Pathogenic and protective roles of strain-specific P. acnes hyaluronidases in acne
Pathogenic and protective roles of strain-specific P. acnes hyaluronidases in acne
批准号:
10202434
负责人:
George Y Liu
金额:
$60.11万
依托单位国家:
美国
项目类别:
财政年份:
2019
资助国家:
美国
项目状态:
已结题
起止时间:
2019-07-18 至 2024-06-30
关键词:
AcneAcne VulgarisActive SitesAddressAdolescentAffectAnimal ModelAnti-Inflammatory AgentsBindingCicatrixClinicalCollectionCrystallizationDataDevelopmentDisaccharidesDiseaseEnzymesGenesGenomeGenomicsHealthHumanHyaluronanHyaluronidaseHydrolysisImmuneImmune responseImmunologicsIn VitroInflammationInflammatoryModelingMolecular ConformationMusMutationPathogenesisPathogenicityPathologicPatternPerceptionPlayPropertyPropionibacterium acnesPublishingReportingResearchRoleSebumSkinSkin colonizationStructureStructure-Activity RelationshipTLR2 geneTNFSF10 geneTestingTherapeuticVaccinesbasebiophysical techniquescytokineexperimental studyhuman diseaseimmunopathologyimprovedmicrobiomemouse modelmutantpreventskin disorder
中文摘要
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英文摘要
Abstract
Acne is an important skin disorder believed to be caused by skin commensal P. acnes, although how P. acnes
contributes to acne is unclear. We have identified two types of hyaluronidase enzymes, made by different
strains of P. acnes, that are either pro- or anti-inflammatory. Importantly, skin colonization by P. acnes strains
that encode the pro-inflammatory hyaluronidase is associated with development of acne, whereas colonization
with P. acnes strains that express the anti-inflammatory hyaluronidase is associated with healthy skin. In
preliminary experiments, we have shown that the pro- or anti-inflammatory property of the hyaluronidases is
related to the size of hyaluronan fragments generated by the enzymes. Therefore, we hypothesize that
hyaluronidases influence the acne-genic potential of P. acnes by degrading hyaluronan to different sizes. To
address our hypothesis, 1) we propose to investigate the structural basis of hyaluronan degradation by P.
acnes hyaluronidases, binding of hyaluronan fragments to TLR2/4 and host immune responses to the
hyaluronan fragments. 2) We propose to determine the contribution of both hyaluronidases to acne by testing
well characterized clinical strains of P. acnes and mutant strains of P. acnes that do not express hyaluronidase,
in a new mouse acne model. 3) We will also investigate hyaluronidase-based strategies for preventing or
treating acne.
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Pathogenic and protective roles of strain-specific P. acnes hyaluronidases in acne
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Pathogenic and protective roles of strain-specific P. acnes hyaluronidases in acne
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Pathogenic and protective roles of strain-specific P. acnes hyaluronidases in acne
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