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3β-mesyloxy-17-(1H-benzimidazol-1-yl)-androsta-5,16-diene is a chemical with a specific purpose. Lookchem provides you with multiple data and supplier information of this chemical.

1338684-01-7

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1338684-01-7 Usage

Check Digit Verification of cas no

The CAS Registry Mumber 1338684-01-7 includes 10 digits separated into 3 groups by hyphens. The first part of the number,starting from the left, has 7 digits, 1,3,3,8,6,8 and 4 respectively; the second part has 2 digits, 0 and 1 respectively.
Calculate Digit Verification of CAS Registry Number 1338684-01:
(9*1)+(8*3)+(7*3)+(6*8)+(5*6)+(4*8)+(3*4)+(2*0)+(1*1)=177
177 % 10 = 7
So 1338684-01-7 is a valid CAS Registry Number.

1338684-01-7Downstream Products

1338684-01-7Relevant academic research and scientific papers

METHOD FOR PRODUCTION OF NOVEL GALETERONE ANALOGS AND USES THEREOF

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Page/Page column 16, (2018/04/12)

Galeterone and its C-3 analogs are of substantial interest because of their multi-target anticancer activities, including AR and Mnk degrading activities. Provided are novel procedures for gram-scale, high-yield synthesis of C-3 analogs of galeterone, including 3β-(1H-imidazole-1-yl)-17-(1H-benzimidazole-1-yl)-androsta-5,16-diene (galeterone 3β-imidazole) and 3β-(pyridine-4-ylmethoxy)-17-(1H-benzimidazol-1-yl)androsta-5,16-diene (galeterone 3β-pyridine methoxylate).

Improved Procedures for Gram-Scale Synthesis of Galeterone 3β-Imidazole and Galeterone 3β-Pyridine Methoxylate, Potent Androgen Receptor/Mnk Degrading Agents

Purushottamachar, Puranik,Murigi, Francis N.,Njar, Vincent C. O.

, p. 1654 - 1661 (2016/09/23)

Galeterone (1) and its C-3 analogs are of substantial interest because of their multitarget anticancer activities, including AR and Mnk degrading activities. Here, we describe improved and efficient procedures for the gram-scale synthesis of 3β-(1H-imidazole-1-yl)-17-(1H-benzimidazole-1-yl)-androsta-5,16-diene (galeterone 3β-imidazole, 2) and 3β-(pyridine-4-ylmethoxy)-17-(1H-benzimidazol-1-yl)androsta-5,16-diene (galeterone 3β-pyridine methoxylate, 3). Whereas compound 2 was synthesized in 63% overall yield from galeterone (1) over four steps, via key intermediate, 3β-azido galeterone (8); compound 3 was synthesized in 61% overall yield from 1 in one step. This article also reports on the facile synthesis of other potential AR/Mnk degrading agents (ARDAs/MNKDAs), including galeterone 3α-imidazole (5) and galeterone 3β-amine (10), both in excellent overall yields. Notably, except for the one-step synthesis of compound 3 which required purification by flash column chromatography, none of the intermediates and target compound 2 required extensive chromatographic purifications or multiple crystallizations.

Identification of Novel Steroidal Androgen Receptor Degrading Agents Inspired by Galeterone 3β-Imidazole Carbamate

Purushottamachar, Puranik,Kwegyir-Afful, Andrew K.,Martin, Marlena S.,Ramamurthy, Vidya P.,Ramalingam, Senthilmurugan,Njar, Vincent C. O.

, p. 708 - 713 (2016/07/26)

Degradation of all forms of androgen receptors (ARs) is emerging as an advantageous therapeutic paradigm for the effective treatment of prostate cancer. In continuation of our program to identify and develop improved efficacious novel small-molecule agents designed to disrupt AR signaling through enhanced AR degradation, we have designed, synthesized, and evaluated novel C-3 modified analogues of our phase 3 clinical agent, galeterone (5). Concerns of potential in vivo stability of our recently discovered more efficacious galeterone 3β-imidazole carbamate (6) led to the design and synthesis of new steroidal compounds. Two of the 11 compounds, 3β-pyridyl ether (8) and 3β-imidazole (17) with antiproliferative GI50 values of 3.24 and 2.54 μM against CWR22Rv1 prostate cancer cell, are 2.75- and 3.5-fold superior to 5. In addition, compounds 8 and 17 possess improved (~4-fold) AR-V7 degrading activities. Importantly, these two compounds are expected to be metabolically stable, making them suitable for further development as new therapeutics against all forms of prostate cancer.

ANDROGEN RECEPTOR DOWN-REGULATING AGENTS AND USES THEREOF

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Paragraph 00152, (2014/10/04)

The present disclosure provides the design and synthesis of novel steroidal compounds that cause down-regulation of the androgen receptor (AR), both full length and splice variant. The compounds are potential agents for the treatment of all forms of prostate cancer and other diseases that depend on functional AR.

NONSTEROIDAL AND STEROIDAL COMPOUNDS WITH POTENT ANDROGEN RECEPTOR DOWN-REGULATION AND ANTI PROSTATE CANCER ACTIVITY

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Page/Page column 35, (2014/10/18)

Nonsteroid and steroid compounds that cause down-regulation of the androgen receptor (AR), both full length and splice variant, induce apoptosis and inhibit proliferation of inhibiting proliferation and migration of androgen sensitive cancer cells. The steroid compounds and nonsteroid compounds may be agents for the prevention and/or treatment of cancer, including prostate cancer, castration resistant prostate cancer, bladder cancer, pancreatic cancer, hepatocellular carcinoma, benign prostatic hyperplasia (BPH), Kennedy's disease, androgenetic alopecia, breast cancer, androgen-insensitive syndrome, and spinal and bulbar muscular atrophy.

Systematic structure modifications of multitarget prostate cancer drug candidate galeterone to produce novel androgen receptor down-regulating agents as an approach to treatment of advanced prostate cancer

Purushottamachar, Puranik,Godbole, Abhijit M.,Gediya, Lalji K.,Martin, Marlena S.,Vasaitis, Tadas S.,Kwegyir-Afful, Andrew K.,Ramalingam, Senthilmurugan,Ates-Alagoz, Zeynep,Njar, Vincent C. O.

, p. 4880 - 4898 (2013/07/26)

As part of our program to explore the influence of small structural modifications of our drug candidate 3β-(hydroxy)-17-(1H-benzimidazol-1-yl) androsta-5,16-diene (galeterone, 5) on the modulation of the androgen receptor (AR), we have prepared and evaluated a series of novel C-3, C-16, and C-17 analogues. Using structure activity analysis, we established that the benzimidazole moiety at C-17 is essential and optimal and also that hydrophilic and heteroaromatic groups at C-3 enhance both antiproliferative (AP) and AR degrading (ARD) activities. The most potent antiproliferative compounds were 3β-(1H-imidazole-1-carboxylate)-17-(1H-benzimidazol-1-yl)androsta-5, 16-diene (47), 3-((EZ)-hydroximino)-17-(1H-benzimidazol-1-yl)androsta-4,16-diene (36), and 3β-(pyridine-4-carboxylate)-17-(1H-benzimidazol-1-yl)androsta-5, 16-diene (43), with GI50 values of 0.87, 1.91, and 2.57 μM, respectively. Compared to 5, compound 47 was 4- and 8-fold more potent with respect to AP and ARD activities, respectively. Importantly, we also discovered that our compounds, including 5, 36, 43, and 47, could degrade both full-length and truncated ARs in CWR22rv1 human prostate cancer cells. With these activities, they have potential for development as new drugs for the treatment of all forms of prostate cancer.

Synthesis and biological evaluations of putative metabolically stable analogs of VN/124-1 (TOK-001): Head to head anti-tumor efficacy evaluation of VN/124-1 (TOK-001) and abiraterone in LAPC-4 human prostate cancer xenograft model

Bruno, Robert D.,Vasaitis, Tadas S.,Gediya, Lalji K.,Purushottamachar, Puranik,Godbole, Abhijit M.,Ates-Alagoz, Zeynep,Brodie, Angela M.H.,Njar, Vincent C.O.

experimental part, p. 1268 - 1279 (2011/11/06)

In a continuing study of our clinical candidate 5 VN/124-1 (TOK-001) and analogs as potential agents for prostate cancer therapy, putative metabolites (10, 15 and 18) of compound 5 were rationally designed and synthesized. However, none of these agents were as efficacious as 5 in several in vitro studies. Using western blot analysis, we have generated a preliminary structure-activity relationship (SAR) of 5 and related analogs as androgen receptor ablative agents (ARAAs). In vivo using the androgen-dependent LAPC-4 prostate cancer xenograft model, we demonstrated for the first time that 5 is more efficacious than the 17-lyase inhibitor 3 (abiraterone)/4 (abiraterone acetate) that is currently in phase III clinical trials. In our desire to optimize the potency of 5, compounds 6 (3ξ-fluoro-) and 9 (3β-sulfamate-) designed to increase the stability and oral bioavailability of 5, respectively were evaluated in vivo. We showed, that on equimolar basis, compound 6 was ~2-fold more efficacious versus LAPC-4 xenografts than 5, but the toxicity observed with 6 is of concern. These studies further demonstrate the efficacy of 5 in a clinically relevant prostate cancer model and justify its current clinical development as a potential treatment of prostate cancer.

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