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Dive into the research topics where Abhishek Iyer is active.

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Featured researches published by Abhishek Iyer.


Journal of Medicinal Chemistry | 2018

Design and Syntheses of Highly Potent Teixobactin Analogues against Staphylococcus aureus, Methicillin-Resistant Staphylococcus aureus (MRSA), and Vancomycin-Resistant Enterococci (VRE) in Vitro and in Vivo

Anish Parmar; Rajamani Lakshminarayanan; Abhishek Iyer; Venkatesh Mayandi; Eunice Tze Leng Goh; Daniel G. Lloyd; Madhavi Latha Somaraju Chalasani; Navin Kumar Verma; Stephen H. Prior; Roger W. Beuerman; Annemieke Madder; Edward J. Taylor; Ishwar Singh

The cyclic depsipeptide, teixobactin, kills a number of Gram-positive bacteria, including methicillin-resistant Staphylococcus aureus (MRSA), and Mycobacterium tuberculosis without detectable resistance. To date, teixobactin is the only molecule in its class that has shown in vivo antibacterial efficacy. In this work, we designed and synthesized 10 new in vivo ready teixobactin analogues. These analogues showed highly potent antibacterial activities against Staphylococcus aureus, MRSA, and vancomycin-resistant enterococci (VRE) in vitro. One analogue, d-Arg4-Leu10-teixobactin, 2, was found to be noncytotoxic in vitro and in vivo. Moreover, topical instillation of peptide 2 in a mouse model of S. aureus keratitis decreased the bacterial bioburden (>99.0% reduction) and corneal edema significantly as compared to untreated mouse corneas. Collectively, our results have established the high therapeutic potential of a teixobactin analogue in attenuating bacterial infections and associated severities in vivo.


Food Additives and Contaminants Part A-chemistry Analysis Control Exposure & Risk Assessment | 2014

An immunogen synthesis strategy for the development of specific anti-deoxynivalenol monoclonal antibodies

Melanie Sanders; Yirong Guo; Abhishek Iyer; Yara Ruiz García; Anastasia Galvita; Arne Heyerick; Dieter Deforce; Martijn Risseeuw; Serge Van Calenbergh; Marc Bracke; Sergei A. Eremin; Annemieke Madder; Sarah De Saeger

An immunogen synthesis strategy was designed to develop anti-deoxynivalenol (DON) monoclonal antibodies with low cross-reactivity against structurally similar trichothecenes. A total of eight different DON immunogens were synthesised, differing in the type and position of the linker on the DON molecule. After immunisation, antisera from mice immunised with different DON immunogens were checked for the presence of relevant antibodies. Then, both homologous and heterologous enzyme-linked immunosorbent assays (ELISAs) were performed for hybridoma screening. Finally, three monoclonal antibodies against DON and its analogues were generated. In addition, monoclonal antibody 13H1 could recognise DON and its analogues in the order of HT-2 toxin > 15-acetyldeoxynivalenol (15-ADON) > DON, with IC50 ranging from 1.14 to 2.13 µg ml–1. Another monoclonal antibody 10H10 manifested relatively close sensitivities to DON, 3-acetyldeoxynivalenol (3-ADON) and 15-ADON, with IC50 values of 22, 15 and 34 ng ml–1, respectively. Using an indirect ELISA format decreases the 10H10 sensitivity to 15-ADON with 92%. A third monoclonal antibody 2A9 showed to be very specific and sensitive to 3-ADON, with IC50 of 0.38 ng ml–1. Using both 2A9 and 10H10 monoclonal antibodies allows determining sole DON contamination.


Pharmaceutics | 2018

Cysteines and Disulfide-Bridged Macrocyclic Mimics of Teixobactin Analogues and Their Antibacterial Activity Evaluation against Methicillin-Resistant Staphylococcus Aureus (MRSA)

Ruba Malkawi; Abhishek Iyer; Anish Parmar; Daniel G. Lloyd; Eunice Leng Goh; Edward J. Taylor; Sarir Sarmad; Annemieke Madder; Rajamani Lakshminarayanan; Ishwar Singh

Teixobactin is a highly potent cyclic depsipeptide which kills a broad range of multi-drug resistant, Gram-positive bacteria, such as Methicillin-resistant Staphylococcus aureus (MRSA) without detectable resistance. In this work, we describe the design and rapid synthesis of novel teixobactin analogues containing two cysteine moieties, and the corresponding disulfide-bridged cyclic analogues. These analogues differ from previously reported analogues, such as an Arg10-teixobactin, in terms of their macrocyclic ring size, and feature a disulfide bridge instead of an ester linkage. The new teixobactin analogues were screened against Methicillin-resistant Staphylococcus aureus and Methicillin-sensitive Staphylococcus aureus. Interestingly, one teixobactin analogue containing all l-amino acid building blocks showed antibacterial activity against MRSA for the first time. Our data indicates that macrocyclisation of teixobactin analogues with disulfide bridging is important for improved antibacterial activity. In our work, we have demonstrated the unprecedented use of a disulfide bridge in constructing the macrocyclic ring of teixobactin analogues.


Archive | 2018

Chapter 13:Synthetic Peptides for DNA Recognition Inspired by Transcription Factors

Abhishek Iyer; Yara Ruiz García; Annemieke Madder

Transcription Factors (TFs) are key players in the conversion of the information held in mRNA into a ’language’ that the body can understand. This they achieve by specifically recognising and binding to short regulatory DNA sequences which control the gene. These interactions between DNA and proteins are extremely specific and of very high affinity. Consequently, much effort has been devoted to elucidating TF structures and their modes of binding to DNA. It is therefore not surprising that TFs have been the main role models for the design and synthesis of DNA-binding peptides. The current chapter, after giving an overview of known TF structures, describes the different peptide-based DNA binding systems that have been conceived and studied, ranging from replacement of the TF dimerization domain by non-peptide scaffolds, through the connection of major-groove-recognising entities to minor-groove binders, to the further miniaturisation of the systems towards monomeric peptide sequences still capable of binding to nucleic acid duplexes. Thanks to these miniaturisation efforts, the systems have finally reached a stage where therapeutic applications can be envisaged.


Chemical Communications | 2016

Efficient total syntheses and biological activities of two teixobactin analogues

Anish Parmar; Abhishek Iyer; Charlotte S. Vincent; Dorien Van Lysebetten; Stephen H. Prior; Annemieke Madder; Edward J. Taylor; Ishwar Singh


Chemical Communications | 2017

Defining the molecular structure of teixobactin analogues and understanding their role in antibacterial activities

Anish Parmar; Stephen H. Prior; Abhishek Iyer; Charlotte S. Vincent; Dorien Van Lysebetten; Eefjan Breukink; Annemieke Madder; Edward J. Taylor; Ishwar Singh


Chemical Communications | 2017

Syntheses of potent teixobactin analogues against methicillin-resistant Staphylococcus aureus (MRSA) through the replacement of L-allo-enduracididine with its isosteres

Anish Parmar; Abhishek Iyer; Daniel G. Lloyd; Charlotte S. Vincent; Stephen H. Prior; Annemieke Madder; Edward J. Taylor; Ishwar Singh


Organic and Biomolecular Chemistry | 2015

Cyclodextrin-peptide conjugates for sequence specific DNA binding.

Yara Ruiz García; Jan Zelenka; Y. Vladimir Pabon; Abhishek Iyer; Miloš Buděšínský; Tomáš Kraus; C. I. Edvard Smith; Annemieke Madder


Chemical Science | 2017

Teixobactin analogues reveal enduracididine to be non-essential for highly potent antibacterial activity and lipid II binding

Anish Parmar; Abhishek Iyer; Stephen H. Prior; Daniel G. Lloyd; Eunice Tze Leng Goh; Charlotte S. Vincent; Timea Palmai-Pallag; Csanád Z. Bachrati; Eefjan Breukink; Annemieke Madder; Rajamani Lakshminarayanan; Edward J. Taylor; Ishwar Singh


Chemical Communications | 2015

Sequence-selective DNA recognition and enhanced cellular up-take by peptide–steroid conjugates

Yara Ruiz García; Abhishek Iyer; Dorien Van Lysebetten; Y. Vladimir Pabon; Benoit Louage; Malgorzata Honcharenko; Bruno G. De Geest; C. I. Edvard Smith; Roger Strömberg; Annemieke Madder

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Rajamani Lakshminarayanan

National University of Singapore

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