Target Solvent
0.9% Sterile Sodium Chloride Solution
Store refrigerated
Validated Laboratory Standard
Revision 1 · Lyophilized Solid Powder
High-Purity 100 IU Acetylcholine Neurotransmission Research Standard. Formulated for in-vitro research and laboratory analytical validation.
High-Purity 100 IU Acetylcholine Neurotransmission Research Standard. Formulated for in-vitro research and laboratory analytical validation.
Botulinum Toxin Type A (BoNT/A) is an ultra-pure 150 kDa dichain holoprotein neurotoxin produced by anaerobic fermentation of Clostridium botulinum (Hall strain). The active holoprotein consists of two distinct polypeptide subunits joined by a single critical disulfide bridge between Cys429 and Cys453: a 100 kDa Heavy Chain (HC) responsible for picomolar cell-surface recognition and endosomal pore formation, and a 50 kDa Light Chain (LC) functioning as an extraordinarily specific zinc-dependent metalloprotease. Stabilized as a vacuum-dried analytical standard containing 100 International Units (IU) of biological activity, BoNT/A is calibrated in mouse LD50 units (1 IU ≈ 40 pg pure neurotoxin) for precision laboratory research.
BoNT/A mediates a sequence of four discrete molecular events at peripheral cholinergic motor endplates: (1) High-affinity dual-receptor coordination: The C-terminal domain of the heavy chain binds polysialogangliosides (GT1b/GD1a) on the presynaptic neuronal membrane before binding synaptic vesicle protein 2 (SV2A/B/C isoforms) during vesicle recycling; (2) Clathrin-dependent endocytosis into synaptic vesicles; (3) pH-dependent membrane pore translocation: Acidification (pH 5.0–5.5) triggers a conformational switch in the N-terminal heavy chain domain, driving the 50 kDa light chain across the endosomal membrane into the cytosol; (4) Intracellular catalytic endopeptidase action: The zinc light chain selectively cleaves the 197-Gln—198-Arg peptide bond of Synaptosomal-Associated Protein 25 (SNAP-25). This truncates 9 amino acids from SNAP-25, preventing functional ternary SNARE complex assembly and arresting calcium-triggered exocytosis of acetylcholine vesicles.
Following localized micro-injection into target neuromuscular tissue, BoNT/A remains sequestered at the local injection site with negligible systemic vascular bioavailability. Unbound circulating toxin in plasma has a brief half-life (t1/2) of 30 to 120 minutes, cleared by hepatic Kupffer cells and splenic macrophages. Conversely, the internalized catalytic light chain within motor nerve terminals demonstrates remarkable cytoplasmic longevity, resisting proteasomal degradation and maintaining active SNARE inhibition for 3 to 6 months. Functional neuromuscular recovery progresses through two phases: collateral axonal sprouting forming functional accessory motor endplates at 4 to 8 weeks, followed by gradual ubiquitination of the light chain, clearance of cleaved SNAP-25, and restoration of original synaptic terminal transmission at 12 to 24 weeks.
BoNT/A serves as the global scientific reference standard for investigating synaptic vesicle trafficking, focal dystonias, autonomic sweat gland kinetics, and neuropathic pain transmission (via co-inhibition of Substance P and CGRP release in primary sensory neurons). Research handling must strictly comply with Biosafety Level 2 (BSL-2) biocontainment guidelines. Complete chemical decontamination and inactivation require exposure to freshly prepared 0.5% sodium hypochlorite (household bleach diluted 1:10) for 30 minutes or autoclaving at 121°C for 30 minutes. Strictly designated for In-Vitro Laboratory Research and Non-Clinical Analytical Investigation (RUO).
An Authoritative Monograph on the 150 kDa Dichain Holoprotein, Intracellular Light-Chain Zinc Metalloprotease Dynamics, and Neuromuscular Junction Challenge Models.
Botulinum Neurotoxin Type A is biosynthesized as an inactive 150 kDa single-chain precursor polypeptide by anaerobic culture of Clostridium botulinum (Hall strain). Post-translational proteolytic nicking by endogenous clostridial proteases or exogenous trypsin cleaves a specific peptide bond at residue 448, transforming the protoxin into its fully activated dichain form.
The activated holoprotein is composed of two distinct polypeptide subunits covalently joined by a single conserved interchain disulfide bridge between Cys429 and Cys453: a 100 kDa Heavy Chain (HC) responsible for target cell recognition and translocation, and a 50 kDa Light Chain (LC) containing the catalytic zinc metalloprotease consensus motif (HEXXH). Reference standards are stabilized with human serum albumin (HSA) or non-protein cryoprotectants to prevent surface glass adsorption and preserve bioactivity.
Cellular intoxication proceeds through an orchestrated multi-step molecular cascade at peripheral cholinergic nerve terminals. In Stage 1, the C-terminal domain of the heavy chain (HC) binds with high affinity to complex polysialogangliosides (GT1b and GD1a) embedded in the outer leaflet of the presynaptic unmyelinated membrane, concentrating the toxin at the active release zone.
In Stage 2, as synaptic vesicles undergo exocytosis and membrane recycling, the HC coordinates directly with the luminal domain of Synaptic Vesicle Protein 2 (SV2, with highest affinity for glycosylated SV2C and SV2A isoforms). This dual-receptor engagement triggers rapid clathrin-dependent endocytosis into acidic synaptic vesicles.
In Stage 3, endosomal acidification (pH 5.0–5.5) induces a major conformational shift in the N-terminal domain of the heavy chain (HN). The HN domain forms a 15-angstrom transmembrane amphipathic pore, through which the 50 kDa light chain unfolds and is translocated across the vesicle membrane into the neuronal cytosol. In the neutral reducing environment of the cytoplasm, the interchain disulfide bridge is reduced by thioredoxin-thioredoxin reductase, liberating the active light chain.
Once free in the motor neuron cytosol, the 50 kDa light chain functions as a catalytic zinc-dependent endopeptidase with absolute substrate specificity for Synaptosomal-Associated Protein 25 (SNAP-25). Unlike other neurotoxin serotypes that cleave synaptobrevin/VAMP (BoNT/B, D, F, G) or syntaxin (BoNT/C), BoNT/A cleaves specifically between residues Gln197 and Arg198 near the C-terminus of SNAP-25.
This cleavage removes a 9-amino-acid peptide fragment. Although the truncated SNAP-25 (amino acids 1–197) can still associate with syntaxin-1 and synaptobrevin, the resulting quaternary SNARE bundle is defective and cannot undergo the structural zippering required to overcome electrostatic repulsion between vesicular and plasma membranes. Consequently, calcium-triggered exocytosis of acetylcholine is completely arrested, resulting in flaccid neuromuscular paralysis.
Following local micro-injection into target muscle or tissue beds, BoNT/A remains predominantly localized at the injection depot. Systemic vascular uptake is minimal when administered within standard micro-dose parameters (4–20 IU). Free unbound systemic toxin exhibits an elimination half-life (t1/2) in blood of approximately 30 to 120 minutes, undergoing phagocytic clearance by hepatic Kupffer cells and splenic macrophages.
In contrast, the intracellular light chain within intoxicated motor nerve terminals exhibits remarkable evolutionary stability. The LC associates with the cytosolic face of the plasma membrane, evading cellular proteasomal degradation for months. Functional recovery occurs in two distinct phases: (1) Formation of terminal axonal sprouts and accessory motor endplates beginning at 4 to 8 weeks; (2) Eventual ubiquitination of the light chain, gradual clearance of cleaved SNAP-25, and resumption of normal synaptic transmission at the primary motor endplate at 12 to 24 weeks.
Botulinum Toxin Type A reference standards are supplied as vacuum-dried or lyophilized powders containing 100 International Units (IU) of biological activity. Reconstitution must be carried out using sterile 0.9% Sodium Chloride Injection USP (Preservative-Free or Bacteriostatic with 0.9% Benzyl Alcohol). Standard research concentrations include: 1.0 mL diluent (10 IU per 0.10 mL / 1.0 IU per unit on U-100 syringe); 2.0 mL diluent (5 IU per 0.10 mL / 0.5 IU per unit); or 2.5 mL diluent (4 IU per 0.10 mL / 0.4 IU per unit).
Due to the high conformational sensitivity of the 150 kDa holoprotein, severe mechanical shear force will denature the tertiary structure and reduce biological potency. Inject diluent slowly along the vial wall under negative vial pressure. Never invert or agitate vigorously. Prior to reconstitution, lyophilized vials must be stored at -20°C or refrigerated at 2°C to 8°C. Reconstituted solutions should be stored at 2°C to 8°C and utilized within 24 to 72 hours for maximal potency.
Botulinum neurotoxin is among the most lethal biological toxins known, with an estimated human lethal parenteral dose of approximately 1 to 2 ng/kg. Consequently, research usage must strictly adhere to Biosafety Level 2 (BSL-2) practices, including chemical fume hoods or biosafety cabinets, double-gloving, eye protection, and needle-safe containment devices.
Decontamination and waste disposal require immediate chemical inactivation. All surfaces, contaminated disposable equipment, and remaining solutions must be exposed to freshly prepared 0.5% sodium hypochlorite (household bleach diluted 1:10) for a minimum contact time of 30 minutes, or autoclaved at 121°C (250°F) for 30 minutes. BoNT/A is strictly designated for In-Vitro and Authorized Non-Clinical Laboratory Research Only (RUO).
Target Solvent
0.9% Sterile Sodium Chloride Solution
Store refrigerated
Diluent Ratio
2.5 mL per 0.005 mg (0.002 mg/mL)
Slow vacuum-drawn saline along glass wall; strictly do not agitate.
Lyophilized Storage
Store at -20°C to -80°C.
Desiccated and protected from thermal spikes
Liquid Stability
Store at 2°C–8°C for maximum 24h.
Refrigerated and light-protected
Pharmacokinetics / Half-Life
~3 to 6 Months (Biological SNAP-25 cleavage duration)
Typical protocol duration: Single Challenge (Followed by 12-week observational assay); Washout: 16 Weeks
| Standard Compound Mass | 1 mg active per vial |
| Recommended Diluent | 0.9% Sterile Sodium Chloride Solution |
| Diluent Volume Added | 1.0 mL |
| Resulting Concentration | 1.0 mg/mL |
| Syringe Volumetric Scale | U-100 Syringe (100 units = 1.0 mL | 1 unit = 10.0 mcg (0.01 mL)) |
Integrated reconstitution calculator and calibrated volumetric micro-plunger simulation.
Benchmark protocols from peer-reviewed clinical trials & institutional investigational programs.
| Escalation Stage & Phase | Target Dose | U-100 Mark (0.01mg / 2.5mL) | Cadence | Syringe Sync |
|---|---|---|---|---|
| In-Vitro Assay Titration Schedule (Challenge 1) | 0.2 mcg | 0.0 Units(0.00 mL) | 1x Daily | |
| In-Vitro Assay Titration Schedule (Challenge 2) | 0.5 mcg | 25.0 Units(0.25 mL) | 1x Daily | |
| In-Vitro Assay Titration Schedule (Challenge 3) | 1 mcg | 25.0 Units(0.25 mL) | 1x Daily |
| Research Dose | Volume (mL) | U-100 Syringe Graduation Mark |
|---|---|---|
| 0.2 mcg (4 IU) | 0.10 mL | 10 Units 10 units |
| 0.5 mcg (10 IU) | 0.25 mL | 25 Units 25 units |
| 1.0 mcg (20 IU) | 0.50 mL | 50 Units 50 units |
| Research Dose | Calibrated Volume | U-100 Syringe Units | Graduation Description |
|---|---|---|---|
| 0.2 mcg (4 IU) | 0 mL (0 µL) | 0 Units | 10 units |
| 0.5 mcg (10 IU) | 0.001 mL (1 µL) | 0.1 Units | 25 units |
| 1.0 mcg (20 IU) | 0.001 mL (1 µL) | 0.1 Units | 50 units |
ISO 8537 Sterile Insulin Syringe Standard · Optical Meniscus Resolution & Volumetric Parallax Engineering
Detachable needles leave significant fluid trapped in the plastic hub collar. In peptide protocols, this causes substantial loss of active ingredient per administration.
| Barrel Capacity | Graduation Interval | Volume per Tick | Hub Dead-Space | Needle Spec | Suitability for 10 Units |
|---|---|---|---|---|---|
| 0.3 mL (30 Units)BEST FIT | 0.5 Unit | 5 µL (0.005 mL) | < 0.4 µL | 31G × 5/16" (8mm) Integrated Ultra-Fine | ✓ Accommodates 10 units |
| 0.5 mL (50 Units) | 1 Unit | 10 µL (0.010 mL) | < 0.8 µL | 30G–31G × 5/16" (8mm) Integrated | ✓ Accommodates 10 units |
| 1 mL (100 Units) | 2 Unit | 20 µL (0.020 mL) | < 2.1 µL | 29G–30G × 1/2" (12.7mm) Integrated | ✓ Accommodates 10 units |
Viewing the syringe from an angle introduces a 1.0–2.5 unit parallax error. Always raise the barrel to direct eye level against a high-contrast white background. Align the front edge of the top black plunger seal ring with the target line.
Standard 5/16" (8mm) laboratory dispensing needles are calibrated for direct 90° fluid transfer into target analytical matrix vials. If utilizing 1/2" (12.7mm) cannulas in deep laboratory vessels, introduce at a 45° angle to avoid contact with vessel sidewalls.
Stoichiometric supply planning, sequential reconstitution cadence, and itemized consumables BOM for Botulinum Toxin Type A.
Do NOT reconstitute all 1 vials simultaneously. Reconstitute one vial at a time as the active protocol requires. Once reconstituted with Bacteriostatic Water USP, a vial maintains stability for 28 days at +2°C to +8°C. Remaining unopened vials should be preserved in solid lyophilized cake form at -20°C to prevent hydrolysis and oxidation.
| Week | Study / Assay Phase | Weekly Target Dose | Syringe Draw (U-100) | Active Vial # | Cumulative Active Mass |
|---|---|---|---|---|---|
| Week 1 | High Challenge (Challenge 3) | 1 mcg(7x/wk) | 0.1 Units(0.00 mL) | Vial #1(0.99mg rem) | 0.0 mg / 0.1 mg |
| Week 2 | High Challenge (Challenge 3) | 1 mcg(7x/wk) | 0.1 Units(0.00 mL) | Vial #1(0.99mg rem) | 0.0 mg / 0.1 mg |
| Week 3 | High Challenge (Challenge 3) | 1 mcg(7x/wk) | 0.1 Units(0.00 mL) | Vial #1(0.98mg rem) | 0.0 mg / 0.1 mg |
| Week 4 | High Challenge (Challenge 3) | 1 mcg(7x/wk) | 0.1 Units(0.00 mL) | Vial #1(0.97mg rem) | 0.0 mg / 0.1 mg |
| Week 5 | High Challenge (Challenge 3) | 1 mcg(7x/wk) | 0.1 Units(0.00 mL) | Vial #1(0.96mg rem) | 0.0 mg / 0.1 mg |
| Week 6 | High Challenge (Challenge 3) | 1 mcg(7x/wk) | 0.1 Units(0.00 mL) | Vial #1(0.96mg rem) | 0.0 mg / 0.1 mg |
| Week 7 | High Challenge (Challenge 3) | 1 mcg(7x/wk) | 0.1 Units(0.00 mL) | Vial #1(0.95mg rem) | 0.1 mg / 0.1 mg |
| Week 8 | High Challenge (Challenge 3) | 1 mcg(7x/wk) | 0.1 Units(0.00 mL) | Vial #1(0.94mg rem) | 0.1 mg / 0.1 mg |
| Week 9 | High Challenge (Challenge 3) | 1 mcg(7x/wk) | 0.1 Units(0.00 mL) | Vial #1(0.94mg rem) | 0.1 mg / 0.1 mg |
| Week 10 | High Challenge (Challenge 3) | 1 mcg(7x/wk) | 0.1 Units(0.00 mL) | Vial #1(0.93mg rem) | 0.1 mg / 0.1 mg |
| Week 11 | High Challenge (Challenge 3) | 1 mcg(7x/wk) | 0.1 Units(0.00 mL) | Vial #1(0.92mg rem) | 0.1 mg / 0.1 mg |
| Week 12 | High Challenge (Challenge 3) | 1 mcg(7x/wk) | 0.1 Units(0.00 mL) | Vial #1(0.92mg rem) | 0.1 mg / 0.1 mg |
Study duration: Single Challenge (Followed by 12-week observational assay) · Washout: 16 Weeks
| Period / Phase | Target Amount | Frequency | Notes & Calibration |
|---|---|---|---|
| Challenge 1Starting Baseline | 0.2 mcg | Single dose | Micro-Challenge: Focal presynaptic blockade (10 units on U-100 syringe) |
| Challenge 2 | 0.5 mcg | Single dose | Standard Challenge: Motor endplate transmission block (25 units on U-100 syringe) |
| Challenge 3 | 1 mcg | Single dose | High Challenge: Maximal neuromuscular junction inhibition (50 units on U-100 syringe) |
4-phase stability timeline, RP-HPLC degradation benchmarks, and storage SOPs for Botulinum Toxin Type A
Operating Window: +2°C to +8°C (36°F to 46°F)
Active working solution dissolved in Bacteriostatic Water USP (0.9% Benzyl Alcohol).
| Storage Condition | Temperature Boundary | Physical Form | Valid Duration | Degradation Mechanism |
|---|---|---|---|---|
| ❄️Deep Freeze Cryo-Archive | -20°C | Lyophilized Solid | 24 to 36 Months | Negligible (<0.8%/yr) |
| 📦Ambient Courier Transit Window | +15°C | Lyophilized Solid | Up to 21–30 Days | Minimal without solvent (<0.5%) |
| 💧Reconstituted Refrigerated Storage (2°C–8°C) | +2°C | Reconstituted Solution | 28 to 35 Days | Gradual deamidation >28 days |
| 🚫Critical Degradation Thresholds | >37°C | Degradation Hazard | Immediate Degradation Hazard | Rapid peptide cleavage & aggregation |
Slow vacuum-drawn saline along glass wall; strictly do not agitate.
Botulinum Toxin Type A displays an estimated half-life of ~3 to 6 Months (Biological SNAP-25 cleavage duration). Typical study protocols run for Single Challenge (Followed by 12-week observational assay) followed by a washout period of 16 Weeks.
High-purity lyophilized laboratory reference formulation with certified Certificate of Analysis (COA).
Standard Lyophilized Monograph
High-Purity 100 IU Acetylcholine Neurotransmission Research Standard. Formulated for in-vitro research and laboratory analytical validation.
Store desiccated at -20°C upon receipt. Reconstitute strictly in a certified laminar airflow hood utilizing sterile disposable instruments. Avoid direct exposure to UV or fluorescent radiation.
| Net Active Mass | Target Solvent | Diluent Volume | Resulting Concentration | Syringe Graduation Scale |
|---|---|---|---|---|
| 0.005 mg Lyophilized Cake | Bacteriostatic Water USP (0.9% Benzyl Alcohol) | 2.5 mL | 0.00 mg/mL | 1 Unit = 0.0 mcg (0.01 mL) |
Swab vial septum with sterile 70% IPA pad. Inspect cake for vacuum seal integrity.
Introduce 2.5 mL solvent slowly down inner glass wall. Never spray directly on cake.
Swirl gently in horizontal circles until fully dissolved. Never shake or invert aggressively.
Rest at +2°C to +8°C for 10 minutes until solution is crystal clear before drawing.
| Phase | Target Active Dose | U-100 Syringe Graduation | Cadence & Pharmacological Purpose |
|---|---|---|---|
| Days 1–7 (Priming) | 0.2 mcg | 10.0 Units (0.100 mL) | Initial receptor priming; evaluate baseline physiological tolerance. |
| Weeks 2–4 (Saturation) | 0.30000000000000004 mcg | 15.0 Units (0.150 mL) | Target assay maintenance; peak neurotrophic / metabolic response. |
| Weeks 5–6 (Taper & Washout) | 0.2 mcg | 10.0 Units (0.100 mL) | Receptor consolidation prior to mandatory 4-week washout cycle. |
RP-HPLC / LC-MS In-Vitro Assay
Purity Spec: ≥ 98.0% Area
Research Use Only (RUO)
NOT EVALUATED OR APPROVED BY FDA