Search Results - "Manheri, Muraleedharan K."

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  1. 1

    Hierarchical Preferences of Hydroxylated Oxanorbornane-Based Achiral Amphiphiles by Janni, D. Sirisha, K. Manheri, Muraleedharan

    Published in Langmuir (10-12-2013)
    “…Achiral amphiphiles with hydroxylated oxanorbornane headgroups showed specific morphological characteristics and hierarchical preferences depending upon the…”
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    Journal Article
  2. 2

    Reactive Pt(II) center as part of redox-active quinoline-based heterocyclic scaffolds toward new anticancer leads by Kumbhakonam, Sateeshkumar, Saroj, Soumya, Venkatesan, Nalini, Devarajan, Karunagaran, Manheri, Muraleedharan K.

    Published in Bioorganic & medicinal chemistry letters (15-11-2020)
    “…[Display omitted] New cisplatin analogs in which the diamminedichloro-Pt(II) unit is conjugated to dihydroquinoline- or tetrahydroquinoline frameworks were…”
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  3. 3

    Hybridization of the Pharmacophoric Features of Discoipyrrole C and Combretastatin A‐4 toward New Anticancer Leads by Kurian, Jais, Ashtam, Anvesh, Kesavan, Akila, Chaluvalappil, Saheer V., Panda, Dulal, Manheri, Muraleedharan K.

    Published in ChemMedChem (15-08-2023)
    “…Pharmacophore hybridization is an attractive strategy to identify new leads against multifactorial diseases such as cancer. Based on literature analysis of…”
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  4. 4

    Sequential Release of Ibuprofen and the Gasotransmitter Hydrogen sulfide using Oxanorbornane-Based Synthetic Lipids as Carriers by Kana Veedu, Akshaya, Panthalattu Parambil, Archana, Manheri, Muraleedharan K

    Published in ChemPlusChem (Weinheim, Germany) (29-10-2024)
    “…After understanding the biological signaling roles of hydrogen sulfide and its involvement in various physiological processes, there has been enormous interest…”
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  5. 5

    1‐Hydroxymethyl‐7‐oxabicyclo[2.2.1]hept‐2‐ene skeleton in enantiopure form through enzymatic kinetic resolution by Reddy, U. Chandrasekhar, Manheri, Muraleedharan K.

    Published in Chirality (New York, N.Y.) (01-04-2019)
    “…Lipase‐catalysed enantioselective acetylation and deacetylation routes were investigated to prepare 1,5,6‐trisubstituted 7‐oxabicyclo[2.2.1]hept‐2‐ene skeleton…”
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  6. 6

    Adenine Modification at C7 as a Viable Strategy to Potentiate the Antimalarial Activity of Quinolones by Kurian, Jais, Kumari, Varsha, Chaluvalappil, Saheer V., Anas, Mohammad, Manhas, Ashan, Kalluruttimmal, Ramshad, Kumar, Niti, Manheri, Muraleedharan K.

    Published in ChemMedChem (19-01-2022)
    “…Although many quinolones have shown promise as potent antimalarials, their clinical development has been slow due to poor performance in vivo. Insights into…”
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  7. 7

    FtsZ inhibition and redox modulation with one chemical scaffold: Potential use of dihydroquinolines against mycobacteria by Duggirala, Sridevi, Napoleon, John Victor, Nankar, Rakesh P., Senu Adeeba, V., Manheri, Muraleedharan K., Doble, Mukesh

    Published in European journal of medicinal chemistry (10-11-2016)
    “…The dual effect of FtsZ inhibition and oxidative stress by a group of 1,2-dihydroquinolines that culminate in bactericidal effect on mycobacterium strains is…”
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  8. 8
  9. 9

    Synthesis of Highly Substituted Pyrrolo[1,2‐a]quinoline‐3,5‐diones through Ag(I) Catalyzed Cyclization of 4‐Hydroxyquinolinyl‐2‐ynones by Kurian, Jais, Manheri, Muraleedharan K.

    Published in European journal of organic chemistry (06-12-2023)
    “…An efficient synthetic route to access highly substituted pyrrolo[1,2‐a]quinoline‐3,5‐diones in which the core is formed by fusion of quinolone and pyrrolone…”
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  10. 10

    Synthesis of Highly Substituted Pyrroloquinoline‐3,5‐diones through Ag(I) Catalyzed Cyclization of 4‐Hydroxyquinolinyl‐2‐ynones by Kurian, Jais, Manheri, Muraleedharan K

    Published in European journal of organic chemistry (01-12-2023)
    “…An efficient synthetic route to access highly substituted pyrrolo[1,2‐a]quinoline‐3,5‐diones in which the core is formed by fusion of quinolone and pyrrolone…”
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    Journal Article