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  • Trihydroxyisoflavone Improves Skin Barrier Function Impaired by E
    www.nature.com/scientificreports OPEN A novel mineralocorticoid receptor antagonist, 7,3’,4’‑trihydroxyisofavone improves skin barrier function impaired by endogenous or exogenous glucocorticoids Hanil Lee1,5, Eun‑Jeong Choi2,5, Eun Jung Kim1, Eui Dong Son2, Hyoung‑June Kim2, Won‑Seok Park2, Young‑Gyu Kang2, Kyong‑Oh Shin3, Kyungho Park3, Jin‑Chul Kim4, Su‑Nam Kim4 & Eung Ho Choi1* Excess glucocorticoids (GCs) with either endogenous or exogenous origins deteriorate skin barrier function. GCs bind to mineralocorticoid and GC receptors (MRs and GRs) in normal human epidermal keratinocytes (NHEKs). Inappropriate MR activation by GCs mediates various GC‑induced cutaneous adverse events. We examined whether MR antagonists can ameliorate GC‑mediated skin barrier dysfunction in NHEKs, reconstructed human epidermis (RHE), and subjects under psychological stress (PS). In a preliminary clinical investigation, topical MR antagonists improved skin barrier function in topical GC‑treated subjects. In NHEKs, cortisol induced nuclear translocation of GR and MR, and GR and MR antagonists inhibited cortisol‑induced reductions of keratinocyte diferentiation. We identifed 7,3’,4’‑trihydroxyisofavone (7,3’,4’‑THIF) as a novel compound that inhibits MR transcriptional activity by screening 30 cosmetic compounds. 7,3’,4’‑THIF ameliorated the cortisol efect which decreases keratinocyte diferentiation in NHEKs and RHE. In a clinical study on PS subjects, 7,3’,4’‑ THIF (0.1%)‑containing cream improved skin barrier function, including skin surface pH, barrier recovery rate, and stratum corneum lipids. In conclusion, skin barrier dysfunction owing to excess GC is mediated by MR and GR; thus, it could be prevented by treatment with MR antagonists. Therefore, topical MR antagonists are a promising therapeutic option for skin barrier dysfunction after topical GC treatment or PS.
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  • Nitrate Prodrugs Able to Release Nitric Oxide in a Controlled and Selective
    Europäisches Patentamt *EP001336602A1* (19) European Patent Office Office européen des brevets (11) EP 1 336 602 A1 (12) EUROPEAN PATENT APPLICATION (43) Date of publication: (51) Int Cl.7: C07C 205/00, A61K 31/00 20.08.2003 Bulletin 2003/34 (21) Application number: 02425075.5 (22) Date of filing: 13.02.2002 (84) Designated Contracting States: (71) Applicant: Scaramuzzino, Giovanni AT BE CH CY DE DK ES FI FR GB GR IE IT LI LU 20052 Monza (Milano) (IT) MC NL PT SE TR Designated Extension States: (72) Inventor: Scaramuzzino, Giovanni AL LT LV MK RO SI 20052 Monza (Milano) (IT) (54) Nitrate prodrugs able to release nitric oxide in a controlled and selective way and their use for prevention and treatment of inflammatory, ischemic and proliferative diseases (57) New pharmaceutical compounds of general effects and for this reason they are useful for the prep- formula (I): F-(X)q where q is an integer from 1 to 5, pref- aration of medicines for prevention and treatment of in- erably 1; -F is chosen among drugs described in the text, flammatory, ischemic, degenerative and proliferative -X is chosen among 4 groups -M, -T, -V and -Y as de- diseases of musculoskeletal, tegumental, respiratory, scribed in the text. gastrointestinal, genito-urinary and central nervous sys- The compounds of general formula (I) are nitrate tems. prodrugs which can release nitric oxide in vivo in a con- trolled and selective way and without hypotensive side EP 1 336 602 A1 Printed by Jouve, 75001 PARIS (FR) EP 1 336 602 A1 Description [0001] The present invention relates to new nitrate prodrugs which can release nitric oxide in vivo in a controlled and selective way and without the side effects typical of nitrate vasodilators drugs.
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  • (12) Patent Application Publication (10) Pub. No.: US 2006/0110428A1 De Juan Et Al
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  • (CD-P-PH/PHO) Report Classification/Justifica
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  • Clinical Policy: Topical Agents: Corticosteroids
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  • Muscarinic Acetylcholine Receptor
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  • Supplementary Information
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  • (19) United States (12) Patent Application Publication (10) Pub
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  • Poisons Act.Fm
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