Daniel G Lloyd
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Explore the profile of Daniel G Lloyd including associated specialties, affiliations and a list of published articles.
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6
Citations
100
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Recent Articles
1.
Lloyd D, Schofield B, Goddard M, Taylor E
Antimicrob Agents Chemother
. 2020 Oct;
65(1).
PMID: 33046494
Bacterial pathogens are rapidly evolving resistance to all clinically available antibiotics. One part of the solution to this complex issue is to better understand the resistance mechanisms to new and...
2.
Malkawi R, Iyer A, Parmar A, Lloyd D, Goh E, Taylor E, et al.
Pharmaceutics
. 2018 Oct;
10(4).
PMID: 30314324
Teixobactin is a highly potent cyclic depsipeptide which kills a broad range of multi-drug resistant, Gram-positive bacteria, such as Methicillin-resistant (MRSA) without detectable resistance. In this work, we describe the...
3.
Parmar A, Iyer A, Prior S, Lloyd D, Goh E, Vincent C, et al.
Chem Sci
. 2018 Mar;
8(12):8183-8192.
PMID: 29568465
Teixobactin is a highly promising antibacterial depsipeptide consisting of four d-amino acids and a rare l--enduracididine amino acid. l--Enduracididine is reported to be important for the highly potent antibacterial activity...
4.
Parmar A, Lakshminarayanan R, Iyer A, Mayandi V, Goh E, Lloyd D, et al.
J Med Chem
. 2018 Jan;
61(5):2009-2017.
PMID: 29363971
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...
5.
Parmar A, Iyer A, Lloyd D, Vincent C, Prior S, Madder A, et al.
Chem Commun (Camb)
. 2017 Jun;
53(55):7788-7791.
PMID: 28650495
The recently discovered cyclic depsipeptide, teixobactin, is a highly potent antibiotic against multi-drug resistant pathogens such as methicillin-resistant Staphylococcus aureus (MRSA) and Mycobaterium tuberculosis. It comprises of 4 D amino...
6.
Lloyd D, Whitworth D
Front Microbiol
. 2017 Mar;
8:439.
PMID: 28352265
The myxobacterium is a predatory member of the soil microfauna, able to consume bacteria (Gram-negative, Gram-positive), archaea, and fungi. Many potential prey of communicate amongst themselves using acyl homoserine lactones...