Share This Page
List of Excipients in Branded Drug NIVESTYM
✉ Email this page to a colleague
Nivestym Excipient Strategy and Commercial Opportunities
Nivestym is Pfizer’s filgrastim-aafi biosimilar to Neupogen (filgrastim), approved by the FDA in 2018 for reducing the duration of neutropenia and related clinical complications in specified oncology, hematopoietic, and transplant settings. Its formulation uses a conventional protein-stabilization system based on sorbitol, polysorbate 80, acetate buffer, and water for injection. The main commercial opportunity is not a new excipient-led version of Nivestym. It is optimization of supply reliability, device presentation, cold-chain performance, hospital economics, and differentiated delivery formats within the constraints of an already approved biologic product [1, 2].
What excipients are used in Nivestym?
Nivestym contains filgrastim-aafi in an acidic, aqueous formulation. The FDA-approved formulation includes sodium acetate or acetate buffering components, polysorbate 80, sorbitol, water for injection, and pH-adjusting agents including acetic acid and sodium hydroxide. The product is supplied in single-dose prefilled syringes and single-dose vials at 300 micrograms per 0.5 mL and 480 micrograms per 0.8 mL strengths [1].
| Formulation attribute | Nivestym profile |
|---|---|
| Active ingredient | Filgrastim-aafi |
| Reference product | Neupogen, filgrastim |
| Dosage form | Injectable solution |
| Strengths | 300 mcg/0.5 mL; 480 mcg/0.8 mL |
| Primary stabilizing excipient | Sorbitol |
| Surfactant | Polysorbate 80 |
| Buffer system | Acetate |
| Administration | Subcutaneous or intravenous, depending on indication |
| Storage | Refrigerated; protect from freezing and light |
| Product type | FDA-approved biosimilar |
| Regulatory listing | Purple Book biologic listing, not an Orange Book small-molecule listing |
Sorbitol helps control protein stability and tonicity. Polysorbate 80 limits adsorption and interfacial stress during manufacturing, storage, and administration. The acetate system controls pH. Each excipient can affect aggregation, subvisible particles, oxidation, syringe compatibility, and immunogenicity risk.
How does Nivestym’s excipient system support product stability?
The Nivestym excipient system addresses the primary degradation pathways for recombinant granulocyte colony-stimulating factor proteins.
Protein aggregation and interfacial stress
Filgrastim is vulnerable to agitation, air-liquid interfaces, contact with container surfaces, and repeated handling. Polysorbate 80 reduces surface adsorption and agitation-induced aggregation. Its degradation products can create separate quality risks, including peroxide formation and potential protein oxidation. Control of polysorbate raw-material quality, peroxide levels, and storage conditions is therefore commercially relevant.
Freeze-thaw protection
Sorbitol provides tonicity and contributes to protection against some freeze-thaw stresses. Accidental freezing remains a material risk because frozen protein solutions can show aggregation or particle formation after thawing. Cold-chain controls, shipping validation, and pharmacy handling instructions are part of the commercial value proposition.
pH control
Acetate buffering maintains the acidic formulation environment required for product stability. Buffer concentration and pH can affect protein conformation, aggregation, syringe-material interaction, and injection tolerability. Any change to buffer composition would require comparability, stability, and regulatory justification.
Container compatibility
Nivestym is supplied in prefilled syringe and vial presentations. The formulation must remain compatible with elastomer closures, syringe components, needle systems, and container surfaces. Silicone oil, tungsten residues, adhesive components, and extractables from primary packaging can affect particulate levels and protein quality.
What formulation patents protect Nivestym?
Nivestym is a biologic product rather than a conventional small-molecule drug. Its primary legal protection is not determined through Orange Book patent listings. The relevant regulatory and intellectual-property records include the FDA Purple Book, Pfizer’s patent portfolio, process patents, formulation patents, manufacturing know-how, and biologic reference-product exclusivity rules [2, 3].
The core Neupogen composition and use patents have largely expired in the United States. Nivestym entered a market that already included Zarxio and other filgrastim products. Pfizer’s commercial protection therefore depends more heavily on regulatory approval, manufacturing scale, supply continuity, contracting, and product presentation than on a broad, blocking excipient patent.
A commercially useful excipient patent would need to claim a specific and defensible technical combination, such as:
- A defined filgrastim concentration with a narrowly specified acetate and sorbitol range.
- A polysorbate 80 concentration linked to reduced aggregation or oxidation.
- A formulation with improved stability under a defined temperature excursion.
- A low-particle formulation in a specified syringe or vial system.
- A container-closure combination that reduces adsorption or extractables.
- A lyophilized or concentrated presentation with demonstrated clinical or manufacturing advantages.
- A manufacturing process that limits polysorbate degradation or protein oxidation.
Broad claims covering filgrastim with sorbitol, acetate, or polysorbate 80 would face substantial novelty and obviousness pressure because these excipients are established in recombinant protein formulations.
When does Nivestym lose exclusivity?
Nivestym does not have a conventional small-molecule exclusivity clock comparable to a new chemical entity listed in the Orange Book. The reference product, Neupogen, received biologic reference-product exclusivity before Nivestym was approved. The FDA approved Nivestym in July 2018 under the biosimilar pathway created by the Biologics Price Competition and Innovation Act [1, 4].
| Event | Date or status |
|---|---|
| Neupogen FDA approval | 1991 |
| First U.S. biosimilar filgrastim, Zarxio | Approved March 2015 |
| Nivestym FDA approval | July 20, 2018 |
| Nivestym U.S. commercial launch | 2018 |
| Biosimilar interchangeability status | Must be assessed separately from biosimilarity; original Nivestym approval was not an automatic substitution designation |
| Patent listing mechanism | Purple Book and patent-disclosure procedures, not ordinary Orange Book listing |
| Market exclusivity outlook | Primarily depends on product-level patents, manufacturing barriers, contracting, and supply economics |
Nivestym does not receive a new 12-year reference-product exclusivity period. That period applies to the reference biologic, not to a biosimilar sponsor’s product. A competing filgrastim biosimilar can enter after satisfying the FDA’s statutory requirements and resolving any applicable patent issues.
What is the Orange Book and Purple Book status of Nivestym?
Nivestym is not treated like an ordinary tablet, capsule, or small-molecule injection for Orange Book purposes. It is a biologic approved under the 351(k) biosimilar pathway and is identified in the FDA Purple Book [2].
The Purple Book records biologic products, reference products, biosimilars, interchangeable biosimilars, and related exclusivity information. Patent disputes involving biosimilars are generally managed under the BPCIA patent-exchange framework and federal patent litigation rather than through the traditional Orange Book Paragraph IV process.
Do Nivestym competitors file Paragraph IV challenges?
The standard Orange Book Paragraph IV mechanism does not directly govern Nivestym because Nivestym is a biologic. A biosimilar competitor can still face patent litigation, but the legal pathway is different.
BPCIA patent disputes
The BPCIA creates a patent-information exchange process between a biosimilar applicant and the reference-product sponsor. Disputes can concern:
- Manufacturing methods.
- Cell culture and purification.
- Formulation.
- Delivery devices.
- Specific indications or methods of use.
- Packaging and combination-product components.
For a mature product such as filgrastim, the practical risk from fundamental composition patents is lower than for a recently launched biologic. Process patents and device patents can remain relevant, particularly where the applicant intends to use a different manufacturing platform or a prefilled syringe.
Nivestym-specific litigation exposure
Publicly available FDA materials do not identify Nivestym as being subject to a continuing, high-profile patent injunction that blocks ordinary U.S. supply. The absence of a blocking dispute does not eliminate freedom-to-operate risk for a new manufacturer. A proposed competitor would still need to assess Pfizer-related manufacturing, device, formulation, and use patents.
What excipient strategies could create commercial opportunities for Nivestym?
1. Polysorbate optimization
Polysorbate 80 is functional but can hydrolyze or oxidize over time. A commercial development program could evaluate:
- Lower-peroxide polysorbate grades.
- Alternative polysorbate 20 or nonionic surfactants.
- Surfactant concentration reduction.
- Antioxidant or metal-control strategies.
- Improved raw-material specifications.
- Alternative surfactant delivery during manufacturing.
Any substitution would require a complete analytical comparability package. The commercial value would be highest if the new system improved shelf life, reduced particles, or enabled less restrictive shipping conditions.
2. Surfactant-free or low-surfactant formulations
A lower-polysorbate formulation could reduce surfactant degradation and potentially improve long-term quality. The technical challenge is maintaining protection against adsorption and agitation-induced aggregation. This opportunity is more suitable for a next-generation filgrastim product than for a minor post-approval change to Nivestym.
3. Room-temperature excursion resistance
Hospitals and specialty pharmacies incur costs from refrigerated storage and temperature excursions. A formulation with validated stability during short, defined periods outside refrigeration could reduce product waste. The claim would need to be based on controlled stability data, not a general room-temperature label statement.
4. High-concentration or low-volume presentations
A higher-concentration formulation could reduce injection volume and support patient self-administration. It could also improve logistics by increasing doses per shipping carton. The development risks include viscosity, syringeability, local tolerability, aggregation, and device-function changes.
5. Prefilled syringe and autoinjector compatibility
Device-based differentiation may provide greater commercial value than a new excipient alone. Opportunities include:
- Low-dead-space syringes.
- Needle-safety systems.
- Autoinjector-compatible viscosity.
- Reduced injection-force systems.
- Human-factors improvements.
- Electronic dose tracking for specialty-pharmacy use.
A device change can create combination-product requirements and may require new human-factors, extractables, leachables, and container-closure studies.
6. Alternative dosage forms
Potential formats include a stabilized liquid for home administration, a lyophilized vial, or a concentrated formulation. A lyophilized product could improve stability but would add reconstitution steps and increase preparation burden. The commercial case is strongest in markets where cold-chain reliability is weak or where vial waste is significant.
How strong is the Nivestym patent estate?
The Nivestym patent estate is strategically stronger in manufacturing and presentation than in basic excipient composition.
| Patent area | Relative commercial strength | Principal issue |
|---|---|---|
| Basic filgrastim composition | Low to moderate | Mature technology and prior art |
| Sorbitol-acetate-polysorbate formulation | Low to moderate | Established excipient use |
| Specific stability ranges | Moderate | Requires reproducible technical effect |
| Manufacturing process | Moderate to strong | Process details can be difficult to design around |
| Prefilled syringe and device | Moderate | Device claims may create narrow barriers |
| High-concentration formulation | Moderate | Clinical, stability, and device evidence required |
| Cold-chain excursion formulation | Moderate | Value depends on validated label advantage |
| Supply and quality systems | Strong operationally | Not necessarily enforceable as a patent |
A credible patent program should emphasize narrow, data-backed claims. Formulation claims should tie the excipient combination to measurable outcomes such as reduced high-molecular-weight species, lower particle burden, longer stability, or improved container compatibility.
How does Nivestym compare with Zarxio and Neupogen?
| Product | Sponsor | Product type | U.S. approval status | Commercial position |
|---|---|---|---|---|
| Neupogen | Amgen | Reference filgrastim | Original biologic | Established reference product |
| Zarxio | Sandoz | Filgrastim biosimilar | Approved 2015 | First U.S. filgrastim biosimilar |
| Nivestym | Pfizer | Filgrastim-aafi biosimilar | Approved 2018 | Large-scale sponsor and contracting platform |
| Releuko | Lupin/Visu? | Filgrastim biosimilar | Approved 2022 | Additional U.S. competition |
Nivestym competes primarily on net price, supply assurance, institutional contracting, specialty-distributor access, and payer acceptance. Excipient differences are unlikely to drive routine hospital purchasing unless they affect stability, storage, administration, or device performance.
What is the FDA regulatory status of Nivestym?
Nivestym is FDA-approved as a biosimilar to Neupogen for indications including:
- Cancer patients receiving myelosuppressive chemotherapy.
- Patients with acute myeloid leukemia receiving induction or consolidation chemotherapy.
- Cancer patients undergoing myeloablative chemotherapy followed by bone marrow transplantation.
- Patients undergoing autologous peripheral blood progenitor-cell collection and therapy.
- Patients with severe chronic neutropenia.
The approved label specifies administration by subcutaneous or intravenous routes depending on the indication. It also includes warnings relating to splenic rupture, acute respiratory distress syndrome, serious allergic reactions, sickle-cell disorders, and glomerulonephritis [1].
Nivestym approval does not automatically establish interchangeable status. Interchangeability can affect pharmacy substitution and payer utilization, but it requires a separate FDA determination supported by the applicable switching evidence and regulatory requirements.
What licensing deals and commercial partnerships affect Nivestym?
Nivestym is a Pfizer product. Its commercial opportunity is linked to Pfizer’s biologics manufacturing, distribution, hospital contracting, and biosimilar commercialization capabilities. Public disclosures do not provide a separately reported Nivestym revenue line, so product-specific revenue exposure cannot be calculated reliably from Pfizer’s financial reporting.
For potential partners, the more realistic opportunity areas are:
- Regional commercialization in markets without strong filgrastim biosimilar access.
- Hospital and oncology-clinic distribution.
- Prefilled syringe or autoinjector technology.
- Excipient raw-material supply with enhanced quality specifications.
- Cold-chain packaging and temperature-monitoring systems.
- Contract manufacturing for selected geographic markets.
- Formulation technology licensed for a follow-on filgrastim product.
A licensing strategy based only on common excipients is unlikely to command strong exclusivity. A package combining formulation data, device rights, manufacturing know-how, and regulatory support has greater commercial value.
What generic and biosimilar launch risks exist for Nivestym?
The principal risks are biosimilar competition, price compression, tender losses, manufacturing interruptions, and payer preference for interchangeable products.
Near-term launch scenario
A new filgrastim biosimilar could enter with a lower net price and compete for hospital tenders. The entrant would not need to reproduce Nivestym’s excipients if its product demonstrates biosimilarity to Neupogen.
Differentiated formulation scenario
A competitor could use a different surfactant, concentration, or container system. The product would need to show comparable quality, clinical performance, and immunogenicity. The development cycle would be longer, but the sponsor could seek a defensible device or formulation position.
Supply-constrained scenario
Manufacturing reliability could be more important than list price during shortages. A supplier with redundant production, validated cold-chain packaging, and consistent fill-finish capacity could win share even without a novel formulation.
Key Takeaways
- Nivestym uses a conventional filgrastim formulation based on acetate buffering, sorbitol, polysorbate 80, and water for injection.
- The strongest excipient opportunities are improved polysorbate control, lower particle formation, temperature-excursion resistance, and compatibility with next-generation delivery devices.
- Broad patents on filgrastim with common excipients are likely to face substantial prior-art challenges.
- Nivestym is a Purple Book biosimilar, not a conventional Orange Book product.
- Paragraph IV is not the primary patent pathway; BPCIA procedures and federal patent litigation are more relevant.
- Pfizer does not publicly report Nivestym revenue as a separate product line.
- Commercial differentiation is more likely to come from supply, contracting, device design, and validated stability than from a basic excipient substitution.
- A new formulation would require FDA comparability, stability, container-closure, and potentially combination-product evidence.
FAQs About Nivestym Excipient and Commercial Strategy
Can Nivestym be reformulated with polysorbate 20 instead of polysorbate 80?
Yes, technically, but the change would require extensive comparability, stability, aggregation, particle, immunogenicity, and container-compatibility data. It would be a product-development project rather than a routine manufacturing change.
Does Nivestym have a patent on its excipient combination?
A specific formulation patent may exist in a relevant jurisdiction, but the use of sorbitol, acetate, and polysorbate 80 with recombinant filgrastim is not, by itself, a strong basis for broad exclusivity. Enforceability would depend on claim scope, priority dates, prosecution history, validity, and demonstrated technical effects.
Would an autoinjector create new exclusivity for Nivestym?
An autoinjector could support device, combination-product, or use claims. It would not automatically create broad exclusivity over filgrastim. The commercial protection would depend on the device claims and whether competitors could use an alternative delivery system.
Is Nivestym interchangeable with Neupogen?
Nivestym is FDA-approved as a biosimilar to Neupogen. Biosimilarity and interchangeability are distinct regulatory concepts. Automatic pharmacy substitution depends on an FDA interchangeability designation and applicable state law.
What is the best commercial excipient opportunity for a follow-on filgrastim product?
The strongest opportunity is a formulation that combines low particulate burden, improved surfactant stability, validated temperature-excursion tolerance, and a user-friendly prefilled or autoinjector presentation. A single common-excipient substitution is less likely to create durable commercial differentiation.
References
-
U.S. Food and Drug Administration. (2018). Nivestym (filgrastim-aafi) injection, prescribing information. Pfizer Laboratories.
-
U.S. Food and Drug Administration. (n.d.). Purple Book: Database of licensed biological products. https://purplebooksearch.fda.gov/
-
U.S. Food and Drug Administration. (2020). Questions and answers on biosimilar development and the BPCI Act. https://www.fda.gov/
-
U.S. Congress. (2010). Biologics Price Competition and Innovation Act of 2009, Pub. L. No. 111-148, §§ 7001-7003, 124 Stat. 119.
More… ↓
Make Better Decisions: Try a trial or see plans & pricing
Drugs may be covered by multiple patents or regulatory protections. All trademarks and applicant names are the property of their respective owners or licensors. Although great care is taken in the proper and correct provision of this service, thinkBiotech LLC does not accept any responsibility for possible consequences of errors or omissions in the provided data. The data presented herein is for information purposes only. There is no warranty that the data contained herein is error free. We do not provide individual investment advice. This service is not registered with any financial regulatory agency. The information we publish is educational only and based on our opinions plus our models. By using DrugPatentWatch you acknowledge that we do not provide personalized recommendations or advice. thinkBiotech performs no independent verification of facts as provided by public sources nor are attempts made to provide legal or investing advice. Any reliance on data provided herein is done solely at the discretion of the user. Users of this service are advised to seek professional advice and independent confirmation before considering acting on any of the provided information. thinkBiotech LLC reserves the right to amend, extend or withdraw any part or all of the offered service without notice.
Alerts Available With Subscription
Alerts are available for users with active subscriptions.
Visit the Subscription Options page for details on plans and pricing.
ISSN: 2162-2639

Privacy and Cookies
Terms & Conditions
Site Map
DrugPatentWatch Alternatives
LOE / Major Patent Expirations 2026 - 2027
NCE-1 Patent Challenge Dates 2026 - 2027
Friedman, Yali. "DrugPatentWatch" DrugPatentWatch, thinkBiotech, 2026, www.DrugPatentWatch.com.
See Primary Research Papers Citing DrugPatentWatch
Access the Complete Database
BioPharmaceutical Business Intelligence
- Analyze global market entry opportunities
- Identify first generic entrants
- Uncover prior art in expired and abandoned patents