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Experiment #00000136
Borneol-mediated membrane permeability can enhance the therapeutic delivery of plant-derived extracellular vesicles to deep-seated endometriotic lesions, bridging the gap between existing delivery enhancements for CNS ischemia and local anti-fibrotic treatments.
Borneol
_gates_from_borneol
Drug Delivery Systems
_gates_to_drug_delivery_systems
_gates_from_drug_delivery_systems
Extracellular Vesicles
_gates_to_extracellular_vesicles
_gates_from_extracellular_vesicles
Fibrosis
_gates_to_fibrosis
View Results
Experiment #00000134
Hypothesis: Intraperitoneal administration of a thermoresponsive hydrogel loaded with borneol-functionalized ginger derived extracellular vesicles (Moxibustion-Modified GDEVs) may provide a sustained, localized delivery to ovarian tumors, potentially enhancing deep tissue penetration and inducing apoptosis without systemic chemotoxicity.
Extracellular Vesicles
_gates_from_extracellular_vesicles
Nanocarriers
_gates_to_nanocarriers
Hydrogels
_gates_to_hydrogels
_gates_from_hydrogels
Delayed-Action Preparations
_gates_to_delayed_action_preparations
Borneol/GEVs
_gates_from_borneol_gevs
Enhanced Cellular Uptake
_gates_to_enhanced_cellular_uptake
_gates_from_enhanced_cellular_uptake
Apoptosis Induction
_gates_to_apoptosis_induction
_gates_from_apoptosis_induction
Drug-Related Side Effects and Adverse Reactions
_gates_to_drug_related_side_effects_and_adverse_reactions
+9 more
View Results
Experiment #00000131
Premise: Environmental metals, though present in many Amyotrophic Lateral Sclerosis anomalous clusters, are debated regarding causality within geographic epistemological data. Hypothesis: If plant derived extracellular vesicles (PDEVs) aerosolized with environmental metals, they could potentially bypass the blood brain barrier via the cribriform plate area. Given this potential method of delivery, environmental metals cannot be ruled out as causal in sporadic ALS until PDEV delivery of the metals is tested in wet lab experiments, but may potentially explain the confounding data.
Environmental Pollutants
_gates_from_environmental_pollutants
PDEV association
_gates_to_pdev_association
_gates_from_pdev_association
Nose-to-Brain Delivery
_gates_to_nose_to_brain_delivery
_gates_from_nose_to_brain_delivery
Brain Diseases
_gates_to_brain_diseases
View Results
Experiment #00000122
Differences and Similarities between Ginger Derived EVs and Ginseng Derived EVs, PubMed Literature, August 2026
Plants, Medicinal
_gates_from_plants__medicinal
Extracellular Vesicles
_gates_to_extracellular_vesicles
_gates_from_extracellular_vesicles
Immunomodulation
_gates_to_immunomodulation
Plant Extracts
_gates_from_plant_extracts
Macrophage Polarization
_gates_to_macrophage_polarization
Zingiber officinale
_gates_from_zingiber_officinale
Site-specific drug delivery
_gates_to_site_specific_drug_delivery
+5 more
View Results
Experiment #00000118
Environmental plant-derived extracellular vesicles (such as those from pollen or agricultural dust) may act as stealth vectors via nasal-olfactory pathways, potentially delivering environmental toxins or pathogenic RNAs that bypass the BBB and trigger neurodegenerative pathologies, such as Amyotrophic Lateral Sclerosis.
Olfactory Pathways
_gates_from_olfactory_pathways
Extracellular Vesicles
_gates_to_extracellular_vesicles
_gates_from_extracellular_vesicles
Biological Factors
_gates_to_biological_factors
_gates_from_biological_factors
Amyotrophic Lateral Sclerosis
_gates_to_amyotrophic_lateral_sclerosis
Environmental Pollutants
_gates_from_environmental_pollutants
PDEVs/Bacterial EVs
_gates_to_pdevs_bacterial_evs
_gates_from_pdevs_bacterial_evs
_gates_to_olfactory_pathways
Central Nervous System (Brain)
_gates_to_central_nervous_system__brain_
Neuroinflammatory Diseases
_gates_to_neuroinflammatory_diseases
Airborne Particulate Matter
_gates_from_airborne_particulate_matter
Blood-Brain Barrier
_gates_to_blood_brain_barrier
_gates_from_blood_brain_barrier
Neuroglia
_gates_to_neuroglia
_gates_from_neuroglia
Neurodegenerative Diseases
_gates_to_neurodegenerative_diseases
+20 more
View Results
Experiment #00000114
Biohack, Anti-Ebola Hypothesis 1: PDEV-to-macrophage siRNA targeting VP40 Load the plant vesicles with synthetic siRNAs designed to silence VP40 transcription directly inside the macrophage. Exploration of dietary, pharmacological, and repurposed solutions to achieve this.
PDEV isolation
_gates_from_pdev_isolation
RNA, Small Interfering
_gates_to_rna__small_interfering
_gates_from_rna__small_interfering
Macrophage Activation
_gates_to_macrophage_activation
_gates_from_macrophage_activation
Gene Silencing
_gates_to_gene_silencing
Hemorrhagic Fever, Ebola
_gates_from_hemorrhagic_fever__ebola
RNA Interference
_gates_to_rna_interference
_gates_from_rna_interference
Drug Delivery Systems
_gates_to_drug_delivery_systems
Bioengineering
_gates_from_bioengineering
+9 more
View Results
Experiment #00000113
COPD Related Alveoli and Lung Microbiome Axis Restoration Hypothesis: The use of 'pre-digested' (fermented) plant-based nutritional additives as a means to circumvent the bioavailability paradox in patients with gut dysbiosis, effectively using botanical matrices as drug-delivery vehicles. Nucleotide supplementation may enhance the ability of A. muciniphila to modulate gut mucosal barrier integrity in hyperuricemia patients. *Akkermansia* possesses unique enzymes (β-N-acetylhexosaminidases) that allow it to colonize the mucosal layer and participate in mucin degradation.
Fermentation
_gates_from_fermentation
Bioavailability
_gates_to_bioavailability
_gates_from_bioavailability
Homeostasis
_gates_to_homeostasis
Plant Preparations
_gates_from_plant_preparations
Probiotics
_gates_to_probiotics
Gastrointestinal Microbiome
_gates_from_gastrointestinal_microbiome
_gates_to_gastrointestinal_microbiome
Akkermansia muciniphila
_gates_from_akkermansia_muciniphila
Mucous Membrane
_gates_to_mucous_membrane
Metabolomics
_gates_from_metabolomics
Intestinal Mucosa
_gates_to_intestinal_mucosa
+12 more
View Results
Experiment #00000112
Exploration of fermentation of plant roots used as a gut-brain axis mediator to reduce microglia activation and inflammation.
Plant Roots
_gates_from_plant_roots
Fermentation
_gates_to_fermentation
_gates_from_fermentation
Gut-Brain Axis
_gates_to_gut_brain_axis
_gates_from_gut_brain_axis
Microglia
_gates_to_microglia
Glycosides
_gates_from_glycosides
Gut microbiota
_gates_to_gut_microbiota
_gates_from_gut_microbiota
Akkermansia muciniphila
_gates_to_akkermansia_muciniphila
_gates_from_akkermansia_muciniphila
Anti-Inflammatory Agents
_gates_to_anti_inflammatory_agents
Plant compounds
_gates_from_plant_compounds
Inflammation
_gates_to_inflammation
+14 more
View Results
Experiment #00000109
Clinically prescribed periodic "fasting" (caloric restriction), combined with dietary modification to include Omega-3 polyunsaturated fatty acids from fish and monounsaturated fats from olive oil, dietary fibers, and polyphenols from rich plant compounds may lower or balance toxic accumulated ceramides (like C16:0) via inhibition and metabolic processing in order to reduce organ aging and improve Circadian Efferocytosis Oscillation.
Caloric Restriction
_gates_from_caloric_restriction
Ceramides
_gates_to_ceramides
_gates_from_ceramides
Insulin Resistance
_gates_to_insulin_resistance
Efferocytosis
_gates_from_efferocytosis
Inflammation
_gates_to_inflammation
Circadian rhythm regulation
_gates_from_circadian_rhythm_regulation
Phagocytosis
_gates_to_phagocytosis
+5 more
View Results
Reference Abstract
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Source: PubMed
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