Late-Stage C–H Arylation of Azepinoindole via Pd/Cu Catalysis: A Step Efficient and Convergent Synthesis of Rucaparib

Synthesis ◽  
2021 ◽  
Author(s):  
Dirk De Vos ◽  
Igor Beckers ◽  
Galahad O’Rourke

AbstractThe C–H arylation of indoles holds the promise to shorten synthetic routes in the production of pharmaceuticals. However, late-stage C–H activation reactions often rely on the presence of protecting groups or stoichiometric metal additives. The regiospecific C–H arylation of a highly functionalized azepino[5,3,4-cd]indole scaffold lacking directing groups via Pd(II) and Cu(II) co-catalysis is reported. The direct C–H coupling was demonstrated in the convergent synthesis of rucaparib, an FDA approved anticancer drug.

Synthesis ◽  
2018 ◽  
Vol 51 (04) ◽  
pp. 971-975 ◽  
Author(s):  
Vincent Reboul ◽  
Thomas Glachet ◽  
Xavier Franck

An efficient synthesis of racemic atuveciclib was accomplished in five steps with an excellent 51% overall yield, using cheap reagents and mild reaction conditions. The key sulfoximination reaction was realized during the last step of the synthesis from the corresponding sulfide.


2021 ◽  
Author(s):  
◽  
Michael Meijlink

<p>Azasugars [e.g., 1-deoxy-aza-xylopyranose (1) Figure 1] are structural analogues of sugars [e.g., α-D-xylopyranose (2)] where the ring oxygen is substituted by a nitrogen atom. The resemblance of azasugars to their carbohydrate counterparts gives them various biological properties, such as the inhibition of glycosidase and glycosyltransferase enzymes, and as such, these compounds have been in clinical trials for the treatment of AIDS, diabetes,and cancer. Synthetic routes to azasugars have often involved the use of protecting groups, and therefore have generally reduced efficiency by requiring additional steps to apply or remove protecting groups or requiring adjustment of stereochemistry during the synthesis. This thesis presents the first example of a synthesis of four sterochemically different piperidine triols through a four-step methodology minimising the use of protecting groups starting from pentoses. The synthesis of D-xylose derived (3R,4r,5S)-piperidine triol was previously obtained in 40% yield over five steps, but was afforded in 45% overall yield over four steps using the methodology described within this thesis. Next, D-ribose derived (3R,4s,5S)-piperidine triol was obtained in 40% overall yield over four steps, which afforded a vast improvement on the previous most efficient synthetic route obtaining the azasugar in 24% yield over four steps. This four-step three-pot methodology has thus allowed for the synthesis of these piperidine triols in overall yields ranging from 4-69%, surpassing previous total syntheses in efficiency and improving overall atom economy. To further probe the applicability of the methodology, N-alkyl analogues (such as butyl-, phenylethyl-, and hydroxyethyl-analogues) of all four different piperidine triols were synthesised in comparable or greater overall yields compared to literature reports without any required adaptation to the original procedure. Included in these N-alkyl analogues are seven novel azasugars which were obtained in overall yields ranging from 6-35%.</p>


2020 ◽  
Author(s):  
Xiao-Xu Wang ◽  
Xi Lu ◽  
Shi-Jiang He ◽  
Yao Fu

We report a three-component olefin reductive dicarbofunctionalization for constructing densely functionalized alkylborates, specifically, nickel-catalyzed reductive dialkylation and alkylarylation of vinyl boronates with a variety of alkyl bromides and aryl iodides. This reaction exhibits good coupling efficiency and excellent functional group compatibility, providing convenient access to the late-stage modification of complex natural products and drug molecules. Combined with versatile alkylborate transformations, this reaction could also find applications in the modular and convergent synthesis of complex, densely functionalized compounds.


2019 ◽  
Vol 10 (1) ◽  
Author(s):  
Masakazu Nambo ◽  
Jacky C.-H. Yim ◽  
Luiza B. O. Freitas ◽  
Yasuyo Tahara ◽  
Zachary T. Ariki ◽  
...  

Abstract α-Fluoromethylarenes are common substructures in pharmaceuticals and agrochemicals, with the introduction of fluorine often resulting in improved biological activity and stability. Despite recent progress, synthetic routes to α-fluorinated diarylmethanes are still rare. Herein we describe the Pd-catalyzed Suzuki-Miyaura cross-coupling of α-fluorinated benzylic triflones with arylboronic acids affording structurally diverse α-fluorinated diarylmethanes. The ease of synthesis of fluorinated triflones as the key starting materials enables powerful late-stage transformations of known biologically active compounds into fluorinated analogs.


2018 ◽  
Vol 24 (68) ◽  
Author(s):  
Clare Vickers ◽  
Gisela Backfisch ◽  
Frank Oellien ◽  
Isabel Piel ◽  
Udo E. W. Lange

2000 ◽  
Vol 4 (1) ◽  
pp. 34-42 ◽  
Author(s):  
Lee J. Silverberg ◽  
John L. Dillon ◽  
Purushotham Vemishetti ◽  
Paul D. Sleezer ◽  
Robert P. Discordia ◽  
...  

2020 ◽  
Vol 22 (12) ◽  
pp. 4749-4753 ◽  
Author(s):  
Delin Chen ◽  
Kathy Hiu Laam Po ◽  
Pilar Blasco ◽  
Sheng Chen ◽  
Xuechen Li

Synthesis ◽  
2021 ◽  
Author(s):  
Masahiko Seki ◽  
Yusuke Takahashi

Highly convergent synthesis of Angiotensin II receptor blockers has been accomplished by means of late stage C-H arylation using functionalized aryl bromides. C-H arylation of phenyl tetrazole with aryl bromide carrying methyl 2-ethoxy-benzimidazole-7-carboxylate unexpectedly provided coupling product where ethyl group was migrated from oxygen to nitrogen atom. The <i>O</i>- to <i>N</i>-ethyl migration was completely suppressed by the use of <i>N</i>-pivaloyl-L-valine rather than the combined use of triphenyl phosphine and sodium mesitylenesulfonate to result in the preferential formation of a key intermediate of candesartan cilexetil. In contrast, when an aryl bromide having ethyl 4-(1-hydroxy-1-methylethyl)-2-propylimidazole-5-carboxylate was employed, the C-H arylation proceeded smoothly to provide a late stage intermediate which was rapidly led to olmesartan medoxomil in 3 steps.


2021 ◽  
Vol 4 (1) ◽  
Author(s):  
Xinwei He ◽  
Ruxue Li ◽  
Pui Ying Choy ◽  
Mengqing Xie ◽  
Jiahui Duan ◽  
...  

AbstractExisting synthetic routes for accessing dibenzofuran core have intrinsic regioselectivity, limiting the substitution patterns available in heteropolycyclic arene products. Here we report a double 1,4-conjugate addition/intramolecular annulation cascade reaction between propargylamines and two equivalents of imidazolium methylides that allows efficient access of structurally versatile dibenzofurans. This transition metal-free protocol proceeds smoothly under bench-top air atmosphere and offers easy manipulation of substituents on the dibenzofuran core, and also provides good-to-excellent product yields with good functional group tolerance, particularly the –Br and –Cl groups which are often incompatible with existing metal-catalyzed C–C and/or C–O bond ring-forming processes. It is worth noting that ladder-type π-systems with all-arene quarternary carbon structure can be straightforwardly generated upon simple late-stage functionalization.


2020 ◽  
Author(s):  
Xiao-Xu Wang ◽  
Xi Lu ◽  
Shi-Jiang He ◽  
Yao Fu

We report a three-component olefin reductive dicarbofunctionalization for constructing densely functionalized alkylborates, specifically, nickel-catalyzed reductive dialkylation and alkylarylation of vinyl boronates with a variety of alkyl bromides and aryl iodides. This reaction exhibits good coupling efficiency and excellent functional group compatibility, providing convenient access to the late-stage modification of complex natural products and drug molecules. Combined with versatile alkylborate transformations, this reaction could also find applications in the modular and convergent synthesis of complex, densely functionalized compounds.


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