A Novel Probiotic for the Treatment of Sjogren's Syndrome
A Novel Probiotic for the Treatment of Sjogren's Syndrome
批准号:
10253624
负责人:
Gary Fanger
金额:
$99.87万
依托单位:
依托单位国家:
美国
项目类别:
财政年份:
2021
资助国家:
美国
项目状态:
已结题
起止时间:
2021-05-12 至 2024-04-30
关键词:
AffectAnimal ModelAntigensArthritisArtificial SalivaAtrophicAutoimmuneAutoimmune DiseasesAutoimmunityBacteriaBacterial InfectionsBiological AssayBiological MarkersBiologyCell DeathCellsClinicalClinical ResearchClinical TrialsConnective TissueConsentContractsCyclic GMPDataDevelopmentDiabetes MellitusDiarrheaDiseaseDocumentationDoseDrug KineticsEnteralEpithelial CellsEquipmentExcipientsExperimental ModelsFiltrationFoodFreeze DryingFundingGenomeGoalsGrantHarvestHistocompatibility Antigens Class IIHomeostasisHumanHuman VolunteersI-antigenImmuneImmune mediated destructionImmunologicsImmunomodulatorsImmunosuppressive AgentsIndividualInfiltrationInflammatoryInfrastructureInvestmentsLabelLacrimal gland structureLactococcusLifeLubricantsLymphomaMediatingMedicalMethodsModelingMucous MembraneMusOcular ProsthesisOperonOralOral AdministrationPatientsPharmaceutical PreparationsPharmacodynamicsPharmacologic SubstancePhasePhase I Clinical TrialsPreparationProbioticsProceduresProcessProductionPropertyProteinsRecombinantsRegulatory T-LymphocyteReplacement TherapyResistanceRunningSafetySalivary GlandsSalmonellaScheduleSecureShipsSjogren&aposs SyndromeSmall Business Innovation Research GrantSpecificitySymptomsTestingTherapeuticTimeToxicologyUp-RegulationVaccinesWomanadaptive immune responsebasebody systemcapsulechronic autoimmune diseaseclinical candidateclinical developmentcolonization factor antigenscommercializationcostdesigndrug developmentdrug productionenterotoxigenic Escherichia colifirst-in-humangastrointestinalhigh efficiency particulate air filterimmunoregulationimprovedmeetingsmicrobiomemouse modelnoveloral tolerancepharmacokinetics and pharmacodynamicsphase 2 studypreventproduct developmentresearch clinical testingresponsescale uptreatment effectvaccine trialvector
中文摘要
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英文摘要
Project Summary
Our goal is to develop a novel, immunologically enhanced L. lactis probiotic-based therapeutic for the
treatment of Sjögren’s Syndrome (SjS). SjS is a progressive, chronic autoimmune disease characterized by
inflammatory cell infiltration of the salivary and lacrimal glands, resulting in acinar epithelial cell atrophy, cell
death, and loss of exocrine function 1-6. At least half of SjS patients develop extraglandular inflammatory
disease and have a wide range of systemic clinical manifestations that can affect any organ system, including
connective tissue, and 5-10% of patients develop life-threatening lymphoma 7, 8. SjS is a debilitating disease
affecting as many as 3.1 million individuals in the U.S. 9, 10, with women being nine times more likely to be
afflicted with SjS than men 5, 10, 11.
Treatment of SjS remains a significant unmet medical need. Current treatment relies on replacement therapies
such as artificial saliva and eye lubricants or immunosuppressive agents12, 13. Because of the multiple antigens
involved in this disease process, i.e., α-fodrin 14-17, ribonuclear protein Ro/SSA 14, 48, 49, La/SSB 14, 48, 49, and
M3R 18, 49, 50, oral tolerance methods become problematic. Thus, the capacity to stimulate regulatory cells
independent of knowing the antigen specificity for the disease poses as an attractive therapeutic approach.
Originally conceived as a human diarrheal vaccine, we found that colonization factor antigen I (CFA/I) from
human enterotoxigenic E. coli (ETEC) is effective at inducing auto-Ag-specific T regulatory cells when
administered orally as either a purified protein or delivered via a Salmonella or L. lactis bacterial delivery
system 19-21, 61. To avoid challenges associated with producing large quantities of CFA/I protein and improve the
mucosal pharmacokinetic (PK) and pharmacodynamic (PD) properties of CFA/I following oral administration,
we developed and characterized a vector-containing L. lactis-CFA/I expressing product (referred to as VTC-
CFA) and evaluated its efficacy in multiple autoimmune models. Indeed, VTC-CFA was effective at reducing
clinical symptoms in a SjS animal model, along with experimental models of RA, diabetes, and MS 22-24. Prior
Phase I and II SBIR funding has enabled us to effectively advance VTC-CFA towards clinical testing by
developing our clinical candidate that expresses CFA/I from a genome-integrated operon, validating non-
clinical biology, and completing upstream and downstream process development. As part of these efforts, we
held an FDA pre-IND meeting to finalize our IND-enabling plans and align our CMC/manufacturing strategy.
This application is designed to complete VTC-CFA IND enabling studies and file an IND with the FDA. The key
aims of this proposal are: 1) complete VTC-CFA GLP toxicology studies, 2) establish cGMP manufacturing
infrastructure, 3) perform cGMP manufacturing for drug substance, 4) Fill capsules under cGMP conditions for
drug product, and 5) file an IND with the FDA for VTC-CFA.
Successful commercialization of VTC-CFA will provide a profound medical advancement for treating SjS.
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