Sasp Gene Delivery A Novel Antibacterial Approach

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SASP gene delivery: a novel antibacterial approach.

    https://www.ncbi.nlm.nih.gov/pubmed/19536364
    SASP gene delivery: a novel antibacterial approach. ... SASP, or Small, Acid-soluble Spore Protein(s), inactivate bacterial DNA in a non-sequence-specific manner so their activity is unaffected by DNA mutations. Selected pathogens can be targeted, avoiding the normal flora. A Staphylococcus aureus-targeted SASPject, PT1.2, developed for the ...Author: Fairhead H

SASP gene delivery: A novel antibacterial approach ...

    https://www.researchgate.net/publication/26301285_SASP_gene_delivery_A_novel_antibacterial_approach
    SASP gene delivery: A novel antibacterial approach. ... injecting a gene encoding an antibacterial protein, SASP, into target bacteria. SASP, or Small, Acid-soluble Spore Protein(s), inactivate ...

Journals on the Web

    https://journals.prous.com/journals/servlet/xmlxsl/pk_journals.xml_summary_pr?p_JournalId=3&p_RefId=1367708&p_IsPs=N
    SASP gene delivery: A novel antibacterial approach Fairhead, H. Antibiotic resistance is a global problem, and with bacteria having developed resistance to all approved antibacterial agents there is a growing need for innovative solutions.

K. Pitts 1 1 0

    http://files.constantcontact.com/27b12914101/25021cfe-35f6-4b90-9eb4-feb014aa19f3.pdf
    Background: SASP is a unique antibacterial protein that halts DNA replication and gene expression. Found in bacterial spores, SASP binds to bacterial DNA in a non-sequence specific manner, making resistance extremely unlikely, and rapidly kills ... SASP gene delivery: A novel antibacterial approach. Drug News Perspectives 22(4): 197 2.

Heather Fairhead Demonstrating a Low Propensity for ...

    http://www.phicotx.co.uk/wp-content/uploads/2014/12/F1550.pdf
    Background: Phico’sSASPject technology uses a synthetic biology approach to create nano-delivery vehicles (NDV), capable of delivering a SASP gene expression system to target bacteria. For novel antibacterials to be successful it is critical that they demonstrate a low propensity for the development of resistance. The unique

Recent advances in therapeutic delivery systems of ...

    https://www.future-science.com/doi/10.4155/tde-2017-0040
    Recent advances in therapeutic delivery systems of bacteriophage and bacteriophage-encoded endolysins. ... SASP gene delivery: a novel antibacterial approach. ... a novel approach to enhance phage biodistribution. J. Virol. Methods 236, ...Author: Hollie Hathaway, Scarlet Milo, J Mark Sutton, Toby A Jenkins

Alternatives to antibiotics—a pipeline portfolio review ...

    https://www.thelancet.com/journals/laninf/article/PIIS1473-3099(15)00466-1/fulltext
    Feb 01, 2016 · A broader approach to address bacterial infection is needed. In this Review, we discuss alternatives to antibiotics, which we defined as non-compound approaches (products other than classic antibacterial agents) that target bacteria or any approaches that target the host. ... SASP gene delivery: a novel antibacterial approach. Drug News ...Author: Lloyd Czaplewski, Richard Bax, Martha Clokie, Mike Dawson, Heather Fairhead, Vincent A Fischetti, Si...

SASPject: Microbiological Characterisation of a Novel ...

    http://www.phicotx.co.uk/wp-content/uploads/2014/12/F1548.pdf
    SASP binding is DNA sequence-independent and thus mutations have no impact upon SASP activity. Phico’sSASPject technology uses a synthetic biology approach to create nano-delivery vehicles (NDV), capable of delivering a SASP gene expression system to target bacteria. SASP production in situ in target cells is rapidly bactericidal.

Heather FAIRHEAD Phico Therapeutics Limited, Cambridge

    https://www.researchgate.net/profile/Heather_Fairhead2
    SASP gene delivery: A novel antibacterial approach. ... A Novel Antibacterial Protein which Shows Rapid Bactericidal Activity Against MRSA in the Presence of Other Antibiotics ... SASP: A Novel ...

Novel approaches to discovery of antibacterial agents.

    https://www.ncbi.nlm.nih.gov/pubmed/19006597
    To combat resistance, the development of new treatment options is required. Recent advances in technology have aided in the discovery of novel antibacterial agents, specifically through genome mining for novel natural product biosynthetic gene clusters and improved small molecule high-throughput screening methods.Author: Patricia L. Taylor, Gerard D. Wright

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