Tirasemtiv CAS 1005491-05-3
Fast Skeletal Muscle Troponin Activator (FSTA)
Tirasemtiv (CK-2017357, CK-357) is the first-in-class fast skeletal muscle troponin activator - a calcium sensitizer that binds the fast skeletal troponin complex (Kd ≈ 40 nM) and slows calcium release from troponin C. The result is amplified force generation at submaximal calcium concentrations, so muscle produces more force for the same neural input. This mechanism made tirasemtiv a landmark research tool for amyotrophic lateral sclerosis (ALS), myasthenia gravis, sarcopenia and other neuromuscular conditions where motor neuron drive to muscle is compromised.
Molecular Information
CAS: 1005491-05-3
Formula: C12H14N4O
MW: 230.27 g/mol
SMILES: O=C1N(C(CC)CC)C2=NC(C#C)
=CN=C2N1
InChIKey: RSQGZEAXODVTOL
-UHFFFAOYSA-N
Purity: ≥98% (HPLC)
Appearance: White to off-white powder
Solubility: DMSO (≥30 mg/mL); ethanol
Synonyms: CK-2017357 / CK-357 /
Troponin Activator
Storage: -20°C, sealed, dry, dark
Tirasemtiv Technical Specifications & Quality Control Parameters
Complete physicochemical properties and QC release data for research-grade tirasemtiv (CK-2017357, CAS 1005491-05-3)
📋 Physicochemical Properties
- Product NameTirasemtiv
- IUPAC Name6-Ethynyl-1-(pentan-3-yl)-1,3-dihydro-2H-imidazo[4,5-b]pyrazin-2-one
- Alternative Name1-(1-Ethylpropyl)-6-ethynyl-1,3-dihydro-2H-imidazo[4,5-b]pyrazin-2-one
- CAS Number1005491-05-3
- Code NamesCK-2017357 / CK-357
- Molecular FormulaC12H14N4O
- Molecular Weight230.27 g/mol
- SMILESO=C1N(C(CC)CC)C2=NC(C#C)=CN=C2N1
- InChI1S/C12H14N4O/c1-4-8-7-13-10-11(14-8)16(12(17)15-10)9(5-2)6-3/h1,7,9H,5-6H2,2-3H3,(H,13,15,17)
- InChIKeyRSQGZEAXODVTOL-UHFFFAOYSA-N
- AppearanceWhite to off-white (to grey) crystalline powder
- UV lambda-max258 nm, 330 nm
- Chemical ClassImidazo[4,5-b]pyrazin-2-one; terminal alkyne
- OriginatorCytokinetics (partnered with Astellas)
🔬 Quality Control & Handling
- Purity (HPLC)≥98%
- FormCrystalline powder
- Identity1H-NMR / 13C-NMR / LC-MS conforming
- Water Content (KF)≤0.5%
- Residual SolventsMeets ICH Q3C limits
- Storage Condition-20°C, sealed, protect from light and moisture
- Solution Storage-80°C 2 years / -20°C 1 year in DMSO
- SolubilityDMSO ≥30 mg/mL (up to ~46 mg/mL); ethanol ~30-46 mg/mL; DMF 30 mg/mL; water insoluble
- In Vivo Vehicle10% DMSO / 40% PEG300 / 5% Tween-80 / 45% saline
- QC DocumentationCOA / HPLC / NMR / MS / MSDS
- Pack Sizes1g / 5g / 10g / 100g / 1KG
- Stock StatusIn Stock
- Use StatementResearch use only; not for human or veterinary use
Molecular Target: The Fast Skeletal Muscle Troponin Complex
Tirasemtiv is remarkably selective for the fast (type II) skeletal troponin complex, sparing slow skeletal and cardiac muscle - the basis of its clean pharmacological profile in muscle biology research
How Tirasemtiv Works: Calcium Sensitization of the Sarcomere
Rather than increasing neural drive or calcium release, tirasemtiv makes the existing calcium signal work harder - a fundamentally different therapeutic strategy for neuromuscular weakness
1. Selective Binding to Fast Troponin
Tirasemtiv binds the purified fast skeletal troponin complex with a Kd of approximately 40 nM, versus roughly 3,800 nM for slow skeletal troponin, and does not activate cardiac troponin. This ~100-fold selectivity means the compound acts on type II (fast-twitch) fibres - exactly those preferentially lost in ALS, sarcopenia and disuse atrophy - without cardiac inotropic effects.
2. Slowed Calcium Dissociation
Binding to the troponin C-troponin I interface stabilises the calcium-bound conformation of troponin C and slows the rate of Ca2+ release from the regulatory complex. Calcium therefore remains bound longer during each twitch, prolonging the window in which the thin filament is switched on.
3. Leftward Shift of the Force-Calcium Curve
In skinned human and rabbit fast skeletal fibres, tirasemtiv shifts the force-pCa relationship leftward in a concentration-dependent manner. Submaximal calcium concentrations - the physiological range during ordinary contraction - now generate substantially more force, while maximal force is unchanged.
4. Amplified Response to Neural Input
Because the sarcomere is more calcium-responsive, each motor neuron action potential produces greater muscle force. In neuromuscular disease where motor units are lost or transmission fails, the surviving neural input is effectively amplified - increased force and reduced fatigue without full tetanic activation.
5. Functional and Preclinical Readouts
Tirasemtiv increases in situ extensor digitorum longus (EDL) force and forelimb grip strength in a rat model of myasthenia gravis, and improves grip strength, grid-hang and rotarod performance in the B6SJL-SOD1(G93A) ALS mouse at 10 mg/kg (Hwee et al., PLoS One 2014). It also increases isolated myofibrillar ATPase activity with an EC50 of ~390 nM.
6. Translational Endpoints
In human studies tirasemtiv increased slow vital capacity (SVC) and muscle function measures in ALS. Dose-limiting dizziness and nausea attributable to central nervous system exposure limited tolerability, which directly motivated development of the next-generation FSTA reldesemtiv (CK-2127107) with reduced CNS penetration.
Research Applications of Tirasemtiv in Muscle and Neuromuscular Biology
A selective chemical probe for dissecting sarcomere calcium sensitivity, muscle force generation and fatigue across disease models
Amyotrophic Lateral Sclerosis (ALS)
The flagship application. Tirasemtiv improves muscle function in the B6SJL-SOD1(G93A) ALS mouse model and increased slow vital capacity in human ALS trials (BENEFIT-ALS, VITALITY-ALS). It remains the reference FSTA for studying how sarcomere-level pharmacology can compensate for motor neuron loss.
ALS / Motor NeuronMyasthenia Gravis & NMJ Transmission
In rat models of myasthenia gravis, tirasemtiv increases in situ EDL force and forelimb grip strength by amplifying the reduced endplate signal reaching the muscle. A clinical single-dose crossover study in AChR-antibody-positive myasthenia gravis was reported by Sanders et al. (Neurotherapeutics 2015).
Neuromuscular JunctionSarcopenia & Age-Related Muscle Weakness
Fast-twitch type II fibres are preferentially lost with ageing, making the fast troponin complex a rational target. Tirasemtiv is used to test whether calcium sensitization can restore functional strength and mobility endpoints in aged and disuse-atrophy models.
Ageing MuscleSkeletal Muscle Physiology & Force Mechanics
Skinned-fibre force-pCa protocols, myofibrillar ATPase assays and single-twitch/tetanus analyses with tirasemtiv define how troponin C calcium affinity governs contractile output - a core tool in sarcomere biophysics.
Muscle BiophysicsMuscle Fatigue & Exercise Performance
By increasing force at submaximal calcium, tirasemtiv delays the decline in force during repetitive stimulation. It is used to interrogate excitation-contraction coupling failure and central versus peripheral contributions to fatigue.
Fatigue ResearchSpinal Muscular Atrophy & Peripheral Neuropathy
Any condition in which neural drive to muscle is reduced is a candidate for FSTA pharmacology. Tirasemtiv is applied in SMA, Charcot-Marie-Tooth and post-polio model systems to test force amplification independent of neuronal rescue.
Neuromuscular DiseaseRespiratory Muscle Function
Diaphragm and accessory respiratory muscles are predominantly fast-twitch. Tirasemtiv is used in diaphragm strip preparations and ventilatory-endpoint studies, reflecting the slow-vital-capacity signal observed in human ALS studies.
Respiratory MuscleClick Chemistry & Chemical Probe Design
Tirasemtiv carries a terminal alkyne and can undergo copper-catalysed azide-alkyne cycloaddition (CuAAC), enabling construction of tagged troponin probes for target engagement, pull-down and imaging studies.
Chemical BiologyMetabolite Identification & Doping Control
Human metabolites of tirasemtiv and reldesemtiv have been characterised for anti-doping screening (Drug Testing and Analysis 2025), making tirasemtiv a reference material for LC-MS/MS method development in sports drug testing laboratories.
Analytical ReferenceKey Publications on Tirasemtiv and Fast Skeletal Troponin Activation
Foundational mechanism papers and clinical trial reports defining the fast skeletal muscle troponin activator (FSTA) class
| Authors & Title | Journal | Year | DOI / PMID |
|---|---|---|---|
| Russell AJ, Hartman JJ, Hinken AC, et al. Activation of fast skeletal muscle troponin as a potential therapeutic approach for treating neuromuscular diseases. | Nature Medicine | 2012 | 10.1038/nm.2618 |
| Shefner J, Cedarbaum JM, Cudkowicz ME, et al. Safety, tolerability and pharmacodynamics of a skeletal muscle activator in amyotrophic lateral sclerosis. | Amyotrophic Lateral Sclerosis | 2012 | 10.3109/17482968.2012.684214 |
| Hwee DT, Kennedy A, Ryans J, et al. Fast skeletal muscle troponin activator tirasemtiv increases muscle function and performance in the B6SJL-SOD1(G93A) ALS mouse model. | PLoS ONE | 2014 | 10.1371/journal.pone.0096921 |
| Sanders DB, Rosenfeld J, Dimachkie MM, et al. A double-blinded, randomized, placebo-controlled trial to evaluate efficacy, safety, and tolerability of single doses of tirasemtiv in patients with acetylcholine receptor-binding antibody-positive myasthenia gravis. | Neurotherapeutics | 2015 | 10.1007/s13311-015-0345-y |
| Shefner JM, Wolff AA, Meng L, et al. A randomized, placebo-controlled, double-blind phase IIb trial evaluating the safety and efficacy of tirasemtiv in patients with amyotrophic lateral sclerosis (BENEFIT-ALS). | Amyotrophic Lateral Sclerosis and Frontotemporal Degeneration | 2016 | 10.3109/21678421.2016.1148169 |
| Shefner JM, Cudkowicz ME, Hardiman O, et al. A phase III trial of tirasemtiv as a potential treatment for amyotrophic lateral sclerosis (VITALITY-ALS). | Amyotrophic Lateral Sclerosis and Frontotemporal Degeneration | 2019 | 10.1080/21678421.2019.1612922 |
Available Pack Sizes & Ordering
Research-grade tirasemtiv (CK-2017357, CAS 1005491-05-3) with full QC documentation - from 1 g analytical packs to 1 KG industrial batches
Pack sizes: 1 g / 5 g / 10 g / 100 g / 1 KG
| Tier | Pack Size | Stock Status | Suitable For | Shipping & Lead Time |
|---|---|---|---|---|
| Standard | 1 g | In Stock | Skinned-fibre force-pCa assays, myofibrillar ATPase, in vitro troponin binding | Same/next-day dispatch, ambient with ice pack |
| Medium | 5 g | In Stock | Rodent grip strength, rotarod and in situ EDL force studies | Same/next-day dispatch, ambient with ice pack |
| Large | 10 g | In Stock | Multi-cohort SOD1(G93A) ALS mouse programmes, chronic dosing | Same/next-day dispatch, double-bagged foil pouch |
| Bulk | 100 g | In Stock | Large-animal studies, formulation and toxicology package preparation | 2-5 business days, drum/foil pack, quote to confirm |
| Industrial | 1 KG | Made to order | Pilot/production scale supply, CDMO and contract manufacturing programmes | Batch delivery, quote to confirm lead time |
💡 Reference sizes shown above; for exact pricing and availability please contact us for a quote. Bulk orders qualify for tiered discounts.
Frequently Asked Questions (FAQ)
Common questions about tirasemtiv mechanism, FSTA class comparisons, ALS data and laboratory handling
What is Tirasemtiv (CK-2017357, CAS 1005491-05-3)?
How exactly does tirasemtiv activate troponin?
How does tirasemtiv compare with reldesemtiv (CK-2127107)?
Why is tirasemtiv selective for fast-twitch muscle?
What happened in the tirasemtiv ALS clinical trials?
Is tirasemtiv useful in myasthenia gravis research?
Can tirasemtiv be used as a click chemistry reagent?
How should tirasemtiv be dissolved and stored?
What in vivo doses are typically used in ALS mouse models?
What documentation and pack sizes are available?
Need Research-Grade Tirasemtiv for Your Muscle Biology Programme?
Tirasemtiv (CK-2017357, CAS 1005491-05-3) - fast skeletal troponin activator, C12H14N4O, MW 230.27, ≥98% HPLC with COA
Available in 1g / 5g / 10g / 100g / 1KG - request your quote today




