AIRLINK 200.02 Increased By ▲ 6.46 (3.34%)
BOP 10.23 Increased By ▲ 0.28 (2.81%)
CNERGY 7.83 Decreased By ▼ -0.10 (-1.26%)
FCCL 40.00 Decreased By ▼ -0.65 (-1.6%)
FFL 16.80 Decreased By ▼ -0.06 (-0.36%)
FLYNG 26.50 Decreased By ▼ -1.25 (-4.5%)
HUBC 132.79 Increased By ▲ 0.21 (0.16%)
HUMNL 13.99 Increased By ▲ 0.10 (0.72%)
KEL 4.67 Increased By ▲ 0.07 (1.52%)
KOSM 6.57 Decreased By ▼ -0.05 (-0.76%)
MLCF 46.66 Decreased By ▼ -0.94 (-1.97%)
OGDC 211.89 Decreased By ▼ -2.02 (-0.94%)
PACE 6.89 Decreased By ▼ -0.04 (-0.58%)
PAEL 41.34 Increased By ▲ 0.10 (0.24%)
PIAHCLA 17.02 Decreased By ▼ -0.13 (-0.76%)
PIBTL 8.13 Decreased By ▼ -0.28 (-3.33%)
POWER 9.37 Decreased By ▼ -0.27 (-2.8%)
PPL 181.45 Decreased By ▼ -0.90 (-0.49%)
PRL 41.60 Decreased By ▼ -0.36 (-0.86%)
PTC 24.69 Decreased By ▼ -0.21 (-0.84%)
SEARL 112.25 Increased By ▲ 5.41 (5.06%)
SILK 1.00 Increased By ▲ 0.01 (1.01%)
SSGC 44.00 Increased By ▲ 3.90 (9.73%)
SYM 19.18 Increased By ▲ 1.71 (9.79%)
TELE 8.91 Increased By ▲ 0.07 (0.79%)
TPLP 12.90 Increased By ▲ 0.15 (1.18%)
TRG 67.40 Increased By ▲ 0.45 (0.67%)
WAVESAPP 11.45 Increased By ▲ 0.12 (1.06%)
WTL 1.78 Decreased By ▼ -0.01 (-0.56%)
YOUW 4.00 Decreased By ▼ -0.07 (-1.72%)
BR100 12,170 Increased By 125.6 (1.04%)
BR30 36,589 Increased By 8.6 (0.02%)
KSE100 114,880 Increased By 842.7 (0.74%)
KSE30 36,125 Increased By 330.6 (0.92%)

After 10 years of research, scientists have come up with a drug that could help people tan without exposure to the sun, potentially reducing the risk of skin cancer. The drug stimulates cells that produce the pigment that absorbs ultra-violet light, the researchers said in the US journal Cell Reports published on Tuesday. They stressed that further tests are needed to safeguard against potential side-effects in humans.
Applied as a cream to the skin, the drug allowed red-haired mice to develop a deep tan. Like their pale-skinned human counterparts, the mice are particularly susceptible to the damaging effects of the sun's ultra-violet rays. The original breakthrough in mice was announced more than a decade ago, in a study published in the British journal Nature in 2006. But it has taken scientists that much time to work out how to make much thicker human skin absorb the substance. The initial report revealed that a substance called forskolin gave red-haired mice a deep tan without exposure to UV light. But because human skin is relatively hairless compared to animals', it has evolved to be much tougher in order to protect against heat, cold and other environmental factors, and the topical substance could not penetrate it effectively. "Human skin is a very good barrier and is a formidable penetration challenge. Therefore, other topical approaches just did not work," said David Fisher, chief of dermatology at Massachusetts General Hospital, a professor of dermatology at Harvard Medical School, and one of the authors of the study. "But 10 years later, we have come up with a solution. It's a different class of compounds, that work by targeting a different enzyme that converges on the same pathway that leads to pigmentation," he said.
The scientists tested the substance on samples of human skin kept in laboratories and found that it darkened in proportion to the dosage applied. The tan lasted several days. In animal tests, red-haired mice became "almost jet black in a day or two with a strong enough dose," the researchers observed. When the dosage was removed, normal skin regeneration meant the color faded within a week or so.

Copyright Agence France-Presse, 2017

Comments

Comments are closed.