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- Our Tests | Genetech
Discover Genetech’s specialized testing services: from pioneering molecular diagnostics and DNA typing in Sri Lanka to precise GM food and animal disease testing. Ensure accuracy with our PCR-based tests. Our Tests Molecular Diagnostics We pioneered the use of molecular diagnostics in Sri Lanka. We seek evidence of a disease at the basic causative level by detecting the nucleic acids based on PCR technology. Read More GM and Other Food Testing We use a PCR method to identify the most common genetic elements that are generally found in Genetically Modified (GM) crops. Our test can be applied to a wide range of food items including crops and processed food. Read More DNA Typing We pioneered the use of DNA typing for human identification for forensic casework and analysis of family relationships including parentage testing. Read More Sex Determination of Birds Many bird species are monomorphic; thus, males and females cannot be distinguished visually. We offer molecular sexing for proper gender assignment of a wide range of bird species with an accuracy of 99.9%. Read More Animal Testing We are the only firm to provide a PCR based animal disease testing service in Sri Lanka. We offer tests which detect Canine Parvovirus, Canine Distemper, Canine Babesiosis and Canine Ehrlichiosis. In addition to animal disease testing, we provide a cattle parentage testing service through the use of DNA typing. Read More View Price List
- Collaborative Projects | Genetech
Discover groundbreaking research collaborations at GRI, tackling dengue and genetic studies in Sri Lanka. Explore our innovative projects and join us in advancing science! Collaborative Projects How projects initiated under this scheme work Projects initiated under this scheme will be considered formal research collaborations between GRI and the external researcher. The external researcher and GRI will agree on a time frame, scope of work, and budget for the project. An agreement will be signed between GRI and the external researcher spelling out these details. Technical services and laboratory work may be performed in either of the following ways subject to mutual agreement: By the external researcher and GRI staff. By the external researcher and a research assistant appointed by the external researcher. Budgeting and authorship Budgeting for this type of project will take the following into consideration: Chemicals and consumables Technical Personnel fees (if done by GRI staff) Equipment fees Bench fees Overhead charges GRI scientists will be co-authors of any publications or presentations that are generated by the project. A list of collaborative projects funded by external sources is given below. Risk factors for dengue hemorrhagic fever in Sri Lanka. FIRCA Grant, National Institutes of Health (NIH), USA. Pediatric dengue surveillance in Colombo. Pediatric Dengue Vaccine Initiative (PDVI), South Korea. Funded by Bill and Melinda Gates Foundation. Genetic identification of vertebrate species in Sri Lanka using DNA barcoding. Funded by an ADB project through the Open University of Sri Lanka. Cross reactivity and prophylactic activity of HLA restricted Dengue 2 and Dengue 3 T cell responses. Funded via a contract grant (National Institutes of Health (NIH), USA) awarded to the La Jolla Institute of Allergy and Immunology. The Dengue Population Genetics Program: The project aimed to assess genetic variants associated with dengue hemorrhagic fever (DHF). Funded via a contract grant (NIH/NIAID) awarded to McMaster University, Canada. National Dengue Surveillance Project: The project aimed to perform surveillance for dengue in Sri Lanka. Funded by the European Union/ Ministry of Health, Sri Lanka. Sequencing of current circulating dengue viruses in Sri Lanka and correlating them with the specific dengue epitopes with T cell responses from dengue patients. Funded by the National Science Foundation, Sri Lanka. Studies on Melioidosis patients and the infecting Burkholderiapseudomallei strains in Sri Lanka. Funded by the US Army Medical Research & Material Command (USAMRMC). The identification of HLA class I and class II T cell epitopes from dengue virus. Funded by the National Institutes of Health (NIH), USA.
- Journal Publications | Genetech
Discover Genetech’s journal publications on genetic research and advancements in Sri Lanka, shaping the future of molecular diagnostics and biodiversity. Perera, N., Galhena, G. & Ranawaka, G. (2021) X-chromosomal STR based genetic polymorphisms and demographic history of Sri Lankan ethnicities and their relationship with global populations. Scientific Reports 11:12748. Available from: doi: 10.1038/s41598-021-92314-9 Perera, N., Galhena, G. & Ranawaka, G. (2021) Development of a 16 X-STR multiplex PCR system for kinship analysis and its applicability for the Sinhalese population in Sri Lanka. International Journal of Legal Medicine. 135:161–166. Available from: doi: 10.1007/s00414-020-02450-6 Nirmani, M. D., Perera, N. S. & Galhena, G. H. (2021) Population genetic dynamics of dengue vectors Aedes aegypti and Aedes albopictus in Sri Lanka: Baseline study for designing Wolbachia control method. International Journal of Tropical Insect Science. 41:1809–1821. Available from: doi: 10.1007/s42690-020-00395-2 Jayasinghearachchi, H. S., Francis, V. R., Sathkumara, H. D., Krishnananthasivam, S., Masakorala, J., Muthugama, T., De Silva, A. D. & Corea, E. M. (2021) Nonclonal Burkholderia pseudomallei Population in Melioidosis Case Cluster, Sri Lanka. Emerging Infectious Diseases. 27 (11). Available from: doi: 10.3201/eid2711.210219 Nirmani, M. D., Perera, N. S. & Galhena, G. H. (2020) The scope of Rp EPIC markers in population genetic studies: a preliminary study with dengue vectors. Journal of the National Science Foundation of Sri Lanka, 48(3): 275-288. Available from: doi: 10.4038/jnsfsr.v48i3.9311 Dharmarathne, H. A. K. M., Weerasena, O. V. D. S. J., Perera, K. L. N. & Galhena, G. (2020) Genetic characterization of Aedes aegypti (Diptera: Culicidae) in Sri Lanka based on sequence polymorphism of COI gene. Journal of Vector Borne Diseases 57 (2):151–158. Available from: doi: 10.4103/0972-9062.310871 Powell, L. A., Miller, A., Fox, J. M., Kose, N., Klose, T., Kim, A. S., Bombardi, R., Tennekoon, R. N., de Silva, A. D., Carnahan, R. H., Diamond, M. S., Rossmann, M. G., Kuhn, R. J. & Crowe, J. E. Jr. (2020) Human mAbs Broadly Protect against Arthritogenic Alphaviruses by Recognizing Conserved Elements of the Mxra8 Receptor-Binding Site. Cell Host & Microbe. 28(5), 699-711.e7. Available from: doi: 10.1016/j.chom.2020.07.008 Mutucumarana, C. P., Bodinayake, C. K., Nagahawatte, A., Devasiri, V., Kurukulasooriya, R., Anuradha, T., De Silva, A. D., Janko, M. M., Østbye, T., Gubler, D. J., Woods, C. W., Reller, M. E., Tillekeratne, L. G. & Lantos, P. M. (2020) Geospatial analysis of dengue emergence in rural areas in the Southern Province of Sri Lanka. Trans R Soc Trop Med Hyg. 114(6), 408-414. Available from: doi: 10.1093/trstmh/trz123 Grifoni, A., Voic, H., Dhanda, S. K., Kidd, C. K., Brien, J. D., Buus, S., Stryhn, A., Durbin, A. P., Whitehead, S., Diehl, S. A., De Silva, A. D., Balmaseda, A., Harris, E., Weiskopf, D. & Sette, A. (2020) T Cell Responses Induced by Attenuated Flavivirus Vaccination Are Specific and Show Limited Cross-Reactivity with Other Flavivirus Species. Journal of Virology. 94(10) Available from: doi: 10.1128/JVI.00089-20 Mapalagamage, M., Handunnetti, S. M., Wickremasinghe, A. R., Premawansa, G., Thillainathan, S., Fernando, T., Kanapathippillai, K., De Silva, A. D. & Premawansa, S. (2020) High levels of Serum Angiopoietin 2/1 Ratio at the Critical Stage of Dengue Hemorrhagic Fever in Patients and Association with Clinical and Biochemical Parameters. J Clin Microbiol. 58(4). Available from: doi: 10.1128/JCM.00436-19 Nirmani M. D., Perera, K. L. N. & Galhena, G. H. (2019) Use of ovitrap surveillance to assess dengue outbreak risks in selected dengue endemic areas in Sri Lanka. Sri Lankan Journal of Biology 4(2): 32-46. Available from: doi: 10.4038/sljb.v4i2.39 Tian, Y., Seumois, G., De-Oliveira-Pinto, L. M., Mateus, J., Herrera-de la Mata, S., Kim, C., Hinz, D., Goonawardhana, N. D. S., de Silva, A. D., Premawansa, S., Premawansa, G., Wijewickrama, A., Balmaseda, A., Grifoni, A., Vijayanand, P., Harris, E., Peters, B., Sette, A. & Weiskopf, D. (2019) Molecular Signatures of Dengue Virus-Specific IL-10/IFN-g Co-producing CD4 T cells and their Association with Dengue Disease. Cell Rep. 29(13), 4482-4495.e4. Available from: doi: 10.1016/j.celrep.2019.11.098 Burel, J. G., Pomaznoy, M., Lindestam Arlehamn, C. S., Weiskopf, D., da Silva Antunes, R., Jung, Y., Babor, M., Schulten, V., Seumois, G., Greenbaum, J. A., Premawansa, S., Premawansa, G., Wijewickrama, A., Vidanagama, D., Gunasena, B., Tippalagama, R., de Silva, A. D., Gilman, R. H., Saito, M., Taplitz, R., Ley, K., Vijayanand, P., Sette, A. & Peters, B. (2019) Circulating T cell-monocyte complexes are markers of immune perturbations. Elife. Available from: doi: 10.7554/eLife.46045.001 Grifoni, A., Moore, E., Voic, H., Sidney, J., Phillips, E., Jadi, R., Mallal, S., De Silva, A. D., De Silva, A. M., Peters, B., Weiscopf, D. & Sette, A. (2019) Characterization of Magnitude and Antigen Specificity of HLA-DP, DQ, and DRB3/4/5 Restricted DENV-Specific CD4+ T Cell Responses. Front Immunol. Available from: doi: 10.3389/fimmu2019.01568 Jayasinghearachchi, H. S., Corea, E. M., Krishnananthsivam, S., Sathkumara, H. D., Francis, V. R., Abeysekere, T. R. & De Silva, A. D. (2019) Whole-Genome Sequences of Eight Clinical Isolates of Burkholderia Pseudomallei from Melioidosis Patients in Eastern Sri Lanka. Microbial Resour Announc. 8(33). Available from: doi: 10.1128/MRA.00645-19 Kose, N., Fox, J. M., Sapparapu, G., Bombardi, R., Tennekoon, R. N., De Silva, A. D., Elbashir, S. M., Theisen, M. A., Humphris-Narayanan, E., Ciaramella, G., Himansu, S., Diamond, M. S. & Crowe Jr, J. E. (2019) A lipid-encapsulated mRNA encoding a potently neutralizing human monoclonal antibody protects against chikungunya infection. Science Immunology. 4(35). Available from: doi: 10.1126/sciimmunol.aaw6647 Tian, Y., Babor, M., Lane, J., Seumois, G., Liang, S., Goonawardhana, N. D. S., De Silva, A. D., Phillips, E. J., Mallal, S. A., da Silva Antunes, R., Grifoni, A., Vijayanand, P., Weiskopf, D., Peters, B. & Sette, A. (2019) Dengue-specific CD8+ T cell subsets display specialized transcriptomic and TCR profiles. The journal of clinical investigation. 129(4), 1727-1741. Available from: doi: 10.1172/JCI123726 Vimonish, R., Galhena, G. H., Perera, K. L. N. & Magamage, M. P. S. (2018) PCR based approach for detection of bovine babesiosis in suspected carrier cattle and vector ticks in Sri Lanka. Journal of Agricultural Sciences – Sri Lanka, 13(1):55–65. Available from: doi: 10.4038/jas.v13i1.8300 Raut, R., Corbett, K. S., Tennekoon, R. N., Premawansa, S., Wijewickrama, A., Premawansa, G., Mieczkowski, P., Rückert, C., Ebel, G. D., De Silva, A. D. & de Silva, A. M. (2018) Dengue type 1 viruses circulating in humans are highly infectious and poorly neutralized by human antibodies. Proc Natl Acad Sci USA . 116(1), 227-232. Available from: doi: 10.1073/pnas.1812055115 Tillekeratne, L. G., Bodinayake, C. K., Simmons, R., Nagahawatte, A., Devasiri, V., Kodikara Arachchi, W., Nicholson, B. P., Park, L. P., Vanderburg, S., Kurukulasooriya, R., De Silva, A. D., Østybe, T., Reller, M. E. & Woods, C. W. (2018) Respiratory Viral Infection: An Underappreciated Cause of Acute Febrile Illness Admissions in Southern Sri Lanka. Am J Trop Med Hyg . 100 (3), 672-680. Available from: doi: 10.4269/ajtmh.18-0699 Grifoni, A., Costa-Ramos, P., Pham, J., Tian, Y., Rosales, S. L., Seumois, G., Sidney, J., De Silva, A. D., Premkumar, L., Collins, M. H., Stone, M., Norris, P. J., Romero, C. M. E., Durbin, A., Ricciardi, M. J., Ledgerwood, J. E., de Silva, A. M., Busch, M., Peters, B., Vijayanand, P., Harris, E., Falconar, A. K., Kallas, E., Weiskopf, D. & Sette, A. (2018) Cutting Edge: Transcriptional Profiling Reveals Multifunctional and Cytotoxic Antiviral Responses of Zika Virus-Specific CD8+ T Cells. J Immunol . 201 (12), 3487-3491. Available from: doi: 10.4049/jimmunol.1801090 Mapalagamage, M., Handunnetti, S., Premawansa, G., Thillainathan, S., Fernando, T., Kanapathippillai, K., Wickremasinghe, R., De Silva, A. D. & Premawansa, S. (2018) Is Total Serum Nitrite and Nitrate (NOx) Level in Dengue Patients a Potential Prognostic Marker of Dengue Hemorrhagic Fever. Dis Markers . Available from: doi: 10.1155/2018/5328681 Fernando, S. J. A., Faiz, N. M., Handunnetti, S. M., De Silva, A. D., Dasanayake, W. M. D. K., Wickramasinghe, G. D., Karunatilake, R. M. C. H. & de Silva, N. R. (2018) Preliminary study on chronic granulomatous disease in Sri Lanka. Allergy Asthma Clin Immunol. 14, 37. Available from: doi: 10.1186/s13223-018-0264-7 Corea, E. M., de Silva, A. D. & Thevanesam, V. (2018) Melioidosis in Sri Lanka. Trop Med Infect Dis. 3(1). Available from: doi: 10.3390/tropicalmed3010022 Bodinayake, C. K., Tillekeratne, L. G., Nagahawatte, A., Devasiri, V., Kodikara Arachchi, W., Strouse, J. J., Sessions, O. M., Kurukulasooriya, R., Uehara, A., Howe, S., Ong, X. M., Tan, S., Chow, A., Tummalapalli, P., De Silva, A. D., Østbye, T., Woods, C. W., Gubler, D. J. & Reller, M. E. (2018) Evaluation of the WHO 2009 classification for diagnosis of acute dengue in a large cohort of adults and children in Sri Lanka during a dengue-1 epidemic. PLoS Negl Trop Dis . 12(2). Available from: doi: 10.1371/journal.pntd.0006258 Montoya, M., Collins, M., Dejnirattisai, W., Katzelnick, L. C., Puerta-Guardo, H., Jadi, R., Schildhauer, S., Supasa, P., Vasanawathana, S., Malasit, P., Mongkolsapaya, J., de Silva, A. D., Tissera, H., Balmaseda, A., Screaton, G., de Silva, A. M. & Harris, E. (2018) Longitudinal Analysis of Antibody Cross-Neutralization Following Zika and Dengue Virus Infection in Asia and the Americas. J Infect Dis . Available from: doi: 10.1093/infdis/jiy164 Premkumar, L., Collins, M., Graham, S., Liou, G. A., Lopez, C. A., Jadi, R., Balmaseda, A., Brackbill, J. A., Dietze, R., Camacho, E., De Silva, A. D., Giuberti, C., Dos Reis, H. L., Singh, T., Heimsath, H., Weiskopf, D., Sette, A., Osorio, J. E., Permar, S. R., Miley, M. J., Lazear, H. M., Harris, E. & de Silva, A. M. (2018) Development of Envelope Protein Antigens To Serologically Differentiate Zika Virus Infection from Dengue Virus Infection. J Clin Microbiol . 56(3). Available from: doi: 10.1128/JCM.01504-17 Page 1 of 3 Journal Publications 1 2 3
- 5 Day Practical Training Programme | Genetech
Explore our 5-day practical training programme. Designed for A Level Students, it covers Molecular Diagnostics, DNA Fingerprinting, and more. Ideal for those planning to join universities worldwide. 5 Day Practical Training Programme for A Level Students Why choose this programme? The programme will consist of lectures, practicals, and demonstrations covering various topics in molecular biology, biotechnology, and gene technology. It will also provide exposure to the applications of these subjects in the fields of Molecular Diagnostics and DNA Fingerprinting as an introducti on. Who can register for this programme? This programme is specifically designed for Edexcel, Cambridge, and Local A/L Students (AS, A2 and post-A/Ls) to fulfill the basic practical experience requirements in molecular biology and gene technology applications. It is intended for students who will be applying to and awaiting entry into tertiary programmes, particularly those planning to join universities in the US, UK and other countries in the near future. Email now If you are interested in participating in this training programme, send us an email with your details to info@genetechsrilanka.com View FAQs Contact us View Inquiry Form
- DNA Typing Services | Genetech
Explore Genetech’s DNA Typing Services for legal paternity, crime scene analysis, and identity verification in complex cases. DNA Typing Services Child custody and maintenance: In cases where one parent is claiming the custody and maintenance of a child and the other parent is refusing to accept parentage. Proof of adultery: Especially in divorce cases where the paternity of the child is suspect, and the wife is being accused of adultery, DNA typing can be used to determine whether the husband is the father of the child. Rape, which has resulted in pregnancy: DNA typing of tissue samples from the mother, child and suspected offender can be analysed to determine whether he is the father of the child. Testamentary cases: When a deceased person's wealth is to be distributed among his or her heirs, it is sometimes necessary to determine who the heirs are. DNA typing can be used to prove blood relationship to the deceased individual. Immigration: Individuals and families interested in establishing a proven biological link to their relatives ultimately enhance their chances of a successful application for immigration. Identity testing in cases involving immigration may include answering questions of paternity, maternity, and sibling relationships. Twin studies: DNA typing can be used to determine whether twins are identical or not. Identification of mutilated bodies: When a deceased person's body is mutilated and cannot be identified directly, such as in fire, vehicle accidents, bomb blasts, or due to prolonged burial, it is possible to identify these persons by comparing their DNA profiles with that of their close relatives'. Murder, violent assault, robbery: In these cases, a sample of tissue from the criminal is sometimes found at the scene of the crime, and if there is a suspect, DNA typing can very accurately determine whether the sample of tissue belongs to the suspect, thereby linking the suspect to the crime. Furthermore, a sample of tissue from the victim may be found on the criminal (such as blood stains on the criminal's clothing). Similarly, DNA typing can be used to determine whether the sample of tissue belongs to the victim in such cases, thereby connecting the suspect to the victim. Rape and other sexual offences: In these cases, semen and saliva samples may be obtained from the body and clothing of the victim. DNA typing can be used to determine whether the sample of tissue belongs to the suspect, thereby linking the suspect to the crime. In such cases, DNA typing can be used very effectively to identify the criminal only if the offense is reported immediately, and DNA samples are taken as soon as possible. Establishment of identity in insurance claims: It is often necessary to establish the identity of a claimant in life insurance claims. DNA typing can determine the relationship of the claimant to the insured individual. DNA typing is also extremely effective in identifying individuals who have died in accidents or by other causes, and whose bodies have been severely mutilated making conventional identification impossible. Hence, DNA typing can be used to confirm the death of the insured person. Establishment of a criminal DNA profile data bank: Many countries have enacted legislation to establish a DNA databank, containing profiles from individuals convicted of specific crimes, especially violent crimes and sexual offences. Law enforcement agencies search these databanks for matches with DNA profiles from biological evidence of unsolved crimes. Using these databanks, law enforcement agencies have been successful in identifying suspects in cases thought to be unsolvable. Such databases are also a powerful deterrent to crime because the criminal knows that his DNA profile is on record.
- Bird DNA Sexing | Genetech | Colombo, Sri Lanka
Accurate Bird DNA Sexing for breeders, pet owners, and conservationists. Non-invasive, 99.9% accurate testing with quick, reliable results. Submit your sample today! Bird DNA Sexing Why DNA Sexing Matters Accurate sex determination is essential for breeding, conservation, and pet ownership, particularly in monomorphic species where males and females appear identical. Even in species with visible differences between males and females, gender traits often develop only in adulthood. Knowing a bird’s sex is crucial for forming proper breeding pairs, helping breeders, and providing important information to pet owners and buyers before selling birds. Sample Collection Process To submit a sample for Bird DNA Sexing, follow these steps: Pluck 5-6 feathers from the bird’s chest area. Place the feathers in an envelope or a plastic zip-lock bag. Label the envelope or zip-lock bag with your bird ID (such as the bird’s name, ring number, or cage number). Complete the sample acceptance form and submit it along with the samples (available at the Genetech Reception or downloadable here ). You can submit the samples in person or by courier to: Genetech 54 Kitulwatte Road, Colombo 00800 For mail or courier submissions, place the sealed samples and completed sample acceptance form inside an envelope. We will notify you once the samples have been received. What we offer We provide 99.9% accurate molecular sexing for a wide range of bird species. Our method is non-invasive, typically using feathers, though blood and other tissues are also accepted. The process is quick, efficient, and cost-effective, delivering reliable results for bird owners, breeders, and conservationists. Contact us View Price List Sample Acceptance Sheet
- Animal Testing | Genetech
Early diagnosis is crucial for canine health. Our PCR-based tests detect Parvovirus, Ehrlichiosis, and more. Trust us for accurate results. Animal Testing What is Parvovirus and why is early diagnosis essential? Canine Parvovirus (CPV) is a highly contagious pathogen primarily affecting dogs. This virus can also infect other mammals including cats. If untreated, the risk of death may be high. Thus, a rapid and early diagnosis could save their lives. Detection of the virus can help you select an appropriate treatment regimen for your animals, prevent the spread of the virus and save them from secondary infections. Why we recommend a PCR test over an ELISA test The sensitivity of an ELISA test depends on the Ag/Ab concentration and the availability. Thus, it could lead to false positive or negative results. In contrast, our PCR (Polymerase Chain Reaction) test detects the viral genome and produces no false positive or negative results. This is because it is dependent on the availability of the virus but not its products or Abs. The positive result of an ELISA test can be caused by organisms other than the target. On the other hand, our PCR test detects genetic sequences unique to the target pathogen. Therefore, its specificity is much higher than an ELISA test. The accuracy of the ELISA test varies, and it depends on the Ag/Ab availability. Our PCR test offers a consistent accuracy of 99%. What is tick fever and why may early detection be crucial? Tick fever is a common canine disease in Sri Lanka which is caused through the bite of an infected tick carrying an insidious and deadly organism. Scientifically, it is known as Canine Ehrlichiosis and Canine Babesiosis. Early detection may prevent the dog from experiencing severe anemic conditions caused by the disease due to the highly pathogenic nature of it. Furthermore, the specific detection will help choose a suitable treatment regimen for your dog. Why microscopy and antibody tests are not ideal Some stages of the parasite life cycle cannot be observed through the microscope. Therefore, the probability of obtaining false results is high. It takes several days to develop antibodies against a certain infection in the body. Hence, it is difficult to diagnose the infection early. Antibodies may be present in the body even after the disease is cured. Thus, if the test is done after the infection is cured, the result may be false positive. What we offer We are the first firm to provide a PCR based animal disease testing service in Sri Lanka. We offer tests which detect Canine Parvovirus, Canine Distemper, Canine Babesiosis and Canine Ehrlichiosis. In addition to animal disease testing, we provide a cattle parentage testing service through the use of DNA typing. Contact us View price list
- FAQs | Genetech
Explore Genetech’s comprehensive FAQs to learn about our diverse internships, training programmes, and courses in Molecular Biology and Gene Technology. Find out about eligibility, fees, schedules, and more. Frequently Asked Questions What are the internships/training programmes/courses currently being offered at Genetech? A summary of the internships/training programmes/courses offered is given in the following document. Are foreigners eligible to enrol in an internship/training programme/course at Genetech? Is there a difference in programme/course fee? Yes, we warmly welcome students from all over the world to enrol in our internships/training programmes/courses. For international students requiring a visa to enter Sri Lanka, we would be delighted to provide a letter confirming your enrolment. There is no difference in the fee charged. What is the duration of the internships/programmes/courses offered and on what days will these be conducted? They are normally held on consecutive working days over the stipulated duration (excluding holidays and weekends) from 9.30am to 4.30pm. *Please note that there can be slight modifications to the times and dates specified. What are the prerequisite qualifications required to enrol in an internship/training programme/course at Genetech? No prerequisite qualifications are required to enrol in any internship/training programme/course at Genetech. Enrolment can be done by paying the required fee on or before the starting date and filling in a form with your details on the starting date. Do you charge an extra registration fee? No, 10% of the final fee is normally taken as the registration fee in order to reserve your place for the relevant internship/programme/course as limited places will be available, this fee is non-refundable and needs to be paid before five working days of the scheduled start date. Do you offer any paid internships or any training programmes/courses free of charge or discounted rates? No, we do not offer any paid internships or training programmes/courses free of charge or at discounted rates. Do you offer accommodation, meals and/or transport services for trainees/interns? We do not offer accommodation, meals or transport services to participants at this time. How can I receive more information or ask specific questions about the available internships/training programmes/courses at Genetech? Further queries can be sent to the Genetech School of Gene Technology by contacting +94112696992 or via the official email address info@genetechsrilanka.com . Can I carry out my research work at Genetech? Yes, we can provide the facilities to accommodate undergraduate, postgraduate and PhD research work related to the Molecular Biology and Gene Technology. Do you offer acceptance letters for visa applications? Yes, contact info@genetechsrilanka.com for more information.
- Advanced Certificate Course in Molecular Techniques for DNA Fingerprinting | Genetech
Learn essential techniques in gene technology and DNA fingerprinting. Open to A Level students and current undergraduates in biology, biotechnology, and biomedical science. Advanced Certificate Course in Molecular Techniques for DNA Fingerprinting For Graduates, Undergraduates, Pre-University and A/L Students Why choose this course? This course provides in-depth coverage of fundamental molecular techniques in gene technology, with a special focus on DNA fingerprinting—the gold standard for individual identification. Students will gain expertise in a broad range of essential molecular biology techniques, preparing them for successful careers in state-of-the-art laboratories worldwide. A certificate will be issued upon completion of the course. Who can register for this course? This course is ideal for undergraduates and graduates in biology, biotechnology, or biomedical science who are seeking to advance their postgraduate studies or enhance their career prospects. It is also highly beneficial for current and recently completed A/L students (Edexcel, Cambridge, and Local A/L) who aim to pursue higher education in these fields. Course Content The course encompasses both theoretical and practical aspects of the following. Basic setup of a molecular biological lab Handling biological samples for DNA fingerprinting Chelex and solid-phase DNA extraction methods DNA quantification Multiplex PCR Commercial kits for DNA profiling Agarose gel electrophoresis Capillary electrophoresis Generating and analysing DNA profiles SNPs for human identification Mitochondrial DNA analysis and X and Y chromosome testing Animal and plant forensics Sex determination and detection of chromosomal anomalies DNA sequence analysis Individual hands-on training will be provided. Duration and fees This course will run from 9.00 am to 4.00 pm on 10 weekdays. The programme fee will be LKR 64,500 which is to be paid before the registration in order to confirm and reserve your place. Places will be offered on a first come first served basis. Email now If you are interested in participating in this training programme, send us an email with your details to info@genetechsrilanka.com View FAQs Contact us View Inquiry Form
- Samudi Mohotti | Genetech
Meet Samudi Mohotti, Genetech’s Senior Scientist leading parentage testing, with over 3,000 DNA reports for Sri Lanka’s judiciary. Samudi Mohotti Senior Scientist Samudi Mohotti commenced her professional career at Genetech as a Scientific Officer at the division of parentage testing in 2004. In subsequent years, she was promoted to the post of Senior Scientist and currently oversees the entire process of parentage testing. She is one of the most experienced scientists in the field of DNA typing and has contributed to submit over 3,000 DNA test reports for civil and criminal cases to the Sri Lankan Judiciary. She took part in the development of an allele frequency databases of autosomal STR markers for Sri Lankans ethnicities and co-authored a journal paper in a high-impact journal, Forensic Science International: Genetics. In addition to DNA typing, she is involved in many research projects conducted by Genetech on contract basis to meet the requests from both state and private institutes. She is also a key member of the team which maintains the ISO 15189 quality management system of our laboratory. Samudi obtained her BSc degree in Biological Sciences from the University of Colombo, Sri Lanka and her Master’s degree in Applied Microbiology from the University of Kelaniya, Sri Lanka.
- Certificate Course in Gene Technology | Genetech
Explore DNA structure, genetic engineering, and practical lab techniques in this comprehensive 60-hour course. Learn about PCR, DNA fingerprinting, and more. Certificate Course in Gene Technology (60 hours) Who is this course for? This course is ideal for students who have completed their G.C.E. Advanced Level or Ordinary Level examinations and are planning to pursue higher studies in biology, biotechnology, or medicine. It offers the perfect foundation to confidently step into a university-level molecular biology programme, blending theoretical knowledge with extensive practical exposure. What you will learn 30 Hours of Multimedia-Assisted Lectures Introduction to gene technology, molecular biology and Recombinant DNA technology Proteins and proteomics DNA fingerprinting, GMOs & bioinformatics PCR, DNA sequencing & future biotech innovations 30 Hours of Hands-On Laboratory Practicals Micropipette handling & lab safety Reagent preparation & DNA extraction Spectrophotometric DNA quantification (Nanodrop) Plasmid DNA isolation & bacterial transformation Restriction Enzyme digestion & gel electrophoresis PCR (standard, multiplex) & RT-PCR Microscopy of mitotic cell division Polyacrylamide and Capillary Electrophoresis Course Highlights Learn from experienced scientists Get trained in modern molecular biology techniques Ideal for students applying to local & foreign universities Receive a certificate upon successful completion Course Dates, Duration and Fees Dates: Monday, 16th February 2026 - Friday, 27th February 2026 (excluding weekends and holidays) Time: 9.00 am - 4.30 pm Duration: 60 hours (10 days) Course Fee: LKR 64,500 per person View FAQs Contact us If you are interested in doing this course at Genetech, please submit the Inquiry Form below or email us at info@genetechsrilanka.com to receive further details. View Inquiry Form
- MPhil and MSc Projects | Genetech
Explore Genetech-funded MPhil and MSc projects in Sri Lanka, focusing on Brucella detection, Aedes aegypti genetics, and coconut population structure. Uncover groundbreaking research and advancements! Research leading to the award of MPhil Determination of Population Structure of Yellow Dwarf Coconut Population in Sri Lanka Department of Botany. Chandima Kamral, M.Phil., Faculty of Applied Science, University of Sri Jayawardanapura; Coconut Research Institute, Lunuwila, Sri Lanka, 2015 (partially conducted at Genetech). Morphological and molecular identification of Oreochromis niloticus and its hybrids present in selected reservoirs in Sri Lanka. Saroopa Samaradivakara, M.Phil, Faculty of Veterinary Medicine and Animal Sciences, University of Peradeniya, Sri Lanka, 2009. Establishment of DNA based HLA Typing in Sri Lanka for forensic and transplant purposes. Induwara Gooneratne, M.Phil, Department of Forensic Medicine, Faculty of Medicine, University of Peradeniya, Sri Lanka, 2007. MSc Research Projects Detection and confirmed of Brucella abortus in bovine aborted fetuses by PCR in selected localities in Sri Lanka. Samudi N. K. Mohotti, M.Sc., Department of Microbiology, Faculty of Science, University of Kelaniya, Sri Lanka, 2017. Genetic characterization and molecular phylogeny of Aedes aegypti (Diptera: Culicidae) in Sri Lanka based on COI gene. H.A.K.M. Dharmarathne, M.Sc., IBMBB, University of Colombo, Sri Lanka, 2016. HLA Typing of MHC Class I Molecules by PCR & Sequencing in Sri Lanka. Rashmi Tippalagama, M.Sc., IBMBB, University of Colombo, Sri Lanka, 2012. Molecular epidemiology of Dengue virus. Barathy Logendra, M.Sc. in Experimental Biotechnology, Postgraduate Institute of Science University of Peradeniya, Sri Lanka 2010. Molecular Characterization of Chikungunya Virus isolates in Sri Lanka. Ishara Herath, M.Sc in Experimental Biotechnology, Postgraduate Institute of Science University of Peradeniya, Sri Lanka 2010. Molecular Characterization of human Cytomegalovirus in a cohort of immunocompromised patients in Sri Lanka. Imalka M. W. Gunasekera, M.Sc in Experimental Biotechnology, Postgraduate Institute of Science University of Peradeniya, Sri Lanka 2010. Suitability of using SSR markers to differentiate tissue cultured and other Musa varieties. Fintan. S. Gonsal, M.Sc. Postgraduate Institute of Agriculture, University of Peradeniya, Sri Lanka, 2009. Molecular characterization of Mycobacterium tuberculosis isolates in Sri Lanka utilizing the mycobacterium interspersed repetitive units (MIRU) typing method. Nandika Perera, M.Sc. Molecular Life Sciences, Institute of Biochemistry Molecular Biology and Biotechnology, University of Colombo, Sri Lanka, 2009. Development of a single step reverse transcriptase-polymerase chain reaction assay to detect chikungunya virus in clinical samples. Navodhi Wickremasinghe, M.Sc. in Experimental Biotechnology, Postgraduate Institute of Science University of Peradeniya, Sri Lanka 2009. Determination of sensitivity of multiplex and duplex PCR in the determination of Marek's disease virus. Shamini Akushla Wickramage, M.Sc in Experimental Biotechnology, Postgraduate Institute of Science University of Peradeniya, Sri Lanka 2009. Establishment of a Molecular Diagnostic System for Detecting Human Papillomavirus in Clinical Samples. Rubatharshini Ambikaibakan, M.Sc. in Experimental Biotechnology, Postgraduate Institute of Science University of Peradeniya, Sri Lanka 2008. Development of a low cost multiplex PCR-based diagnostic assay for Down Syndrome. A. Mary Renuka Fernando, M.Sc. in Experimental Biotechnology, Postgraduate Institute of Science University of Peradeniya, Sri Lanka 2008. Determination of the sensitivity of PCR based non-radiolabeled hybridization for the detection of Mycobacterium tuberculosis. K.A.D. Ravi Vishwajith, M.Sc. in Experimental Biotechnology, Postgraduate Institute of Science University of Peradeniya, Sri Lanka 2006. Establishment of a molecular diagnostic system for detecting Y-chromosomal microdeletions which cause male infertility. Thiruchelvam Kariharan, M.Sc. in Experimental Biotechnology, Postgraduate Institute of Science University of Peradeniya, Sri Lanka 2006.
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