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Maestría en Biotecnología

The Catholic University of America, Department of Biology


Ubicación

Estados Unidos de América (EE.UU.)

Formato de estudio

Presencial

Idioma del programa

Inglés

Áreas de estudio

Biología, Química, Genética, Biotecnología, Bioquímica, Biología Molecular, Farmacología

Duración

1 Año 6 Meses

Ritmo de estudio

A tiempo completo

Nivel

Máster en Ciencias

Costos de Matriculación

Solicita información

Descripción del programa

Why Get an M.S. in Biotechnology Degree?

The average salary of a Maryland bioscience employee is approximately $80,000. (Maryland Biotechnology Center, 2009)

The Milken Institute projects that biotechnology employment will grow by 1.6% annually through 2014, with many subsectors projected to experience even faster rates of growth. (Angelou Economics: Global Economic Development)

Biotechnology offers opportunities in five major subsectors:

Drugs and pharmaceuticals: Traditionally, chemistry has been the means by which new medicines have been isolated or synthesized. The rise of biotechnology, however, now promises pharmaceuticals that are created through biological processes found in living organisms. Future advances in medicine are relying more and more on the use of biotechnology and, as a result, the role of biotechnology in healthcare is rapidly expanding.

Agricultural feedstock and chemicals: By manipulating plant genomes, biotechnologists can create new breeds of crops. Through the transfer of specific genes, for example, scientists can create plants with enhanced characteristics such as self-fertilization, resistance to drought or disease, and enhanced nutritional value. Current biotechnology research on crop-based fuels may dramatically increase the production of ethanol.

Research, testing, and medical laboratories: Biotechnology research is growing more complicated through genomics, proteomics, and metabiomics. As a result, the products generated are often unique. New test procedures are needed by both companies and regulatory agencies to ensure that biotechnology products are safe and effective.

Environmental applications: One of the earliest applications of biotechnology involved the genetic engineering of microbes to feed on petroleum products. These novel microbes were patented for use in containing oil spills. Aquaculture will also benefit from the insertion of genes in fish and shellfish that will speed their growth and enable them to better ward off parasites and microbial infections.

Medical devices and equipment: Biotechnology makes use of macromolecules that can very precisely recognize certain biological materials. When engineered into sophisticated medical devices and equipment, biotechnology processes can, for example, enhance the sensitivity and speed by which medical diagnoses can be made.

Why The Catholic University of America for the M.S. in Biotechnology Program?

The Catholic University of America offers a unique M.S. in Biotechnology Program that enables biotechnology internships not restricted to just commercial companies, maximal flexibility to students for choosing a program and course of study, and open access to faculty who are fully engaged in both teaching and research in their fields. The Catholic University of America wants to particularly support women and minorities – two groups traditionally underrepresented in the sciences - with opportunities for careers in biotechnology. Personal mentoring in addition to graduate advisors, presentations by accomplished role models, and opportunities for regular social and professional interactions will be offered to help nurture your career development.

Faculty

  • Only faculty with earned Ph.D.s teach graduate courses.
  • The faculty are engaged in ongoing cutting-edge research.
  • The faculty maintain close relationships with their students (faculty: student ratios are as low as 1:1).

Curriculum

You have maximal flexibility and can choose:

  • The two-year M.S. Degree in Biotechnology
  • The one-year Certificate Program
  • The five-year combined B.S. degree in Biology and the M.S. degree in Biotechnology
  • The Ph.D. after completion of the M.S. degree in Biotechnology
  • You can enroll as full-time or part-time students.
  • You can create your own program of study by choosing from course selections in both the biology and elective offerings.
  • You will enjoy a highly interdisciplinary program that includes course offerings in biotechnology, clinical science, microbiology, cell biology, biophysics, biochemistry, business, and research.

Internships

  • You will be able to engage in scientific research at biotechnology companies, federal agencies, and research institutions.
  • You will able to engage in policy research at federal, state, and private organizations.

Program Location

  • The program is located in Washington, D.C., home to major federal agencies, Congress, and major industry and policy organizations.
  • The program location is close to the State of Maryland, which has the 4th largest core concentration of biotechnology companies in the country.
  • The program location is close to the State of Virginia, which supports more than 80,000 direct and indirect jobs in the bioscience industry.

Curriculum

The Master of Science in Biotechnology requires 30 graduate credits earned by completing the courses listed below. The program is fast-paced and designed for completion within two years. Full-time students can complete an accelerated program in as little as 1.5 years, whereas part-time students can take two or more years to complete the program.

Students have maximal flexibility in shaping their own program by selecting the courses in the basic biology and elective cores in which they are most interested.

The Biotechnology Program at Catholic University focuses on providing mature students with a solid technical foundation in basic biological sciences together with an understanding of how to conduct the business of biotechnology.

The Master of Science in Biotechnology degree can be completed as follows:

  • On an accelerated basis in 1 1/2 years full-time.
  • On a standard basis in 2 years full-time.
  • On a standard basis in 2+ years part-time.

There is also a graduate Certificate in Biotechnology that can be completed in one year.

Careers

Internships are part of the curriculum and, while they are for credit, many lead to exciting jobs!

Cost & Fees

"Earn while you learn!" - U.S. citizens can take the program part-time (7 credits or less a semester) for half the cost!

Miscellaneous

Students can complete this program on an accelerated track in only 1.5 years as opposed to 2 years

Detalles de la institución

Welcome to the Department of Biology

Each semester the Biology Department graduate students host a seminar series where invited speakers from other institutions present the results of their research. Seminars are held on Monday at 11:10 am in Rm. 215 McCort-Ward. Pizza is served at 12:00 pm in Rm. 200 following the seminar. The event is sponsored by the Graduate Student Association.

Biology Club

The CUA Biology Club is an organization for all those interested in the life sciences. During the academic year, the Club organizes a combination of social and educational activities which provides many opportunities for students to interact with the faculty and with each other. The club sponsors lecture series addressing current issues and other topics of interest and provides members with opportunities to establish contacts with professionals in the life sciences. A sampling of recent Club activities includes Welcoming party at the beginning of the academic year; career talks; fall dinner; lecture series; premed-oriented programs; Christmas party; end-of-year barbecue, and; the Thanksgiving fundraiser for SOME (So Others May Eat).

Mission

The Center for Advanced Training in Cell and Molecular Biology, a unit of the Department of Biology at The Catholic University of America has been established in 1983 as an International Center to provide expert training for scientists, technicians, graduate students and post-doctoral fellows. Its focus is on the new and established biomedically-related concepts and technologies which provide the major impetus for contemporary research, innovative industrial applications, and sophisticated diagnostic laboratory techniques.

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