Zagazig University Digital Repository
Home
Thesis & Publications
All Contents
Publications
Thesis
Graduation Projects
Research Area
Research Area Reports
Search by Research Area
Universities Thesis
ACADEMIC Links
ACADEMIC RESEARCH
Zagazig University Authors
Africa Research Statistics
Google Scholar
Research Gate
Researcher ID
CrossRef
SAR of Novel 3-Arylisoquinolinones: meta-Substitution on the Aryl Ring Dramatically Enhances Antiproliferative Activity through Binding to Microtubules
Faculty
Pharmacy
Year:
2022
Type of Publication:
ZU Hosted
Pages:
Authors:
Journal:
Journal of Medicinal Chemistry ACS
Volume:
Keywords :
, , Novel 3-Arylisoquinolinones: meta-Substitution , , Aryl Ring Dramatically
Abstract:
A set of meta-substituted 3-arylisoquinolinones have been identified that show substantial cytotoxicity in breast, liver, lung and colon cancer cell lines; these are up to 700-fold more active than the corresponding para analogues. These compounds were initially proposed as inhibitors of N-ribosyl dihydronicotinamide (NRH): quinone oxidoreductase 2 (NQO2) but were found to be inactive against the enzyme. Instead, COMPARE analysis suggested that 6-fluoro-3-(meta-fluorophenyl)isoquinolin-1(2H)-one (4) could mimic colchicine and interact with microtubules, a recognized target for cancer therapy. Subsequent docking, molecular dynamics simulations, and free energy analysis further suggested that compound 4 bound well into the colchicine-binding pocket of tubulin. Indeed, 4 suppressed tubulin polymerization, caused G2/M cell cycle arrest, and induced apoptosis. Also, 4 inhibited the formation of endothelial cell capillary-like tubes and further disrupted the structure of preestablished tubes; the effects were not observed with para analogue 5. In accordance with this, the computed free energy of binding of 5 to tubulin was lower in magnitude than that for 4 and appeared to arise in part from the inability of the para substituent to occupy a tubulin subpocket, which is possible in the meta orientation. In conclusion, the antiproliferative potential of the novel 3-arylisoquinolinones is markedly influenced by a subtle change in the structure (meta versus para). The meta-substituted isoquinolinone 4 is a microtubule-destabilizing agent with potential tumor-selectivity and antiangiogenic and vascular disrupting features.
Author Related Publications
Department Related Publications
Mansour Alsayed Mansour Abokol, "Synthesis of certain Arylalkanoic Acid Derivatives of pharmacutical Interest", لايوجد, 1900
More
Mahmoud Mohamed Mohamed Sebaee, "Poly (vinyl chloride) matrix membrane sensors for the quantification of olopatadine and oxeladine in pharmaceutical preparations and human plasma", Elsevier, 2019
More
Noha Ibrahiem Elsayed Mohamed Zidain, "The Utility of isatoic anhydrides in the synthesis of New Heterocycl Compoud For Biological Study", لايوجد, 1900
More
Abdallah Ahmed Abdallah Elshanawany, "Development and validation of liquid chromatographic method for simultaneous determination of amiloride hydrochloride and hydrochlorothiazide in human urine", لايوجد, 1900
More
Abdallah Ahmed Abdallah Elshanawany, "Development and validation of RP-HPLC for Simultaneous determination of amiloride,hydrichloride,Atenolol,hydrochlorothiazide and chlorthalidone in their combined mixtures ", لايوجد, 1900
More
جامعة المنصورة
جامعة الاسكندرية
جامعة القاهرة
جامعة سوهاج
جامعة الفيوم
جامعة بنها
جامعة دمياط
جامعة بورسعيد
جامعة حلوان
جامعة السويس
شراقوة
جامعة المنيا
جامعة دمنهور
جامعة المنوفية
جامعة أسوان
جامعة جنوب الوادى
جامعة قناة السويس
جامعة عين شمس
جامعة أسيوط
جامعة كفر الشيخ
جامعة السادات
جامعة طنطا
جامعة بنى سويف