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Gan To Kagaku Ryoho 2003 Jan;30(1):105-9

Weekly administration of paclitaxel and pirarubicine for recurrent breast cancer


The therapeutic efficacy of weekly coadministration of paclitaxel (TXL) and pirarubicin (THP) on docetaxel (TXT)- and epirubicin-resistant recurrent breast cancer, adverse reactions caused by this therapy, and the possibility of ambulatory treatment using it were evaluated. The present study was conducted in 11 patients with recurrent breast cancer with pretreatment with CEF and TXT. The site of recurrence was the lung in 9 patients, lymphnodes in 2, bones in 1, liver in 1 and local foci in 1. One cycle consisted of 20 mg/m2 of THP followed by 80 mg/m2 of TXL 4 h later, repeated three times every other week. Three to six cycles were conducted in each patient. An anti-emetic drug was administered before administration of THP as short premedication. Dexamethasone (16 mg; i.v.) and d-chlorpheniramine maleate (12 mg; p.o.) were administered 1 h before administration of TXL and ranitidine (100 mg; i.v.) was administered 30 min before administration of TXL. Ubidecarenone (30 mg/day; p.o.) was administered for 3 days. The response rate was 27.3% with a rating of PR in 3 patients, NC in 6, and PD in 2. Adverse reactions observed included transient facial hot flushes, alopecia grade 1 or milder grade 1 symptoms, and peripheral nerve damage. No adverse reactions such as myocardial disorders or congestive heart failure were noted. Grade 3 and grade 2 neutropenia occurred in 1 and 6 patients, respectively, and 4 patients were admitted for treatment of this. In conclusion, the short premedication was useful, and this was thought to make it possible to conduct ambulatory treatment with TXL + THP in some patients. The response rate of 27.3%, however, was not satisfactory. It will be necessary to clarify the characteristics of this therapy by administering it to a wider spectrum of patients.


Saudi Med J 2002 Dec;23(12):1489-91

Striae distensae - like lesions. A cause of scarring alopecia among children.


OBJECTIVE: Although alopecia areata is a common problem among children, many misdiagnoses for this condition can happen. The aim of this study was to demonstrate the striae distensae as lesions that cause scarring alopecia with a great resemblance to alopecia areata. METHODS: A total of 36 children with provisional diagnosis of alopecia areata of the scalp were assessed clinically in the Department of Dermatology and Venereology, Baghdad Teaching Hospital, Baghdad, Iraq, between June 1998 to June 2001. Their age ranged from 3 12 years and the mean + standard deviation (SD) was 7.30 + 2.59 years with equal sex ratio. RESULTS: All patients provided for this study had a history of patchy hair loss of few months duration. Their parents denied any history of obvious trauma and many modalities of treatment had been tried without benefit. The clinical examination revealed single or multiple (1-6) (mean + SD 2.41 + 1.22) complete linear hair loss patches resembling atrophic scar that was similar to striae distensae. The histopathological examination showed atrophy of the epidermis, full replacement of the dermis by collagen bundles, and complete loss of appendages. CONCLUSION: This is a new entity, which seems to be common among children and often confused with untreated cases of alopecia areata. This condition should be added to the differential diagnosis of patchy hair loss in children and the parents should be reassured of the cause of hair loss and no treatment therapy needed.


FASEB J 2002 Dec;16(14):1967-9

Androgen-inducible TGF-beta1 from balding dermal papilla cells inhibits epithelial cell growth: a clue to understand paradoxical effects of androgen on human hair growth.


We attempted establishing an in vitro coculture system by using human dermal papilla cells (DPCs) from androgenetic alopecia (AGA) and keratinocytes (KCs) to explore the role of androgens in hair growth regulation. Androgen showed no significant effect on the growth of KCs when they were cocultured with DPCs from AGA. Because the expressions of mRNA of androgen receptor (AR) decreased during subcultivation of DPCs in vitro, we transiently transfected the AR expression vector into the DPCs and cocultured them with KCs. In this modified coculture, androgen significantly suppressed the growth of KCs by approximately 50%, indicating that overexpression of AR can restore the responsiveness of the DPCs to androgen in vivo. We found that androgen stimulated the expression of TGF-beta1 mRNA in the cocultured DPCs. ELISA assays demonstrated that androgen treatment increased the secretion of both total and active TGF-beta1 in the conditioned medium. Moreover, the neutralizing anti-TGF-beta1 antibody reversed the androgen-elicited growth inhibition of KCs in a dose-dependent manner. These findings suggest that androgen-inducible TGF-beta1 derived from DPCs of AGA is involved in epithelial cell growth suppression in our coculture system, providing the clue to understand the paradoxical effects of androgens for human hair growth.


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.




Natural Herbal Supplement: Hair Million


Hair loss, or alopecia is a concern for increasing number of folks in aging society. Loss of hair is indeed a visible problem.
The phenomenon of hair thinning and hair loss is most commonly associated with natural phenomena associated with aging, there are many other causes of hair loss, which include inherited or genetic conditions, illnesses, malnutrition, stress, hormonal problems, chemotherapy, and use of some drugs.
Hair growth is a sophisticated biological process, which has not yet been completely understood. A multitude of therapeutic measures, including drugs, surgery, and suppelements have been made available, and used. However, due to the diversity of the problems underlying hair loss, there is no single solution for all hair loss cases. Most of chemical drugs and hair transplantation surgeries are not free from varying degrees of undesirable side effects on health.

Hair Million is an alternative solution to hair loss problems. Anecdotally, it shows prositive results and improvement for age-related hair thinning and hair loss for a fraction of people who take it. We do not know the mechanisms of action as to how Hair Million works to help stop hair loss, and promote hair growth. We only know by anecdotal observations. There has been no clinical trials nor placebo controlled statistical analysis on the efficacy of HairMillion on hair loss and hair growth.
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DHEA has been suggested to provide numerous potential benefits. DHEA (or dehydroepiandrosterone) is converted into androgens (male hormones) or estrogens (female hormones) in the cells.






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