0000000000873766

AUTHOR

Martina Blunder

0000-0002-0066-8217

showing 2 related works from this author

Chemical probes to potently and selectively inhibit endocannabinoid cellular reuptake

2017

The extracellular effects of the endocannabinoids anandamide and 2-arachidonoyl glycerol are terminated by enzymatic hydrolysis after crossing cellular membranes by facilitated diffusion. The lack of potent and selective inhibitors for endocannabinoid transport has prevented the molecular characterization of this process, thus hindering its biochemical investigation and pharmacological exploitation. Here, we report the design, chemical synthesis, and biological profiling of natural product-derived N-substituted 2,4-dodecadienamides as a selective endocannabinoid uptake inhibitor. The highly potent (IC50 = 10 nM) inhibitor N-(3,4-dimethoxyphenyl)ethyl amide (WOBE437) exerted pronounced canna…

0301 basic medicinePolyunsaturated Alkamidesmedicine.drug_classmedicine.medical_treatmentAnti-Inflammatory AgentsArachidonic AcidsPharmacologyDepolarization-induced suppression of inhibitionAnxiolyticGlyceridesReuptakeMice03 medical and health scienceschemistry.chemical_compoundCell Line TumorExtracellularmedicineAnimalsHumansReceptors Cannabinoid610 Medicine & healthMice Inbred BALB CMultidisciplinaryHydrolysismusculoskeletal neural and ocular physiologyCell MembraneBrainBiological TransportU937 CellsAnandamideMembrane transportEndocannabinoid systemMice Inbred C57BL030104 developmental biologynervous systemPNAS PlusAnti-Anxiety AgentschemistryBiophysics570 Life sciences; biologylipids (amino acids peptides and proteins)Cannabinoidpsychological phenomena and processesEndocannabinoidsProceedings of the National Academy of Sciences
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Network pharmacology of cancer: From understanding of complex interactomes to the design of multi-target specific therapeutics from nature

2015

Despite massive investments in drug research and development, the significant decline in the number of new drugs approved or translated to clinical use raises the question, whether single targeted drug discovery is the right approach. To combat complex systemic diseases that harbour robust biological networks such as cancer, single target intervention is proved to be ineffective. In such cases, network pharmacology approaches are highly useful, because they differ from conventional drug discovery by addressing the ability of drugs to target numerous proteins or networks involved in a disease. Pleiotropic natural products are one of the promising strategies due to their multi-targeting and d…

EpigenomicsProteomics0301 basic medicineDrugmedia_common.quotation_subjectSystems biologyGene regulatory networkSynthetic lethalityDiseaseComputational biologyBiologyPharmacology03 medical and health sciencesNeoplasmsDrug DiscoveryBiomarkers TumormedicineAnimalsHumansMetabolomicsGene Regulatory NetworksMolecular Targeted TherapyProtein Interaction Mapsmedia_commonPharmacologyPlants MedicinalDrug discoveryGene Expression ProfilingSystems BiologyCancermedicine.diseaseAntineoplastic Agents PhytogenicGene Expression Regulation Neoplastic030104 developmental biologyBiological networkPhytotherapySignal TransductionPharmacological Research
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