Get an Outstanding Biotechnology Degree Course at a Top Private University for a Better Future
There are many advantages for studying at a top private university in Malaysia for Biotechnology, starting from getting a good and stable career to working in the best of the environments. Students will also get to learn from the best lecturers.Because of the higher education standards at top private universities, your course mates will be just as brilliant as you are having the same like mindedness to achieve success in your academics as well as future career. Group work will be easier as they will all be working hard to achieve the same goals. The top notch education that you receive will ensure you have the knowledge and skills to obtain a high paying job and achieve financial stability quickly.
Choosing the right university for your Biotechnology undergraduate studies is important as it will help to shape your mind, character and help you to develop the necessary skills for a successful career. In addition, not all private universities are the same.
Therefore, you should research carefully and look at the subjects offered, facilities, lecturers’ experience, student environment, awards won and ranking to guide you in your decision making. You should not choose a university because it is the cheapest, easiest and nearest. It should be based on which university that best fits your needs.
Students should pursue the biotechnology degree course at a top private university in Malaysia with excellent facilities & experienced lecturers. Singapore is very established in their biotechnology with the setting up of Biopolis where graduates can find a job there or in Malaysia. To work in the biotechnology field, students must go for at least a Master degree and go for the Ph.D if possible.
You might also be interested to read:
Studying the Bachelor of Science (Hons) Biotechnology at Malaysia’s Private Universities

Chong, Biotechnology at University of Nottingham Malaysia Campus
Biotechnology, the fastest growing science-based industry in the world, is widely regarded as the new engine of growth for the global economy. Covering the medical and health care industries, the agricultural and industrial sectors, the environment, and forensics, it encompasses also the applications of technologies like biochemistry, molecular biology, genetic engineering, bioinformatics, and others for the development of new products and processes.
In addition, it also includes vaccines and drugs for the treatment or improvement of life-threatening diseases like AIDS, medical diagnostic kits, agricultural products with improved nutritional values and reduced dependence on chemical pesticides, as well as high quality industrial products, cleaner biochemical process with less waste, and DNA finger printing for improved criminal investigation.
Basically, biotechnology is the application of advances made in the biological sciences, especially involving the science of genetics and its application. Biotechnology has helped improve food quality, quantity and processing in Malaysia and globally. Biotechnology also has applications in manufacturing, where simple cells and proteins can be manipulated to produce chemicals.
However, biotechnology is most important for its implications in health and medicine. Through genetic engineering – the controlled alteration of genetic material – scientists have been able to create new medicines, including interferon for cancer patients, synthetic human growth hormone and synthetic insulin, among others. In recent years, scientists have also attempted to employ the methods of genetic engineering to correct certain inherited conditions, and have been making great strides in their ability to manipulate genetic materials. These advances suggest the prospect of human control over the very genetic makeup of man, and thus the ability to manipulate our inherited traits.
What will you Study in a Biotechnology Degree Course at a Private University?

Jia Loon, Biotechnology Graduate UCSI University
Students in a biotechnology degree programme will be exposed to scientific principles and knowledge, bioinformation technologies, laboratory techniques in research and development, business and entrepreneurship skills, as well as legal, intellectual, social and ethical issues.
The course content is aimed at providing students with a good foundation of knowledge and hands-on practical experience of the different fields of biotechnology for their future careers which include Pharmacology, Physiological Sciences, Metabolic Biochemistry, Molecular Cell Biology, Human Molecular Genetics, Animal and Plant Cell Culture, Microbial Biotechnology, Enzyme Technology, Fermentation Technology and Downstream processing, Bioprocess Engineering and Environmental Biotechnology.
Though this Bachelor of Biotechnology (Hons) degree programme, graduates will be capable of applying their scientific knowledge and skills to develop novel products and services for the benefit of society and prepare them for future careers as Biochemists, Biomedical Engineers, Crime Lab Technicians as well as other careers in the field of biotechnology.
Students will gain valuable real-world experience by undertaking research projects on topics such as infectious diseases, drug discovery, plant engineering and bioremediation. You will develop skills that can contribute actively to R&D efforts in the biotechnology industry.
Assessments
Coursework percentage: 60%, written examination percentage: 40%
What are some of the Subjects in a Biotechnology Degree Programme?

Dexter Leong, A-Levels at HELP Academy & Biotechnology Degree from University of Nottingham Malaysia Campus
- Human Physiology
- Chemistry
- Physiological Science
- Microbiology
- Structural Biochemistry
- Bioinformatics
- Biochemistry and Metabolism
- Microbes & Immunology
- Statistic and its Applications
- Entrepreneurship for Applied Science
- Research Methodology, Safety and Ethics
- Pharmacology
- Molecular Cell Biology
- Recombinant Technology
- Enzyme Technology
- Human Molecular Genetics
- Environmental Biotechnology and Sustainability
- Cell and Tissue Culture
- Biotechnology Research Project
- Fermentation Technology and Downstream Processing
- Bioprocess Engineering
- Food Microbiology
Areas of Specialisation
The course allows a high degree of specialisation into various areas of biotechnology in years two and three. Specialist areas include:
- Plant
- Microbial
- Industrial
- Medical
- Pharmaceutical
- Chemistry
- Microbiology
- Human Nutrition
- Entrepreneurship
Education Pathway

Jia Loon, Biotechnology Graduate from UCSI University
Students wanting a top notch education in Biotechnology should go for top private universities in Malaysia so that they can get a solid education for better career prospects. Top private universities would have state-of-the-art labs & facilities for biotechnology and qualified & experienced professors to equip you with the necessary knowledge & skills for a successful career.
With at least 5 credits in SPM or IGCSE/O-Levels, students can go for the Foundation in Science before continuing on to the 3-year degree in Biotechnology.
For students in biotechnology, you should be looking at getting at least a Master degree in Biotechnology to work in the industry. Biotechnology work is mainly in research and development, therefore, the basic requirement is at least a postgraduate qualification.
Students who have completed STPM, A-Levels, SAM, AUSMAT, MUFY, CPU, Foundation in Science or some Pre-University programme in Malaysia can enter directly into Year 1 of the Biotechnology degree course.
What are the General Entry Requirements. into a Biotechnology Degree Course?

Wen Hao, Biotechnology at UCSI University
- Foundation in Science or equivalent in Malaysia
Minimum CGPA 2.00 and Possess SPM with 3 credits inclusive of Mathematics and one science subject - National matriculation
Minimum CGPA 2.00 and Possess SPM with 3 credits inclusive of Mathematics and one science subject - STPM
Minimum GPA 2.00 in any two (2) subjects and Possess SPM with 3 credits inclusive of Mathematics and one science subject - UEC
Minimum Grade B in five (5) subjects, inclusive of: - Mathematics
One Science subject
OR Minimum Grade B in 5 subjects and Possess SPM with 3 credits inclusive of Mathematics and one science subject - A-levels
Minimum Grade D in any two (2) subjects and Possess SPM with 3 credits inclusive of Mathematics and one science subject - Australian High/Secondary School Diploma (Grade 12) – SAM/AUSMAT/ SACE/ TEE/ NTCE/WACE
Minimum ATAR 60% or minimum 60% average in five (5) subjects inclusive of: - Mathematics
One Science subject
Canadian Grade 12 – CPU/CIMP
Minimum average of 60% in six (6) subjects, inclusive of: - Mathematics
One Science subject
International Baccalaureate (IB)
Minimum score of 26/42 from six (6) subjects, inclusive of: - Mathematics
One Science subject
Diploma/Advanced Diploma in related field
Minimum CGPA 2.00 - Other qualifications recognized by the Malaysian government
Admission: Case by case basis
What Areas can Biotechnology Graduates work in Malaysia?

Chong, Biotechnology at University of Nottingham Malaysia Campus
Malaysia’s biotechnology graduates can work in 6 broad areas which are:
- Research and Development: Research and development is one of the most in-demand careers in biotech. This field involves working in labs and using cutting-edge technology and techniques to discover new drugs and therapies. Professionals in research and development typically have a strong background in science, with a focus on biology, chemistry or related field, and have an interest in research.
- Regulatory Affairs: Regulatory affairs is another in-demand career in biotech. This field involves working with government agencies to ensure that biotech products are safe, effective, and comply with all regulations. Professionals in regulatory affairs typically have a background in science, with a focus on biology, chemistry or related field, and have an understanding of regulations and laws that govern the biotech industry.
- Business Development: Business development is a hot career in biotech as it involves identifying and developing new business opportunities for biotech companies. Business development professionals typically have a solid understanding of the biotech industry, as well as strong business acumen and the ability to think strategically.
- Data Science and Bioinformatics: Data science and bioinformatics are becoming increasingly important in biotech as the industry generates and uses large amounts of data. Professionals in data science and bioinformatics typically have a background in computer science, mathematics, statistics, or biology and have experience in data analysis, machine learning and data visualization.
- Quality Control and Quality Assurance: Quality control and quality assurance are in-demand careers in biotech as they are responsible for ensuring that biotech products meet the highest standards of quality and safety. Professionals in this field typically have a background in science, with a focus on biology, chemistry or related field and an attention to detail.
- Biotech Entrepreneurship: Biotech entrepreneurship is a hot career option for those who are interested in starting their own biotech companies. Professionals in biotech entrepreneurship typically have a strong understanding of the biotech industry, as well as experience in business management, finance, and marketing.
Graduates in biotechnology can find work in the following areas:
- Antibody technology
- Agriculture
- Bioinformatics
- Biosensor technology
- Biofuels
- Bioactive Therapeutics
- Bio-catalysts
- Biodiagnostics
- Biopesticides & Biofertilizers
- Biotech and Medical Equipment
- Cell culture technology
- Cloning technology
- Cosmetics
- Chemicals & Dyes
- Consultancy
- Contract research & manufacturing services
- Diagnostics
- DNA & Protein chip technology
- Drug discovery & development
- Environmental Biotechnologies
- Food processing
- Fermentation
- Genetically Modified Plants
- Genomics
- Hybrid Seeds
- Herbal Products
- Household consumables
- Instrumentation & Lab Equipment
- Industrial Enzymes
- Medical Diagnostics
- Microbial Strains
- Nanotechnology
- Neutraceuticals
- Oligonucleotides Proteomics
- Pharmaceutical
- Specialized logistics
- Tissue engineering technology
- Tissue Culture
- Vaccine