Opioids

Nortilidine

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Nortilidine is an opioid analgesic, a derivative of tilidine, with similar characteristics and effects on the body. This drug is a designer research substance, the opioid potency of Nortilidine is comparable to morphine.

(1R,2S)-nortilidine is an ethyl 2-(methylamino)-1-phenylcyclohex-3-ene-1-carboxylate that is ent-dextilidine in which one of the methyl groups attached to the nitrogen is replaced by hydrogen. ent-Dextilidine is metabolised to (1R,2S)-nortilidine by the liver. It has a role as a drug metabolite and a NMDA receptor antagonist. It is an enantiomer of a (1S,2R)-nortilidine.

Nortilidine is the major active metabolite of tilidine. It is formed from tilidine by demethylation in the liver. The racemate has opioid analgesic effects roughly equivalent in potency to that of morphine. The (1R,2S)-isomer has NMDA antagonist activity. The drug also acts as a dopamine reuptake inhibitor. The reversed-ester of nortilidine is also known, as is the corresponding analogue with the cyclohexene ring replaced by cyclopentane, which have almost identical properties to nortilidine.

 

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(+)-Nortilidine (CAS 37815-44-4): Procurement Baseline for Opioid Receptor Assays and Toxicological Workflows

(+)-Nortilidine is the primary, pharmacologically active N-demethylated metabolite of the opioid prodrug tilidine. In laboratory procurement, it is primarily sourced as an analytical reference standard for therapeutic drug monitoring and as a direct mu-opioid (MOP) receptor agonist for in vitro screening. Unlike its parent compound, (+)-Nortilidine does not require hepatic activation, making it the required baseline material for cell-based receptor assays, pharmacokinetic drug-drug interaction (DDI) modeling, and forensic LC-MS/MS quantification workflows .

The Operational Cost of Substituting (+)-Nortilidine with Tilidine or Downstream Metabolites

Substituting (+)-Nortilidine with the parent prodrug tilidine in in vitro assays results in severe target under-quantification, as tilidine lacks direct MOP receptor activity without CYP3A4 and CYP2C19-mediated hepatic N-demethylation. Conversely, substitution with the secondary metabolite bisnortilidine fails because it lacks the necessary receptor binding affinity to model primary analgesic effects. Furthermore, utilizing racemic nortilidine instead of the enantiomerically pure (+)-Nortilidine introduces variable binding kinetics, compromising assay reproducibility in precise pharmacological profiling and forensic calibrations where absolute peak resolution is mandatory [1].

Quantitative Evidence for (+)-Nortilidine Selection in Analytical and Pharmacological Workflows

Direct MOP Receptor Binding Affinity in CYP-Deficient Assays

In cell-based assays lacking hepatic enzymes, the parent drug tilidine exhibits negligible direct receptor activity. Quantitative studies using CHO-K1 cells expressing human MOP receptors demonstrate that (+)-Nortilidine inhibits forskolin-induced cAMP accumulation with an IC50 of 110 nM, whereas tilidine requires a concentration of 11 µM to achieve the same effect [1].

Evidence Dimension MOP receptor cAMP accumulation inhibition (IC50)
Target Compound Data 110 nM
Comparator Or Baseline Tilidine (11 µM)
Quantified Difference 100-fold higher binding affinity
Conditions CHO-K1 cells stably expressing human MOP receptors

Procuring (+)-Nortilidine is mandatory for in vitro MOP receptor screening where the absence of CYP450 enzymes renders the prodrug tilidine functionally inert.

Analytical Differentiation from Terminal Metabolites in LC-MS/MS Workflows

For metabolic clearance tracking, (+)-Nortilidine must be distinguished from the terminal metabolite bisnortilidine. (+)-Nortilidine serves as the primary active marker, retaining full MOP agonism, whereas bisnortilidine exhibits significantly lower receptor affinity and represents the deactivation pathway. Using pure (+)-Nortilidine as a calibration standard allows for the precise quantification of CYP3A4-mediated N-demethylation rates (Vmax of 85 nmol/mg/h for tilidine conversion) without signal interference from downstream bisnortilidine formation [1].

Evidence Dimension CYP3A4/CYP2C19 metabolic tracking suitability
Target Compound Data Primary active marker (high MOP affinity)
Comparator Or Baseline Bisnortilidine (inactive terminal marker)
Quantified Difference Complete differentiation of activation vs. deactivation pathways
Conditions Liquid chromatography-tandem mass spectrometry (LC-MS/MS) of human liver microsomes

Ensures high-purity baseline calibration for therapeutic drug monitoring and drug-drug interaction (DDI) studies involving CYP3A4 inhibitors.

Purity-Linked Reproducibility in Forensic Matrix Calibrations

In forensic blood and serum analysis, crude biological extracts or racemic mixtures fail to provide the absolute quantification required for legal and clinical thresholds. Procuring high-purity (+)-Nortilidine enables baseline resolution in capillary gas chromatography and LC-MS/MS, allowing detection limits down to the low nanogram range (100-250 µL blood stains) while completely separating the (+)-Nortilidine peak from tilidine and bisnortilidine [1].

Evidence Dimension Chromatographic baseline resolution
Target Compound Data High-purity (+)-Nortilidine standard
Comparator Or Baseline Crude extracts / uncalibrated mixtures
Quantified Difference Unambiguous peak separation at low ng/mL concentrations
Conditions Capillary gas chromatography with nitrogen-phosphorus detection of dried blood stains

Provides the necessary analytical reproducibility and legal defensibility for forensic toxicology workflows.

Nortilidine

 

 

 

 

 

 

 

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