Pregled bibliografske jedinice broj: 1008917
Dizajn benzimidazolnih derivata izražene antiproliferativne aktivnosti temeljen na rezultatima računalnih metoda
Dizajn benzimidazolnih derivata izražene antiproliferativne aktivnosti temeljen na rezultatima računalnih metoda // 25. Hrvatski skup kemičara i kemijskih inženjera s međunarodnim sudjelovanjem ; 3. simpozij Vladimir Prelog : knjiga sažetaka = 25th Croatian Meeting of Chemist and Chemical Engineers with international participation. 3rd symposium “Vladimir Prelog” : Book of Abstracts / Šantić, Ana ; Đaković, Marijana (ur.).
Zagreb: Hrvatsko društvo kemijskih inženjera i tehnologa (HDKI) ; Hrvatsko kemijsko drustvo, 2017. str. 109-109 (poster, domaća recenzija, sažetak, znanstveni)
CROSBI ID: 1008917 Za ispravke kontaktirajte CROSBI podršku putem web obrasca
Naslov
Dizajn benzimidazolnih derivata izražene
antiproliferativne aktivnosti temeljen na
rezultatima računalnih metoda
(Computationally guided search for novel
benzimidazole derivatives with enhanced
antiproliferative activity)
Autori
Bertoša, Branimir ; Vušak, Darko ; Perin, Nataša ; Martin-Kleiner, Irena ; Kralj, Marijeta ; Karminski-Zamola, Grace ; Hranjec, Marijana
Vrsta, podvrsta i kategorija rada
Sažeci sa skupova, sažetak, znanstveni
Izvornik
25. Hrvatski skup kemičara i kemijskih inženjera s međunarodnim sudjelovanjem ; 3. simpozij Vladimir Prelog : knjiga sažetaka = 25th Croatian Meeting of Chemist and Chemical Engineers with international participation. 3rd symposium “Vladimir Prelog” : Book of Abstracts
/ Šantić, Ana ; Đaković, Marijana - Zagreb : Hrvatsko društvo kemijskih inženjera i tehnologa (HDKI) ; Hrvatsko kemijsko drustvo, 2017, 109-109
ISBN
978-953-552327-7
Skup
25. Hrvatski skup kemičara i kemijskih inženjera s međunarodnim sudjelovanjem ; 3. simpozij Vladimir Prelog = 25th Croatian Meeting of Chemist and Chemical Engineers with international participation. 3rd symposium “Vladimir Prelog”
Mjesto i datum
Poreč, Hrvatska, 19.04.2017. - 22.04.2017
Vrsta sudjelovanja
Poster
Vrsta recenzije
Domaća recenzija
Ključne riječi
QSAR ; benzoimidazoli ; antiproliferativna aktivnost
(QSAR ; benzimidazole derivatives ; antiproliferative activity)
Sažetak
The experimental search for novel benzimidazole derivatives with enhanced antiproliferative activity was successfully guided by QSAR modelling. Robust 3D-QSAR models were derived using available database of the compounds with previously measured activities in the same laboratory, under the same conditions. Using the QSAR analysis of the obtained models, the molecular descriptors with the highest influence on the activity were identified. The QSAR analysis revealed that the antiproliferative activities against four cell lines, H460, HCT 116, MCF-7, and SW 620, should be increased if the new compounds are charged at pH range from 5 to 7 and if their hydrophobicity is increased comparing to the dataset compounds. Novel amino and diamino substituted benzimidazo[1, 2-a]quinolines with introduced quarter amino groups and aliphatic chains were designed according to the QSAR analysis and their antiproliferative activities were computationally predicted. Using uncatalyzed microwave assisted amination, 14 novel compounds were synthesized and their antiproliferative activities were assessed against H460, HCT 116, MCF-7, and SW 620 tumor cell lines in vitro. Novel compounds showed antiproliferative activities in micromolar and submicromolar inhibition concentrations. Experimental measurements of antiproliferative activities enabled undisputed validation of QSAR models, very good agreement between experimentally measured activities and computational predictions was obtained. Based on the identified molecular descriptors with the highest influence on antiproliferative activity, possible mode of action is proposed.
Izvorni jezik
Engleski
Znanstvena područja
Kemija
POVEZANOST RADA
Ustanove:
Institut "Ruđer Bošković", Zagreb,
Prirodoslovno-matematički fakultet, Zagreb,
Fakultet kemijskog inženjerstva i tehnologije, Zagreb
Profili:
Marijana Hranjec
(autor)
Nataša Perin
(autor)
Darko Vusak
(autor)
Grace Karminski-Zamola
(autor)
Branimir Bertoša
(autor)
Marijeta Kralj
(autor)
Irena Martin-Kleiner
(autor)