A Graduate Program in Biotechnology
Last updated: August 24, 2023 at 9:41 AM
Programs of Study
- Master of Science
- Combined BS/MS
- Combined MS/MBA
Objectives
Biotechnology is a rapidly growing sector of the United States and global economies. Its products are increasingly important in diagnosis, prevention and treatment of disease. The Master of Science Program in Biotechnology at Brandeis University was developed to equip students with skills to enter and advance in this dynamic industry.
The program provides student-centered, interdisciplinary training in the biological sciences and in business, drawing upon the world-class Life Science departments, the Heller School for Social Policy and Management and International Business School at Brandeis University. The two-year program integrates laboratory training through Research Project Labs with a summer internship in an industrial or academic setting. Skills are developed step-by-step, and reinforced in multiple elements of the curriculum. Professional development opportunities include seminars and meetings with experienced workers in biotechnology, pharmaceuticals and medical research from the thriving Massachusetts life sciences community.
Learning Goals
Knowledge
Students who complete the Professional Science Master’s Program in Biotechnology successfully will demonstrate knowledge of the following:
- Molecular biology that is fundamental to biotechnology, including PCR, cloning, sequencing, western blots, Southern and northern blots, microarray techniques, transgenic organisms, gene therapy, and control of gene expression by CRISPR and RNAi.
- Major sectors of the biotechnology industry, including their research and development timelines, financing, and regulatory processes.
- Core principles of accounting, finance, organizational behavior, human resources management, strategy, project management, and marketing.
- Intellectual property and patents.
Those completing the MS/MBA program will additionally demonstrate knowledge of healthcare management.
Skills
Students who complete the Professional Science Master’s Program in Biotechnology successfully will develop skills in these areas:
- Using modern biological research techniques, including recombinant DNA methods.
- Collecting and analyzing quantitative data, and creating visual representations of data.
- Reading and evaluating print and online sources including peer-reviewed publications, science and business journalism and blogs.
- Critical thinking about management problems, and developing solutions to problems based upon business principles.
- Communicating effectively about scientific observations and opinions, and about business ideas to expert and general audiences both orally and in writing.
- Marketing themselves effectively using resumés and cover letters and at interviews.
Those completing the MS/MBA program will additionally develop skills of leadership, decision making, and resource acquisition and management.
Social Justice
Students who complete the Professional Science Master’s Program in Biotechnology successfully will be aware of ethical norms and societal implications of the biotechnology industry and be prepared to evaluate these factors when making decisions in these areas:
- Planning, doing, and reporting scientific research.
- Working in management.
Those completing the MS/MBA program will additionally be aware of the social context of healthcare, and the needs of vulnerable individuals and social groups, including people who are ill or disabled.
How to Be Admitted to the Graduate Program
The general requirements for admission to the Graduate School, given in an earlier section of this Bulletin, apply to candidates for admission to this area of study. For specifics regarding applying to the Biotechnology program, see the program website.
Faculty
(Biology)
Instructional Faculty
Brenda Anderson, Senior Lecturer(Heller School, International Business School)
Carole Carlson, Senior Lecturer and MBA Program Director
(Heller School)
Jane Ebert, Associate Professor of Marketing in the Brandeis International Business School
(International Business School)
Ben Gomes-Casseres, Professor of International Business
(International Business School)
Lisbeth Hedstrom, Professor of Biology
(Biology)
Jody Hoffer Gittell, Professor
(Heller School)
James La Creta, Program Chair for the Information Technology Management program and Instructor
(Rabb School)
Susan Lovett, Abraham S. and Gertrude Burg Professor of Microbiology
(Biology)
Michael Marr, Associate Professor of Biology
(Biology)
Kene Piasta, Lecturer
(Biology)
Vincent Sutera, Lecturer
(Biology)
Philippe Wells, Senior Lecturer
(International Business School)
Emily Westover, Assistant Professor of Biochemistry
(Biochemistry)
Rachel Woodruff, Assistant Professor of Biology
(Biology)
Grace Zimmerman, Professor of the Practice of Marketing
(International Business School)
Requirements for the Degree of Master of Science in Biotechnology
Program of Study
The program provides interdisciplinary, professionally-oriented training in biotechnology, stressing both science and business concepts. Mastery of the field of biotechnology will be taught both in the classroom and through hands-on laboratory work. In addition, students will build professional skills in data analysis, searching and reading the scientific literature, scientific writing, oral presentation and teamwork.
The program includes a summer internship at a biotechnology or pharmaceutical company or non-profit research center or in one of many biological sciences research laboratories on the Brandeis campus, for a total program length of five consecutive semesters. Research areas on campus include genetics, molecular biology, developmental biology, cell biology, chemical biology, biophysics, structural biology, immunology, and neurobiology. Students should enroll in BIOT 212a for credit for the internship. Any modifications to this timeline must be approved by the program director.
A. A total of twelve 4-credit courses (in addition to the internship) are required for the program.
B. Four lecture courses are mandatory for all biotechnology students. These are:
- BIOL 101a Molecular Biotechnology*
- BIOL 205a Masters Proseminar
- BIOT 201b Business of Biotechnology
- BIOT 203b Fundamentals of Management for Biotechnology
*Students who previously took a course equivalent to BIOL 101a Molecular Biotechnology may substitute an elective course with the consent of the program directors.
C. Two laboratory courses are mandatory:
- BIOL 251a Protein Biochemistry Laboratory
- BIOL 256a Biotechnology Project Laboratory
D. One of the following is required: BCHM 100a Introductory Biochemistry or BIOL 100b Advanced Cell Biology or BIOL 102b Structural Molecular Biology or BIOL 103b Mechanisms of Cell Function
E. All students will take two biology, biochemistry, or chemistry electives numbered higher than 100 and one business elective‡.
F. The remaining courses may be additional biology, biochemistry, or chemistry electives (as above), or relevant business‡, computer science, economics, or sociology courses as well as relevant courses in the Heller School for Social Policy and Management, at appropriate levels approved by the program directors, or additional laboratory courses. The laboratory courses may be additional project laboratories (usually numbered BIOL 150-159) or research in laboratories approved by the program directors (students should enroll in Biotechnology Research, BIOT 293).
‡Two 2-credit business modules (e.g., BUS 226f Managing Global Human Capital, BUS 228f Management Communication) may be taken in place of a 4-credit course.
G. In addition, all students are required to attend the Division of Science Responsible Conduct of Research (RCR) workshop, usually offered in the spring semester. Students should take this workshop during their first year if possible, but if they cannot due to extenuating circumstances, they must take it in year two.
Students may not take more than four 4-credit courses in any semester without permission of the director.
Students must receive grades of B- or better in all courses and may be terminated from the program if their academic records are unsatisfactory. In order to earn the Master of Science degree, the student must complete a minimum of 60 credits.
Residence Requirement
The minimum in-person residence requirement is two years.
Summer Registration
Master's students in the Biotechnology program are required to participate in an internship and should register for BIOT 212a through Workday Self-Service. Registration for Graduate Summer Term does not count toward the residency requirement. The summer registration fee will be waived.
Optional Thesis in Biotechnology
With approval of the supervising Brandeis faculty member and the program director, Biotechnology MS, BS/MS, or MS/MBA track students have the option to write a Master’s Thesis (BIOT 299a) following completion of at least two full semesters of BIOT 293a Biotechnology Research, provided that the research was performed in a single laboratory at Brandeis. Those who wish to complete a Master’s Thesis must obtain approval in the semester prior to when they will register for BIOT 299a (by November 1st if completing the thesis in the spring semester and by March 1st if completing the thesis in the fall semester). BIOT 299a,b will not count towards degree requirements. After completion and approval, the thesis must be electronically deposited in ProQuest ETD. For instructions on how to do this, visit the Thesis and Dissertation Guide.
Five-year Combined BA/MS or BS/MS Program in Biotechnology
This combined degree program allows students to complete the full master’s program in biotechnology with one additional year of graduate study after earning a BA or BS degree at Brandeis. Requirements for the bachelor's degree, defined by the College of Arts and Sciences, remain unaffected by participation in this program. Students who successfully complete the five-year program must receive the bachelor's degree by the end of their fourth year and will matriculate in the Graduate School in the fifth year. Students interested in this option should apply to the Graduate School of Arts and Sciences by March 1 of their junior year using the links on the biotechnology program website.
Applicants must demonstrate (through their transcripts and in their application statement of purpose) that they can complete the requirements for a bachelor’s degree while pursuing the courses of the full Year 1 master's degree in biotechnology curriculum. Students may achieve the bachelor’s degree in any major, but must have completed one full year of introductory biology and laboratory (BIOL 14a, 15b, BIOL 18a,b), introductory chemistry and laboratory (CHEM 11a,b or CHEM 15a,b and CHEM 18a,b or CHEM 19a,b), and organic chemistry (CHEM 25a,b and CHEM 28a,b or CHEM 29a,b) to qualify for admission into the 5-year program.
If accepted into the program, students will be expected to take the six required courses of the Biotechnology Year 1 program and attend the Division of Science Responsible Conduct of Research workshop in their senior year. Students may elect one additional course of their choosing each semester to complete any bachelor’s degree requirements. At the end of the first year in the combined program, student progress will be evaluated by the program directors. At the discretion of the Biotechnology program directors, any students who did not perform satisfactorily in the Biotechnology program courses in that year may not be allowed to proceed to the fifth year of the program.
Brandeis 5-year degree students will then continue with the biotechnology summer internship and enter the Year 2 master’s degree in biotechnology curriculum in the summer immediately after their 4th year. In order to earn the Master of Science degree, the student must complete a minimum of 30 credits in their 5th year. 5-year degree students are also eligible to complete an optional Master’s thesis.
Requirements for the Dual Degree of Master of Science in Biotechnology and Master of Business Administration
The Heller School for Social Policy and Management at Brandeis University has offered an MBA degree since 1998. The Heller MBA in Non-Profit Management, with its specialization in Healthcare Management, primarily prepares students for work in organizations that manage healthcare delivery, research and policy (hospitals, insurance companies, biotech research and the like). The opportunity for Biotechnology MS students to acquire additional leading edge management skills via the Heller MBA, with its deep expertise in healthcare management, is intended to position them for significant leadership roles in a broad range of organizations in biotechnology and healthcare.
Program of Study
Students admitted into this dual degree program must fulfill 96 credits taken over six consecutive semesters. Students may choose to begin the program with either the MS in Biotechnology or the Heller MBA track. Dual Heller MBA/Biotechnology MS applicants must fulfill all requirements for admission to both programs. Students already enrolled in the Biotechnology MS program who desire to enter the MBA program will be required to take the GMAT or GRE.
The core requirements for the dual degree are shown as follows:
MBA Core Requirements
- HS 250a Financial Accounting
- HS 258a Operations Management
- HS 253b Leadership and Organizational Behavior
- HS 513a Issues in National Health Policy
- HS 518a Management of Healthcare Organizations
- HS 246a Data, Models and Decisions
- HS 251b Managerial Accounting
- HS 252b Strategic Management
- HS 285a Marketing
- HS 215b Corporate Finance
- HS 372b Economic Theory and Social Policy
- HRNS/HS 232a Team Consulting Project Workshop*
- HS 299b Team Consulting Project
- HS 412f Social Policy and Management Through the Lens of Equity
Biotechnology Core Requirements
- BIOL 101a Molecular Biotechnology
- BIOL 251a Project Lab in Protein Biochemistry
- BIOL 256a Biotechnology Project Laboratory
- BIOL 205a Masters Proseminar
- BIOT 201b Business of Biotechnology
- BIOT 203a Management for Biotechnology
- BCHM 100a Introductory Biochemistry or BIOL 100b Advanced Cell Biology or BIOL 102b Structural Molecular Biology or BIOL 103b Mechanisms of Cell Function
- One Science Elective (4 units)
- The Division of Science Responsible Conduct of Research workshop (non-credit) usually offered in the spring semester
- MS/MBA students are also eligible to complete an optional Master’s thesis.
- All students must enroll in BIOT 212, the summer internship, during the summer between Year 1 and Year 2.
*By the time enrolled students take MBA Team Consulting Project courses, they are required to have taken at least two full semesters of required MBA courses.
Annual Academic Performance Review and Progress to the Graduate Degree
Courses of Instruction
(200 and above) Primarily for Graduate Students
BIOL
251a
Project Laboratory in Protein Biochemistry
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Features experiments in protein biochemistry that are fundamental to the field of biotechnology. These include protein purification, characterization and quality assessment. Focus is placed on designing purification protocols for both tagged and untagged proteins using biochemical knowledge. The designed protocols are tested by purifying known proteins. As part of the course, students will contribute to research projects of unknown outcome by purifying and assaying novel proteins. Usually offered every year.
Kene Piasta
BIOL
256a
Project Laboratory in Biotechnology
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The primary goal of this course is to teach current methods in molecular biology so students can establish a skill set that makes them viable in today's research job market. The secondary goal is to encompass the many aspects that present themselves to a researcher working in a laboratory setting. A final goal is to help place you on the career path you desire. The class projects aim to answer real research questions posed by Brandeis principal investigators, create a research environment that prepares students for a career in science, and allows them to fully understand what attributes are necessary to be competent in the field of research. For Fall of 2022 there will be four possible projects. These will consist of: A) trying to enhance the binding efficiency and overall performance of a thermophilic polymerase, commonly used in PCR reactions, by adding a non-specific DNA binding domain. B) continuing our screen of small chemical molecules on a model system that may inhibit the production of toxic proteins called Shiga toxins that can lead to Hemorrhagic Colitis in people. C) refine our search for genes that might be responsible for the extracellular transport of ATP. D) a new project that is to be determined. Students will have their choice to investigate 2 out of the 4 projects for the semester. This class has a large time commitment in and outside of class time and should not be taken in conjunction with other research laboratories or internships. Usually offered every year.
Vincent Sutera
BIOT
201b
Business of Biotechnology
Prerequisite: BIOT 203b or permission of the instructor.
Biotechnology industries are based upon recombinant DNA methodology. Most are in areas of medicine, agriculture, and manufacturing. Business of Biotechnology gives an overview of these sectors and introduces their research and development models, regulation, financing, and marketing. Usually offered every year.
Neil Simister
BIOT
203b
Fundamentals of Management for Biotechnology
Prerequisite: BIOL 205a or permission of the instructor.
Introduces basic business concepts and tools, with an emphasis on the biotechnology and pharmaceutical industries. It provides an overview of accounting, alliances, entrepreneurship, ethics, finance, human capital, leadership, marketing, mergers and acquisitions, organizational behavior, project management, and strategy. Usually offered every year.
Neil Simister
BIOT
212a
Biotechnology Internship
Prerequisites: BIOL 156a and BIOL 205a, or permission of the instructor. Open to graduate students in biotechnology only. Yields 12 semester-hour credits.
Biotechnology Internship is a real-world workplace experience. Students work in industrial or academic laboratories or in managerial positions in biotechnology or related industries. The internship is an opportunity to develop professional skills, explore career paths, and make connections with employers. Usually offered every year.
Neil Simister
BIOT
293a
Biotechnology Research
Prerequisites: BIOL 156a and BIOT 200a. Approval of the Program Director is required. May be repeated for credit up to three times.
Students in the MS Program in Biotechnology work in industrial or academic laboratories in biotechnology or related areas for a minimum of 10 hours per week for 12 weeks. Usually offered every year.
Neil Simister
BIOT
299a
Master's Thesis Research
Usually offered every year.
Staff
BIOT
299b
Master's Thesis Research
Usually offered every year.
Staff
BIOT Courses of Related Interest
BCHM
100a
Advanced Introductory Biochemistry
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Prerequisite: One year of organic chemistry with laboratory.
Topics include protein and nucleic acid structure; chemical basis of enzyme-catalyzed reaction mechanisms and enzyme kinetics; the chemical logic of metabolic pathways, including glycolysis and oxidative phosphorylation; and regulation of enzymatic pathways through allosteric control. Usually offered every year in multiple sections.
Emily Westover
BIBC
126b
Molecular Mechanisms of Disease
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Prerequisite: BCHM 88b or BCHM 100a. May not be taken for credit by students who took BIOL 126b in prior years.
Explores biochemical changes in proteins, enzymes and metabolic pathways that underlie human diseases. Examines molecular mechanisms for a variety of diseases, with a particular focus on molecular mechanisms for therapies. Draws heavily on current literature. Usually offered every second year.
Emily Westover
BIOL
100b
Advanced Cell Biology
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Prerequisites: BIOL 14a and BIOL 15b.
An advanced course on cell biology. Topics include structure and organization of the cell, principles of signal transduction, and cell division and proliferation. Usually offered every year.
Avital Rodal
BIOL
101a
Molecular Biotechnology
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Prerequisite: BIOL 14a and BIOL 18b.
Develops knowledge of molecular biology, and skills to research, choose and interpret the best experimental approaches for answering research questions in molecular biology. Studies molecular biology techniques such as PCR, DNA sequencing, genomics, cloning, microarrays, and CRISPR, and their research applications. Usually offered every year.
Rachel Woodruff
BIOL
102b
Structural Molecular Biology
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Prerequisites: BIOL 14a and BIOL 15b, or permission of the instructor.
This introduction to the structural basis of viral molecular biology examines the designs of proteins, their folding and assembly, and the means whereby we visualize these structures. We will use several recent viral pandemics including SARS-CoV-2, Ebola, and HIV as models of how to understand viral structure and assembly. Usually offered every second year.
Melissa Kosinski-Collins
BIOL
103b
Mechanisms of Cell Functions
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Prerequisite: BIOL 100b.
Focuses on the mechanistic basis of cell biological processes, with a heavy emphasis on how they are elucidated experimentally. Classic and modern research papers are used to illustrate a range of genetic, biochemical, and imaging-based experimental approaches. Topics include cell compartmentalization, membrane traffic, cytoskeleton, cell motility, and cell division. The primary learning goal is to understand how the scientific method is applied in cell biology research. Intended for graduate students and advanced undergraduates. Usually offered every year.
Bruce Goode
BIOL
132a
General Microbiology
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Prerequisites: BIOL 14a and BIOL 15b. May not be taken for credit by students who took BIOL 71a in prior years.
Topics include the physiology and properties of bacteria, viruses, and other microorganisms; microbial nutrition, metabolism, growth; bacterial genetics; horizontal gene transfer; microbial pathogenesis; immunity; antibiotics and other means of microbial control. Usually offered every year.
Susan Lovett
BIOL
159a
Project Laboratory in Microbiology
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Prerequisites: BIOL 18a and BIOL 18b.
A discovery-based laboratory to study the diversity of microorganisms in particular environments. Students will isolate microbes with ability to metabolize complex compounds from special environments, characterize their properties and identify them by DNA sequence analysis. After students learn foundational microbiology concepts and techniques, they will choose, design, and carry out a short research project. This project lab is primarily for seniors and master's students. Usually offered every year.
Deani Cooper
BUS
230a
Entrepreneurship
Addresses the fundamentals of starting and growing a business, including entrepreneurial finance and financial management. Covers theory and practice and includes presentations by speakers engaged in entrepreneurship, underwriting, and venture capital. The major assignment is a team project to construct a business plan for a startup company using actual data. Usually offered every year.
Philippe Wells
BUS
254a
Branding Strategy
Prerequisite: BUS 252a.
Examines the value of building, sustaining, and communicating a company's brand and its value proposition through promotional activities and channels of distribution. A competitive, online simulation is used to enhance case studies. Usually offered every year.
Grace Zimmerman
BUS
257f
Social Media and Advertising
Meets for one-half semester and yields half-course credit.
Explores the activities a company undertakes to educate, engage and prompt to action its various target customer segments. Topics include advertising, promotions, event sponsorship, internet marketing, social media marketing, corporate blogs, word-of-mouth advertising, and marketing communications for social initiatives. Usually offered every year.
David Shaby
BUS
258f
Sales and Sales Management
Meets for one-half semester and yields half-course credit.
Explores concepts and techniques for professional sales and sales management. Includes strategies for maximizing revenue and customer satisfaction while optimizing costs to sell, service and maintain customer relationships. Usually offered every year.
Staff
BUS
260a
Competition and Strategy
Introduces frameworks for analyzing industries and firm competitive advantage and reviews key concepts in business strategy. Uses case method to practice strategic thinking and team projects to practice business research. Core for MBA students and recommended for other business students. Usually offered every year.
Benjamin Gomes-Casseres
CBIO
106b
Chemical Biology: Medicinal Enzymology
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Prerequisites: Satisfactory grade in BIOL 14a, BIOL 15b, CHEM 25a and 25b, and BCHM 100a or the equivalent.
Introduces students to the conceptual framework and experimental methods in medicinal chemistry. Topics include mechanisms of drug-target interactions, strategies for lead optimization and issues in metabolism, pharmacokinetics and pharmacodynamics. Readings drawn from textbooks and the original scientific literature. Usually offered every second year.
Lizbeth Hedstrom