Q1 2026

Design, synthesis, and in silico studies of novel hybrid structures based on pyrimido-benzimidazole and 1,2,3-triazoles targeting oncogenic tyrosine kinases

Chaimae Hourma · Ayoub El Mahmoudi · Mohsine Driowya · Hamza Tachallait · Rachid Benhida · Rachid Daoud · Khalid Bougrin
10.25259/ajc_898_2025 394 المشاهدات 0 الاقتباسات
0
الاقتباسات
394
المشاهدات
الملخص


A new and efficient synthesis, structural characterization, and
in silico
evaluation of a novel series of pyrimido-benzimidazole-based 1,2,3-triazole hybrids as potential anticancer agents has been developed. The synthetic approach follows a three-step strategy:
(i)
cyclocondensation of 2-aminobenzimidazole
1
with ethyl benzoylacetate
2
to afford the pyrimido-benzimidazole core
3
,
(ii)
propargylation using propargyl bromide
4
, and
(iii)
copper-catalyzed azide-alkyne cycloaddition (CuAAC) with aryl or alkyl azides, leading to the formation of 12 target compounds (
6a–l
) in good to excellent yields ranging from 57% to 90%. Structural characterization was achieved using FT-IR,
1
H NMR,
13
C NMR, and HRMS analysis. The anticancer potential of the synthesized derivatives is assessed through
in silico
molecular docking studies against key receptor tyrosine kinases (RTKs), including FGFR1, PDGFRα, KIT, MET, and EGFR, to evaluate their binding affinities and interaction profiles. Absorption, distribution, metabolism, excretion, and toxicity (ADMET) analysis predicts pharmacokinetic properties, metabolic stability, and toxicity. Moreover, molecular dynamics simulations were performed to evaluate the stability of the most promising compound within the target binding site. Compound
6c
exhibited the strongest binding affinity (−11.7 kcal/mol against FGFR3) and formed multiple hydrogen bonds, π–π stacking, and hydrophobic interactions with conserved residues in the ATP-binding pockets of various kinase targets. These interactions supported its predicted affinity and structural stability, as confirmed by 100 ns MD simulations, during which root mean square deviation (RMSD) values remained within 0.25 to 0.35 nm. This combined synthetic and computational approach highlights novel pyrimido-benzimidazole-triazole hybrids as promising
in-silico
multi-targeted anticancer candidates.

الاستشهاد بهذا المقال (APA)
Chaimae, H., Ayoub, E. M., Mohsine, D., Hamza, T., Rachid, B., Rachid, D., Khalid, B. (2026). Design, synthesis, and in silico studies of novel hybrid structures based on pyrimido-benzimidazole and 1,2,3-triazoles targeting oncogenic tyrosine kinases. Arabian Journal of Chemistry. https://doi.org/10.25259/ajc_898_2025
أبحاث ذات صلة
67
استشهاد
815
54
استشهاد
1,354
42
استشهاد
963
38
استشهاد
1,077
29
استشهاد
2,105
الوصول
عرض النص الكامل عبر DOI
نُشر في
الرقم الدولي ISSN 1878-5352
الربعية Q1
درجة المؤشر القياس العربي 100
التخصص Natural Sciences
الناشر King Saud University / Elsevier
الدولة 🇸🇦 Saudi Arabia
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المؤلفون
تفاصيل النشر
السنة 2026
اللغة English
أُضيف في 24 Jul 2026