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The following are some of the main obstacles that the Indian biotechnology sector must overcome: - Poor research quality: research articles are written with the mindset of "publish or perish," where quantity matters more than quality. - Low funding: the majority of biotechnology research in India isRead more
The following are some of the main obstacles that the Indian biotechnology sector must overcome:
– Poor research quality: research articles are written with the mindset of “publish or perish,” where quantity matters more than quality.
– Low funding: the majority of biotechnology research in India is supported by public funds; – Low scientist earnings: in comparison to wealthy nations, scientist wages are lower
– Obtaining ethical and regulatory clearance: a time-consuming, costly procedure
– Specialised work: in the biotechnology industry, most positions are occupied by knowledgeable and experienced scientists, which leaves less space for less experienced and younger scientists.
Here are a few strategies for overcoming these obstacles :
Boost applied research financing from the corporate sector; Promote product development and innovation; and Connect academic institutions with business to provide scientists the chance to launch their own ventures.
Adopt laws enabling scientists to leave academic institutions and research centres to work in industry. Boost the biotech industry by utilising big data and artificial intelligence.
Enzyme-Linked Immunosorbent Assay (ELISA) plays a crucial role in the detection and management of AIDS, utilizing biotechnological advancements to identify HIV, the virus responsible for the disease. ELISA is a highly sensitive and specific test that detects the presence of antibodies or antigens reRead more
Enzyme-Linked Immunosorbent Assay (ELISA) plays a crucial role in the detection and management of AIDS, utilizing biotechnological advancements to identify HIV, the virus responsible for the disease. ELISA is a highly sensitive and specific test that detects the presence of antibodies or antigens related to HIV in a patient’s blood sample.
In the context of AIDS, ELISA is primarily used for initial screening. The procedure involves coating a microplate with HIV antigens, then adding the patient’s serum. If HIV antibodies are present, they bind to the antigens. A secondary antibody linked to an enzyme is added, which binds to the HIV antibodies. Upon adding a substrate, the enzyme catalyzes a color change, indicating a positive result.
Biotechnology enhances ELISA’s efficacy by enabling the production of high-quality, recombinant antigens and monoclonal antibodies, improving test accuracy and reliability. Moreover, advancements in biotechnology facilitate the development of more robust, rapid, and cost-effective ELISA kits, essential for widespread screening and early detection.
Early diagnosis through ELISA allows for timely intervention, reducing viral transmission and improving patient outcomes. Additionally, ELISA is vital in blood screening to prevent HIV-contaminated blood transfusions, underscoring its significance in public health and biotechnology’s role in combating AIDS.
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