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Tesofensine | 500mcg (60ct)

Tesofensine | 500mcg (60ct)

Regular price $119.00
Regular price $119.00 Sale price
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check_circle Neurotransmitter Modulation

check_circle Guaranteed >99% Purity

check_circle Precise 500mcg Dosing

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Research Disclaimer: Not for human or Veterinary Consumption

Tesofensine | 500mcg (60ct)

Tesofensine | 500mcg (60ct)

Regular price $119.00
Regular price $119.00 Sale price
SAVE Sold out

Description

Metabolism. Efficiency. Purity.

VitraNova Research introduces Tesofensine Core, a high-precision formulation of this triple monoamine reuptake inhibitor. Researched for its potential impact on neurotransmitter modulation and metabolic processes, our Tesofensine is synthesized to the highest analytical standards.

Each bottle contains 60 individual units, each dosed at 500mcg, providing a consistent and scalable medium for longitudinal research studies.

  1. Purity Verified: Validated >99% purity for accurate data collection.
  2. Precise Format: 60 count bottle with 500mcg per unit.
  3. Lab Standard: Formulated strictly for research use only.
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Specifications

Product Name: Tesofensine Core

Net Content: 500 mcg per unit (60 count)

Compound Type: Triple monoamine reuptake inhibitor

Purity: >99% (analytically verified)

Form: Precisely dosed solid units

Grade: Research use only

Potency: 500 mcg per unit for consistent experimental control

Packaging: Secure, sealed research-grade container

Stability: Optimized for long-term storage integrity

Intended Use: Neurotransmitter modulation and metabolic research applications

Storage: Store in a cool, dry place away from light

Compliance: Not for human or veterinary consumption

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Targeting Triple Monoamine Reuptake Pathways

VitraNova Research offers Tesofensine Core as a premier reagent for investigating the modulation of synaptic transmission. By inhibiting the reuptake of dopamine, serotonin, and norepinephrine, this compound allows researchers to explore complex interactions between neurotransmitter levels and metabolic rates. Our synthesis maximizes the compound's affinity and stability, providing a reliable tool for studying the central nervous system's role in energy expenditure, appetite regulation, and thermogenic processes without the noise of chemical impurities.