|
HS Code |
862345 |
| Product Name | Spermidine Hydrochloride |
| Cas Number | 334-50-9 |
| Molecular Formula | C7H19ClN3 |
| Molecular Weight | 179.7 g/mol |
| Appearance | White to off-white powder |
| Solubility | Soluble in water |
| Purity | Typically ≥98% |
| Storage Conditions | Store at 2-8°C, protect from light |
| Melting Point | 235-240°C |
| Synonyms | N-(3-Aminopropyl)-1,4-diaminobutane hydrochloride |
| Ph Value In Solution | 4.5-6.5 (50 mg/mL in water) |
| Chemical Structure Type | Polyamine |
As an accredited Spermidine Hydrochloride factory, we enforce strict quality protocols—every batch undergoes rigorous testing to ensure consistent efficacy and safety standards.
| Packing | Spermidine Hydrochloride is packaged in a sealed, amber glass vial containing 1 gram, labeled with product details and safety instructions. |
| Shipping | Spermidine Hydrochloride is shipped in securely sealed containers to prevent contamination and moisture exposure. It is packed in compliance with chemical safety regulations and typically transported at ambient temperature unless otherwise specified. All packages are clearly labeled with hazard and handling information to ensure safe delivery and storage. |
| Storage | Spermidine Hydrochloride should be stored in a tightly sealed container, protected from light, moisture, and air. It is best kept at 2–8°C (refrigerator conditions). The storage area should be dry, clean, and well-ventilated to maintain chemical stability. Avoid exposing the compound to sources of heat or incompatible materials to ensure product integrity and safety. |
| Purity 99%: Spermidine Hydrochloride with a purity of 99% is used in cell culture assays, where it ensures high reproducibility and optimal cell viability.Molecular Weight 254.75 g/mol: Spermidine Hydrochloride with a molecular weight of 254.75 g/mol is used in nucleic acid stabilization protocols, where it provides consistent complex formation with DNA.Stability Temperature 2–8°C: Spermidine Hydrochloride with a stability temperature range of 2–8°C is used in laboratory reagent storage, where it maintains chemical integrity during prolonged periods.Water Solubility ≥100 mg/mL: Spermidine Hydrochloride with water solubility of ≥100 mg/mL is used in formulation of aqueous solutions, where it allows for easy preparation of stock solutions.Melting Point 250–255°C: Spermidine Hydrochloride with a melting point of 250–255°C is used in thermal process applications, where it ensures thermal stability during high-temperature procedures.Endotoxin Level <0.1 EU/mg: Spermidine Hydrochloride with an endotoxin level of less than 0.1 EU/mg is used in pharmaceutical research, where it minimizes the risk of endotoxin contamination in sensitive experiments.Particle Size <50 µm: Spermidine Hydrochloride with a particle size smaller than 50 µm is used in solid dispersion manufacturing, where it promotes homogenous mixing and uniformity.pH (1% solution) 5.0–7.0: Spermidine Hydrochloride with a pH range of 5.0–7.0 in 1% solution is used in biochemical buffer systems, where it maintains compatible physiological conditions.Optical Rotation +18° to +22°: Spermidine Hydrochloride with an optical rotation of +18° to +22° is used in chiral analysis protocols, where it ensures stereochemical consistency in analytical applications.Assay (HPLC) ≥98%: Spermidine Hydrochloride with an HPLC assay of ≥98% is used in high-purity syntheses, where it guarantees minimal impurities for research and development workflows. |
Competitive Spermidine Hydrochloride prices that fit your budget—flexible terms and customized quotes for every order.
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Years of operating reactors, running countless QC checks, and handling the daily variables of chemical synthesis have taught us something: quality never comes by accident. Spermidine Hydrochloride, model SHC-972, stands as proof of this. Our production lines focus on Spermidine Hydrochloride with ≥98% purity by HPLC, white to off-white crystalline powder, and tightly controlled particle sizes to help research, biotechnology, and industrial clients. The product we ship leaves our doors known for stability and precise batch-to-batch consistency, something we only achieve through relentless attention to moisture control, filtration, and tamper-proof packaging.
Spermidine Hydrochloride goes to core R&D teams, university labs, and large-scale biotech plants around the world. Most commonly, customers report using it as a reagent in polyamine pathway investigations, autophagy research, pharmaceutical intermediate development, and as a calibration standard for certain analytical instruments. We’ve seen a surge in interest from food preservation and plant growth sectors as well, since spermidine has drawn notice for its cell growth regulatory roles. Formulators appreciate its high water solubility and chemical reliability, especially in protocols that demand traceable performance.
One misconception in specialty chemicals is that purity percentages tell the entire story. Actual experience proves otherwise. Purity comes from how the line is prepped, how cross-contamination is prevented, and the culture of the people doing the work. In our practice, every batch of Spermidine Hydrochloride starts with fresh cleaned glassware, oxygen-free nitrogen atmospheres, and an audit trail of every precursor. We never settle for isolated endpoint QC; samples are checked from initial synthesis through drying and milling. Every operator here knows why it matters to avoid residual solvents and trace metals, especially since many clients use our spermidine hydrochloride for sensitive cell culture and pharmaceutical processes.
What customers rarely see: we document micro-contaminant levels, implement custom dust control in our granulation rooms, and dedicate personnel to temperature/humidity monitoring. The cornerstones of our facility—airlocks, particle filters, and C-GMP protocols—directly determine whether a batch meets specifications or not. We train for traceability, because we see the difference every week during independent customer audits. Whenever a batch goes out that meets all requirements, it's the result of detailed records, analytical rigor, and the knowledge that someone will put our products under the microscope.
Most brochures mention basic facts: molecular weight, melting point, or assay range. In our daily work, clients ask about issues they actually encounter in the lab or on the line. How does this Spermidine Hydrochloride behave under open-air storage? What happens if the temperature swings during transport? Is lot-to-lot color variation a sign of contamination or minor polymorph differences?
From experience, our product resists caking in humid environments thanks to our multi-stage drying step. It's packaged after passing Karl Fischer titration for moisture, not just a simple loss-on-drying test. Chemists who’ve struggled with brownish tints or off-odors in other brands find our lot typically stays bright and free of breakdown products due to controlled light exposure post-synthesis. If there’s a need for larger particle sizes or specific fineness, we've adapted our sieve-cutting and micronization lines to tailor production without compromising on QC.
Spermidine Hydrochloride is not a bulk commodity that saves a few dollars by mass-producing with a lowest-bidder mentality. It’s a compound deeply tied to biological research, pharmaceutical intermediates, and, more recently, life sciences trends exploring cellular health. We notice that clients with the strictest regulatory requirements—such as those pursuing FDA or EMA compliance in new drug development—have the closest eye on purity profile, isotonicity, and residual solvent content. At the other end, research teams without regulatory oversight still need repeatability, because unpublished data, delays, or invalidated runs can set work back by months.
Over the years, formerly minor details become urgent: ventilation near the blender, antistatic clothing, and eliminating trace ammonia in the environment. We responded by introducing inline sensors, adjusting working shifts to reduce cross-exposure, and even changing our raw materials provider when a shipment produced unusual chromatography spikes. This is why we emphasize where and how our Spermidine Hydrochloride is made—our clients’ projects rely on that consistency, and years of troubleshooting batch failures informs every upgrade we implement.
Compared to spermine, putrescine, or cadaverine hydrochlorides—which we also manufacture—spermidine hydrochloride consistently presents the most interest for studies on autophagy and anti-aging cell pathways. Spermine carries more positive charges and stacks more easily with spiraled nucleic acids, yet its higher basicity can trigger unexpected byproducts in some synthesis environments. Putrescine, on the other hand, tends to have a stronger amine odor and is sought less for biomedical research due to its simpler structure and reactivity.
We see more stringent purchasing criteria for spermidine hydrochloride. Customers want tighter impurity limits, better solubility curves, and specific IR/NMR proofs of identity. Over time, these patterns show that users expect higher reproducibility and less batch drift in spermidine hydrochloride, as opposed to spermine or related analogs which sometimes see relaxation in grade or impurity controls for bulk industrial processes.
On the manufacturing end, the purification processes also differ. Spermidine hydrochloride requires greater attention post-neutralization, as its water solubility can make salt separation tricky. We custom-design our crystallization tanks so that unwanted chloride or primary amine byproducts don’t slip through, and we triple-rinse filter cakes to limit residual foreign ions. By comparison, spermine hydrochloride lends itself to slightly more robust mechanical separation, though it often accumulates more humidity in standard storage rooms. These daily operational differences stack up, and it’s clear that spermidine hydrochloride’s production calls for tighter, more frequent calibration of both machines and methods.
Transporting and storing Spermidine Hydrochloride isn’t a pro forma task. The compound’s hygroscopicity demands sealed, moisture-proof packaging. We routinely monitor probe readings during bulk shipping and keep backup desiccants in every container. Because the molecule can degrade or discolor under extended light or temperature spikes, we restrict handling windows and educate our logistics partners about temperature and humidity exposure, both en route and in interim storage.
Our staff has seen trucks held at customs in tropical climates, where a single day of sitting unchecked can threaten an entire load’s quality. To counter these risks, our packing materials have evolved. Over the years, we shifted from basic PE bags to multi-layered metallized laminate pouches, then to custom-molded barrels with inner vacuum-sealed aluminized liners. Documenting every checkpoint, taping sensors inside shipments, and giving third-party inspectors full access means we catch problems before they reach our customers. Every process reflects the reality that consistent physical appearance, purity, and assay value matter day in and day out, not just on lab paperwork.
Clients rarely call to praise a boring batch, but batch to batch consistency drives repeat orders and professional trust. In our experience, the smallest slip—an incorrect drying cycle, an incomplete phase separation, an unexpected spike in ammonia—leaves a visible trace in finished product profiles. We rely on a combination of traditional analytics—HPLC peak area assays, FTIR checks—and newer digital readouts, sending every new batch through reference standard comparison using in-house and external labs.
We take pride in how our quality control culture enables open data sharing, a shift from the secretive era of ‘black box’ manufacturing. By maintaining digital and hardcopy logs, along with sample archiving, we support long-term traceability for every drum, bag, and bottle sent out. Customers ask for COAs that don’t simply repeat standard QC tests, but provide additional information about minor impurities and side products. This transparency means clients can cross-check our readings with their own analytics, whether they’re running an LC-MS/MS test or a simple titration.
Spermidine hydrochloride sits in a market shaped by heavier regulatory oversight year after year. We see incoming requests from clients referencing not just pharmacopeia standards, but also environmental and sustainability demands. Many biopharma and nutraceutical companies want full documentation, including process flowcharts, lists of solvents and reagents, and secondary contaminant profiles. Supplier audits require instant access to production notes, facility SOPs, and calibration logs—expectations that go far beyond a simple purity cert.
Our customers have signaled rising interest in green chemistry production, lower-energy processing, and minimal-waste protocols. In response, we reassessed solvent recycling steps and started investigating renewable raw material inputs. On the packaging front, we’re piloting new biodegradable wrapping and seeking to substitute non-recyclable liners with more eco-sensitive grades. These are not idle ambitions—they have grown directly from industry-wide movements for sustainability and traceability in the supply chain.
Any manufacturer can list grades and shelf life. Fewer can respond to the real-world questions that matter most: What if a batch arrives with minor caking? How can we prove a batch is free from specific heavy metals? Are there potential allergen traces or animal-derived residues in your lot? Over years of feedback loops, we've redesigned our processes. We train staff to spot and prevent clumping before it begins; our water content thresholds remain stricter than international standards because we’ve listened to customers whose application success relies on flawless solubility.
On allergen and contamination controls, we operate without any animal-derived processing agents and maintain segregated equipment for high-risk intermediates. Cross-contact prevention is a daily procedure, not an afterthought—operators follow rigid cleaning schedules and verify their work through environmental swab tests documented every shift. We’ve also developed a dedicated heavy-metal testing suite after fielding escalating requests for lower ppm thresholds than required by regulation.
Some chemicals are made by rote, but Spermidine Hydrochloride keeps the team alert. Researchers and developers frequently ask for custom solutions: micronized lots below 50 microns, higher solubility curves, alternate salt forms, or tailored impurity profiles that match their research organisms’ tolerances. Our development chemists collaborate with these clients, tweaking synthetic routes, altering gas atmospheres to prevent amine oxidation, or applying ion-exchange resins for better clean-up in the final step.
Not every experiment works the first time. We've gone back to the drawing board for weeks to resolve unexpected polymorph appearances or IR spectral oddities reported from a customer lab. Years ago, every deviation would evoke a heated debate between process engineers and QC staff. Today, that process is built into our production cycle—feedback from customers in Japan, Europe, or North America funnels directly to our shift supervisors and process engineers. By closing the loop between bench experiments, bulk production, and client feedback, we keep improving the Spermidine Hydrochloride that leaves our doors.
Chemical manufacturing is not a field for perfectionists waiting for everything to go exactly as planned. We deal with operational hiccups and real-world contamination risks daily. The difference lies in honesty and openness—flagging a batch that narrowly passes assay against spec, picking up the phone when analytical teams find outliers, or pausing line operations to re-calibrate a flow meter. For Spermidine Hydrochloride, these habits mean every order carries the weight of our experience and our ongoing investment in reliability.
Building trust with downstream users means not just promising but delivering. Many of our clients track not just monthly usage, but also product returns and field complaints. We keep those rates low by respecting the value of what’s at stake for every researcher, production manager, and QC team buying our spermidine hydrochloride. Their projects often ride on the fine margin between a repeatable process and a failed synthesis. That’s a responsibility we accept, and a lived experience that shapes how we produce, package, and ship every lot.
Looking forward, we expect regulatory requirements and user expectations to keep rising. Batch documentation, eco-audit trails, and compliance-ready records have become standard, not an optional add-on. We continually update our processes to meet these demands—adopting new purification resins, adding in-line HPLC monitoring stations, and even welcoming customer inspectors onto the plant floor.
We listen more now than ever before. User input led to our tighter metal controls, investments in better packaging, and ongoing exploration into green chemistry solutions. By viewing Spermidine Hydrochloride not as a static commodity but as a living bridge between process chemistry and end-user results, our team stays grounded and proactive. We bring the substance—and the story behind it—to the table with every order.