the dermal papilla plays a central role, while androgen-regulated factors deriving from dermal papilla cells are believed to influence growth of other components of the hair follicle. Current available treatment modalities with proven efficacy are oral finasteride, a competitive inhibitor of type 2 5 alpha-reductase, and topical minoxidil, an adenosine-triphosphate-sensitive potassium channel opener which has been reported to stimulate the production of vascular endothelial growth factor in cultured dermal papilla cells. Since the clinical success rate of treatment of AGA with modulators of androgen metabolism or hair growth promoters is limited, sustained microscopic follicular inflammation with connective tissue remodeling, eventually resulting in permanent hair loss, is considered a possible cofactor in the complex etiology of AGA.
Dermatol Surg 2002 Aug;28(8):720-8
Follicular unit extraction: minimally invasive surgery for hair transplantation.
BACKGROUND: Follicular Unit Transplantation (FUT) is performed using large numbers of naturally occuring individual follicular units obtained by single-strip harvesting and stereo-microscopic dissection. Donor wound scarring from strip excision, although an infrequent complication, still concerns enough patients that an alternative solution is warranted. OBJECTIVE: The purpose of this paper is to introduce Follicular Unit Extraction (The FOX Procedure), in which individual follicular units are removed directly from the donor region through very small punch excisions, and to describe a test (The FOX Test) that determines which patients are candidates for this procedure. This paper explores the nuances, limitations, and practical aspects of Follicular Unit Extraction (FUE). METHODS: FUE was performed using 1-mm punches to separate follicular units from the surrounding tissue down to the level of the mid dermis. This was followed by extraction of the follicular units with forceps. The FOX test was developed to determine which patients would be good candidates for the procedure. The test was performed on 200 patients. Representative patients who were FOX-positive and FOX-negative were studied histologically. RESULTS: The FOX Test can determine which patients are suitable candidates for FUE. Approximately 25% of the patients biopsied were ideal candidates for FUE and 35% of the patients biopsied were good candidates for extraction. CONCLUSION: FUE is a minimally invasive approach to hair transplantation that obviates the need for a linear donor incision. This technique can serve as an important alternative to traditional hair transplantation in certain patients.
Ther Umsch 2002 May;59(5):217-22
Diffuse hair loss in women
The complaint "Doctor, I am losing my hair" represents a particular challenge to the physician, and involves making a specific diagnosis, selecting an appropriate therapy, and expressing empathy for the patient's anxiety. Diffuse hair loss in women was formerly classified as an entity of its own. Since the identification of female pattern hair loss, most cases have been recognized to be due to androgenetic alopecia, often during phases of life characterized by fluctuations of sexual hormone levels or in connection with intake or cessation of hormonal therapy. The most difficult differential diagnosis includes androgenetic alopecia, chronic telogen effluvium, and psychogenic pseudo efflvuium. Androgenetic alopecia is due to androgen-induced, non-synchronized, progressive shortening of the hair growth cycle and gradually leads to thinning of the central scalp area. Idiopathic chronic telogen effluvium typically occurs in women, starting abruptly without a recognizable initiating factor, and involves the entire scalp area with increased shedding of telogen hair. It is believed to be due to synchronization phenomena of the cyclic hair growth. Psychogenic pseudo effluvium affects fashion-oriented, self-conscious women suffering of a discrepancy between the actual state of their hair and idealized expectations. Later the problem of age-related hair thinning oft becomes a surrogate for the more generalized problem of senescence. Rational therapy of androgenetic alopecia aims at blocking the androgen effect on hair follicles with estrogens and antiandrogens or at pharmacologically reversing vellus hair transformation with topical minoxidil. In contrast, women with idiopathic chronic telogen effluvium should be reassured that their problem is rather a state of exaggerated "hair shedding" than of actual "hair loss".
Am J Clin Dermatol. 2003;4(6):371-8.
Skin aging and menopause : implications for treatment.
The skin is one of the largest organs of the body, which is significantly affected by the aging process and menopause. The significant changes sustained by the skin during the menopause are due to the effect sustained on the skin's individual components.The estrogen receptor has been detected on the cellular components of the skin. Accordingly, dermal cellular metabolism is influenced by the hypoestrogenoemic state of menopause leading to changes in the collagen content, alterations in the concentration of glycoaminoglycans and most importantly the water content. Consequently changes in these basic components leads to an alteration in function compatible with skin aging.Changes in the skin collagen leads to diminished elasticity and skin strength. Collagen content may be measured by various methods such as direct skin biopsy, skin blister assessment for collagen markers and skin thickness measurement. All these variables indicate a reduction in collagen content following menopause. This may be reversed with the administration of estrogen given both topically and systemically.A reduction in hydrophilic glycoaminglycans leads to a direct reduction in water content, which influences the skin turgor. These effects on glycoaminoglycans, due to the hypoestrogenia, have been clearly shown in animal studies and appeared to be rapidly reversed with the application of estrogens. The sum total of these basic effects on the skin leads to wrinkles, the skin condition typifying skin aging.Structures resident in the skin are likewise influenced by menopause. Changes to the cutaneous vascular reactivity are noted following menopause. Capillary blood flow velocity decreases significantly in postmenopausal women. Postmenopausal flushing is due to profound vasodilatation in the dermal papillae. Hair growth is also influenced by the hormonal milieu and consequently hair loss has been associated with the beginning of menopause.Treatments administered for menopause, in particular hormone replacement therapy, appear to alter its effects on the basic components of the skin as well as the more complex structures residing in the skin, consequently retarding the skin aging process.
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