Toll-like receptor (TLR) 7 and 8 agonists can potentially be used in the treatment of viral infections and are particularly promising for chronic hepatitis B virus (HBV) infection. An internal screening effort identified a pyrimidine Toll-like receptor 7 and 8 dual agonist. This provided a novel alternative over the previously reported adenine and pteridone type of agonists. Structure-activity relationship, lead optimization, in silico docking, pharmacokinetics, and demonstration of ex vivo and in vivo cytokine production of the lead compound are presented.
Respiratory
syncytial virus (RSV) is a seasonal virus that infects the lungs and
airways of 64 million children and adults every year. It is a major
cause of acute lower respiratory tract infection and is associated
with significant morbidity and mortality. Despite the large medical
and economic burden, treatment options for RSV-associated bronchiolitis
and pneumonia are limited and mainly consist of supportive care. This
publication covers the medicinal chemistry efforts resulting in the
identification of JNJ-53718678, an orally bioavailable RSV inhibitor
that was shown to be efficacious in a phase 2a challenge study in
healthy adult subjects and that is currently being evaluated in hospitalized
infants and adults. Cocrystal structures of several new derivatives
helped in rationalizing some of the structure–activity relationship
(SAR) trends observed.
Myeloid cell leukemia-1 (MCL-1) is a member of the antiapoptotic
BCL-2 proteins family and a key regulator of mitochondrial homeostasis.
Overexpression of MCL-1 is found in many cancer cells and contributes
to tumor progression, which makes it an attractive therapeutic target.
Pursuing our previous study of macrocyclic indoles for the inhibition
of MCL-1, we report herein the impact of both pyrazole and indole
isomerism on the potency and overall properties of this family of
compounds. We demonstrated that the incorporation of a fluorine atom
on the naphthalene moiety was a necessary step to improve cellular
potency and that, combined with the introduction of various side chains
on the pyrazole, it enhanced solubility significantly. This exploration
culminated in the discovery of compounds (R
a)-10 and (R
a)-15, possessing remarkable cellular potency and properties
Nitriles are recurring motifs in bioactive molecules and versatile functional groups in synthetic chemistry. Despite recent progress, direct introduction of a nitrile moiety in heteroarenes remains challenging. Recent developments in electrochemical reactions pave the way to more practical cyanation protocols. However, currently available methods typically require hazardous cyanide sources, expensive mediators, and often suffer from narrow substrate scope and laborious reaction set-up. To address the limitations of current synthetic methods, herein, an effective, sustainable, and scalable procedure for the direct C(sp 2 )À H cyanation of aromatic N-heterocycles with a userfriendly flow-electrochemical set-up is reported. Furthermore, high substrate and functional-group tolerance is demonstrated, allowing late-stage functionalization of drug-like scaffolds, such as natural products and pharmaceuticals.
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