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Interferon research abs 1 || Hemoglobin research abs || Stem cell research abs || Nucleic acid research abs || Herpes research abs || Bronchitis research abs || Schizophrenia research abs || Tuberculosis research abs || Pneumonia research abs || Constipation research abs || Laxative research abs || hair research abs || hair related research references






Cutis. 2002 Apr;69(4):281-3.
Centrifugal lipodystrophy presenting with serpiginous erythema and alopecia.

Hagari Y, Ikehara A, Nuno K, Mihara M.

Department of Dermatology, Faculty of Medicine, Tottori University, Yonago, Japan. yohagarrape.med.tottori-u.ac.jp

We describe serpiginous erythema with alopecia developing on the scalp of a 10-year-old boy during follow-up of centrifugal lipodystrophy. Because the clinical and histopathologic features of these lesions were identical to those of centrifugal lipodystrophy, we conclude that involvement of a hairy region by this disorder could cause alopecia and that the hair loss might be an indirect effect of interstitial inflammatory infiltrates around the hair follicles and in the subcutaneous fat.


online pharmacy ref. source: www.ncbi.nlm.nih.gov/entrez/query.fcgi?cmd=Retrieve&db=PubMed&list_uids=12080947&dopt=Abstract



Hautarzt. 1977 Aug;28(8):404-6.
[Effect of wash-active substances in hair-washing preparations]

[Article in German]

Gloor M, Jager B, Baldes G.

Standardized hair washes have been carried out at weekly intervals over a period of four weeks in a total of 35 male subjects. A standard surfactant solution was applied in all subjects for the first two washes. For the third and fourth wash three different surfactant solutions were used in three groups of subjects. It was observed that the microbial splitting of the triglycerides into fatty acids can be inhibited by surfactants. We think that in this way a seborrhoea oleosa can be changed into a seborrhoea sicca. Moreover some but not all surfactants have a strong "keratolytic" action when they are used in shampoos.


online pharmacy ref. source: www.ncbi.nlm.nih.gov/entrez/query.fcgi?cmd=Retrieve&db=PubMed&list_uids=143462&dopt=Abstract



Med Hypotheses. 2002 Apr;58(4):261-3.
Hormone-induced aberrations in electromagnetic adhesion signaling as a developmental factor of androgenetic alopecia.

Matilainen VA, Keinanen-Kiukaanniemi SM.

Department of Public Health Science and General Practice, University of Oulu, Finland.

In androgenetic alopecia, overactivation of the androgen hormone cascade in genetically predisposed persons leads to miniaturization of the dermal papilla of the hair follicle and to reduction in the number of papilla cells in the scalp, but the mechanisms explaining this miniaturization have remained unclear. According to our hypothesis, the increase of dihydrotestosterone (DHT) production in the overactive androgen state inhibits cell mitosis in the dermal papilla and contributes to the induction of programmed cell death (apoptosis). Normally, DNA molecules have a negative charge, which doubles in every cell mitosis. In the catagen and telogen phases, the sulphur-rich hair moves upwards, dehydrates and develops an increasing positive charge. In a normal hair-growth cycle, the epithelial column shortens and the secondary germ is formed and it invaginates the dermal papilla by electromagnetic attraction. In the mitotic inhibition state induced by DHT, the negative charge decreases, leading to a weakening of the electromagnetic adhesion forces and weaker electrical attraction between the undifferentiated germ cells and the dermal papilla. Insulin resistance has an additional pathogenic role in the excessive miniaturization of the hair follicle. The vasoactive substances associated with endothelial dysfunction in insulin resistance induce microcirculatory disturbance, perifollicular vasoconstriction and stimulation of smooth muscle cell proliferation in the vascular wall. This leads to microvascular insufficiency and local tissue hypoxia and progressive miniaturization of hair follicles. 2002 Elsevier Science Ltd. All rights reserved.


online pharmacy ref. source: www.ncbi.nlm.nih.gov/entrez/query.fcgi?cmd=Retrieve&db=PubMed&list_uids=12027516&dopt=Abstract



Biophys J. 2000 Oct;79(4):1876-82.
Fluctuation of motor charge in the lateral membrane of the cochlear outer hair cell.

Dong X, Ehrenstein D, Iwasa KH.

Biophysics Section, Laboratory of Cellular Biology, National Institute on Deafness and Other Communication Disorders, National Institutes of Health, Bethesda, Maryland 20892-0922 USA.

Functioning of the membrane motor of the outer hair cell is tightly associated with transfer of charge across the membrane. To obtain further insights into the motor mechanism, we examined kinetics of charge transfer across the membrane in two different modes. One is to monitor charge transfer induced by changes in the membrane potential as an excess membrane capacitance. The other is to measure spontaneous flip-flops of charges across the membrane under voltage-clamp conditions as current noise. The noise spectrum of current was inverse Lorentzian, and the capacitance was Lorentzian, as theoretically expected. The characteristic frequency of the capacitance was approximately 10 kHz, and that for current noise was approximately 30 kHz. The difference in the characteristic frequencies seems to reflect the difference in the modes of mechanical movement associated with the two physical quantities.


online pharmacy ref. source: www.ncbi.nlm.nih.gov/entrez/query.fcgi?cmd=Retrieve&db=PubMed&list_uids=11023893&dopt=Abstract








Loss of hair changes the appearance of a person, and the identity of the person in social context to a certain extent. Hair growth is a complex 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.

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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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