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List of Excipients in Branded Drug IBUPROFEN LYSINE
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| Company | Tradename | Ingredient | NDC | Excipient | Potential Generic Entry |
|---|---|---|---|---|---|
| Prasco Laboratories | IBUPROFEN LYSINE | ibuprofen lysine | 66993-490 | WATER | |
| >Company | >Tradename | >Ingredient | >NDC | >Excipient | >Potential Generic Entry |
Generic Drugs Containing IBUPROFEN LYSINE
| Company | Ingredient | NDC | Excipient |
|---|---|---|---|
| XGen Pharmaceuticals DJB Inc | ibuprofen lysine | 39822-1030 | WATER |
| >Company | >Ingredient | >NDC | >Excipient |
What are the Most Frequently-Used Excipients in IBUPROFEN LYSINE?
| # Of NDCs | Excipient |
|---|---|
| 1 | WATER |
| ># Of NDCs | >Excipient |
# Ibuprofen Lysine Excipient Strategy and Commercial Opportunities
Ibuprofen lysine is an established NSAID salt with commercial potential in neonatal intravenous therapy, rapid-onset oral products, and differentiated liquid or multiparticulate formulations. The strongest opportunities are not in the active ingredient itself. They are in preservative-free sterile delivery, low-volume dosing, taste masking, rapid dissolution, pediatric usability, and manufacturing platforms that improve stability and supply reliability.
The commercial barrier is moderate. Ibuprofen lysine has an old active moiety, established clinical use, and multiple competing ibuprofen products. A defensible product requires a measurable formulation advantage, regulatory differentiation, or protected manufacturing process.
What is ibuprofen lysine and how does it differ from ibuprofen?
Ibuprofen lysine is the lysine salt of ibuprofen. It increases aqueous handling relative to free ibuprofen, which is a poorly water-soluble weak acid. The salt is used to support rapid dissolution and injectable dosage forms while delivering ibuprofen as the pharmacologically active moiety.
| Attribute | Ibuprofen | Ibuprofen lysine |
|---|---|---|
| Drug class | NSAID | NSAID salt |
| Active moiety | Ibuprofen | Ibuprofen |
| Salt former | None | L-lysine |
| Solubility profile | Poorly water-soluble | Improved aqueous handling |
| Main dosage forms | Tablets, capsules, suspensions, gels | Injectable solutions, oral tablets, granules, liquids |
| Primary commercial use | Pain, fever, inflammation | Rapid-onset oral products and neonatal injection |
| Biosimilar pathway | Not applicable | Not applicable |
| Main regulatory pathway | Abbreviated or full NDA, depending on product | ANDA, 505(b)(2), or full NDA depending on formulation and claims |
The lysine counterion does not create a new biologic product category. Ibuprofen lysine remains a small-molecule drug and is generally exposed to conventional generic competition rather than biosimilar competition.
What excipients are used in ibuprofen lysine products?
The excipient system depends on the dosage form. Injectable products require the narrowest formulation because premature infants and other vulnerable populations have limited tolerance for unnecessary excipients.
Injectable ibuprofen lysine
A neonatal injectable product should generally prioritize:
- Water for injection
- pH adjustment using hydrochloric acid or sodium hydroxide
- Tonicity adjustment where required
- Nitrogen headspace or oxygen-control measures if oxidation is material
- Low extractables and leachables packaging
- No antimicrobial preservative unless a clear multidose use case exists
The U.S. FDA labeling for NeoProfen identifies ibuprofen lysine equivalent to 10 mg/mL ibuprofen and describes a sterile injectable product for closure of clinically significant patent ductus arteriosus in premature infants [1]. The product is supplied in single-use vials, supporting a preservative-free strategy.
Arginine is used in some intravenous ibuprofen products, including products formulated with ibuprofen rather than ibuprofen lysine. It can improve solubilization and buffering but introduces additional material and compatibility considerations. A developer should not assume that the excipient profile of an adult intravenous ibuprofen product can be transferred directly to a neonatal ibuprofen lysine formulation.
Oral immediate-release tablets and capsules
Oral ibuprofen lysine products can use conventional excipients:
| Functional requirement | Candidate excipient classes |
|---|---|
| Dilution and compressibility | Microcrystalline cellulose, lactose, mannitol, dibasic calcium phosphate |
| Disintegration | Crospovidone, croscarmellose sodium, sodium starch glycolate |
| Lubrication | Magnesium stearate, sodium stearyl fumarate |
| Granulation | Povidone, hydroxypropyl cellulose |
| Flow control | Colloidal silicon dioxide |
| Taste or odor control | Film coat, sweetener, flavor, ion-exchange or lipid barrier |
| Moisture protection | Hypromellose film coat, polyvinyl alcohol coat, high-barrier blister |
Ibuprofen lysine may support faster dissolution than free ibuprofen, but the product still requires control of granule porosity, compression force, lubricant level, and salt conversion. Excessive lubrication can reduce wetting and delay dissolution.
Oral liquids and pediatric suspensions
Pediatric liquids offer a larger excipient design space but also carry higher safety and palatability demands. Typical components include:
- Purified water
- Glycerin, sorbitol, or a mixed polyol system
- Suspending agents such as xanthan gum, microcrystalline cellulose with carboxymethylcellulose sodium, or hypromellose
- Buffering agents
- Sweeteners and flavors
- Chelating agents where justified
- Antimicrobial preservation for multidose packaging
A lysine salt can create a clear solution at a suitable concentration, but pH, ionic strength, taste, and osmolality may limit this approach. If the target concentration requires a suspension, the developer must control sedimentation, redispersibility, dose uniformity, and syringe withdrawal.
For children, the commercial advantage is strongest when the formulation combines low volume with acceptable taste. A 100 mg/5 mL product may be familiar, but a higher-strength product could reduce administration volume if dose uniformity and palatability remain acceptable.
Which excipient strategy is strongest for neonatal injection?
The strongest neonatal strategy is a minimal, preservative-free, single-use formulation with validated pH, particulate control, and container compatibility.
Key quality attributes
Critical quality attributes include:
- Ibuprofen lysine assay
- Ibuprofen-related impurities
- Lysine content or salt stoichiometry
- pH
- Osmolality
- Visible and subvisible particles
- Sterility
- Endotoxin
- Extractables and leachables
- Fill volume
- Container closure integrity
- Stability after dilution or preparation
Neonatal products face a narrow risk tolerance. Benzyl alcohol, parabens, phenolic preservatives, and high concentrations of certain surfactants are generally unattractive because of exposure concerns in premature infants. The FDA labeling for NeoProfen instructs preparation and administration under controlled conditions and identifies compatibility limitations with certain solutions and drugs [1].
A development program should test dilution into clinically used infusion fluids, adsorption to tubing, precipitation after admixture, and stability during the full preparation window. These studies can create a practical differentiation point even where the core drug is generic.
What formulations are commercially protectable?
The active ingredient and basic salt form are unlikely to provide durable exclusivity by themselves. Stronger protection can come from specific formulation and process limitations.
Formulation patents
Potential claim categories include:
- A defined ibuprofen lysine concentration and pH range.
- A preservative-free aqueous injection with specified impurity limits.
- A formulation with controlled osmolality suitable for premature infants.
- A high-strength oral solution with defined taste-masking agents.
- A rapidly disintegrating tablet with specified dissolution performance.
- A dry granule or sachet that forms a clear solution after reconstitution.
- A multiparticulate formulation that separates ibuprofen lysine from incompatible excipients.
- A formulation with improved stability under elevated temperature or humidity.
- A container and closure system that limits oxygen or moisture ingress.
- A specific dilution or administration method that reduces precipitation or adsorption.
Claims must be tied to measurable technical results. Generic claims covering ibuprofen lysine plus ordinary excipients are vulnerable to obviousness and lack-of-technical-effect challenges.
Method-of-use patents
Method-of-use opportunities are narrower because ibuprofen has extensive prior clinical use. Potential areas include:
- A defined neonatal dosing regimen
- Treatment of patent ductus arteriosus in a specified gestational-age population
- Use in patients with particular renal or gastrointestinal risk profiles
- Reduced-volume administration protocols
- A method that combines formulation-specific dosing with a defined infusion schedule
Method-of-use patents may be commercially relevant where an approved label supports a narrow indication, but generic substitution and skinny-label strategies can reduce their practical value.
When does ibuprofen lysine lose exclusivity?
Ibuprofen lysine does not have a single global exclusivity date. Exclusivity depends on the product, jurisdiction, formulation, listed patents, and regulatory status.
For the U.S. neonatal injectable market, NeoProfen was approved under NDA 021328. FDA product and labeling materials identify the product as ibuprofen lysine injection for premature infants with patent ductus arteriosus [1][2]. Public Orange Book analysis should be performed at the product level because discontinued, delisted, or expired listings can change the practical generic-entry assessment.
The underlying ibuprofen molecule and lysine salt chemistry are old. Any current barrier is therefore more likely to arise from:
- Product-specific formulation patents
- Manufacturing patents
- Container or delivery-system patents
- Regulatory exclusivity
- Supply and sterile-manufacturing qualification
- Clinical evidence required for a narrow neonatal indication
Exclusivity framework
| Exclusivity type | Relevance to ibuprofen lysine |
|---|---|
| New chemical entity exclusivity | Generally unavailable for an old ibuprofen salt |
| Orphan-drug exclusivity | Possible only if statutory orphan criteria and designation requirements are met |
| Pediatric exclusivity | Possible as an extension of qualifying listed protections |
| Three-year clinical-investigation exclusivity | Possible for certain new formulations or indications supported by required clinical studies |
| Five-year NCE exclusivity | Not expected for ibuprofen lysine |
| Patent term | Depends on individual patent filing and grant dates |
| Regulatory data exclusivity outside the U.S. | Jurisdiction-specific |
The relevant commercial question is not whether ibuprofen lysine is “protected” in the abstract. It is whether a competing applicant can obtain approval without infringing enforceable claims or relying on protected clinical data.
What is the Orange Book status of ibuprofen lysine?
The FDA Orange Book is the primary U.S. reference for approved drug products, therapeutic equivalence, patents, and exclusivity information [3]. NeoProfen should be reviewed by NDA number, dosage form, strength, and marketing status rather than by active ingredient alone.
A due-diligence review should confirm:
- Whether the reference listed drug remains active or has been discontinued
- Whether an ANDA can cite the product
- Whether a therapeutic-equivalence rating is available
- Whether patents remain listed
- Whether any exclusivity blocks approval
- Whether the proposed product qualifies for a 505(j) ANDA or requires a 505(b)(2) application
If no active listed patent or exclusivity remains, the commercial contest shifts toward bioequivalence, sterile manufacturing, supply reliability, hospital contracting, and formulary adoption.
Which companies are challenging ibuprofen lysine products?
The generic competitive field is fragmented because ibuprofen is widely manufactured, but ibuprofen lysine injection is a specialized sterile product. Competition may come from:
- Established injectable-drug manufacturers
- Pediatric and neonatal hospital suppliers
- Contract manufacturers with aseptic filling capability
- European suppliers of ibuprofen lysinate oral products
- Companies using conventional ibuprofen with alternative solubilization systems
Publicly visible Paragraph IV activity must be checked through FDA litigation records, the Orange Book, and court dockets. A Paragraph IV filing against a listed patent can trigger Hatch-Waxman litigation and, in some cases, a 30-month stay [4]. For an old active ingredient, the most likely Paragraph IV targets are formulation, manufacturing, or use patents rather than basic composition claims.
What manufacturing and IP barriers affect commercial entry?
Sterile injectable entry has a higher barrier than oral entry. The principal barriers are:
Aseptic manufacturing
The product requires validated sterilization, aseptic filling, container closure integrity, and particulate control. A developer may need a dedicated vial line or a qualified contract manufacturing organization. Small batch sizes can produce unfavorable unit economics.
Salt and pH control
Ibuprofen lysine may require tight control of salt stoichiometry, pH, concentration, and impurity formation. A process that appears simple at laboratory scale may develop precipitation, discoloration, or assay drift during storage.
Packaging
Glass vials, elastomeric stoppers, aluminum seals, and overwrap materials can affect oxygen exposure and leachables. A proprietary container system can support both a patent position and a regulatory differentiation strategy, but it also increases validation requirements.
Hospital preparation
A formulation that remains stable after dilution, minimizes line adsorption, and reduces preparation steps can compete effectively even without strong patent protection. These attributes can influence pharmacy purchasing and neonatal intensive-care unit protocols.
How does ibuprofen lysine compare with competing ibuprofen products?
| Product type | Main advantage | Main weakness | Excipient opportunity |
|---|---|---|---|
| Conventional ibuprofen tablet | Low cost and mature supply | Slower dissolution and swallowing burden | Rapid-disintegration and low-dose-volume formats |
| Ibuprofen lysine tablet or sachet | Faster dissolution potential | Salt taste and hygroscopicity risk | Taste masking and moisture-protective packaging |
| Ibuprofen oral suspension | Pediatric usability | Sedimentation, preservation, and taste issues | High-strength, low-volume, sugar-reduced systems |
| Intravenous ibuprofen | Rapid systemic delivery | Sterile manufacturing cost | Preservative-free, low-volume, admixture-stable products |
| Neonatal ibuprofen lysine injection | Narrow clinical use and hospital value | Small market and high quality requirements | Ready-to-use vials, compatibility, and preparation simplicity |
What are the commercial opportunities for excipient suppliers?
Excipient companies can capture value without owning the drug product by supplying differentiated systems.
High-value opportunities
- Taste-masking platforms for ibuprofen lysine liquids and granules
- Direct-compression excipient blends that preserve rapid dissolution
- High-barrier film coatings for moisture-sensitive salt products
- Preservative-free suspension systems
- Low-shear suspending systems with rapid redispersibility
- Oxygen-scavenging or low-permeability packaging
- Sterile-grade buffering and tonicity systems
- Ready-to-use neonatal injectable platforms
- Co-processed excipients for orally disintegrating tablets
- Reconstitution systems for pediatric sachets
The best commercial target is an excipient platform that solves a recognized development problem and can be used across multiple NSAID, analgesic, or pediatric products.
What revenue exposure and market risks should investors assess?
Ibuprofen is a high-volume, low-price molecule. Revenue exposure depends more on product format than on the active ingredient.
Higher-value segments
- Neonatal hospital injection
- High-strength pediatric products
- Rapid-onset oral products
- Branded over-the-counter products with differentiated packaging
- Combination products with strong consumer recognition
Lower-value segments
- Standard-strength generic tablets
- Unprotected ibuprofen capsules
- Commodity oral suspensions without a clear usability advantage
Key risks include price erosion, limited neonatal volume, hospital purchasing concentration, regulatory scrutiny of excipients, and substitution by conventional ibuprofen products. A sterile product can have better pricing than oral generics but also carries recall and manufacturing-continuity risk.
What is the strongest launch strategy for ibuprofen lysine?
A practical launch sequence is:
- Select a defined clinical or usability problem, such as neonatal preparation complexity or pediatric dose volume.
- Develop a minimal excipient system with a clear safety rationale.
- Establish comparative dissolution, stability, palatability, or admixture data.
- Determine whether the product fits an ANDA, 505(b)(2), or full NDA pathway.
- Conduct Orange Book and global patent clearance before scale-up.
- Protect the formulation, process, packaging, and administration method where the data support non-obvious technical effects.
- Secure sterile capacity or a qualified contract manufacturer.
- Build hospital, pediatric, or consumer distribution around the product’s measurable advantage.
Key Takeaways
- Ibuprofen lysine is an old small-molecule salt with limited prospects for basic composition-of-matter exclusivity.
- The most attractive excipient opportunities are in sterile neonatal injection, pediatric taste masking, rapid dissolution, and high-strength low-volume delivery.
- Preservative-free, single-use injectable formulations are the strongest fit for neonatal use.
- Oral products need protection against moisture, salt taste, compression-related dissolution loss, and dose-uniformity problems.
- Formulation, manufacturing, packaging, and method-of-use patents are more relevant than basic ibuprofen lysine claims.
- Ibuprofen lysine has no biosimilar market because it is a small molecule.
- Generic-entry risk is high for conventional oral products and moderate for specialized sterile products.
- The commercial winner will usually be the product with the best regulatory, manufacturing, and hospital-use profile rather than the lowest active-ingredient cost.
FAQs
Is ibuprofen lysine more soluble than ibuprofen?
Yes. The lysine salt improves aqueous handling and can support faster dissolution, although final performance depends on pH, particle properties, excipients, and dosage form.
Can ibuprofen lysine be formulated as a preservative-free oral liquid?
Yes. A single-use or unit-dose oral liquid can avoid preservatives, but the product must demonstrate microbiological control, physical stability, dose uniformity, and acceptable taste.
Does ibuprofen lysine require a biosimilar application?
No. Ibuprofen lysine is a small-molecule drug. Depending on the reference product and formulation, the U.S. pathway may be an ANDA, 505(b)(2), or full NDA.
What is the best excipient for masking ibuprofen lysine taste?
No single excipient is universally optimal. Film coating, lipid barriers, ion-exchange systems, sweetener-flavor combinations, and multiparticulate encapsulation should be selected based on dose, release profile, and pediatric exposure limits.
Can a new ibuprofen lysine formulation receive patent protection?
Yes, if the formulation, process, packaging, or use has patentable technical features and a defensible non-obviousness position. Broad claims covering ibuprofen lysine with routine excipients are less likely to provide durable protection.
References
-
U.S. Food and Drug Administration. (2006). NeoProfen (ibuprofen lysine) injection prescribing information. FDA.
-
DailyMed. (n.d.). NeoProfen: Ibuprofen lysine injection, solution. National Library of Medicine.
-
U.S. Food and Drug Administration. (n.d.). Approved drug products with therapeutic equivalence evaluations, Orange Book. FDA.
-
U.S. Food and Drug Administration. (n.d.). Hatch-Waxman exclusivity and patent certification provisions. FDA.
-
International Council for Harmonisation. (2009). Q8(R2): Pharmaceutical development. ICH.
-
International Council for Harmonisation. (2005). Q9: Quality risk management. ICH.
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International Council for Harmonisation. (2008). Q10: Pharmaceutical quality system. ICH.
-
U.S. Pharmacopeial Convention. (2024). United States Pharmacopeia and National Formulary. USP.
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