Bromantane 90 mg/ml – solution 20ml

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Description
Research Compound

Bromantane 90 mg/ml – solution 20 ml

Research-grade solution supplied in a glass bottle. Bromantane, also known as Ladasten and chemically identified as N-(4-bromophenyl)adamantan-2-amine, is an adamantane-derived compound investigated in controlled laboratory settings for its role in dopaminergic transmission, neuroplasticity, mitochondrial bioenergetics, and stress or fatigue response models.

Research Use Only
This product is intended strictly for laboratory and scientific investigation. Not for human consumption, therapeutic use, or veterinary application.

Specifications

Purity
High purity; third-party tested (COA/HPLC)
Form
Solution
Content
90 mg/ml Bromantane; 20 ml per bottle (total 1,800 mg per bottle)
Packaging
20 ml glass bottle with secure cap
Storage
Store at 2–8 °C, protected from light. Do not freeze unless specified by laboratory SOP
Molecular Formula
C16H20BrN
Molecular Weight
≈ 306.25 g·mol⁻¹
IUPAC Name
N-(4-bromophenyl)adamantan-2-amine
CAS Number
87913-26-6

Research Overview

Bromantane is used as a laboratory tool compound to investigate dopaminergic signaling, psychostimulant-like activity without classical monoamine release, neuroplasticity markers, and stress or fatigue response pathways. In experimental systems, research often evaluates DAT and tyrosine hydroxylase regulation, synaptic plasticity markers, mitochondrial function, and cellular bioenergetics under controlled conditions. No therapeutic or clinical claims are made or implied.

Primary Research Areas

Dopaminergic Signaling
Experimental work focused on DAT regulation, tyrosine hydroxylase expression, and downstream transcriptional pathways related to dopaminergic activity.
Neuroplasticity & Synaptogenesis
Studies examining synaptic protein markers, spine-density related endpoints, neuronal adaptation, and broader neuroplasticity responses.
Stress & Fatigue Response Models
Controlled paradigms investigating behavioral and biochemical endpoints related to stress adaptation, workload tolerance, and fatigue-associated responses.
Mitochondrial Bioenergetics
Laboratory studies probing cellular respiration, membrane potential, mitochondrial efficiency, and energy metabolism under controlled research conditions.
Laboratory handling note:
Store research solutions refrigerated, protected from light, and tightly closed to help maintain stability during laboratory use.
Additional information
Weight0,2 kg