Selling low-cost vaccines to organizations like Gavi isn't just charity for pharmaceutical companies. It creates massive economies of scale, lowering the cost of goods for their high-margin primary markets and increasing overall net profit, creating a powerful win-win incentive structure.

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Breakthrough drugs aren't always driven by novel biological targets. Major successes like Humira or GLP-1s often succeeded through a superior modality (a humanized antibody) or a contrarian bet on a market (obesity). This shows that business and technical execution can be more critical than being the first to discover a biological mechanism.

By negotiating prices down from over $1,000 to as low as $150 per month, the government deal fundamentally shifts Ozempic's market position. It is no longer a high-end luxury akin to plastic surgery but an accessible wellness product comparable to a fancy gym membership, dramatically expanding its addressable market.

By leveraging bulk purchasing, Gavi vaccinates children in developing countries for just $24 (compared to $1,300 in the US). This small investment saves one life for every 50-60 children vaccinated, yielding a cost-benefit ratio unmatched in healthcare or philanthropy.

Unlike a drug that can be synthesized to a chemical standard, most vaccines are living biological products. This means the entire manufacturing process must be perfectly managed and cannot be altered without re-validation. This biological complexity makes production far more difficult and expensive than typical pharmaceuticals.

The Orphan Drug Act successfully incentivized R&D for rare diseases. A similar policy framework is needed for common, age-related diseases. Despite their massive potential markets, these indications suffer from extremely high failure rates and costs. A new incentive structure could de-risk development and align commercial goals with the enormous societal need for longevity.

The most profound innovations in history, like vaccines, PCs, and air travel, distributed value broadly to society rather than being captured by a few corporations. AI could follow this pattern, benefiting the public more than a handful of tech giants, especially with geopolitical pressures forcing commoditization.

Diseases like Ebola and malaria, which primarily affect poor countries, lack market incentives for vaccine R&D. The Ebola vaccine only progressed because it was briefly on a U.S. bioterrorism list created after 9/11, highlighting how market failures require creative, sometimes accidental, incentives to overcome.

Unlike labor-dependent services that get more expensive, prescription drugs offer a unique societal ROI because they eventually go generic and become cheaper. This deflationary aspect is a powerful, underappreciated argument for investing in drug development, as successful medicines provide compounding value to society over time.

The next decade in biotech will prioritize speed and cost, areas where Chinese companies excel. They rapidly and cheaply advance molecules to early clinical trials, attracting major pharma companies to acquire assets that they historically would have sourced from US biotechs. This is reshaping the global competitive landscape.

Unlike traditional UN agencies, Gavi operates as a public-private alliance. Its key innovation is not just fundraising but acting as a market-shaper. By guaranteeing consistent, large-scale purchases, Gavi gives private manufacturers the predictability needed to invest in capacity, ultimately lowering costs and ensuring supply security.

Pharma Giants Profit by Selling Vaccines to Poor Nations at a 95% Discount | RiffOn