Development of biosimilars in an era of oncologic drug shortages

Edward Li1, Janakiraman Subramanian2, Scott Anderson3

  • 1University of New England College of Pharmacy, Portland, ME, USA.

Insights

Global pharmaceutical shortages, especially for sterile injectables and oncology drugs, impact patient care and clinical trials. Developing high-quality biosimilars may prevent future drug shortages and ensure patient access to cancer treatments.

Area of Science:

  • Pharmaceutical Science
  • Oncology
  • Regulatory Affairs

Background:

  • Global shortages of sterile injectable pharmaceuticals, including critical oncology drugs like liposomal doxorubicin, are impacting patient care and clinical trials.
  • Hospitals and oncologists report compromised patient safety, altered treatment regimens, and increased healthcare costs due to drug shortages.
  • Manufacturing issues, supply chain delays, and ingredient unavailability are identified as primary causes of current pharmaceutical shortages.

Purpose of the Study:

  • To evaluate strategies for managing current pharmaceutical shortages.
  • To explore the development of new, high-quality pharmaceutical products to mitigate future shortages.
  • To assess the potential vulnerability of anticancer biologics and biosimilars to shortages.

Main Methods:

  • Analysis of reported global pharmaceutical shortages, particularly in oncology.
  • Review of survey data from hospitals and oncologists regarding the impact of drug shortages.
  • Examination of regulatory guidance from the US FDA and European Medicines Agency on managing shortages.
  • Assessment of the role of biosimilars in preventing future shortages of biologic therapies.

Main Results:

  • Drug shortages have negatively affected patient safety, clinical outcomes, and healthcare costs.
  • Clinical trials are also impacted by the unavailability of standard-of-care drugs.
  • Anticancer biologics may face future shortages, but well-characterized biosimilars could ensure treatment access.
  • Ongoing development of biosimilars for trastuzumab, rituximab, and bevacizumab shows promising results.

Conclusions:

  • Effective strategies are needed to manage current pharmaceutical shortages and prevent future ones.
  • Ensuring a reliable supply of high-quality biosimilar monoclonal antibodies is crucial for preventing shortages and maintaining patient access to cancer therapies.
  • Regulatory compliance and substantial investment in biosimilar development are key to mitigating risks.

Related Concept Videos

Drug Products: Biologics, Biosimilars and Interchangeables01:28

Drug Products: Biologics, Biosimilars and Interchangeables

Biologics, derived from living sources such as humans, animals, or microorganisms, represent a significant category of pharmaceuticals. These complex molecules, developed through advanced biotechnological methods or purified from natural sources, include essential medical treatments like insulin and growth hormones. The complexity of biologics arises from their large molecular structures and the intricate processes required for their production, making them distinct from conventional...
357
Bioequivalence: Overview01:16

Bioequivalence: Overview

Pharmaceutical equivalents, by definition, are drug products with the same active ingredient in the same quantities, encapsulated in identical dosage forms, and intended for the same administration routes. These pharmaceutical equivalents are deemed bioequivalent if the bioavailability of the active entity in the drug preparations is similar. Moreover, pharmaceutical equivalents demonstrating bioequivalence are also regarded as therapeutically equivalent. This means that when used as directed,...
2.2K
Bioequivalence studies: Biowaivers01:13

Bioequivalence studies: Biowaivers

In certain scenarios, in vitro dissolution tests can replace in vivo bioequivalence studies. This is particularly true when a drug product, though available in varying strengths, maintains proportional similarity in its active and inactive ingredients. In such cases, the need for in vivo bioequivalence studies for lower strength variants may be waived, provided dissolution tests and in vivo studies on the highest strength yield satisfactory results.Bioequivalence can be indicated through...
401
Pharmaceutical Alternatives: Stability-Related Therapeutic Nonequivalence01:22

Pharmaceutical Alternatives: Stability-Related Therapeutic Nonequivalence

Generic intravenous (IV) drugs are considered bioequivalent to their branded counterparts due to their 100% bioavailability upon administration. However, variations in stability among different drug products can significantly influence their therapeutic performance, even if they are pharmaceutically equivalent.Cefuroxime, a prophylactic antimicrobial, is often used as a single-dose IV injection for patients undergoing coronary artery bypass grafting surgery. A 3 g dose typically provides...
246
Bioequivalence of Drugs: Drugs with Multiple Indications01:09

Bioequivalence of Drugs: Drugs with Multiple Indications

The concept of therapeutic equivalence (TE) in drugs with multiple indications is complex. A generic drug may be therapeutically equivalent to a brand-name product for one specific indication, but this doesn't necessarily mean it's equivalent for all other indications. Evidence of TE in one patient group and bioequivalence shown in healthy volunteers can support—but not confirm—TE for other indications. However, definitive proof requires individual clinical studies for each...
219
Bioavailability Enhancement: Determination and Conceptual Approaches in Overcoming Bioavailability Problems01:22

Bioavailability Enhancement: Determination and Conceptual Approaches in Overcoming Bioavailability Problems

Bioavailability is a critical pharmacological concept that measures the extent and rate at which an active drug ingredient or therapeutic moiety enters the systemic circulation, remaining unchanged. It's a pivotal factor in determining a drug's efficacy and safety.The Biopharmaceutics Classification System (BCS) plays an essential role in drug development by categorizing drugs into four classes based on their solubility and permeability. This classification aids in understanding drug absorption...
329