|
HS Code |
992652 |
| Name | (-)-Anabasine |
| Cas Number | 13078-04-1 |
| Molecular Formula | C10H14N2 |
| Molecular Weight | 162.23 g/mol |
| Iupac Name | (S)-3-(2-Piperidyl)pyridine |
| Appearance | Colorless to pale yellow liquid |
| Melting Point | -7 °C |
| Boiling Point | 265 °C |
| Density | 1.03 g/cm³ |
| Optical Rotation | [α]D20 -67° (c=1, EtOH) |
| Solubility | Soluble in water and organic solvents |
| Smiles | C1CCNC[C@H]1c2cccnc2 |
| Inchi | InChI=1S/C10H14N2/c1-2-6-12-7-4-9(5-8-12)10-3-1-1-5-11/h1-7,9-10H,8H2/t9-/m0/s1 |
As an accredited (-)-Anabasine factory, we enforce strict quality protocols—every batch undergoes rigorous testing to ensure consistent efficacy and safety standards.
| Packing | (-)-Anabasine, 1 gram, is supplied in a sealed amber glass vial with tamper-evident cap and detailed safety labeling. |
| Shipping | (-)-Anabasine is shipped in secure, chemical-resistant containers compliant with regulatory standards. Packaging ensures the product’s stability and prevents leaks or contamination. Transportation follows all safety protocols for hazardous materials, with clear labeling and documentation. Delivery typically requires signature upon receipt and may be restricted to qualified individuals or institutions. |
| Storage | (-)-Anabasine should be stored in a tightly closed container, in a cool, dry, well-ventilated area, away from sources of ignition, heat, and incompatible substances such as strong oxidizers. Protect it from light and moisture. It is advisable to store the chemical under an inert atmosphere, such as nitrogen, and in a flammable materials cabinet to ensure maximal safety. |
Applications of (-)-Anabasine in Industrial ManufacturingAs an advanced chemical producer specializing in high-purity (-)-Anabasine, we supply industrial customers seeking to implement this compound in established and regulated downstream manufacturing scenarios. All application routes below are based on well-documented industrial practices, with detailed attention to real compliance frameworks, formulation specifics, process stages, and end-use categories. 1. Active Pharmaceutical Ingredient (API) Synthesis for Ion Channel Research CompoundsResearch pharmaceuticals often require highly selective ligands for nicotinic acetylcholine receptor (nAChR) subtypes as in vitro reference standards and as discovery pathway molecules. Our production supports entities synthesizing controlled research chemicals, especially where (-)-Anabasine's structural motif underpins probe or comparison compounds in neurological and electrophysiological assays. Industry compliance standards
Typical usage ratio
Downstream process integration
Final product types
2. Insecticide Intermediate and Synthesis of Alkaloid-Based BioactivesThe alkaloid structure of (-)-Anabasine makes it a significant intermediate for agricultural chemical producers formulating new-generation, semi-synthetic aphicides and miticides. Downstream syntheses transform the raw material via controlled alkylation, oxidation, or functionalization steps, developing targeted compounds for crop protection with defined residue and environmental profiles. Industry compliance standards
Typical usage ratio
Downstream process integration
Final product types
3. Synthetic Reference Material for Forensic Toxicology LaboratoriesAccredited forensic labs require authentic standards for qualitative and quantitative analysis of natural toxins in biological matrices. We produce and supply highly purified (-)-Anabasine for laboratories developing and validating LC-MS/MS or GC-MS protocols in routine casework, doping control, and toxicological screening environments. Industry compliance standards
Typical usage ratio
Downstream process integration
Final product types
4. Alkaloid Marker Preparation for Botanical Authentication in Dietary Raw MaterialsNutraceutical supply chains rely on reliable marker compounds to verify the botanical provenance and purity of plant-derived ingredients, especially where Nicotiana or related species are in use. By producing analytically pure (-)-Anabasine, we support the development of standards used in HPLC, GC, and LC-MS methods certifying authenticity and trace levels in bulk botanical shipments. Industry compliance standards
Typical usage ratio
Downstream process integration
Final product types
|
Competitive (-)-Anabasine prices that fit your budget—flexible terms and customized quotes for every order.
For samples, pricing, or more information, please call us at +8615371019725 or mail to admin@sinochem-nanjing.com.
We will respond to you as soon as possible.
Tel: +8615371019725
Email: admin@sinochem-nanjing.com
Flexible payment, competitive price, premium service - Inquire now!
At our facility, we manufacture (-)-Anabasine from the ground up, starting with careful selection and preparation of raw materials. Based on years of on-site process improvement, our isolation of (-)-Anabasine focuses on both chemical purity and optical activity, which means we produce a highly consistent enantiomer. Each lot comes with thorough certificates of analysis conducted in-house, including chiral HPLC verification and NMR analysis to ensure all specifications meet tight tolerances. The model available from our production line carries batch-identifiable documentation, giving end users traceability and peace of mind. Care in storage, handling, and delivery also safeguards the product’s integrity from our loading bay to your laboratory or line.
Chemically, (-)-Anabasine belongs to the piperidine group of natural alkaloids, a fact reflected in its physical traits. Through repeated rounds of extraction, distillation, and purification, we deliver material typically with 98% or greater purity by GC and chiral purity above 97%. Every batch is controlled for residual solvents and water content, since trace impurities can interfere with sensitive applications. You will find our product available as a colorless to pale yellow liquid at room temperature, following strict environment and temperature controls so the material you receive matches our internal reference.
Over time, we have refined our synthetic and isolation routes to reduce unwanted isomerization. This hands-on know-how distinguishes our output from what sometimes circulates through secondary distribution chains. Instead of outsourcing isolations or buying bulk mixtures, all the chemistry takes place within our own operation, under the same roof and with one management chain. That way, deviations, such as the occasional racemization that can happen in hastier processes, are caught by staff who know the product by sight, smell, and instrument output.
Researchers frequently approach us with questions about using (-)-Anabasine in neuropharmacology, plant biology, or as a starting material for advanced synthesis. Academic collaborators trace the role of this alkaloid in nicotinic acetylcholine receptor modulation and structure-activity work. In our own experience, consistently high enantiomeric excess is critical for such assays, since racemic or poorly resolved material can distort biological results. We monitor our optical rotation and supplement this with chromatographic analysis to safeguard these parameters.
On the industrial front, some customers pursue functionalization opportunities, using (-)-Anabasine as a building block for derivatives with tailored biological or chemical properties. We’ve observed that trace impurities or inconsistent isomer ratios can hamper downstream chemistry, especially in coupling reactions or selective oxidations. Our team’s hands-on involvement ensures that each shipment supports reliable process chemistry, reducing the risk of surprises during scale-up.
Many in the market may not realize that racemic anabasine, which can be produced via several simpler synthetic routes, cannot replace pure (-)-Anabasine for applications requiring stereochemical consistency. For synthetic chemists, the difference between a racemic and single-enantiomer supply can translate into months of troubleshooting with chiral separations and rework. We have often received reports of irregular GC traces from researchers who tried to work with pooled stock from various sources. That is why we have stayed committed to producing only the pure (-)-enantiomer through controlled methods.
Another key factor is the difference between synthetic anabasine and material sourced from traditional natural isolation. In older literature, botanical sources could yield an enantiopure product, but at low and variable yields. Our process blends chemical synthesis with upgraded purification steps so that yield and optical purity are both maximized over time. This hybrid approach reduces variability from year to year and maintains consistent inventory, even when agricultural conditions change.
We oversee every stage, from early reaction monitoring to final quality inspection. Differences in various commercial supplies often come down to overlooked bottlenecks in temperature control, reagent purity, or post-reaction work-up. Our operators have tailored each stage to minimize side reactions. Learning from pilot runs and continuous feedback from downstream users, we have optimized solvent selection and phase purification to reduce impurity buildup. Everything is logged batch by batch, so recurring issues can be traced back and corrected before product leaves our hands.
Instead of relying on contract tollers, our staff is fully accountable for maintaining safety protocols, keeping airborne exposure levels in line with industrial hygiene standards, and overseeing every drum and container. Years in the field have taught us where to look for losses, contaminants, or material stability risks depending on storage and shipping methods. These details, though tedious, ensure that users handling the product in confined areas, fume hoods, or gloveboxes can trust its condition.
From the earliest days, our operation has paid close attention to the nuances of chemical regulation and safe handling practices. Alkaloids, including (-)-Anabasine, require careful tracking due to their possible biological effects. Before preparing each lot for shipment, we routinely validate not just the main component, but all detectable secondary structures or minor components. Experience with regulatory audits has made it clear that clear labeling, traceable chain of custody, and up-to-date documentation makes customs clearance and research compliance much less of a headache for end users.
Safety data accompanies every shipped batch, including known hazards, recommended handling routines, and advice on first-response procedures. Our in-house team regularly consults with external occupational safety bodies, updating our procedures based on experience and evolving recommendations. As best practices change, we keep customers briefed so that lab workers and process technicians stay protected.
Every year, our chemists survey advancements in synthetic procedures and analytical chemistry. Improvements, ranging from tweaks in catalyst systems to minor temperature shifts, can cut down byproduct levels. Frequent collaboration with academic partners helps us track how even minor variances in purity or composition affect project outcomes. Many fine chemicals suppliers today focus on quick turnaround rather than tight control, but over time, we have seen accuracy and repeatability matter more than raw speed.
At user request, we routinely perform custom runs for projects needing unique concentrations, solvent carriers, or tailored physical formats. Our flexibility is built on real experience — technicians know to adapt filling, bottling, and packing for challenging climate or transport demands. That gives formulation chemists and assay developers precise control over their input reagents, trimming out the risk of surprises across scale-up or pilot manufacturing.
Many researchers who depend on robust biological data cannot afford the risks caused by inconsistent raw materials. Over the years, we have seen shifting demands from purely academic lab work to industry-driven functionalization and scale-up. Our takeaway has been clear: batch-to-batch reproducibility saves time, money, and cuts down on operational risk. Whether it’s an initial small sample or a drum for semi-commercial use, users return to us after running head-to-head experiments with lower grade or generic material.
In discussions with development chemists, we hear again and again how easily chiral selectivity can drift with even minor changes in starting material profile. Selectivity failures not only risk expensive lost time — they risk entire sets of in vivo or in vitro data being ruled unreliable. By managing both synthesis and downstream clean-up under one roof, our team eliminates much of the guesswork commonly encountered in outsourced, off-the-shelf chemicals.
The study of plant alkaloids has changed over the decades. (-)-Anabasine now serves as a key reference standard in analytical labs, and as a foundation in molecular pharmacology. Demand for its pure enantiomeric form — rather than crudely separated, mixed, or impure samples — has grown as methodologies become stricter. In many ways, our commitment to rigorous batchwise validation reflects a broader trend across the sciences: more demanding assays, tighter reproducibility metrics, and increasingly detailed regulatory oversight.
We speak regularly with community users, bench scientists, and process chemists to catch problems early and fine-tune our protocols. As new techniques for measuring trace contaminants or stereochemical drift emerge, we upgrade our monitoring accordingly. The result has been a culture not just of compliance, but of anticipation — looking ahead to where analytical demands will shift next and over-engineering our product to safeguard users’ results.
At every step, we pursue transparency not as a market requirement, but as a practical means to head off trouble before it starts. Documentation means more than paper; it means tracing material origins, retention of analytical traces, and frequent review of instrument logs. When customers request advanced characterization — say, for method development or regulatory filing — we have in-house expertise and can provide access to archived lots, instrument calibration records, and validation certificates upon request.
Our open-door policy applies to external audits, sample retesting, and complaint investigations. If any deviation occurs — perhaps slight upon NMR or HPLC inspection — users hear about it immediately, and corrective action is planned in detail. Rapid response and forthright discussion have kept our relationships with academic and industry users strong, evolving from single orders into long-term technical partnerships.
As research into novel biosynthetic and synthetic pathways continues, new functionalization opportunities for (-)-Anabasine regularly arise. Our manufacturing operation monitors literature and conference presentations, seeking out these developments and adapting our process to keep ahead. As regulatory tensions ebb and flow globally, customers can expect us to adjust packaging, documentation, and labeling to match new requirements, always without jeopardizing lead times or material integrity.
Beyond research, applications in fields such as crop protection, analytical standards, and next-generation green chemistry use cases remain on our radar. Working directly with innovators, we provide technical feedback to support downstream modifications, aiming to remove the avoidable hurdles that often plague projects depending on fine chemicals.
Manufacturing (-)-Anabasine without shortcuts or generalized processes remains a constant challenge that rewards long-term investment in expertise, equipment, and committed personnel. We have learned, after seeing faulty batches wreck months of customers’ work, that there are no quick wins in high-purity chiral molecules — only exacting standards kept day in and day out. From our first batch to each new year’s production, our team stays focused on improvement, transparency, and fully accountable service. For users needing a partner who stands behind their chemicals and their word, we remain dedicated to providing the dependable (-)-Anabasine supply critical for ambitious projects in research and industry alike.