It’s almost impossible to overstate how many aspects of daily life are impacted by science. From technologies that help ensure the quality of the water we drink, to medicines that deliver lifesaving treatments – it’s all thanks to science. Each month, members of Thermo Fisher Scientific's team talk to experts who are on the cutting-edge of redefining how we exist. This is Science with a Twist.
How is a decades-old scientific tool that revolutionized organ transplantation now being used in cancer immunotherapy and autoimmune disease? In this episode of Science with a Twist , host Terri Somers talks to experts in immunogenetics and histocompatibility about human leukocyte antigens, or HLAs, which are biomarkers on our cells that provide crucial information about our immune system. HLAs…
Imagine a future where diseases like leukemia, sickle cell anemia and multiple sclerosis are no longer life sentences, but treatable and even curable. That is the promise of gene therapy. In this episode, Namritha Ravinder, director of cell biology at Thermo Fisher Scientific, explains the groundbreaking technologies that correct the genetic errors in our cells that lead to disease. These gene…
Laboratories use up to ten times the energy of typical office spaces, making sustainability in science a pressing issue. In this episode of Science with a Twist, host Terri Somers speaks with James Connelly, CEO of My Green Lab, and Alyssa Caddle, Senior Director of Global Sustainability at Thermo Fisher Scientific, about steps laboratories can take to reduce their environmental impact. From…
Listen to the conversation as they discuss: How health equity is a key component of Thermo Fisher’s core business. How Thermo Fisher leverages its capabilities and customer relationships to further its impact. Initiatives that improve health equity through accessibility to drug-resistant HIV testing, next-generation sequencing to diagnose lung and breast cancer in 30 underserved countries,…
Dr. Blackburne shares insights into: The challenges of recruiting women and minority groups for clinical trials, noting the logistical and societal barriers they face. Innovative solutions, such as telemedicine and flexible scheduling, to make trial participation more accessible. Recent advances in clinical research, including a groundbreaking preeclampsia test and contributions to COVID-19…
The Critical Role of Plastics in Modern Society Despite the challenges associated with plastic in the environment, Kat Knauer, Ph.D., emphasizes the indispensable role of plastics in healthcare, research, and daily life. She points out that while plastics have significantly improved quality of life and medical care, their improper disposal poses a significant threat to the environment. She…
Gene Therapy's Potential to Transform Rare Disease Treatment Dr. Peter Marks highlights the groundbreaking advancements in gene therapy, especially for rare diseases with high unmet medical needs. He discusses the FDA's role in fostering these innovations, underscoring the importance of understanding gene therapy's application and ensuring its safe delivery. Dr. Marks emphasizes the challenges in…
Revolutionizing Biomedical Research with Mass Spectrometry Joshua J. Coon discusses the transformative role of mass spectrometry in biomedical research. This technology, as he explains, allows for the precise weighing of molecules, providing critical insights into their identity and quantity. Coon's lab utilizes mass spectrometry to analyze complex biological systems, such as cells and tissues,…
Brazil's Proactive Measures Against HIV Brazil has been at the forefront of combating HIV, implementing proactive measures that have made a significant difference. The country began providing no-cost access to CD4 and viral load testing and antiretroviral drugs as early as 1996. This early intervention and consistent approach led to a remarkable outcome: the number of HIV cases in Brazil was…
⚡Semiconductor chips go through a long manufacturing process . It all depends on the type of chip, but the standard timeframe is between 120 days and nine months. It is a three-phase process that includes design and frontend and backend manufacturing, all dependent on various factors. ''These are global supply chains supporting the completed product. Semiconductor chips could be manufactured by a…