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Discovering New Anthelmintic Drug Combinations for Microscale Whole Animals

Version 3 2023-03-18, 02:12
Version 2 2023-03-18, 01:16
Version 1 2023-01-16, 00:15
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posted on 2023-03-18, 02:12 authored by Santosh PandeySantosh Pandey

 Infections from parasitic nematodes (or roundworms) contribute to a significant disease burden and productivity losses for humans and livestock. The limited number of anthelmintics (or antinematode drugs) available today to treat these infections are rapidly losing their efficacy as multidrug resistance in parasites becomes a global health challenge. We propose an engineering approach to discover an anthelmintic drug combination that is more potent at killing wild-type Caenorhabditis elegans worms than four individual drugs. In the experiment, freely swimming single worms are enclosed in microfluidic drug environments to assess the centroid velocity and track curvature of worm movements. After analyzing the behavioral data in every iteration, the feedback system control (FSC) scheme is used to predict new drug combinations to test. Through a differential evolutionary search, the winning drug combination is reached that produces minimal centroid velocity and high track curvature, while requiring each drug in less than their EC50 concentrations. The FSC approach is model-less and does not need any information on the drug pharmacology, signaling pathways, or animal biology. Toward combating multidrug resistance, the method presented here is applicable to the discovery of new potent combinations of available anthelmintics on C. elegans, parasitic nematodes, and other small model organisms. 

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    Keywords

    multi drug resistanceArtificial Intelligence (AI)machine Learning Predictionsdrug discovery applicationsdose response assayanthelmintics drug resistanceAnthelminthic drug efficacyDrug Discovery Schistosomiasisdrug delivery approachbill and melinda gateshealthcare antimicrobial userural medical practicerural medicineC. elegans killing modelsC. elegans, Caenorhabditis elegansNematode Caenorhabditis elegans Caenorhabditis elegansfeedback control techniquescomputer vision algorithmMachine vision.pyrantellevamisole-resistant Oesophagostomum dentatumlevamisole-mediatedtribendimidinemicro-arraymicrochipengineering approachparasite avoidanceWorld Health OrganizaitonThird WorldCombinatorial Approach High-throughput experimentscombinatorial drug designdrug chemistrywhole-animal studieswhole-animal electrophysiologynematode burdennematode chemoreceptorsundulatory swimmingImageJ Ops frameworkmechanisms of actionCombination therapiesFood and Drug Administration (FDA)-approved drugsefficacy and potential toxicitysynergistic effectelectrochemicalelectrochemistrybiochemistryAmerican Phytopathological Societyanti-ageinganti-aginglongevityanthelmintic efficacyanthelmintic efficiencyanti canceranimal-parasitic nematodeplant-parasitic nematodeSoil Microbes Alters Outcomessoil microorganismsoil microorganism diversityantifilarial drugsivermectin controlabamectinmethyridinelevamisolebeneficial nematodeendoparasitismEndoparasitebroad-spectrum anthelminticbiomarker analysisphenotypephenotypingautomated systemdrug interferencedroplet microfluidicsvirusesecologyedge AIcomparative toxicologycholesterollifespanlifespan on chipchemical screeningcomputer visioncomputer trackingdrug resistantgenome-wide predictionGlobodera spp.root knot nematodeMeloidogyne haplaMeloidogyne oleae spmeloidogyneHeterodera glycinesfield efficacy datatuberculosis therapymultidrug regimenelectrochemical analysisbehavioral assayScienceNaturehuman geneshistological analysisbiopsyhigh-throughput screeningchinese medicinenatural productAyurvedic TreatmentsAI/MLML/AIneuromodulationneurobiologymultimodal imagingmotion trackingmultiplexed sensingworm sortingsamplingwhole animal assaypreclinical drug discoverypreclinical drug designosmotic pumpingmathematical modelingcomputational modelingcultivarssmartphoen appsmart farmingstress responseroot-knot nematoderegenrative medicineregenerative medicinereal-time PCRSystematic reviewmeta-analysisliterature reviewliterature surveyfilariatransgenicfaecal egg count reduction testFECRTGABAgreenhousehand-eye coordinationlabel-free diagnosticsion channel screeningion-channeltransmembrane proteinholographyhologramsHookworm diseasesTapewormsynergistic drug pairsDrug Action in Combination TherapyRemdesivirangiostatic cancer treatment efficacyanticancer drug combinationsSynergistic and antagonistic drug interactionsRational Combination Therapycancer, HIV, and tuberculosis (TB)over-the-counter medications, herbs, vitamins and supplementsMechanism of Actionsmall molecule therapyCombinatorial nanococktailsDrug Combination in Cancer Treatmentcurative combination cancer therapyCombinatorial immunotherapy strategiesantihypertensive drug combinationComputational Pipeline for Rational Drug Combinationcombination cancer therapy platformCephalexin

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