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Nafarelin

  • Product Name: Nafarelin
  • CasNo: 76932-56-4
  • Purity:
  • Appearance: White or almost white lyophilized powder

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CasNo: 76932-56-4

Molecular Formula: C66H83N17O13

Appearance: White or almost white lyophilized powder

Buy Quality Hot Sale Nafarelin 76932-56-4 In Stock

  • Molecular Formula:C66H83N17O13
  • Molecular Weight:1322.47
  • Appearance/Colour:White or almost white lyophilized powder 
  • PKA:9.82±0.15(Predicted) 
  • PSA:472.13000 
  • Density:1.493 g/cm3 
  • LogP:3.87190 

Nafarelin(Cas 76932-56-4) Usage

Description Nafarelin, as a GnRH agonist, demonstrates versatility in medical applications. It is employed in the treatment of endometriosis, as a component in IVF procedures, and in transgender health to manage puberty and hormone levels. The nasal spray form is commonly used for administration.

Originator

Nafarelin Acetate,Bachem AG

Uses

Treatment of endometriosis.
Management of early puberty.
Clinical Application in Women Used in women to address endometriosis.
Endometriosis involves the abnormal growth of uterine tissue outside the uterus.
Application in Transgender Health Acts as a puberty blocker in transgender youth.
Used to suppress testosterone levels in transgender women.

Manufacturing Process

In the reaction vessel of a Beckman 990 Peptide Synthesizer was placed 0.8 g (0.8 mmol) of benzhydrylamino-polystyrene-divinylbenzene resin (Lab Systems, Inc.) as described by Rivaille, supra. Amino acids were added sequentially to this resin by means of the usual methods of Boc-strategy of peptide synthesis on above copolymer.The resin was coupled sequentially with a 2.5 molar excess of each protected amino acid and DCC. Thus, the resin was treated during successive coupling cycles with 0.433 g Boc-Gly-OH, 0.432 g Boc-Pro-OH, 0.857 g Boc-Arg(Tosyl)- OH, 0.462 g Boc-Leu-OH, 0,504 g Boc-3-(2-naphthyl)-D-alanine and 0.272 g 1-hydroxybenzotriazole, 0.724 g N-Boc, O-2-bromobenzoyloxycarbonyl-Ltyrosine, 0.59 g Boc-Ser(Benzyl)-OH, 0.608 g Boc-Trp-OH, 0.654 g BocHis(Tosyl)-OH and 0.524 g pyroglutamic acid. A coupling cycle for one amino acid and completeness of the reaction is checked by the ninhydrin method of E. Kaiser, et al., Anal. Biochem., 34, 595 (1970).The resin was removed from the reaction vessel, washed with CH2Cl2, and dried in vacuo to yield 2.0 g of protected polypeptide resin.The polypeptide product was simultaneously removed from the resin and completely deprotected by treatment with anhydrous liquid HF. A mixture of 2.0 g of protected polypeptide resin and 2 mL of anisole (scavenger) in a KelF reaction vessel was treated with 20 mL of redistilled (from CoF3) anhydrous liquid HF at 0°C for 30 minutes. The HF was evaporated under vacuum and the residue of (pyro)-Glu-His-Trp-Ser-Tyr-3-(2-naphthyl)-D-alanyl-Leu-ArgPro-Gly-NH2,as its HF salt, was washed with ether. The residue was then extracted with glacial acetic acid. The acetic acid extract was lyophilized to yield 0.8 g of crude material. The crude polypeptide was loaded on a 4x40 cm. Amberlite XAD-4 column (polystyrene-4% divinylbenzene copolymer) and eluted with a concave gradient from water (0.5 L) to ethanol (1 L). The tubes containing fractions from effluent volume 690 mL to 1,470 mL were pooled and stripped to dryness to yield 490 mg of partially purified polypeptide.A 150 mg sample of the partially purified product was subjected to partition chromatography on a 3 times 50 cm. column of Sephadex G-25 using the solvent system 1-butanol/toluene/acetic acid/water containing 1.5% pyridine in the ratios 10:15:12:18. The pure fractions were pooled on the basis of thin layer chromatography (silica gel; BuOH/H2O/HOAc/EtOAc; 1:1:1:1) and HPLC (5 micron, reverse phase, octadecylsilyl packing; 40% 0.03 M NH4OAc/60% acetonitrile). The desired product came off the column in fractions from effluent volume 1,000 mL to 1,400 mL (Rf 0.1). The pure fractions were pooled, stripped to dryness, taken up in H2O, and lyophilized to yield 57 mg of pure pyro-glutamyl-histidyl-tryptophylseryl-tyrosyl-3-(2-naphthyl)-D-alanylleucyl-arginylprolyl-glycinamide, as its acetic acid addition salt, [α]D25-27.4° (c 0.9, HOAc), m.p. 185°-193°C (dec.).

Brand name

Synarel (Searle).

Therapeutic Function

Gonadotropic

InChI=1S/C66H83N17O13/c1-36(2)25-48(58(89)76-47(13-7-23-71-66(68)69)65(96)83-24-8-14-54(83)64(95)73-33-55(67)86)77-60(91)50(28-38-15-18-39-9-3-4-10-40(39)26-38)78-59(90)49(27-37-16-19-43(85)20-17-37)79-63(94)53(34-84)82-61(92)51(29-41-31-72-45-12-6-5-11-44(41)45)80-62(93)52(30-42-32-70-35-74-42)81-57(88)46-21-22-56(87)75-46/h3-6,9-12,15-20,26,31-32,35-36,46-54,72,84-85H,7-8,13-14,21-25,27-30,33-34H2,1-2H3,(H2,67,86)(H,70,74)(H,73,95)(H,75,87)(H,76,89)(H,77,91)(H,78,90)(H,79,94)(H,80,93)(H,81,88)(H,82,92)(H4,68,69,71)/t46-,47-,48-,49-,50+,51-,52-,53-,54-/m0/s1

76932-56-4 Relevant articles

Nafarelin A Review of its Pharmacodynamic and Pharmacokinetic Properties, and Clinical Potential in Sex Hormone-Related Conditions

Paul Chrisp & Karen L. Goa

, Drugs, Volume 39, pages 523–551, (1990)

Nafarelin has proved to be comparable to danazol in the management of women with endometriosis, with fewer potentially harmful adverse effects. Nafarelin has also been used effectively in in vitro fertilisation programmes, and in hirsute women and those with uterine leiomyoma, particularly to induce preoperative fibroid shrinkage.

Pituitary-Ovarian Responses to Nafarelin Testing in the Polycystic Ovary Syndrome

Randall B. Barnes, M.D., Robert L. Rosenfield, M.D., Stephen Burstein, M.D., Ph.D., and David A. Ehrmann, M.D.

, N Engl J Med 1989; 320:559-565

After 100 μg of nafarelin was given subcutaneously, serum follicle-stimulating hormone and luteinizing hormone increased rapidly to peak levels within four hours. The women with polycystic ovary syndrome had a pattern similar to that of the men, with greater early luteinizing-hormone responses (30 minutes to 1 hour) and lower peak follicle-stimulating-hormone responses than normal women (P<0.05).

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