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This work presents a comprehensive mechanistic study of the ligand-controlled palladium-catalyzed prenylation (with C added) and geranylation (with C added) reactions of oxindole with isoprene. The calculated results indicate that the prenylation with the bis-phosphine ligand and geranylation with the monophosphine ligand fundamentally share a common mechanism. This mechanism involves the formation of two crucial species: a η-allyl-Pd(II) cation and an oxindole carbon anion. Furthermore, the reactions necessitate the assistance of a second oxindole molecule, which serves as a Brønsted acid, providing a proton to generate the oxindole nitrogen anion. The oxindole nitrogen anion then acts as a Brønsted base, abstracting a C-H proton from another oxindole molecule to form an oxindole carbon anion. These mechanistic details differ significantly from those proposed in the experimental work. The present calculations do not support the presence of the Pd-H species and the η, η-diallyl-Pd(II) intermediate, which were previously suggested in experiments. The theoretical results rationalize the experimental finding that the bis-phosphine ligand favors the prenylation of oxindole, while the monophosphine ligand enables the geranylation of oxindole.
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http://dx.doi.org/10.1021/acs.inorgchem.3c03637 | DOI Listing |
J Org Chem
September 2025
Department of Radiation and Medical Oncology, Zhongnan Hospital of Wuhan University, School of Pharmaceutical Sciences, Wuhan University, Wuhan 430071, P. R. of China.
A Mg(OTf)-catalyzed asymmetric Michael addition/cyclization cascade reaction between 3-isothiocyanato oxindoles and 2-arylidene-1,3-indanediones has been developed. This transformation provides an efficient and concise approach to biologically important bispiro[indanedione-oxindole-pyrrolidinyl]s under mild conditions in good to excellent yields (70-99% yields) with moderate to good stereoselectivities (up to 99% and >95:5 d.r.
View Article and Find Full Text PDFEur J Med Chem
August 2025
Department of Medicinal Chemistry, Faculty of Pharmacy, Minia University, 61519, Minia, Egypt.
Melanoma is one of the deadliest forms of cancer. The disease is incurable for many due to its aggressive, metastatic characteristics and its elevated resistance. Herein, we design and synthesize two series of target compounds oxindole-based (7a-h) and non-oxindole-based (8a-h) benzimidazole.
View Article and Find Full Text PDFJ Org Chem
August 2025
Centre of Biomedical Research, Sanjay Gandhi Post-Graduate Institute of Medical Sciences Campus, Raebareli Road, Lucknow 226014, India.
The first regio- and stereospecific nucleophilic azidation at the tertiary C3-(sp-carbon) center of spiroaziridine oxindoles is developed using inexpensive trimethylsilyl azide (TMS-azide) under catalyst-free and ambient conditions for the exclusive synthesis of 3-azido oxindoles with excellent yield and enantioselectivity (ee up to >99%). The method is robust and scalable. 3-Azido oxindole is employed to synthesize 3-amino- and 3-triazole oxindoles via Staudinger reduction and click chemistry, respectively.
View Article and Find Full Text PDFOrg Biomol Chem
August 2025
State Key Laboratory of Advanced Technology for Materials Synthesis and Processing, Wuhan University of Technology, Wuhan 430070, China.
A palladium-catalyzed domino Heck/cross-coupling reaction of alkene-tethered aryl iodides with β-chloroenones is reported. This reaction enables the formation of one C-O bond and two C-C bonds to construct bisheterocycles in a single operation an intramolecular carbopalladation, followed by a carbene-based cross-coupling with β-chloroenones as a non-diazo carbene precursor, providing an efficient method for synthesizing furan-linked dihydrobenzofurans/oxindoles in yields up to 98%.
View Article and Find Full Text PDFRSC Adv
August 2025
Medicinal Chemistry Department, Faculty of Pharmacy, Assiut University Assiut 71526 Egypt
A series of hybrid molecules 6a-6d-13a-13d combining pyrazolo[3,4-]pyrimidine or aminopurine frameworks with an oxindole moiety were designed as multitarget anticancer agents. Several compounds, especially 8b and 12a-12d, showed potent antiproliferative effects against three human cancer cell lines: A498 (kidney carcinoma), HepG-2 (hepatocellular carcinoma), and MDA-MB-231 (breast adenocarcinoma). Compounds 6b, 7b, 8b, and 12a-12c exhibited remarkable CDK6 inhibition (pIC of up to 7.
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