Gold(I) catalysts are ideal for the activation of alkynes under very mild conditions. However, unlike allenes or alkenes, the triple bond of alkynes cannot be prochiral. In addition, the linear coordination displayed by gold(I) complexes places the chiral ligand far away from the substrate resulting in an inefficient transfer of chiral information. This poses a significant challenge for the achievement of high enantiocontrol in gold(I)-catalyzed reactions of alkynes. Although considerable progress on enantioselective gold(I)-catalyzed transformations has recently been achieved, the asymmetric activation of non-prochiral alkyne-containing small molecules still represents a great challenge. Herein we summarize recent advances in intra- and intermolecular enantioselective gold(I)-catalyzed reactions involving alkynes, discussing new chiral ligand designs that lie at the basis of these developments. We also focus on the mode of action of these catalysts, their possible limitations towards a next-generation of more efficient ligand designs. Finally, square planar chiral gold(III) complexes, which offer an alternative to chiral gold(I) complexes, are also discussed.
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http://dx.doi.org/10.1002/cplu.202100232 | DOI Listing |
Phys Rev Lett
December 2024
Institut für Theoretische Physik, Hardenbergstraße 36, Technische Universität Berlin, D-10623 Berlin, Germany.
Heterogeneity is ubiquitous in biological and synthetic active matter systems that are inherently out of equilibrium. Typically, such active mixtures involve not only conservative interactions between the constituents but also nonreciprocal couplings, whose full consequences for the collective behavior still remain elusive. Here, we study a minimal active nonreciprocal mixture with both symmetric isotropic and nonreciprocal polar interactions.
View Article and Find Full Text PDFSci Adv
January 2025
Department of Biochemistry and Molecular Biology, McGovern Medical School, The University of Texas Health Science Center at Houston, Houston, TX 77030, USA.
Current dogma assumes that lipid asymmetry in biological membranes is actively maintained and dispensable for cell viability. The inner (cytoplasmic) membrane (IM) of is asymmetric. However, the molecular mechanism that maintains this uneven distribution is unknown.
View Article and Find Full Text PDFBackground: Corticobasal syndrome (CBS) corresponds to a clinical phenotype with heterogeneous neuropathology, including corticobasal degeneration (CBD), progressive supranuclear palsy (PSP), Alzheimer's disease (AD), and synucleinopathies such as Lewy Body Disease (LBD), in rare cases. Previous reports of CBS-LBD describe patients with diffuse LBD, a younger age of onset and occasionally lacking core features like REM sleep Behavior Disorder (RBD).
Method: We present a young patient with CBS who had a rapid progression and was found to have a high burden of limbic LBD and high AD co-pathology at autopsy.
Inorg Chem
January 2025
Institute of Inorganic Chemistry, Czech Academy of Sciences, CZ, 250 68 Husinec-Řež, Czech Republic.
A series of -tricarbollides based on 10,11-X-7-MeN--7,8,9-CBH (X = H, Cl, Br, I) and their protonated, i.e. cationic, counterparts, which have an extra H-bridge over the B10-B11 vector in the open pentagonal belt, were prepared.
View Article and Find Full Text PDFCureus
December 2024
Internal Medicine, Queen's Hospital, Barking, Havering and Redbridge University Hospitals NHS Trust, Romford, GBR.
Diabetic lumbosacral radiculoplexus neuropathy, also known as diabetic lumbosacral plexopathy or diabetic amyotrophy, is a rare complication of diabetes mellitus. Due to its varied clinical presentation and wide differential, it may pose a diagnostic quandary in assessing patients with proximal asymmetrical lower limb weakness. We present the case of a 74-year-old female patient with a recent onset of falls and aim to discuss the aetiology, differentials, and treatment modalities in diabetic plexopathy.
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