

The Biomedical Engineering – Biomaterials and Tissue (Dual Degree) program at the University of Miami is designed for students who aspire to become innovators in the fields of regenerative medicine, medical devices, and tissue engineering. This comprehensive five-year program blends foundational engineering education with in-depth biological sciences, creating a unique academic environment where students explore the interaction between living systems and engineered materials. Through an integrated curriculum that includes coursework in cell biology, materials science, fluid mechanics, and tissue mechanics, students gain a multidisciplinary perspective essential for solving complex medical challenges. The program places a strong emphasis on the development and evaluation of biomaterials used in implants, prosthetics, and artificial organs, as well as the design of scaffolds and systems that support tissue regeneration.
In addition to its strong theoretical foundation, the program offers robust laboratory training and research opportunities that expose students to cutting-edge techniques in biocompatibility testing, polymer synthesis, and nanostructured biomaterials. The dual degree structure allows students to extend their expertise into an additional field, such as biology, chemistry, or mechanical engineering, enhancing both their academic depth and professional flexibility. Faculty members actively engaged in research provide mentorship on real-world projects that address issues in wound healing, organ repair, and drug delivery systems. With access to state-of-the-art facilities, clinical partnerships, and interdisciplinary research centers, students graduate with both the technical skills and scientific insight required to lead in the biomedical innovation landscape.
Year 1 – Core Science and Engineering Foundations
• General Chemistry I & II
• Calculus I & II
• Introduction to Biomedical Engineering
• Physics with Calculus
• Biology for Engineers
Year 2 – Materials and Mechanics
• Organic Chemistry
• Statics and Dynamics
• Mechanics of Materials
• Thermodynamics
• Introduction to Biomaterials
Year 3 – Tissue Engineering Focus
• Biochemistry
• Biomedical Instrumentation
• Cell and Molecular Biology
• Principles of Tissue Engineering
• Materials Characterization Techniques
Year 4 – Advanced Integration & Dual Degree Courses
• Transport Phenomena in Biological Systems
• Nanotechnology and Biomaterials
• Biomedical Ethics and Law
• Dual Degree Specialization Electives
• Research Methods in Biomedical Engineering
Year 5 – Capstone Design and Research
• Senior Design Project I & II
• Advanced Topics in Biomaterials
• Clinical Immersion or Industry Internship
• Technical Communication
• Dual Degree Thesis or Research Seminar
Graduates of this program are uniquely positioned to pursue careers across the full spectrum of the biomedical device, healthcare, and biotechnology industries. They often work in the development of advanced prosthetics, artificial organs, and biocompatible materials used in surgical implants. Employment opportunities are strong in biomedical product design, tissue engineering, regenerative medicine, and clinical research and development, where interdisciplinary knowledge is highly valued. Some graduates contribute to pharmaceutical delivery systems, biosensor technology, or biomechanical modeling, while others continue their academic journey in medical school, graduate programs, or research-focused doctoral studies. The dual degree also expands options for roles in materials engineering, biotech startups, and regulatory agencies, enabling graduates to lead projects that directly improve patient outcomes and push the boundaries of what’s possible in modern medicine.
The Biomedical Engineering – Biomaterials and Tissue dual degree program at the University of Miami offers an exceptional opportunity for students who want to be at the forefront of innovation in healthcare technology and biological design. The program's comprehensive curriculum balances engineering principles with biological insight, preparing students to confront the technical and ethical challenges of biomedical innovation with confidence and precision. With access to world-class research labs, collaborative projects with medical professionals, and dual-degree flexibility, students are equipped with a distinctive academic edge. Whether through clinical partnerships, internships, or undergraduate research, the program offers real-world engagement that bridges classroom theory and healthcare practice. Choosing this path means embracing a rigorous, forward-looking education that not only prepares students for technical excellence but also encourages them to think critically about the social and human dimensions of their work in transforming human health through science and engineering.
For further information, please contact the admissions office at:
Phone: +1 305 284 2000
Email: admissions@miami.edu
Address: University of Miami, 1320 S Dixie Hwy, Coral Gables, FL 33146, United States