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Curr Biol 2003 Feb 18;13(4):333-8

Notch/RBP-J Signaling Regulates Epidermis/Hair Fate Determination of Hair Follicular Stem Cells.


Notch signaling is involved in the cell fate determination of various cell lineages. Notch interaction with its ligand induces the cleavage of its intracellular domain (IC), and the Notch IC translocates to the nucleus and binds to RBP-J to transactivate transcription of target genes. All four Notches in mammals bind to RBP-J to exert their transactivation activities. Notch is expressed in developing or differentiating epidermis and hairs, inhibits the terminal differentiation of the epidermis, and regulates hair differentiation. The common stem cells that reside in the upper portion of hair follicles (the bulge) contribute to epidermal and hair cell formation. However, it is unknown what determines whether hair follicular stem cells will become hairs or epidermis. Here we report that conditionally disrupting the mouse RBP-J gene in a mosaic pattern to avoid embryonic lethality of RBP-J-deficiency caused hair loss, epidermal hyperkeratinization, and epidermal cyst formation. Cyst formation is probably due to a combination of the aberrant fate determination of RBP-J-deficient stem cells to epidermal progenitors and their accelerated differentiation into epidermis. These results suggest that Notch/RBP-J signaling regulates the cell fate determination of hair follicular stem cells at the bulge region.


Australas J Dermatol 2002 Nov;43(4):311-2

Sensitization to saw palmetto and minoxidil in separate topical extemporaneous treatments for androgenetic alopecia.


We report a 24-year-old woman with androgenetic alopecia who became sensitized to topical minoxidil following use of an extemporaneous preparation of minoxidil 4% with retinoic acid in a propylene glycol base. She subsequently also became sensitized to saw palmetto (Serenoa repens), a topical herbal extract commonly promoted for the treatment of hair loss.


Zhonghua Zheng Xing Wai Ke Za Zhi 2002 Jul;18(4):219-20

Dense-packing hair grafting technique for restoration of cicatricial alopecia


OBJECTIVE: To investigate the possibility of using dense-packing hair grafting technique for restoration of cicatricial alopecia. METHODS: Under local anesthesia, a scalp strip was harvested from the back of the head. A series of micro-grafts with 1-3 hairs and mini-grafts with 4-6 hairs were created from this strip. In the scarring recipient area, micro-slots were made with a 18 G needle for the micro-grafts and mini-slits were made with a No. 64 mini-blade for the mini-grafts. The grafts were then implanted into these holes. RESULTS: Ninety-six patients with 128 bald scarring areas, resulted from burn, trauma or infection, were treated with the above-mentioned technique from April. 1998 to February. 2000. All of the patients were satisfied with the appearance. In the micro-graft area, the graft density reached 10-15 mini-grafts/cm2 per session. In the micro-graft area, the graft density reached 16-19 micro-grafts/cm2 per session. Postoperative following-up for more than 1 year showed that the grafted hairs were growing well with 90%-95% survival of the hair. One third of the patients obtained satisfactory results with only one session. Two thirds of the patients needed the second session to improve the appearance. CONCLUSIONS: The dense-packing hair grafting technique is a simple, safe and effective method for hair restoration surgery. It is not only used for male pattern baldness, but could also be applied for restoration of cicatricial alopecia.


Dermatology 2002;204(1):33-6

Perception of baldness and hair density.


BACKGROUND: Androgenetic alopecia needs to be scored precisely. OBJECTIVE: A possible measure is the ratio between the hair density in the parietal area and that in the occipital area which, being not affected by baldness, supposedly has a 'normal' density. METHODS: On the vertex and just below the occipital protuberance of 109 men, two 1-cm(2) areas were identified. In both areas, hairs were clipped short and photographed by a videomicroscope. Hairs were then counted within a 30-mm(2)-wide central square section. RESULTS: In the occipital area, the average count was 127/cm(2), without differences among the Hamilton/Norwood classes. In the parietal area, the average density significantly diminished from 138 to 47/cm(2). A main difference was found between classes 1-3 vertex and classes 4-6. CONCLUSIONS: The parietal/occipital ratio decreased significantly only when baldness was clinically manifest. The parietal/occipital ratio cannot be a better measure of baldness severity than the rough Hamilton/Norwood scale. The perception of early baldness does not depend on the diminished hair density, but also on the progressive thinning of the hair shafts.


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