grant

(PQ11) Immune modulatory effects of white button mushroom in prostate cancer - A translational research

Organization BECKMAN RESEARCH INSTITUTE/CITY OF HOPELocation DUARTE, UNITED STATESPosted 1 Sept 2019Deadline 31 Aug 2026
NIHUS FederalResearch GrantFY2023AddressAffectAndrogen ReceptorAnti-InflammatoriesAnti-Inflammatory AgentsAnti-inflammatoryAntiinflammatoriesAntiinflammatory AgentsAttenuatedBiochemicalBiologicalBiopsyBlood SampleBlood specimenBody TissuesCancer CauseCancer Cell GrowthCancer DetectionCancer EtiologyCancer PatientCancer TreatmentCancersCell BodyCellsCellular Immune FunctionCessation of lifeClinical ResearchClinical StudyClinical TrialsConsumptionCorrelative StudyDeathDietary InterventionDose LimitingEC 3.4.21.34Early-Stage Clinical TrialsEffectivenessEligibilityEligibility DeterminationEndocrine Gland SecretionExhibitsFeedbackFutureGenesHepatic Proliferation InhibitorHormonesHumanIL-15IL15IL15 ProteinImmuneImmune responseImmunesImmunological responseImmunomodulationImmunosuppressionImmunosuppression EffectImmunosuppressive EffectIn complete remissionIncidenceInfiltrationInflammation MediatorsIntakeInterleukin-15Interleukin-15 PrecursorKallikrein 3Knock-outKnockoutL arginine amidinohydrolaseLiver Immunoregulatory ProteinLiver-Derived Inhibitory ProteinLocalized DiseaseMGC9721Malignant Neoplasm TherapyMalignant Neoplasm TreatmentMalignant NeoplasmsMalignant TumorMalignant Tumor of the ProstateMalignant neoplasm of prostateMalignant prostatic tumorMediatingMiceMice MammalsModern ManMolecularMurineMusMyeloid-derived suppressor cellsNutrition InterventionsNutritional InterventionsOutcomeP-30 AntigenPSA levelPatientsPhasePhase 1 Clinical TrialsPhase 2 Clinical TrialsPhase I Clinical TrialsPhase I StudyPhase II Clinical TrialsPlasma Kallikrein PrecursorPlasma PrekallikreinPolyamine CompoundPolyaminesPopulationProstate CAProstate CancerProstate NeoplasmsProstate Specific Antigen PreproproteinProstate TumorProstate malignancyProstate-Specific AntigenProstatectomyProstatic CancerProstatic NeoplasiaProstatic NeoplasmsProstatovesiculectomyProtocol ScreeningRadiationRadical ProstatectomyRandomizedRecurrenceRecurrentRecurrent diseaseRegimenRelapsed DiseaseRiskScreening for Prostate CancerSemenogelaseSemininTestingTherapeutic HormoneTissuesToxic effectToxicitiesTransgenic MiceTranslational ResearchTranslational ScienceTreatment ProtocolsTreatment RegimenTreatment ScheduleTumor-infiltrating immune cellsWorkaged populationaging populationandrogen ablation therapyandrogen blockade therapyandrogen deprivation therapyandrogen deprivation treatmentanti-cancer therapyanti-tumor effectanticancer therapyantiinflammatoryantitumor effectarginasearginine amidinasearmattenuateattenuatesbiologiccanavanasecancer therapycancer typecancer-directed therapycohortcomplete responsedetect prostate cancerdiet interventiondietaryexperienceexperimentexperimental researchexperimental studyexperimentsgamma-SeminoproteinhK3 Kallikreinhost responseimmune cell infiltration of tumorsimmune cells infiltrating the tumorimmune cells that infiltrate the tumorimmune functionimmune modulationimmune regulationimmune suppressionimmune suppressive activityimmune suppressive functionimmune system responseimmunologic reactivity controlimmunomodulatoryimmunoregulationimmunoregulatoryimmunoresponseimmunosuppressive activityimmunosuppressive functionimmunosuppressive myeloid cellsimmunosuppressive responseimprovedinfiltration of tumors by immune cellsinflammatory mediatorintratumoral immune cellintratumoral immune infiltratemalignancymenmyeloid suppressor cellsmyeloid-derived suppressive cellsneoplasm/cancernovelpartial responsepatient populationpatient profilepatient responsepatient specific responsephase 1 studyphase 2 trialphase I protocolphase II protocolphase II trialpopulation agingpre-clinicalpre-clinical studypreclinicalpreclinical studyprofiles in patientsprostate cancer cellprostate cancer detectionprostate cancer early detectionprostate cancer modelprostate cancer progressionprostate specific antigen levelprostate tumor cellprostate tumor modelrandomisationrandomizationrandomly assignedresponseresponsive patientside effectstudy populationsuppressive myeloid cellstranslation researchtranslational investigationtumortumor immune celltumor immune infiltratetumor infiltration of immune cells
Sign up free to applyApply link · pipeline · email alerts
— or —

Get email alerts for similar roles

Weekly digest · no password needed · unsubscribe any time

Full Description

Project Summary
Prostate cancer is the most common cancer and the second leading cause of cancer-related deaths in men.

Given the increasing proportion of the aging population and common application of prostate cancer screening,

the incidence of prostate cancer has increased over the last two decades and detection of cancer at early

phases is more common. Accumulating evidence from clinical and preclinical studies demonstrates that white

button mushroom (WBM) has beneficial effects on prostate cancer. Therefore, we propose a transdisciplinary

approach to address Provocative Question 11: Through what mechanisms do diet and nutritional

interventions affect the response to cancer treatment? Specifically, we will determine the mechanisms through

which consumption of WBM leads to reduction of prostate-specific antigen (PSA) levels in biochemically

recurrent prostate cancer (BRPC) patients and those who are therapy naïve, favorable risk, and under active

surveillance. Our previous Phase 1 study of WBM demonstrated biological activity and a low toxicity profile in

BRPC patients. Results showed that 36% of the study population had some decline in PSA levels after ~3

months of WBM treatment and no dose limiting toxicities were observed. Our analysis of trial blood samples

suggested potential mechanisms of action; complete response patients had significantly higher levels of IL-15,

and most patients exhibited therapy-associated declines in myeloid-derived suppressor cells (MDSCs) after

therapy. Our preliminary studies and the work of others further suggest that WBM inhibits arginase activity.

Because MDSCs exert an immunosuppressive activity through release of arginase, this suggests a possible

mechanism through which WBM may affect immune function. In addition, inhibition of arginase by WBM can

lead to decreased polyamine levels, which in turn decreases expression of the androgen receptor (AR) and

AR-regulated genes such as PSA, suggesting an additional mechanism through which WBM may act. Based

on these findings, we hypothesize that the progression of prostate cancer may be attenuated by inhibiting

MDSCs and modulating other immune functions through WBM consumption. We propose three specific aims

to test this hypothesis: 1. To examine the PSA suppressing effect of WBM in patients with BRPC and who are

therapy naïve, favorable risk, and under active surveillance through a Phase 2 clinical trial. 2. To determine the

direct and immune-mediated antitumor effects of WBM in blood specimens and biopsy tissue from prostate

cancer patients. We will also assess the levels of IL-15 and correlate to WBM response in our proposed Phase

2 trial. 3. To define the cellular and molecular mechanisms underlying WBM effects on the tumor-associated

immune cell populations in preclinical syngeneic prostate tumor models, including IL-15 knockout and

transgenic mice for determining the effect of IL-15 on WBM-mediated immune modulations. Collectively, we

expect the proposed studies to lead to new dietary regimens and other approaches to reduce or mitigate the

progression of prostate cancer or improve the efficacy of androgen deprivation therapy.

Grant Number: 5R01CA227230-05
NIH Institute/Center: NIH

Principal Investigator: Shiuan Chen

Sign up free to get the apply link, save to pipeline, and set email alerts.

Sign up free →

Agency Plan

7-day free trial

Unlock procurement & grants

Upgrade to access active tenders from World Bank, UNDP, ADB and more — with email alerts and pipeline tracking.

$29.99 / month

  • 🔔Email alerts for new matching tenders
  • 🗂️Track tenders in your pipeline
  • 💰Filter by contract value
  • 📥Export results to CSV
  • 📌Save searches with one click
Start 7-day free trial →