Lexington, MA, United States of America

Steven M Rauscher

USPTO Granted Patents = 1 


Average Co-Inventor Count = 5.0

ph-index = 1


Company Filing History:


Years Active: 2008

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1 patent (USPTO):Explore Patents

Title: Steven M. Rauscher: Innovator in Antibiotic Treatment

Introduction: Steven M. Rauscher, an esteemed inventor based in Lexington, MA, has made significant contributions to the field of medicine through his innovative work in treating diseases associated with antibiotic use. With one patent to his name, Rauscher's efforts highlight the critical intersection of healthcare and technology.

Latest Patents: Steven Rauscher holds a notable patent titled "Use of ramoplanin to treat diseases associated with the use of antibiotics." This invention features a groundbreaking method of treating or preventing diseases linked to antibiotics in patients. By administering ramoplanin in effective amounts, Rauscher’s innovation seeks to combat diseases caused by opportunistic bacteria, including enterotoxin-producing strains.

Career Highlights: Rauscher's professional journey has been marked by his role at Oscient Pharmaceuticals Corporation, where he has contributed to the advancement of pharmacological research. His dedication and insights have positioned him as a key figure within the organization, focusing on innovative therapeutic solutions.

Collaborations: Throughout his career, Rauscher has collaborated with fellow researchers and professionals, including Daniela Jabes and Timothy S. Leach. These partnerships emphasize the importance of teamwork in driving forward medical innovations and underline the collaborative culture within Oscient Pharmaceuticals Corporation.

Conclusion: Steven M. Rauscher exemplifies the spirit of innovation in modern medicine. His patent on the use of ramoplanin showcases his commitment to addressing critical health challenges posed by antibiotic resistance. As Rauscher continues his work at Oscient Pharmaceuticals Corporation, the impact of his inventions and collaborations will undoubtedly play a vital role in shaping the future of treatments for antibiotic-related diseases.

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