1 |
A study of structure–activity relationship and anion-controlled quinolinyl Ag(I) complexes as antimicrobial and antioxidant agents as well as their interaction with macromolecules |
|
|
| Adesola A. Adeleke, Sizwe J. Zamisa, Md. Shahidul Islam, Kolawole Olofinsan, Veronica F. Salau, Chunderika Mocktar, Bernard Omondi |
|
| BioMetals. 2022; |
|
| [Pubmed] [Google Scholar] [DOI] |
|
2 |
Punica granatum pericarp extract catalyzed green chemistry approach for synthesizing novel ligand and its metal(II) complexes: Molecular docking/DNA interactions |
|
|
| G.T. Vidyavathi, B. Vinay Kumar, Anjanapura V. Raghu, T. Aravinda, U. Hani, H.C. Ananda Murthy, A.H. Shridhar |
|
| Journal of Molecular Structure. 2022; 1249: 131656 |
|
| [Pubmed] [Google Scholar] [DOI] |
|
3 |
Spectroscopic investigations, DFT calculations, molecular docking and MD simulations of 3-[(4-Carboxyphenyl) carbamoyl]-4-hydroxy-2-oxo-1, 2-dihydroxy quinoline-6-carboxylic acid |
|
|
| P.K. Ranjith, Angel Ignatious, C. Yohannan Panicker, B. Sureshkumar, Stevan Armakovic, Sanja J. Armakovic, C. Van Alsenoy, P.L. Anto |
|
| Journal of Molecular Structure. 2022; : 133315 |
|
| [Pubmed] [Google Scholar] [DOI] |
|
4 |
A review on synthetic investigation for quinoline- recent green approaches |
|
|
| Ashish Patel, Stuti Patel, Meshwa Mehta, Yug Patel, Rushi Patel, Drashti Shah, Darshini Patel, Umang Shah, Mehul Patel, Swayamprakash Patel, Nilay Solanki, Tushar Bambharoliya, Sandip Patel, Afzal Nagani, Harnisha Patel, Jitendra Vaghasiya, Hirak Shah, Bijal Prajapati, Mrudangsinh Rathod, Bhargav Bhimani, Riddhisiddhi Patel, Vashisth Bhavsar, Brijesh Rakholiya, Maitri Patel, Prexa Patel |
|
| Green Chemistry Letters and Reviews. 2022; 15(2): 336 |
|
| [Pubmed] [Google Scholar] [DOI] |
|
5 |
Synthesis and Cytotoxicity Screening of Some Synthesized Coumarin and Aza-Coumarin Derivatives as Anticancer Agents |
|
|
| Ibrahim M. El-Deen, Manar A. El-Zend, Mohamed A. Tantawy, Lamiaa A. A. Barakat |
|
| Russian Journal of Bioorganic Chemistry. 2022; 48(2): 380 |
|
| [Pubmed] [Google Scholar] [DOI] |
|
6 |
Computational Study on Molecular Structure, UV-Visible and Vibrational Spectra and Frontier Molecular Orbital Analysis of (E)-7-((2-Chloroquinolin-3-yl)methylene)-1,2,6,7-tetrahydro-8H-indeno[5,4-b]furan-8-one |
|
|
| Vishnu A. Adole, Abhijit R. Bukane, Ravindra H. Waghchaure, Rohit S. Shinde, Bapu S. Jagdale |
|
| Research Journal of Pharmacy and Technology. 2022; : 1101 |
|
| [Pubmed] [Google Scholar] [DOI] |
|
7 |
In silico Analysis of Novel Azetidinone substituted benzotriazole and benzimidazole derivatives as Plasmodium falciparum Glutamate Dehydrogenase Inhibitors |
|
|
| Sandip N. Badeliya, Pankaj P. Kapupara, Ankit B. Chaudhary |
|
| Research Journal of Pharmacy and Technology. 2022; : 1431 |
|
| [Pubmed] [Google Scholar] [DOI] |
|
8 |
Identification of Drug Candidates for Breast Cancer Therapy Through Scaffold Repurposing: A Brief Review |
|
|
| Jubie Selvaraj, Thangavelu Prabha, Neetu Yadav |
|
| Current Drug Research Reviews. 2021; 13(1): 3 |
|
| [Pubmed] [Google Scholar] [DOI] |
|
9 |
Eco-Friendly Synthesis, Biological Evaluation, and In Silico Molecular Docking Approach of Some New Quinoline Derivatives as Potential Antioxidant and Antibacterial Agents |
|
|
| Ahmed M. El-Saghier, Mohamed El-Naggar, Abdel Haleem M. Hussein, Abu-Bakr A. El-Adasy, M. Olish, Aboubakr H. Abdelmonsef |
|
| Frontiers in Chemistry. 2021; 9 |
|
| [Pubmed] [Google Scholar] [DOI] |
|
10 |
Quinoline Antimalarials Increase the Antibacterial Activity of Ampicillin |
|
|
| Olajumoke A. Olateju, Chinedum P. Babalola, Olujide O. Olubiyi, Olayinka A. Kotila, David A. Kwasi, Anderson O. Oaikhena, Iruka N. Okeke |
|
| Frontiers in Microbiology. 2021; 12 |
|
| [Pubmed] [Google Scholar] [DOI] |
|
11 |
An Overview of the Medicinally Important Plant Type III PKS Derived Polyketides |
|
|
| Renu Bisht, Aniket Bhattacharyya, Ankita Shrivastava, Priti Saxena |
|
| Frontiers in Plant Science. 2021; 12 |
|
| [Pubmed] [Google Scholar] [DOI] |
|
12 |
Hybrid Quinoline-Thiosemicarbazone Therapeutics as a New Treatment Opportunity for Alzheimer’s Disease?Synthesis, In Vitro Cholinesterase Inhibitory Potential and Computational Modeling Analysis |
|
|
| Sumera Zaib, Rubina Munir, Muhammad Tayyab Younas, Naghmana Kausar, Aliya Ibrar, Sehar Aqsa, Noorma Shahid, Tahira Tasneem Asif, Hashem O. Alsaab, Imtiaz Khan |
|
| Molecules. 2021; 26(21): 6573 |
|
| [Pubmed] [Google Scholar] [DOI] |
|
13 |
Synthesis and Antimalarial Activity of 4-Methylaminoquinoline Compounds against Drug-Resistant Parasite |
|
|
| Vinay Shankar Tiwari, Prince Joshi, Kanchan Yadav, Anamika Sharma, Sushobhan Chowdhury, Ashan Manhas, Niti Kumar, Renu Tripathi, Wahajul Haq |
|
| ACS Omega. 2021; 6(20): 12984 |
|
| [Pubmed] [Google Scholar] [DOI] |
|
14 |
The antimicrobial potential and pharmacokinetic profiles of novel quinoline-based scaffolds: synthesis and in silico mechanistic studies as dual DNA gyrase and DHFR inhibitors |
|
|
| Mohamed H. El-Shershaby, Kamal M. El-Gamal, Ashraf H. Bayoumi, Khaled El-Adl, Mohamed Alswah, Hany E. A. Ahmed, Ahmed A. Al-Karmalamy, Hamada S. Abulkhair |
|
| New Journal of Chemistry. 2021; 45(31): 13986 |
|
| [Pubmed] [Google Scholar] [DOI] |
|
15 |
A Domino Heck Coupling–Cyclization–Dehydrogenative Strategy for the One-Pot Synthesis of Quinolines |
|
|
| Santanu Ghora, Chinnabattigalla Sreenivasulu, Gedu Satyanarayana |
|
| Synthesis. 2021; |
|
| [Pubmed] [Google Scholar] [DOI] |
|
16 |
Site-Selective C8-Alkylation of Quinoline N-Oxides with Maleimides under Rh(III) Catalysis |
|
|
| Won An, Suk Hun Lee, Dayoung Kim, Harin Oh, Suho Kim, Youjung Byun, Hyun Jin Kim, Neeraj Kumar Mishra, In Su Kim |
|
| The Journal of Organic Chemistry. 2021; 86(11): 7579 |
|
| [Pubmed] [Google Scholar] [DOI] |
|
17 |
Copper-Catalyzed Formal [3 + 3] Annulations of Arylketoximes and o-Fluorobenzaldehydes: An Entry to Quinoline Compounds |
|
|
| Zhenhua Xu, Hongbiao Chen, Guo-Jun Deng, Huawen Huang |
|
| Organic Letters. 2021; 23(3): 936 |
|
| [Pubmed] [Google Scholar] [DOI] |
|
18 |
Design, synthesis and biological evaluation of mono- and bisquinoline methanamine derivatives as potential antiplasmodial agents |
|
|
| Fostino R.B. Bokosi, Richard M. Beteck, Mziyanda Mbaba, Thanduxolo E. Mtshare, Dustin Laming, Heinrich C. Hoppe, Setshaba D. Khanye |
|
| Bioorganic & Medicinal Chemistry Letters. 2021; 38: 127855 |
|
| [Pubmed] [Google Scholar] [DOI] |
|
19 |
An efficient excited-state proton transfer fluorescence quenching based probe (7-hydroxyquinoline) for sensing trivalent cations in aqueous environment |
|
|
| Mohan Singh Mehata |
|
| Journal of Molecular Liquids. 2021; 326: 115379 |
|
| [Pubmed] [Google Scholar] [DOI] |
|
20 |
Exploration of Anti-plasmodial Activity of Prunus cerasoides Buch.-Ham. ex D. Don (family: Rosaceae) and Its Wood Chromatographic Fractions |
|
|
| Cheryl Sachdeva, Sandeep Kumar, Naveen K. Kaushik |
|
| Acta Parasitologica. 2021; 66(1): 205 |
|
| [Pubmed] [Google Scholar] [DOI] |
|
21 |
Quinolinyl-pyrazoles: synthesis and pharmacological evolution in the recent decennial |
|
|
| Vrushabendra Basavanna, Srikantamurthy Ningaiah, Manasa Chandramouli, Anjali Sobha, Shridevi Doddamani |
|
| Journal of the Iranian Chemical Society. 2021; 18(7): 1479 |
|
| [Pubmed] [Google Scholar] [DOI] |
|
22 |
Quinoline Derivative Enhances Human Sperm Motility and Improves the Functional Competence |
|
|
| Sandhya Kumari, Sujith Raj Salian, Arpitha Rao, Shilpa M. Somagond, Ravindra R. Kamble, Aravind Nesaragi, Jyotirekha Das, G. K. Rajanikant, Srinivas Mutalik, Shamprasad Varija Raghu, Satish Kumar Adiga, Guruprasad Kalthur |
|
| Reproductive Sciences. 2021; 28(5): 1316 |
|
| [Pubmed] [Google Scholar] [DOI] |
|
23 |
Microwave prompted solvent-free synthesis of new series of heterocyclic tagged 7-arylidene indanone hybrids and their computational, antifungal, antioxidant, and cytotoxicity study |
|
|
| Vishnu A. Adole, Rahul A. More, Bapu S. Jagdale, Thansing B. Pawar, Santosh S. Chobe, Rahul A. Shinde, Sunil L. Dhonnar, Prashant B. Koli, Arun V. Patil, Abhijit R. Bukane, Rajesh N. Gacche |
|
| Bioorganic Chemistry. 2021; 115: 105259 |
|
| [Pubmed] [Google Scholar] [DOI] |
|
24 |
Synthesis, antimicrobial evaluation, DNA gyrase inhibition, and in silico pharmacokinetic studies of novel quinoline derivatives |
|
|
| Mohamed H. El-Shershaby, Kamal M. El-Gamal, Ashraf H. Bayoumi, Khaled El-Adl, Hany E. A. Ahmed, Hamada S. Abulkhair |
|
| Archiv der Pharmazie. 2021; 354(2): 2000277 |
|
| [Pubmed] [Google Scholar] [DOI] |
|
25 |
Activity prediction of aminoquinoline drugs based on deep learning |
|
|
| Wenle Wang, Jinquan Chen, Yujie Zhu, Feng Feng |
|
| Biotechnology and Applied Biochemistry. 2021; 68(4): 927 |
|
| [Pubmed] [Google Scholar] [DOI] |
|
26 |
Straightforward Construction and Functionalizations of Nitrogen-Containing Heterocycles Through Migratory Insertion of Metal-Carbenes/Nitrenes |
|
|
| Satabdi Bera, Aniruddha Biswas, Rajarshi Samanta |
|
| The Chemical Record. 2021; |
|
| [Pubmed] [Google Scholar] [DOI] |
|
27 |
Synthesis and in silico ADME/Tox profiling studies of heterocyclic hybrids based on chloroquine scaffolds with potential antimalarial activity |
|
|
| Hegira Ramírez, Esteban Fernandez-Moreira, Juan R. Rodrigues, Michael R. Mijares, Jorge E. Ángel, Jaime E. Charris |
|
| Parasitology Research. 2021; |
|
| [Pubmed] [Google Scholar] [DOI] |
|
28 |
Synthesis and biological activities of nitro-hydroxy-phenylquinolines; validation of antibiotics effect over DNA gyrase inhibition and antimicrobial activity |
|
|
| J D. Bilavendran, Alagumuthu Manikandan, Ponnusamy Thangarasu, K Sivakumar |
|
| Journal of Heterocyclic Chemistry. 2020; 57(3): 1143 |
|
| [Pubmed] [Google Scholar] [DOI] |
|
29 |
Synthesis and Antibacterial Activity of New N-Substituted Hexahydroquinolinone Derivatives and X-Ray Crystallographic Studies |
|
|
| Nangagoundan Vinoth, Chinnasamy Kalaiarasi, Poomani Kumaradhas, Pullar Vadivel, Appaswami Lalitha |
|
| ChemistrySelect. 2020; 5(9): 2696 |
|
| [Pubmed] [Google Scholar] [DOI] |
|
30 |
Graphene Oxide Catalyzed One-pot Synthesis of Pyrimido[4,5-b]quinolinone-2,4-diones and their Biological Evaluation |
|
|
| Rabindranath Singha, Puja Basak, Malay Bhattacharya, Pranab Ghosh |
|
| ChemistrySelect. 2020; 5(21): 6514 |
|
| [Pubmed] [Google Scholar] [DOI] |
|
31 |
Rhodium-Catalyzed Selective C-H Bond Functionalization of Quinolines |
|
|
| Ankit K. Dhiman, Ankita Thakur, Rakesh Kumar, Upendra Sharma |
|
| Asian Journal of Organic Chemistry. 2020; 9(10): 1502 |
|
| [Pubmed] [Google Scholar] [DOI] |
|
32 |
Synthesis of 1,8-dioxooctahydroxanthene derivatives using ionic liquids, quantum chemical studies and anticancer activity |
|
|
| Reetu Sangwan, Monika Saini, Ruchi Verma, Saurabh Kumar, Monisha Banerjee, Sudha Jain |
|
| Journal of Molecular Structure. 2020; 1208: 127786 |
|
| [Pubmed] [Google Scholar] [DOI] |
|
33 |
Advancements in the synthesis of fused tetracyclic quinoline derivatives |
|
|
| Ramadan A. Mekheimer, Mariam A. Al-Sheikh, Hanadi Y. Medrasi, Kamal U. Sadek |
|
| RSC Advances. 2020; 10(34): 19867 |
|
| [Pubmed] [Google Scholar] [DOI] |
|
34 |
Solvent-free grindstone synthesis of four new (E)-7-(arylidene)-indanones and their structural, spectroscopic and quantum chemical study: a comprehensive theoretical and experimental exploration |
|
|
| Vishnu A. Adole, Ravindra H. Waghchaure, Sandip S. Pathade, Manohar R. Patil, Thansing B. Pawar, Bapu S. Jagdale |
|
| Molecular Simulation. 2020; 46(14): 1045 |
|
| [Pubmed] [Google Scholar] [DOI] |
|
35 |
Novel Quinazolin-2,4-Dione Hybrid Molecules as Possible Inhibitors Against Malaria: Synthesis and in silico Molecular Docking Studies |
|
|
| Aboubakr Haredi Abdelmonsef, Mahmoud Eldeeb Mohamed, Mohamed El-Naggar, Hussain Temairk, Ahmed Mohamed Mosallam |
|
| Frontiers in Molecular Biosciences. 2020; 7 |
|
| [Pubmed] [Google Scholar] [DOI] |
|
36 |
Mesoporous Aluminosilicates in the Synthesis of N-Heterocyclic Compounds |
|
|
| N. G. Grigor’eva, M. R. Agliullin, S. A. Kostyleva, S. V. Bubennov, V. R. Bikbaeva, A. R. Gataulin, N. A. Filippova, B. I. Kutepov, Nama Narender |
|
| Kinetics and Catalysis. 2019; 60(6): 733 |
|
| [Pubmed] [Google Scholar] [DOI] |
|
37 |
Catalyst and Additive-Free Diastereoselective 1,3-Dipolar Cycloaddition of Quinolinium Imides with Olefins, Maleimides, and Benzynes: Direct Access to Fused N,N'-Heterocycles with Promising Activity against a Drug-Resistant Malaria Parasite |
|
|
| Rakesh Kumar, Sandeep Chaudhary, Rohit Kumar, Pooja Upadhyay, Dinkar Sahal, Upendra Sharma |
|
| The Journal of Organic Chemistry. 2018; 83(19): 11552 |
|
| [Pubmed] [Google Scholar] [DOI] |
|
38 |
Preparation and nanoformulation of new quinolone scaffold-based anticancer agents: Enhancing solubility for better cellular delivery |
|
|
| Nehal H. Elghazawy,Amr Hefnawy,Nada K. Sedky,Ibrahim M. El-Sherbiny,Reem K. Arafa |
|
| European Journal of Pharmaceutical Sciences. 2017; 105: 203 |
|
| [Pubmed] [Google Scholar] [DOI] |
|
39 |
Convenient synthesis, antimicrobial evaluation and molecular modeling of some novel quinoline derivatives |
|
|
| Wafaa S. Hamama,Mona E. Ibrahim,Aya A. Gooda,Hanafi H. Zoorob |
|
| Synthetic Communications. 2017; 47(3): 224 |
|
| [Pubmed] [Google Scholar] [DOI] |
|
40 |
Synthesis of 4-azo-butenolides |
|
|
| Ana Paula da Rocha Pissurno,Rosangela da Silva de Laurentiz |
|
| Synthetic Communications. 2017; |
|
| [Pubmed] [Google Scholar] [DOI] |
|
41 |
L-Proline catalyzed three component synthesis of pyrano[2,3-c]pyrazole-5-carbonitrile derivatives and in vitro antimalarial evaluation |
|
|
| Kailasam Saravana Mani,Subramaniam Parameshwaran Rajendran |
|
| Synthetic Communications. 2017; |
|
| [Pubmed] [Google Scholar] [DOI] |
|
42 |
Aryl-alkyl-lysines: small molecular membrane-active antiplasmodial agents |
|
|
| Chandradhish Ghosh,Shweta Chaubey,Utpal Tatu,Jayanta Haldar |
|
| Med. Chem. Commun.. 2017; |
|
| [Pubmed] [Google Scholar] [DOI] |
|
43 |
A highly selective and sensitive fluorescent chemosensor for Zn2+ based on a diarylethene derivative |
|
|
| Erting Feng,Yayi Tu,Congbin Fan,Gang Liu,Shouzhi Pu |
|
| RSC Adv.. 2017; 7(79): 50188 |
|
| [Pubmed] [Google Scholar] [DOI] |
|
44 |
Catalyst and solvent-free alkylation of quinoline N-oxides with olefins: A direct access to quinoline-substituted a-hydroxy carboxylic derivatives |
|
|
| Rakesh Kumar,Inder Kumar,Ritika Sharma,Upendra Sharma |
|
| Org. Biomol. Chem.. 2016; 14(9): 2613 |
|
| [Pubmed] [Google Scholar] [DOI] |
|
45 |
Experimental and theoretical study of hydroxyquinolines: hydroxyl group position dependent dipole moment and charge-separation in the photoexcited state leading to fluorescence |
|
|
| Mohan Singh Mehata,Ajay K Singh,Ravindra Kumar Sinha |
|
| Methods and Applications in Fluorescence. 2016; 4(4): 045004 |
|
| [Pubmed] [Google Scholar] [DOI] |
|
46 |
Convergent Synthesis of 2-Aryl-Substituted Quinolines by Gold-Catalyzed Cascade Reaction |
|
|
| Hirofumi Ueda,Minami Yamaguchi,Hidetoshi Tokuyama |
|
| CHEMICAL & PHARMACEUTICAL BULLETIN. 2016; 64(7): 824 |
|
| [Pubmed] [Google Scholar] [DOI] |
|
47 |
One-pot synthesis of quinoline derivatives using choline chloride/tin (II) chloride deep eutectic solvent as a green catalyst |
|
|
| Dana Shahabi,Hossein Tavakol |
|
| Journal of Molecular Liquids. 2016; 220: 324 |
|
| [Pubmed] [Google Scholar] [DOI] |
|
48 |
Nano KF/Clinoptilolite: An Effective Heterogeneous Base Nanocatalyst for Synthesis of Substituted Quinolines in Water |
|
|
| Hadi Sajjadi-Ghotbabadi,Shahrzad Javanshir,Faramarz Rostami-Charati |
|
| Catalysis Letters. 2016; 146(2): 338 |
|
| [Pubmed] [Google Scholar] [DOI] |
|
49 |
Synthesis and Biological Evaluation of Ferrocenylquinoline as a Potential Antileishmanial Agent |
|
|
| Md Yousuf,Debarati Mukherjee,Abhishek Pal,Somaditya Dey,Supratim Mandal,Chiranjib Pal,Susanta Adhikari |
|
| ChemMedChem. 2015; 10(3): 546 |
|
| [Pubmed] [Google Scholar] [DOI] |
|
50 |
Synthesis and Antiplasmodial Activity of Novel Chloroquine Analogues with Bulky Basic Side Chains |
|
|
| Bruno Tasso,Federica Novelli,Michele Tonelli,Anna Barteselli,Nicoletta Basilico,Silvia Parapini,Donatella Taramelli,Anna Sparatore,Fabio Sparatore |
|
| ChemMedChem. 2015; 10(9): 1570 |
|
| [Pubmed] [Google Scholar] [DOI] |
|
51 |
A review on anticancer potential of bioactive heterocycle quinoline |
|
|
| Obaid Afzal,Suresh Kumar,Md Rafi Haider,Md Rahmat Ali,Rajiv Kumar,Manu Jaggi,Sandhya Bawa |
|
| European Journal of Medicinal Chemistry. 2015; 97: 871 |
|
| [Pubmed] [Google Scholar] [DOI] |
|
52 |
Synthesis, spectral analysis (FT-IR, 1H NMR, 13C NMR and UV–visible) and quantum chemical studies on molecular geometry, NBO, NLO, chemical reactivity and thermodynamic properties of novel 2-amino-4-(4-(dimethylamino)phenyl)-5-oxo-6-phenyl-5,6-dihydro-4H-pyrano[3,2-c]quinoline-3-carbonitrile |
|
|
| Shaheen Fatma,Abha Bishnoi,Anil Kumar Verma |
|
| Journal of Molecular Structure. 2015; 1095: 112 |
|
| [Pubmed] [Google Scholar] [DOI] |
|
53 |
Synthesis of 3-Sulfonylamino Quinolines from 1-(2-Aminophenyl) Propargyl Alcohols through a Ag(I)-Catalyzed Hydroamination, (2 + 3) Cycloaddition, and an Unusual Strain-Driven Ring Expansion |
|
|
| Yalla Kiran Kumar,Gadi Ranjith Kumar,Thota Jagadeshwar Reddy,Balasubramanian Sridhar,Maddi Sridhar Reddy |
|
| Organic Letters. 2015; 17(9): 2226 |
|
| [Pubmed] [Google Scholar] [DOI] |
|
54 |
Vibrational spectroscopic investigation (FT-IR and FT-Raman) using ab initio (HF) and DFT (B3LYP) calculations of 3-ethoxymethyl-1,4-dihydroquinolin-4-one |
|
|
| Jamelah S. Al-Otaibi,Reem I. Al-Wabli |
|
| Spectrochimica Acta Part A: Molecular and Biomolecular Spectroscopy. 2015; 137: 7 |
|
| [Pubmed] [Google Scholar] [DOI] |
|
55 |
Groove binding mediated structural modulation and DNA cleavage by quinoline appended chalcone derivative |
|
|
| Himank Kumar,Vinod Devaraji,Rangaraj Prasath,Manojkumar Jadhao,Ritika Joshi,Purushothaman Bhavana,Sujit Kumar Ghosh |
|
| Spectrochimica Acta Part A: Molecular and Biomolecular Spectroscopy. 2015; 151: 605 |
|
| [Pubmed] [Google Scholar] [DOI] |
|
56 |
Study of the intramolecular Heck reaction: synthesis of the bicyclic core of corialstonidine |
|
|
| Gordana Tasic,Veselin Maslak,Suren Husinec,Nina Todorovic,Vladimir Savic |
|
| Tetrahedron Letters. 2015; 56(19): 2529 |
|
| [Pubmed] [Google Scholar] [DOI] |
|
57 |
Metal-free domino one-pot protocols for quinoline synthesis |
|
|
| Jaideep B. Bharate,Ram A. Vishwakarma,Sandip B. Bharate |
|
| RSC Adv.. 2015; 5(52): 42020 |
|
| [Pubmed] [Google Scholar] [DOI] |
|
58 |
Recent advances in the synthesis of quinolines: a review |
|
|
| Shraddha M. Prajapati,Kinjal D. Patel,Rajesh H. Vekariya,Shyamali N. Panchal,Hitesh D. Patel |
|
| RSC Advances. 2014; 4(47): 24463 |
|
| [Pubmed] [Google Scholar] [DOI] |
|
59 |
Potential anti-bacterial agents: montmorillonite clay-catalyzed synthesis of novel 2-(3,5-substituted-1H-pyrazol-1-yl)-3-substituted quinolines and their in silico molecular docking studies |
|
|
| Pasupala Pavan,R. Subashini,K. R. Ethiraj,Fazlur-Rahman Nawaz Khan |
|
| RSC Adv.. 2014; 4(101): 58011 |
|
| [Pubmed] [Google Scholar] [DOI] |
|
60 |
Synthesis and Antitubercular Screening of [(2-Chloroquinolin-3-yl)methyl] Thiocarbamide Derivatives |
|
|
| Suresh Kumar,Neeraj Upmanyu,Obaid Afzal,Sandhya Bawa |
|
| Chemical Biology & Drug Design. 2014; 84(5): 522 |
|
| [Pubmed] [Google Scholar] [DOI] |
|
61 |
The development and validation of an LC-MS/MS method for the determination of a new anti-malarial compound (TK900D) in human whole blood and its application to pharmacokinetic studies in mice |
|
|
| Efrem T Abay, Jan H van der Westhuizen, Kenneth J Swart, Liezl Gibhard, Matshawandile Tukulula, Kelly Chibale, Lubbe Wiesner |
|
| Malaria Journal. 2014; 13(1) |
|
| [Pubmed] [Google Scholar] [DOI] |
|
62 |
Synthesis of chiral chloroquine and its analogues as antimalarial agents |
|
|
| Manish Sinha,Vasanth R. Dola,Awakash Soni,Pooja Agarwal,Kumkum Srivastava,Wahajul Haq,Sunil K. Puri,Seturam B. Katti |
|
| Bioorganic & Medicinal Chemistry. 2014; |
|
| [Pubmed] [Google Scholar] [DOI] |
|
63 |
Synthesis and evaluation of new diaryl ether and quinoline hybrids as potential antiplasmodial and antimicrobial agents |
|
|
| Amita Mishra,Harikrishna Batchu,Kumkum Srivastava,Pratiksha Singh,Pravin K. Shukla,Sanjay Batra |
|
| Bioorganic & Medicinal Chemistry Letters. 2014; 24(7): 1719 |
|
| [Pubmed] [Google Scholar] [DOI] |
|
64 |
Synthesis, characterization and antimalarial activity of quinoline–pyrimidine hybrids |
|
|
| Stefan I. Pretorius,Wilma J. Breytenbach,Carmen de Kock,Peter J. Smith,David D. N’Da |
|
| Bioorganic & Medicinal Chemistry. 2013; 21(1): 269 |
|
| [Pubmed] [Google Scholar] [DOI] |
|
65 |
Synthesis of Alkyl and Aryl Substituted Benzo[h]Naphtho[1,2-b][1,6]naphthyridines |
|
|
| K. Prabha,K. J. Rajendra Prasad |
|
| Synthetic Communications. 2012; 42(15): 2277 |
|
| [Pubmed] [Google Scholar] [DOI] |
|