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Biologics represent breakthrough drug therapies that are changing the pharmaceuticals industry. Accounting for nearly 20 percent of global drug sales, they are a critical area of investment for the industry. The growth rate for biologics is projected to increase at double-digit levels, in sharp contrast to the declining rates for chemically derived, small molecular weight ("small molecule") drugs, which comprise the historic franchise of large pharma companies. In addition, a relatively small number of currently licensed biologics comprise the vast majority of the market. While biologics are addressing significant unmet medical need, they are expensive. Some of these therapies cost upwards of $100,000 per treatment course on an annualized basis and are increasingly attracting the attention of public and private payers in their efforts to control medical expenditures. Currently, payers find it difficult to manage the burgeoning cost of biologics through mechanisms that try to control the utilization of these therapies. In oncology, for example, where monoclonal antibodies (MAbs) and other proteins are widely used, payers hesitate to restrict access to these life-saving treatments. Given these challenges, biosimilars are viewed as a central tenet for future cost containment. Europe has already established the legislative framework and regulatory guidelines for at least some biosimilars. In the US, the model will be dictated by pending congressional legislation. While the details are not final, biopharma companies can expect certain legislative and regulatory principles to be enacted in the US—such as the granting of exclusivity for innovator products (likely span: 10-14 years), a "505(b)2-like" approval pathway and requirements for some degree of clinical development. FDA guidelines for biosimilars' clinical protocols are likely to vary by biologic class, and will be guided by factors such as molecular weight and complexity, the existence of reliable biomarkers, the safety experience of innovator products and the nature of the indication and patient populations. The evolving competitive landscape for biosimilars To date, traditional small-molecule generics companies have been the most aggressive players in pursuing biosimilars. Generics manufacturers such as Teva Pharmaceuticals Industries, Mylan, Sandoz and Hospira already have licensed oncology adjuvant therapies such as epoetin-alfa (EPO) and granulocyte-colony-stimulating factors (G-CSF), which are being marketed in Europe. So far, the results have been mixed. The highest penetration of these products has been in Germany, due to the greater ability of the payers there to influence how drugs are prescribed. In other European countries the demand for these therapies has been quite low for several reasons: The overall penetration of generics is lower; legislation in some countries has been passed that prohibits automatic substitution of biosimilars for innovator products; and payers and providers are sometimes hesitant to promote the use of biosimilars until more robust safety data is accumulated. In addition, emerging market manufacturers, particularly Indian biopharmaceutical companies, are developing biosimilars for local markets. Since its launch in 2007, Reditux, Dr. Reddy's biosimilar for Roche's Rituxan product, has captured nearly a third of the Indian market for Rituxan. Such programs are currently not designed to meet Western regulatory guidelines (which, in the case of biosimilars, don't exist yet for the most part) and thus are unlikely to be eligible for distribution in markets such as the US, Europe and Japan for some time. However, in the interim, the development, manufacturing and commercial expertise acquired by emerging market-based biopharma companies may prove valuable to potential Western biopharma partners, as they pursue biosimilars globally. Finally, a number of large global pharmaceutical and biotech players are considering the development of "biobetters"—drugs that are similar to innovator biologics but are characterized by some change in the structure of the protein or the process by which they are made, with the goal of improved efficacy, safety or immunogenicity. While this strategy may be compelling for certain players, we believe that the clinical development requirements will not greatly differ from those of the referenced innovator product, and the commercial strategies for these products will be akin to traditional branded pharma approaches. Key issues ahead for biosimilars Based on extensive work on this topic and research with key constituents, Bain believes there are several key issues that new entrants and marketers of currently licensed innovator biologics will need to be aware of as they formulate their strategic approach to biosimilars:
While it is hard to predict exactly how—or when—the market for biosimilars will evolve, their potential impact on the global pharmaceuticals industry cannot be ignored. Just as generics emerged as a powerful force in the last two decades, for many in the pharma industry, biosimilars will be a strong agent for change in the future—either through disruption or innovation. Key contacts in Bain's Global Healthcare practice are: |