11-デオキシコルチゾール
Wikipedia preview
出典(authority):フリー百科事典『ウィキペディア(Wikipedia)』「2014/07/26 19:44:31」(JST)
[Wiki en表示]
Cortodoxone |
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IUPAC name
(8R,9S,10R,13S,14S,17R)-17-hydroxy-17-(2-hydroxyacetyl)-10,13-dimethyl-2,6,7,8,9,11,12,14,15,16-decahydro-1H-cyclopenta[a]phenanthren-3-one
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Other names
11-Deoxycortisol; Cortoxelone; 17,21-Dihydroxypregn-4-ene-3,20-dione; 17,21-Dihydroxyprogesterone; 11-Desoxycortisol; 11-Deoxyhydrocortisone; 11-Desoxyhydrocortisone; Reichstein's Substance S; Compound S
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Identifiers |
CAS number |
152-58-9 Y |
PubChem |
440707 |
ChemSpider |
389582 Y |
UNII |
WDT5SLP0HQ Y |
KEGG |
D03595 N |
ChEBI |
CHEBI:28324 N |
ChEMBL |
CHEMBL253144 N |
Jmol-3D images |
Image 1 |
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O=C4\C=C2/[C@]([C@H]1CC[C@@]3([C@@](O)(C(=O)CO)CC[C@H]3[C@@H]1CC2)C)(C)CC4
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InChI=1S/C21H30O4/c1-19-8-5-14(23)11-13(19)3-4-15-16(19)6-9-20(2)17(15)7-10-21(20,25)18(24)12-22/h11,15-17,22,25H,3-10,12H2,1-2H3/t15-,16+,17+,19+,20+,21+/m1/s1 Y
Key: WHBHBVVOGNECLV-OBQKJFGGSA-N Y
InChI=1/C21H30O4/c1-19-8-5-14(23)11-13(19)3-4-15-16(19)6-9-20(2)17(15)7-10-21(20,25)18(24)12-22/h11,15-17,22,25H,3-10,12H2,1-2H3/t15-,16+,17+,19+,20+,21+/m1/s1
Key: WHBHBVVOGNECLV-OBQKJFGGBG
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Properties |
Molecular formula |
C21H30O4 |
Molar mass |
346.46 g mol−1 |
Melting point |
215 °C |
Except where noted otherwise, data are given for materials in their standard state (at 25 °C (77 °F), 100 kPa) |
N (verify) (what is: Y/N?) |
Infobox references |
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Cortodoxone, also known as cortexolone or 11-deoxycortisol, is a steroid that can be oxygenated to cortisol (hydrocortisone). It was first synthesized by Tadeusz Reichstein.
On April 5, 1952, biochemist Durey Peterson and microbiologist Herbert Murray at Upjohn published the first report of a breakthrough fermentation process for the microbial 11α-oxygenation of steroids (e.g. progesterone) in a single step by common molds of the order Mucorales.[1]
11α-oxygenation of cortodoxone produces 11α-hydrocortisone, which can be chemically oxidized to cortisone, or converted by further chemical steps to cortisol.
Subsequent fermentation processes for the microbial 11β-oxygenation of steroids in a single step were developed that could convert cortodoxone directly to cortisol.
Cortodoxone functions as a glucocorticoid, though is less potent than cortisol. It can be synthesized from 17-hydroxyprogesterone. In 11β-hydroxylase deficiency, cortodoxone levels increase dramatically, causing hypertension (as opposed to 21α-hydroxylase deficiency, in which patients have hypotension from a lack of mineralocorticoids).
Cortodoxone can also be converted to androstenedione.[2] This could explain, at least in part, the marked increase in androstenedione levels in 11β-hydroxylase deficiency.[2]
See also
- 11-Deoxycorticosterone
- 17-Hydroxyprogesterone
- Cortisol
- Androstenedione
References
- ^ Peterson DH, Murray, HC (1952). "Microbiological oxygenation of steroids at carbon 11". J Am Chem Soc 74 (7): 1871–2. doi:10.1021/ja01127a531.
- ^ a b Auzéby A, Bogdan A, Touitou Y (January 1991). "Evidence for a new biologic pathway of androstenedione synthesis from 11-deoxycortisol". Steroids 56 (1): 33–6. doi:10.1016/0039-128X(91)90112-9. PMID 2028480.
Steroid hormones (and metabolic intermediates)
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Precursors |
- Cholesterol
- 22R-Hydroxycholesterol
- 20α,22R-Dihydroxycholesterol
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Corticosteroids |
Glucocorticoids
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- Corticosterone
- Cortisol
- Cortisone
- Cortodoxone/Deoxycortisol
- Deoxycorticosterone
- 17-Hydroxypregnenolone
- 17-Hydroxyprogesterone
- Pregnenolone
- Progesterone
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Mineralocorticoids
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- Aldosterone
- Corticosterone
- Cortisol
- Cortodoxone/Deoxycortisol
- Deoxycorticosterone
- 5α-Dihydroaldosterone
- 17-Hydroxypregnenolone
- 17-Hydroxyprogesterone
- 18-Hydroxycorticosterone
- 18-Hydroxydeoxycorticosterone
- Pregnenolone
- Progesterone
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|
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Sex steroids |
Androgens
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- 3α-Androstanediol
- Androstenediol
- Androstenedione
- Androsterone
- DHEA
- DHEA sulfate
- Dihydrotestosterone
- Epiandrosterone
- Epitestosterone
- 16-Hydroxyandrostenedione
- 16-Hydroxy-DHEA
- 16-Hydroxy-DHEA sulfate
- Testosterone
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Estrogens
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- 3β-Androstanediol
- DHEA
- Estetrol
- Estradiol
- Estrone
- Estriol
- 2-Hydroxyestrone
- 16-Hydroxyestrone
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Progestogens
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- Deoxycorticosterone
- DHDOC
- 5α-Dihydroprogesterone
- 17-Hydroxyprogesterone
- Progesterone
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Neurosteroids |
- Allopregnanolone
- 3α-Androstanediol
- Androsterone
- Corticosterone
- DHC
- DHDOC
- DHEA
- DHEA sulfate
- DHP
- Deoxycorticosterone
- Etiocholanolone
- 17-Hydroxypregnenolone
- 17-Hydroxyprogesterone
- Isopregnanolone
- Pregnanolone
- Pregnenolone
- Pregnenolone sulfate
- Progesterone
- THB
- THDOC
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Others |
- Vitamin D: 7-Dehydrocholesterol
- Calcidiol/Calcifediol
- Calcitriol
- Cholecalciferol
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Androgenics
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Receptor |
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Enzyme
(inhibitors) |
20,22-Desmolase
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- 22-ABC
- 3,3′-Dimethoxybenzidine
- 3-Methoxybenzidine
- Aminoglutethimide
- Cyanoketone
- Danazol
- Etomidate
- Mitotane
- Trilostane
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17α-Hydroxylase,
17,20-Lyase
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- 22-ABC
- 22-Oxime
- Abiraterone
- Bifonazole
- Clotrimazole
- Cyanoketone
- Cyproterone acetate
- Danazol
- Econazole
- Galeterone
- Gestrinone
- Isoconazole
- Ketoconazole
- L-39
- Levonorgestrel
- Liarozole
- LY-207,320
- MDL-27,302
- Miconazole
- Mifepristone
- Orteronel
- Pioglitazone
- Rosiglitazone
- Spironolactone
- Stanozolol
- SU-10,603
- TGF-β
- Tioconazole
- Troglitazone
- VN/87-1
- YM116
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3β-HSD (I, II)
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- 4-MA
- Azastene
- Cyanoketone
- Danazol
- Epostane
- Genistein
- Gestrinone
- Levonorgestrel
- Metyrapone
- Oxymetholone
- Pioglitazone
- Rosiglitazone
- Trilostane
- Troglitazone
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17β-HSD (I-XIV)
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5α-Reductase (I, II)
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- 22-Oxime
- Alfatradiol
- Azelaic acid
- β-Sitosterol
- Bexlosteride
- Dutasteride
- Epitestosterone
- Epristeride
- Finasteride
- gamma-Linolenic acid
- Ganoderic acid
- Izonsteride
- L-39
- Lapisteride
- Polyunsaturated fatty acids (α-linolenic acid, linoleic acid, γ-linolenic acid, oleic acid)
- Saw palmetto
- Turosteride
- Vitamin B6
- Zinc
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Aromatase
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- 1,4,6-Androstatriene-3,17-dione
- 4-Androstene-3,6,17-trione
- 4-Cyclohexylaniline
- 4-Hydroxytestosterone
- 5α-DHNET
- Abyssinone II
- Aminoglutethimide
- Anastrozole
- Ascorbic acid (Vitamin C)
- Atamestane
- Bifonazole
- CGP-45,688
- CGS-47,645
- Clotrimazole
- DHT
- Difeconazole
- Econazole
- Exemestane
- Fadrozole
- Fenarimol
- Finrozole
- Formestane
- Imazalil
- Isoconazole
- Ketoconazole
- Letrozole
- Liarozole
- MEN-11066
- Miconazole
- Minamestane
- Nimorazole
- NKS01
- ORG-33,201
- Penconazole
- Plomestane
- Prochloraz
- Propioconazole
- Pyridoglutethimide
- Rogletimide
- Rotenone
- Talarozole
- Testolactone
- Tioconazole
- Triadimefon
- Triadimenol
- Troglitazone
- Vorozole
- YM511
- Zinc
Note: 21-Hydroxylase inhibitors may also affect androgen levels as they prevent metabolism of androgen precursors.
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Other |
Endogenous
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- Androgens: Dihydrotestosterone
- Testosterone
- Antiandrogens: Epitestosterone
- Precursors: Cholesterol
- 22R-Hydroxycholesterol
- 20α,22R-Dihydroxycholesterol
- Pregnenolone
- 17-Hydroxypregnenolone
- Progesterone
- 17-Hydroxyprogesterone
- Cortodoxone/Deoxycortisol
- DHEA
- Androstenediol
- Androstenedione
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Indirect
|
- Estrogens/Antiestrogens (see here)
- GnRH agonists/antagonists (see here)
- Gonadotropins/Antigonadotropins (see here)
- Plasma proteins (SHBG, ABP, Albumin)
- Progestogens/Antiprogestins (see here)
- Prolactin
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Procedures
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- Adrenalectomy
- Hypophysectomy
- Oophorectomy
- Orchiectomy
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Estrogenics
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Receptor |
ER (α, β)
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GPER
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- Agonists: Estradiol
- Fulvestrant
- G-1
- Genistein
- Quercetin
- Tamoxifen
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Enzyme
(inhibitors) |
20,22-Desmolase
|
- 22-ABC
- 3,3′-Dimethoxybenzidine
- 3-Methoxybenzidine
- Aminoglutethimide
- Cyanoketone
- Danazol
- Etomidate
- Mitotane
- Trilostane
|
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17α-Hydroxylase,
17,20-Lyase
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- 22-ABC
- 22-Oxime
- Abiraterone
- Bifonazole
- Clotrimazole
- Cyanoketone
- Cyproterone
- Danazol
- Econazole
- Galeterone
- Gestrinone
- Isoconazole
- Ketoconazole
- L-39
- Liarozole
- LY-207,320
- MDL-27,302
- Miconazole
- Mifepristone
- Orteronel
- Pioglitazone
- Rosiglitazone
- Spironolactone
- Stanozolol
- SU-10,603
- TGF-β
- Tioconazole
- Troglitazone
- VN/87-1
- YM116
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|
3β-HSD
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- 4-MA
- Azastene
- Cyanoketone
- Danazol
- Epostane
- Genistein
- Gestrinone
- Metyrapone
- Oxymetholone
- Pioglitazone
- Rosiglitazone
- Trilostane
- Troglitazone
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17β-HSD
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Aromatase
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- 1,4,6-Androstatriene-3,17-dione
- 4-Androstene-3,6,17-trione
- 4-Cyclohexylaniline
- 4-Hydroxytestosterone
- 5α-DHNET
- Abyssinone II
- Aminoglutethimide
- Anastrozole
- Ascorbic acid (Vitamin C)
- Atamestane
- Bifonazole
- CGP-45,688
- CGS-47,645
- Clotrimazole
- DHT
- Difeconazole
- Econazole
- Exemestane
- Fadrozole
- Fenarimol
- Finrozole
- Formestane
- Imazalil
- Isoconazole
- Ketoconazole
- Letrozole
- Liarozole
- MEN-11066
- Miconazole
- Minamestane
- Nimorazole
- NKS01
- ORG-33,201
- Penconazole
- Plomestane
- Prochloraz
- Propioconazole
- Pyridoglutethimide
- Rogletimide
- Rotenone
- Talarozole
- Testolactone
- Tioconazole
- Triadimefon
- Triadimenol
- Troglitazone
- Vorozole
- YM511
- Zinc
Note: 5α-reductase and 21-hydroxylase inhibitors may also affect estrogen levels as they prevent metabolism of estrogen steroid precursors.
|
|
|
Other |
Endogenous
|
- Estrogens: 5α-Androstane-3β,17β-diol
- DHEA
- Estetrol
- Estradiol
- Estriol
- Estrone
- Antiestrogens: 2-Hydroxyestrone
- 16-Hydroxyestrone
- Precursors: Cholesterol
- 22R-Hydroxycholesterol
- 20α,22R-Dihydroxycholesterol
- Pregnenolone
- 17-Hydroxypregnenolone
- Progesterone
- 17-Hydroxyprogesterone
- Cortodoxone/Deoxycortisol
- DHEA
- DHEA sulfate
- 16-Hydroxy-DHEA
- 16-Hydroxy-DHEA sulfate
- Androstenediol
- Androstenedione
- 16-Hydroxyandrostenedione
- Testosterone
|
|
Indirect
|
- Androgens/Antiandrogens (see here)
- Calcitriol (a form of Vitamin D)
- GnRH agonists/antagonists (see here)
- Gonadotropins//Antigonadotropins (see here)
- Plasma proteins (SHBG, ABP, Albumin)
- Progestogens/Antiprogestins (see here)
- Prolactin
|
|
Procedures
|
- Adrenalectomy
- Hypophysectomy
- Oophorectomy
- Orchiectomy
|
|
|
Glucocorticoidics
|
|
Receptor |
|
|
Enzyme
(inhibitors) |
20,22-Desmolase
|
- 22-ABC
- 3,3′-Dimethoxybenzidine
- 3-Methoxybenzidine
- Aminoglutethimide
- Cyanoketone
- Danazol
- Etomidate
- Mitotane
- Trilostane
|
|
17α-Hydroxylase,
17,20-Lyase
|
- 22-ABC
- 22-Oxime
- Abiraterone
- Bifonazole
- Clotrimazole
- Cyanoketone
- Cyproterone
- Danazol
- Econazole
- Galeterone
- Gestrinone
- Isoconazole
- Ketoconazole
- L-39
- Liarozole
- LY-207,320
- MDL-27,302
- Miconazole
- Mifepristone
- Orteronel
- Pioglitazone
- Rosiglitazone
- Spironolactone
- Stanozolol
- SU-10,603
- TGF-β
- Tioconazole
- Troglitazone
- VN/87-1
- YM116
|
|
3β-HSD
|
- 4-MA
- Azastene
- Cyanoketone
- Danazol
- Epostane
- Genistein
- Gestrinone
- Metyrapone
- Norethisterone
- Oxymetholone
- Pioglitazone
- Rosiglitazone
- Trilostane
- Troglitazone
|
|
21-Hydroxylase
|
- Aminoglutethimide
- Amphenone B
- Bifonazole
- Clotrimazole
- Diazepam
- Econazole
- Genistein
- Isoconazole
- Ketoconazole
- Metyrapone
- Miconazole
- Midazolam
- Tioconazole
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11β-Hydroxylase
|
- Aminoglutethimide
- Canrenone
- Etomidate
- Fadrozole
- FETO
- Ketoconazole
- Metomidate
- Metyrapone
- Mitotane
- Potassium canrenoate
- Spironolactone
- Trilostane
|
|
18-Hydroxylase
|
- Aminoglutethimide
- Canrenone
- FAD286
- Fadrozole
- Ketoconazole
- LCI699
- Metyrapone
- Mespirenone
- Potassium canrenoate
- Spironolactone
|
|
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Other |
Endogenous
|
- Glucocorticoids: Corticosterone
- Cortisone
- Cortodoxone/Deoxycortisol
- Hydrocortisone/Cortisol
- Antiglucocorticoids: 17-Hydroxyprogesterone
- Deoxycorticosterone
- Pregnenolone
- Progesterone
- Precursors: Cholesterol
- 22R-Hydroxycholesterol
- 20α,22R-Dihydroxycholesterol
- Pregnenolone
- 17-Hydroxypregnenolone
- 17-Hydroxyprogesterone
- Progesterone
- Deoxycorticosterone
|
|
Indirect
|
- ACTH/Corticotropin
- CRH
- DHEA
- DHEA sulfate
- Plasma proteins (Transcortin, Albumin)
- Vasopressin
|
|
Procedures
|
- Adrenalectomy
- Hypophysectomy
|
|
|
UpToDate Contents
全文を閲覧するには購読必要です。 To read the full text you will need to subscribe.
English Journal
- Dried Blood Spot Testing for Seven Steroids Using Liquid Chromatography-Tandem Mass Spectrometry With Reference Interval Determination in the Korean Population.
- Kim B1, Lee MN1, Park HD1, Kim JW1, Chang YS2, Park WS2, Lee SY3.
- Annals of laboratory medicine.Ann Lab Med.2015 Nov;35(6):578-85. doi: 10.3343/alm.2015.35.6.578.
- BACKGROUND: Conventional screening for congenital adrenal hyperplasia (CAH) using immunoassays generates a large number of false-positive results. A more specific liquid chromatography-tandem mass spectrometry (LC-MS/MS) method has been introduced to minimize unnecessary follow-ups. However, because
- PMID 26354345
- Concurrent Confirmation and Differential Diagnosis of Congenital Adrenal Hyperplasia from Dried Blood Spots: Application of a Second-Tier LC-MS/MS Assay in a Cross-Border Cooperation for Newborn Screening.
- Monostori P1, Szabó P, Marginean O, Bereczki C, Karg E.
- Hormone research in paediatrics.Horm Res Paediatr.2015 Sep 24. [Epub ahead of print]
- BACKGROUND/AIMS: Newborn screening for congenital adrenal hyperplasia (CAH) is generally performed using 17- hydroxyprogesterone dissociation-enhanced, lanthanide fluorescence immunoassay (DELFIA®). The primary screening results must be confirmed due to high false-positive rates; however, the need
- PMID 26397944
- Steroid Profiling by LC-MS/MS in Nonsecreting and Subclinical Cortisol-Secreting Adrenocortical Adenomas.
- Di Dalmazi G1, Fanelli F1, Mezzullo M1, Casadio E1, Rinaldi E1, Garelli S1, Giampalma E1, Mosconi C1, Golfieri R1, Vicennati V1, Pagotto U1, Pasquali R1.
- The Journal of clinical endocrinology and metabolism.J Clin Endocrinol Metab.2015 Sep;100(9):3529-38. doi: 10.1210/JC.2015-1992. Epub 2015 Jul 10.
- CONTEXT: Long-term follow-up studies revealed that patients with subclinical hypercortisolism (SH) due to adrenocortical adenomas have an increased incidence of cardiovascular diseases and mortality. No studies have yet investigated the steroid profile and its implications in patients with SH.OBJECT
- PMID 26161451
Japanese Journal
- Measurement of cortisol, cortisone, prednisolone, dexamethasone and 11-deoxycortisol with ultra high performance liquid chromatography-tandem mass spectrometry : Application for plasma, plasma ultrafiltrate, urine and saliva in a routine laboratory
- MCWHINNEY Brett C.,BRISCOE Scott E.,UNGERER Jacobus P. J.,PRETORIUS Carel J.
- Journal of chromatography. B, Analytical technologies in the biomedical and life sciences 878(28), 2863-2869, 2010-10-15
- NAID 10028042865
- 尿中テトラヒドロ-11-デオキシコルチゾール(THS) (広範囲 血液・尿化学検査 免疫学的検査(第7版・4)その数値をどう読むか) -- (内分泌学的検査 副腎皮質関係)
Related Links
- forum Join the Word of the Day Mailing List For webmasters TheFreeDictionary Google Bing? Word / Article Starts with Ends with Text ... 11-deoxycortisol Compound S An adrenocortical steroid marker for adrenal 11-β-hydroxylase ...
- Relevant Physicochemical Data: Physical Form: Not found Solubility data: Not found Melting point: 208 C UV-VIS spectrum: Not found Molecular weight: 346.46 Molecular formula: C 21 H 30 O 4 CAS Number: 152-58-9 Purposes of ...
Related Pictures
★リンクテーブル★
[★]
- 英
- adrenocortical hormone
- 同
- 副腎皮質ステロイド adrenocorticoids
- 関
- 副腎皮質刺激ホルモン放出ホルモン、副腎皮質刺激ホルモン
- ステロイド
- 関
- 副腎、副腎皮質、ステロイド、コルチコステロイド、ステロイドホルモン、コルチコイド。副腎皮質ホルモン剤
種類(主要なもののみ)
- 球状層から分泌される。アルドステロン
- 索状層から分泌される。コルチゾール
- 網状層から分泌される。アンドロステンジオン
臨床関連
- 21-hydroxylaseが正常に機能しないことにより生じる (L.320)
薬理学
副腎皮質から分泌されるホルモン (SP.895)
[★]
- 英
- metyrapone
- 商
- メトロピン METOPIRONE
- 関
- メチラポン負荷試験、糖質コルチコイド、副腎皮質
概念
- 下垂体機能検査薬。下垂体ACTH分泌予備能の検査薬。
- 副腎でのコルチゾール産生を阻害する。
薬理作用
メチラポン負荷試験
- 11β-hydroxylase阻害作用によりコルチゾール産生減少 → ネガティブフィードバック機構によりATCH産生亢進 → コルチゾール前駆体 11-deoxycortisol産生↑ → 11-deoxycortisolの代謝産物である17-OHCSの尿中排泄↑
- 血中ATCHと尿17-OHCSを測定
添付文書
- http://www.info.pmda.go.jp/go/pack/7223001M1035_1_01/7223001M1035_1_01?view=body
[★]
- 英
- 11-deoxycortisol 11-DOF
[★]
テトラヒドロ-11-デオキシコルチゾール
[★]
デオキシコルチゾール