Bromantane

Bromantane

Bromantane

Bromantane

Bromantane (Ladasten) is an atypical synthetic adamantane derivative belonging to the novel actoprotector class of research compounds. It upregulates Tyrosine Hydroxylase (TH) gene expression to naturally support endogenous dopamine biosynthesis while simultaneously modulating GABAergic pathways. Modern Aminos supplies high-purity Bromantane in both liquid and standardized dry-fill capsules and aqueous suspension for advanced neuro-chemical laboratory screening.

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What is Bromantane Research Material?

Bromantane (known chemically as Ladasten, 2-(4-bromophenylamino)adamantane, or N-(2-adamantyl)-4-bromoaniline) is an atypical, non-depleting psychostimulant and anxiolytic belonging to the unique actoprotector chemical class. Developed in Russia as an adamantane derivative, Bromantane Research Material enhances cellular, neuronal, and synaptic resilience during heavy physiological exertion such as environmental and oxidative stress, hyperthermia, and cellular fatigue. Unlike conventional central nervous system stimulants that deplete neurotransmitters and cause neuronal and synaptic exhaustion, studies have shown that Bromantane increases endogenous catecholamine biosynthesis by upregulating key enzyme expression within dopaminergic pathways. Researchers investigate this compound in nootropic reference models for its dual ability to regulate glutamic expression while simultaneously improving anxiolytic cascades.

Chemical and Molecular Data

Compound Name Bromantane Research Material
Quantity / Formats Raw Reference Powder / Dry-Fill Capsules
Synonyms / Alt Names Ladasten, Bromantan, 2-(4-bromophenylamino)adamantane, N-(adamantan-2-yl)-4-bromoaniline
CAS# 87913-26-6
Chemical Formula C16H20BrN
Molecular Weight 306.24 g/mol
IUPAC Name N-(adamantan-2-yl)-4-bromoaniline
InChIKey FOVJWZMDUSXJNR-UHFFFAOYSA-N
SMILES Code C1C2CC3CC1CC(C2)C3NC4=CC=C(C=C4)Br

What are the Mechanisms of Action of Bromantane?

The biochemical pathways and cellular targets of Bromantane in nootropic research include:

  • Tyrosine Hydroxylase (TH) Gene Expression Upregulation: Research demonstrates that Bromantane Research Material stimulates mRNA transcription and protein synthesis of Tyrosine Hydroxylase (TH) and Aromatic L-Amino Acid Decarboxylase (AAAD) in striatal and hypothalamic neurons. By escalating the rate-limiting enzymatic step of dopamine synthesis, it elevates central dopamine pools naturally without inducing monoamine depletion.
  • GABAergic Neurotransmission Modulation: In addition to catecholamine stimulation, Bromantane modulates central GABAergic pathways. It increases GABA mediator expression and reduces GABA transporter activity under stress, producing an anxiolytic, anti-stress effect that neutralizes typical stimulant-induced agitation.
  • Actoprotective & Immunomodulatory Action: Studies indicate that Bromantane Research Material suppresses hyper-inflammatory cytokine production (e.g., IL-6) during heavy physiological exertion, preserving blood-brain barrier integrity, protecting central serotonin turnover, and maintaining cellular heat-shock protein responses under thermal stress.

What do Clinical & Preclinical Trials Show for Bromantane?

When evaluating research efficacy and published scientific literature for Bromantane (Ladasten):

  • Review of Actoprotective Mechanisms: Detailed pharmacological literature cataloged in PMC (PMC3762282) documents how Bromantane functions as a non-depleting psychostimulant. Research trials confirm that its unique upregulation of dopamine de novo synthesis treats asthenic disorders, increases neuronal and synaptic output, and improves capacity for physiological exertion without causing dependence, tolerance, or hyperthermia.
  • Analytical Profiling & Characterization: Analytical reference documentation maintained by the CFSRE NPS Discovery Program outlines the structural mass spectrometry, gas chromatography, and chemical identification parameters of Bromantane as an adamantane-class synthetic research agent.
  • Psychopharmacological Performance & Stress Resistance: Experimental behavioral studies published in Springer Psychopharmacology evaluated Bromantane’s dual spectrum of activity. Results demonstrated significant increases in the cellular, neuronal, and synaptic capacity for physiological exertion and spatial task navigation during extreme hypoxia and thermal stress, driven by simultaneous dopamine elevation and GABAergic stress buffering.

How does Bromantane compare to other compounds?

To evaluate functional spectrums, neurotransmitter mechanics, and stimulant vs. anxiolytic profiles, researchers compare Bromantane against alternative nootropics and central nervous system modulators available at Modern Aminos:

Compound / Product Primary Target & Class Core Mechanism of Action Research Profile & Focus
Bromantane Adamantane Actoprotector / Dopamine Synthesizer Upregulates Tyrosine Hydroxylase (TH) gene expression and modulates GABAergic tone Non-depleting nootropic providing sustained executive motivation, physiological exertion, and non-sedating anxiolysis
Phenylpiracetam Hydrazide Phenylated Racetam Hydrazide Derivative Inhibits dopamine transporter (DAT) reuptake and modulates nicotinic acetylcholine receptors Delivers rapid, potent acute neuronal arousal, hypothermia, and high-intensity cognitive stimulation
Noopept N-Phenylacetyl-L-prolylglycine Ethyl Ester (Dipeptide) Modulates AMPA / NDMA receptor sensitivity and upregulates central BDNF and NGF expression Focuses on rapid sensory processing, long-term potentiation, neuroprotection, and memory consolidation rather than direct dopamine synthesis
Sunifiram Ampakine / Piperazine Derivative Functions as a high-potency AMPA receptor positive allosteric modulator, triggering glutamate release Extremely potent cognitive enhancer engineered to accelerate synaptic transmission speed and neuronal pathway recall in advanced neural assays

Frequently Asked Questions (FAQs)

1. What is an “actoprotector” in Bromantane Research Material?

Actoprotectors are a specific class of synthetic compounds designed to increase physiological and neuronal capacity under severe environmental conditions (such as hypoxia, extreme temperatures, or physiological exertion) without increasing oxygen consumption or causing central nervous system exhaustion.

2. How does Bromantane increase dopamine without depleting central neurotransmitter stores?

Traditionally, neurostimulant compounds deplete monoamines or block neurotransmitter reuptake transporters, which leads to transmitter depletion. In contrast, Bromantane upregulates the genetic expression of Tyrosine Hydroxylase (TH)—the rate-limiting enzyme in dopamine biosynthesis—thereby increasing actual dopamine production capacity in neuronal and synaptic pathways.

3. Why does Bromantane exhibit anxiolytic properties alongside stimulation?

Alongside its dopaminergic actions, Bromantane enhances GABAergic neurotransmission by increasing GABA mediator expression and modulating GABA transporter dynamics. This dual action produces a balanced neuronal and synaptic state characterized by increased signaling capacity and anxiolytic properties.

4. What formats are available when researchers buy Bromantane at Modern Aminos?

Modern Aminos offers high-purity Bromantane in both liquid and standardized dry-fill capsule formats. Both formats provide consistent material purity for laboratory testing and behavioral screening models.

5. What are the proper storage and handling parameters for Bromantane?

Bromantane powder and capsules should be stored tightly sealed in a cool, dry environment (15°C to 25°C) away from direct sunlight, excess heat, and moisture. Under dry solid-state storage, Bromantane maintains complete chemical stability throughout its designated shelf life.

 

For laboratory and in vitro evaluation, researchers often choose to buy Bromantane from Modern Aminos in standardized Bromantane liquid or dry-fill Bromantane capsules. Pre-measured formats allow for precise analytical testing and dosage consistency across neuro-chemical and behavioral screening assays without requiring a specialized reconstitution solution.

The products offered by Modern Aminos are intended strictly for laboratory research purposes only and are sold exclusively to qualified professionals, institutions, and entities. These products are not for human consumption, veterinary use, or any other application involving living organisms, including but not limited to diagnostic, therapeutic, or recreational purposes.

By purchasing this product, you confirm that:

  • You are a qualified professional or entity with the necessary knowledge, training, and facilities to handle chemical reagents safely and appropriately.
  • You will use this product in full compliance with all applicable local, state, and federal laws and regulations.

Prohibited Uses

  • This product is not to be used as an active pharmaceutical ingredient (API) in compounding or manufacturing drugs for human or veterinary use.
  • It is strictly prohibited to use this product for administration to humans or animals under any circumstances.
  • Modern Aminos does not condone or permit the use of its products for the development, testing, or production of illegal substances.

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Modern Aminos does not claim that this product is approved by the U.S. Food and Drug Administration (FDA) for any purpose. The statements regarding this product have not been evaluated by the FDA. This product is not intended to diagnose, treat, cure, or prevent any disease.

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The buyer assumes full responsibility for ensuring the safe handling, storage, and use of this product. Modern Aminos is not liable for any damages, direct or indirect, resulting from improper handling, storage, or unauthorized use of this product. Furthermore, Modern Aminos reserves the right to refuse sales to any individual or entity suspected of misusing its products.

If you have questions about the safe and lawful use of this product, consult a qualified professional with expertise in laboratory research. By proceeding with this purchase, you agree to these terms and conditions.

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