Covalent EGFR Inhibitors: Binding Mechanisms, Synthetic Approaches, and Clinical Profiles

Hossam, Monia; Lasheen, Deena S.; Abouzid, Khaled;

Abstract


Being overexpressed in several types of cancer, the epidermal growth factor receptor (EGFR) is considered one of the key therapeutic targets in oncology. Although many first-generation EGFR inhibitors had been FDA approved for the treatment of certain types of cancer, patients soon developed resistance to these reversible ATP competitive inhibitors via mutations in the kinase domain of EGFR. A new trend was adopted to design covalent irreversible inhibitors, that is, second- and third-generation inhibitors. Second-generation inhibitors can inhibit the mutant forms but, unfortunately, they had dose limiting side effects due to wild-type EGFR inhibition. Third-generation inhibitors emerged shortly, which were capable of inhibiting the mutant forms exclusively while sparing the wild type. Many other strategies have also been developed to reduce the risk of covalent interactions with off-targets, thus improving the pharmacokinetic and/or pharmacodynamic profile of the antiproliferative agents. In this review, we focused mainly on second- and third-generation EGFR inhibitors, their binding mechanisms (either docking studies or co-crystallized structures), their synthetic approaches, clinical profiles, and limitations.


Other data

Title Covalent EGFR Inhibitors: Binding Mechanisms, Synthetic Approaches, and Clinical Profiles
Authors Hossam, Monia; Lasheen, Deena S. ; Abouzid, Khaled 
Keywords Covalent;Crystal structure;EGFR;Synthesis;T790M mutation
Issue Date Aug-2016
Publisher WILEY-V C H VERLAG GMBH
Journal Archiv der Pharmazie 
Volume 349
Issue 8
Start page 573
End page 593
ISSN 0365-6233
DOI 10.1002/ardp.201600063
PubMed ID 27258393
Scopus ID 2-s2.0-84982815647
Web of science ID WOS:000380903600001

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Citations 10 in pubmed
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