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Vehicle Armor Materials Market worth $9.3 billion by 2029 – Exclusive Report by MarketsandMarkets™

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CHICAGO, March 19, 2024 /PRNewswire/ — The report “Vehicle Armor Materials Market by Type (Metals & Alloys, Ceramics, Composites, Fiberglass, Aramid Fibers), Application (Defense, Para Military, Police, Security Agencies, Personal), and Region (North America, Europe, APAC, ROW) – Global Forecast to 2029”, is projected to reach USD 9.3 billion by 2029, at a CAGR of 6.7% from USD 6.7 billion in 2024.

The growth of the vehicle armor materials market is propelled by a confluence of factors that highlight the evolving demands of modern security and defense requirements. At the forefront, increasing geopolitical tensions and the proliferation of asymmetric warfare have heightened the need for enhanced protective measures for military and civilian vehicles alike. Nations around the world are investing in advanced armor solutions to safeguard personnel and assets against a diverse array of threats, including ballistic, blast, and improvised explosive devices (IEDs). This necessity has catalyzed significant research and development efforts aimed at creating materials that offer superior protection without compromising vehicle performance, leading to innovations in lightweight composites, ceramics, and high-strength alloys. Technological advancements play a pivotal role, enabling the development of materials that provide improved ballistic resistance, durability, and multi-threat protection. The drive for lighter, more efficient armor solutions reflects the dual need for mobility and security, particularly in military contexts where operational flexibility and fuel efficiency are crucial. Moreover, the civilian sector’s growing interest in personal security has expanded the market for armored vehicles, further stimulating demand for advanced armor materials. Regulatory frameworks and defense spending also significantly influence market dynamics. Governments and international bodies are implementing stringent safety standards and investing in modernization programs for defense forces, which, in turn, drives the procurement of vehicles equipped with the latest armor technologies. Additionally, the push towards standardization and interoperability in defense procurement across alliances like NATO encourages the adoption of advanced materials that meet these unified standards. Environmental considerations are increasingly becoming a factor in the development and selection of armor materials, as stakeholders seek sustainable options that reduce the environmental impact of manufacturing and disposal. This shift towards eco-friendly materials aligns with broader global initiatives to combat climate change and promotes the integration of green technologies in the defense sector. In essence, the growth of the vehicle armor materials market is driven by a complex interplay of security needs, technological innovation, economic factors, and environmental considerations. Together, these elements underscore the market’s response to the pressing demands for protection in an uncertain world, ensuring continued investment and development in the field of advanced armor materials.
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“Defense by application is projected to be the largest, in terms of value, during the forecast period.”
The defense sector stands as the largest market for vehicle armor materials due to several key factors that uniquely position it as the primary driver of demand within the industry. Firstly, defense organizations worldwide prioritize the protection of military personnel and assets, necessitating the deployment of armored vehicles equipped with advanced protective solutions. The nature of modern warfare, characterized by asymmetrical threats, guerrilla tactics, and the proliferation of sophisticated weaponry, underscores the critical importance of effective armor materials in safeguarding against ballistic, blast, and improvised explosive device (IED) threats. Furthermore, defense budgets allocated by governments and international organizations prioritize investments in vehicle armor materials as part of broader defense modernization efforts. With significant financial resources dedicated to enhancing military capabilities and ensuring force readiness, defense procurement programs drive substantial demand for state-of-the-art armor technologies. This sustained investment enables defense contractors and material suppliers to innovate and develop advanced armor materials that meet the stringent requirements of military specifications and standards. The defense sector’s prominence in the vehicle armor materials market is also underscored by its unique operational requirements and mission profiles. Military vehicles must withstand a wide range of threats while maintaining mobility, agility, and operational effectiveness in diverse environments. This necessitates the use of lightweight yet durable materials that offer superior protection without compromising vehicle performance. Additionally, the need for interoperability and compatibility with existing vehicle platforms further drives demand for armor materials that can be seamlessly integrated into various defense systems and vehicle architectures. Moreover, the defense sector serves as a catalyst for technological innovation and research in armor materials. Defense contractors collaborate with leading material scientists, research institutions, and technology companies to develop cutting-edge solutions that push the boundaries of material science and engineering. These collaborative efforts result in continuous advancements in armor materials, including lightweight composites, advanced ceramics, and high-strength alloys, which not only enhance protection but also contribute to overall vehicle performance and survivability.
“Paramilitary by application is projected to be the second largest, in terms of value, during the forecast period.”
The paramilitary sector emerges as the second largest segment in the vehicle armor materials market due to several significant factors that reflect its distinct operational needs and security challenges. Firstly, paramilitary organizations, including law enforcement agencies, border security forces, and private security firms, face a wide range of threats like those encountered by military forces. These threats include armed attacks, insurgent activities, organized crime, and terrorism, necessitating the deployment of armored vehicles equipped with advanced protective solutions. Paramilitary organizations often operate in high-risk environments where the risk of encountering ballistic and blast threats is prevalent. As such, there is a growing recognition of the importance of vehicle armor materials in ensuring the safety and security of personnel engaged in law enforcement and security operations. This awareness drives the demand for armored vehicles specifically tailored to paramilitary requirements, such as armored personnel carriers, riot control vehicles, and convoy protection vehicles, among others. Moreover, the increasing frequency and severity of security incidents globally have prompted paramilitary organizations to invest in enhancing their protective capabilities. This includes procuring armored vehicles and outfitting existing vehicles with advanced armor materials to mitigate risks and improve operational effectiveness. The paramilitary sector’s focus on rapid response and crisis management further underscores the need for agile and adaptable armor solutions that can withstand diverse threats while maintaining mobility and situational awareness. Additionally, regulatory and safety standards play a crucial role in driving demand within the paramilitary segment. Governments and regulatory bodies impose stringent requirements on law enforcement and security agencies to ensure the safety and well-being of personnel and civilians during operations. Compliance with these standards necessitates the adoption of certified armor materials that meet or exceed established safety and performance criteria, driving demand for high-quality armor solutions within the paramilitary sector. Furthermore, the paramilitary sector benefits from technological advancements and innovations in armor materials developed for military applications. Many of the materials and technologies initially developed for military use are adapted and applied to paramilitary vehicles, providing paramilitary organizations with access to state-of-the-art armor solutions that offer superior protection and performance.
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“Metal & Alloys by type segment is projected to be the largest, in terms of value, during the forecast period.”
Metals and alloys constitute the largest segment of the vehicle armor market, playing a foundational role in providing robust protection against ballistic threats and explosions. This dominance is rooted in the long-standing use of metals such as steel, aluminum, and titanium in armor applications, owing to their inherent strength, durability, and versatility. Steel remains a staple material in armored vehicle construction due to its excellent ballistic resistance and cost-effectiveness.
Alloys, which are combinations of metals with other elements, further enhance the performance of armor materials by imparting specific properties such as increased hardness, toughness, and corrosion resistance. Advanced alloy compositions, including high-strength steels and aluminum alloys, enable armor designers to achieve optimal balance between protection and weight, crucial for maintaining vehicle mobility and agility on the battlefield. Moreover, metals and alloys offer flexibility in armor design and manufacturing processes, allowing to produce custom-shaped armor components tailored to fit specific vehicle configurations and protection requirements. This adaptability is essential for addressing diverse threats and operational environments encountered by military and paramilitary forces. Furthermore, metals and alloys are readily available materials with established manufacturing processes, making them accessible and cost-effective options for armor applications. Their widespread use in the automotive and aerospace industries also ensures a mature supply chain and robust quality control standards, contributing to the reliability and performance of armored vehicles. While other materials such as composites and ceramics have gained traction in certain applications, metals and alloys remain the preferred choice for primary armor components, particularly in heavy armored vehicles such as main battle tanks and armored personnel carriers. Their proven performance, reliability, and affordability cement their position as the largest segment of the vehicle armor market, serving as the backbone of protective solutions for military, law enforcement, and civilian vehicles worldwide.
“Asia Pacific is expected to be the fastest growing market for vehicle armor materials during the forecast period, in terms of value.”
The Asia-Pacific region emerges as the fastest-growing region in the vehicle armor materials market due to several key factors that underscore its dynamic economic, geopolitical, and security landscape. Firstly, the region’s rapid economic growth, industrialization, and urbanization have led to increased defense spending among many countries, driven by the need to modernize military capabilities and address emerging security challenges. This substantial investment in defense procurement programs stimulates demand for vehicle armor materials to equip military fleets with advanced protective solutions. Moreover, the Asia-Pacific region is characterized by diverse security threats, including territorial disputes, geopolitical tensions, and transnational terrorism, which necessitate robust protective measures for military and paramilitary forces. Heightened security concerns have prompted governments to prioritize investments in armored vehicles equipped with the latest armor technologies to ensure the safety and security of personnel and assets. Additionally, the rise of asymmetric warfare and non-traditional security threats, such as insurgency, piracy, and cyber-attacks, further drives demand for vehicle armor materials across the Asia-Pacific region. Paramilitary forces and law enforcement agencies increasingly require armored vehicles capable of withstanding ballistic, blast, and improvised explosive device (IED) threats in challenging operational environments. Furthermore, the Asia-Pacific region benefits from a burgeoning automotive industry, which serves as a significant driver of demand for vehicle armor materials. The increasing popularity of armored civilian vehicles, including luxury cars, SUVs, and commercial vehicles, reflects growing concerns over personal security and the protection of high-profile individuals, government officials, and corporate executives in the region.
Additionally, technological advancements and innovations in armor materials play a pivotal role in driving market growth in the Asia-Pacific region. Rapid advancements in material science and engineering enable the development of lightweight composites, advanced ceramics, and high-strength alloys that offer superior ballistic resistance while reducing vehicle weight and improving fuel efficiency — factors that are particularly relevant in the context of military and civilian vehicle applications in the region. Furthermore, government initiatives aimed at fostering domestic defense industries and enhancing self-reliance in defense manufacturing contribute to the growth of the vehicle armor materials market in the Asia-Pacific region. Investments in research and development, technology transfer agreements, and collaborations with international defense contractors facilitate the indigenous production of armor materials and armored vehicles, driving market expansion and innovation.
The key players in this market are DuPont de Nemours, Inc (US), Saint-Gobain SA (France), ATI, Inc. (US), Honeywell International Inc. (US), Teijin Limited (Japan), Alcoa Corporation (US), Tata Steel Limited (India), Ceramtec (Germany), SAAB AB (Sweden), Morgan Advanced Materials (UK) etc.
Browse Adjacent Market: Ceramics and Glass Market Research & Consulting
Related Reports:
Armor Materials Market – Global Forecast to 2027
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More than $9 Million Awarded to High School Scientists and Engineers at the Regeneron International Science and Engineering Fair 2024

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Grace Sun, 16, receives $75,000 Top Award for a new kind of organic electrochemical transistor at the world’s largest pre-college science, technology, engineering and math (STEM) competition.
TARRYTOWN, N.Y. and WASHINGTON, May 17, 2024 /PRNewswire/ — Regeneron Pharmaceuticals, Inc. (NASDAQ: REGN) and Society for Science (the Society) announced that Grace Sun, 16, of Lexington, Kentucky, won the $75,000 top award, the George D. Yancopoulos Innovator Award, named in honor of the pioneering drug researcher and Regeneron co-Founder, Board co-Chair, President and Chief Scientific Officer, in the 2024 Regeneron International Science and Engineering Fair (Regeneron ISEF), the world’s largest pre-college science and engineering competition. Other top prizes went to projects in second-order cone programming, microplastics filtration and multi-sensory therapy for dementia.

The top winners were honored during two award ceremonies: the Special Awards on May 16 and the Grand Awards Ceremony on the morning of May 17. In total, over $9 million USD was awarded to the finalists based on their projects’ creativity, innovation and depth of scientific inquiry. The competition featured nearly 2,000 young scientists representing 49 U.S. states and nearly 70 countries, regions and territories across the world.
Grace Sun, 16, of Lexington, Kentucky, won first place and received the $75,000 George D. Yancopoulos Innovator Award for her research on building a better organic electrochemical transistor that she hopes will be used to develop new electronic devices that could help detect and treat serious illnesses like diabetes, epilepsy and organ failure. To overcome the problems that have previously prevented such devices from working effectively inside the body, Grace developed a new way of chemically treating their organic components, which greatly improved their laboratory performance.
Michelle Wei, 17, of San Jose, California, received one of two Regeneron Young Scientist Awards of $50,000 for her research to improve the speed and efficiency of a type of software that is useful in many fields such as machine learning, transportation and financial systems. Michelle’s new approach involved determining a quick approximate solution to the second-order cone programming problem, then splitting the initial cone into smaller cones, which enabled her new algorithm to greatly outperform previous approaches.
Krish Pai, 17, of Del Mar, California, received the second Regeneron Young Scientist Award of $50,000 for his machine-learning research to identify microbial genetic sequences that can be modified to biodegrade plastic. His new software, called Microby, scans databases of microorganisms and determines which ones can be changed genetically to biodegrade plastics. In tests, he identified two microorganisms that can be genetically modified to degrade plastic at a cost he believes would be ten times less than traditional recycling.
 “Congratulations to the Regeneron International Science and Engineering Fair 2024 winners,” said Maya Ajmera, President and CEO, Society for Science and Executive Publisher, Science News. “I’m truly inspired by the ingenuity and determination shown by these remarkable students. Coming from around the world with diverse backgrounds and academic disciplines, these students have shown that it is possible to come together in unity to tackle some of the toughest challenges facing our world today, and I could not be prouder.”
Regeneron ISEF provides a global stage for the world’s best and brightest young scientists and engineers. Through this competition, Regeneron and the Society are fostering the next generation of STEM leaders who are pioneering solutions to improve our world. Since 2020, Regeneron has provided STEM experiences to approximately 2.4 million students, on track to meet its goal of 2.5 million by 2025.
“The talent, intelligence and potential of this year’s Regeneron ISEF finalists is truly inspiring, and I congratulate each on their remarkable achievements,” said George D. Yancopoulos, M.D., Ph.D., co-Founder, Board co-Chair, President and Chief Scientific Officer of Regeneron. “Science competitions like ISEF were pivotal in shaping my own career and fueling my passion to fight back against disease. I look forward to seeing these students continue to push the boundaries of science and technology to create positive and sustainable change for all humanity.”
Other top honors from the competition include:
Justin Huang and Victoria Ou, both 17, of Woodlands, Texas, received the Gordon E. Moore Award for Positive Outcomes for Future Generations of $50,000 for their new prototype filtration system that uses ultrasonic waves to remove microscopic plastic particles from water. In lab tests, the acoustic force from the high-frequency sound waves removed between 84% and 94% of the suspended microplastic particles in a single pass. The students are now working to scale up and fine-tune their experimental system.
Ingrid Wai Hin Chan, 17, of Hong Kong, China received the Craig R. Barrett Award for Innovation of $10,000 for her research on using a multi-sensory therapy for dementia patients. Her mixed therapy app would allow patients to practice physical and cognitive skills through a personalized, immersive environment using virtual reality headsets. Ingrid conducted an eight-week study with six people living with dementia and found that the cognitive function of patients who used her prototype improved in several areas. She believes her app could serve as a viable option for dementia patients with limited access to in-person professional therapy.
Tanishka Balaji Aglave, 15, of Valrico, Florida, received the H. Robert Horvitz Prize for Fundamental Research of $10,000 for her investigation into a natural alternative treatment against citrus greening, a disease that threatens citrus farming in many parts of the world and is currently only treated with antibiotics. Tanishka injected the trunks of infected trees with an extract from the curry leaf tree, and found through tests that this potential method could effectively and sustainably manage citrus greening disease.
Maddux Alexander Springer, 18, of Honolulu, Hawaii, received the Peggy Scripps Award for Science Communication of $10,000 for his research into fibropapillomatosis (FP), a disease that is the primary cause of death in green sea turtles. Some turtles he studied in Kaneohe Bay, Hawaii, were stricken with a disease that causes internal and external tumors that inhibit their everyday lives. After analyzing the turtles’ diet of green algae, Maddux concluded that this disease, wastewater, invasive algae and the amino acid arginine all pose a grave risk to these endangered sea creatures.
Ria Kamat, 17, of Hackensack, New Jersey; Anna Oliva, 17, of Houston, TX; and Shuhan Luo, 18, of Worcester, MA, received the Dudley R. Herschbach SIYSS Award, which provides finalists an all-expense paid trip to attend the Stockholm International Youth Science Seminar during Nobel Week in Stockholm, Sweden.
Jack Shannon, 18, of Clane, Kildare, Ireland, and Nikhil Vemuri, 17, of Cary, North Carolina, received the EU Contest for Young Scientists Award. Their projects will represent Regeneron ISEF at the EU Contest for Young Scientists to be held this September in Katowice, Poland.
For more information about the top winners and access to visual assets visit:  https://www.societyforscience.org/isef-2024-media-kit.
The full list of Special Award ISEF 2024 Finalists can be found at https://www.societyforscience.org/press-release/regeneron-isef-2024-special-awards-winners.
In addition to the Top Award winners, more than 450 finalists received awards and prizes for their innovative research, including “First Award” winners, who each received a $5,000 prize.
The following lists the First Award winners for each of the 22 categories, from which the Top Awards were chosen:
Animal Sciences, sponsored by Society for ScienceMaddux Alexander Springer, Honolulu, Hawaii
Behavioral and Social Sciences, sponsored by Society for ScienceAndrew Y. Liang, San Jose, California
Biochemistry, sponsored by RegeneronAmy Hong Xiao, Garden City, New York
Biomedical and Health Sciences, sponsored by RegeneronRia Kamat, Hackensack, New Jersey; Kevin Xuan Lei, Shanghai, China
Biomedical Engineering, sponsored by Alfred E. Mann CharitiesAyush Garg, Dublin, California; Divij Motwani, Palo Alto, California; Akash Ashish Pai, Portland, Oregon
Cellular and Molecular Biology, sponsored by RegeneronLara and Maya Sarah Hammoud, Beverly Hills, Michigan
Chemistry, sponsored by Society for ScienceAkilan Sankaran, Albuquerque, New Mexico; Arjun Suresh Malpani and Siddharth Daniel D’costa, Portland, Oregon
Computational Biology and Bioinformatics, sponsored by RegeneronKun-Hyung Roh, Bronx, New York
Earth and Environmental Sciences, sponsored by Google.orgNikhil Vemuri, Durham, North Carolina; Justin Yizhou Huang and Victoria Ou, The Woodlands, Texas
Embedded Systems, sponsored by HPChloe Rae and Sophie Rose Filion, Welland, Ontario, Canada
Energy: Sustainable Materials and Design, sponsored by Siemens EnergyAlia Wahban, Hamilton, Ontario, Canada
Engineering Technology: Statics and Dynamics, sponsored by Howmet Aerospace FoundationChiyo Nakatsuji, Bunkyoku, Tokyo, Japan; Kevin Shen, Olympia, Washington
Environmental Engineering, sponsored by JacobsKrish Pai, San Diego, California; Jack Shannon, Clane, Kildare, Ireland
Materials Science, sponsored by Howmet Aerospace FoundationGrace Sun, Lexington, Kentucky
Mathematics, sponsored by Akamai FoundationAnna Oliva, Houston, Texas
Microbiology, sponsored by Schattner FoundationMatthew Chang, Irvine, California
Physics and Astronomy, sponsored by Richard F. Caris Charitable Trust IIHarini Thiagarajan and Vishal Ranganath Yalla, Bothell, Washington; Shuhan Luo, Worcester, Massachusetts
Plant Sciences, sponsored by Society for SciencePauline Estrada, Fresno, California; Tanishka Balaji Aglave, Dover, Florida
Robotics and Intelligent Machines, sponsored by RegeneronMichal Lajciak, Dubnica nad Vahom, Trenciansky kraj, Slovakia; Anthony Efthimiadis, Oakville, Ontario, Canada
Systems Software, sponsored by MicrosoftMichelle Wei, San Jose, California
Technology Enhances the Arts, sponsored by Society for ScienceAnant Khandelwal, Sritan Motati and Siddhant Sood, Alexandria, Virginia
Translational Medical Science, sponsored by RegeneronZheng-Chi Lee, West Lafayette, Indiana; Ingrid Wai Hin Chan, Hong Kong, China
The full list of all award-winning ISEF 2024 finalists is available here: https://www.societyforscience.org/press-release/regeneron-isef-2024-full-awards.
View all the finalists’ research here: https://projectboard.world/isef.
About the Regeneron International Science and Engineering FairThe Regeneron International Science and Engineering Fair (Regeneron ISEF), a program of Society for Science for over 70 years, is the world’s largest global science competition for high school students. Through a global network of local, regional and national science fairs, millions of students are encouraged to explore their passion for scientific inquiry. Each spring, a group of these students is selected as finalists and offered the opportunity to compete for approximately U.S. $9 million in awards and scholarships.
In 2019, Regeneron became the title sponsor of ISEF to help reward and celebrate the best and brightest young minds globally and encourage them to pursue careers in STEM to positively impact the world. Regeneron ISEF is supported by a community of additional sponsors, including Akamai Foundation, Alfred E. Mann Charities, Aramco, Caltech, Google.org, Gordon and Betty Moore Foundation, Howmet Aerospace Foundation, HP, , Jacobs, King Abdulaziz & his Companions Foundation for Giftedness and Creativity, Microsoft, National Geographic Society, Richard F. Caris Charitable Trust II, Rise, an initiative of Schmidt Futures and the Rhodes Trust, Schattner Foundation, Siemens Energy, Annenburg Foundation, Ballmer Group, Broadcom Foundation, Cesco Linguistic Services, Conrad N. Hilton Foundation, Edison International, Insaco, Oracle Academy, The Eli and Edythe Broad Foundation, The Ralph M. Parsons Foundation and US Army ROTC. Many are entrepreneurs across a wide range of industries. Learn more at https://www.societyforscience.org/isef/.
About Society for ScienceSociety for Science is a champion for science, dedicated to promoting the understanding and appreciation of science and the vital role it plays in human advancement. Established in 1921, Society for Science is best known for its award-winning journalism through Science News and Science News Explores, its world-class science research competitions for students, including the Regeneron Science Talent Search, the Regeneron International Science and Engineering Fair and the Thermo Fisher Scientific Junior Innovators Challenge, and its outreach and equity programming that seeks to ensure that all students have an opportunity to pursue a career in STEM. A 501(c)(3) membership organization, Society for Science is committed to inform, educate and inspire. Learn more at www.societyforscience.org and follow us on Facebook, Twitter, Instagram and Snapchat (Society4Science).
About RegeneronRegeneron (NASDAQ: REGN) is a leading biotechnology company that invents, develops and commercializes life-transforming medicines for people with serious diseases. Founded and led by physician-scientists, our unique ability to repeatedly and consistently translate science into medicine has led to numerous approved treatments and product candidates in development, most of which were homegrown in our laboratories. Our medicines and pipeline are designed to help patients with eye diseases, allergic and inflammatory diseases, cancer, cardiovascular and metabolic diseases, neurological diseases, hematologic conditions, infectious diseases and rare diseases. 
Regeneron believes that operating as a good corporate citizen is crucial to delivering on our mission. We approach corporate responsibility with three goals in mind: to improve the lives of people with serious diseases, to foster a culture of integrity and excellence and to build sustainable communities. Regeneron is proud to be included on the Dow Jones Sustainability World Index and the Civic 50 list of the most “community-minded” companies in the U.S. Throughout the year, Regeneron empowers and supports employees to give back through our volunteering, pro bono and matching gift programs. Our most significant philanthropic commitments are in the area of early science education, including the Regeneron Science Talent Search and the Regeneron International Science and Engineering Fair (ISEF).
For more information, please visit www.Regeneron.com or follow Regeneron on LinkedIn, Instagram, Facebook or X.
More information about the top winners and access to visual assets visit:  https://www.societyforscience.org/isef-2024-media-kit.
Media ContactsJoseph Brown, [email protected]
Gayle Kansagor, Society for [email protected]
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J.P. Morgan Life Sciences Private Capital, Blue Horizon Advisors and United Al Saqer Announce Winner of Inaugural 2024 Life Sciences Innovation Summit

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In conjunction with Abu Dhabi Global Healthcare Week 2024
ABU DHABI, UAE, May 17, 2024 /PRNewswire/ — J.P. Morgan Life Sciences Private Capital, Blue Horizon Advisors and United Al Saqer Group announced today Rayees Rahman of Harmonic Discovery as the winner of the inaugural J.P. Morgan Asset Management: Life Sciences Innovation Summit. Harmonic Discovery is a precision pharmacology company applying its generative chemistry platform to advance next-generation kinase inhibitors.

In partnership with the Department of Health – Abu Dhabi (DoH), the Summit took place on May 14-15, 2024 at Cleveland Clinic Abu Dhabi and showcased the 11 innovative finalists, as well as highlighted existing innovators and opportunities in the Emirate of Abu Dhabi. The event also featured keynote speeches from Dr. Laurie Glimcher of Dana-Farber Cancer Institute, Dr. Shahrukh Hashmi of the Department of Health – Abu Dhabi, and Dr. David Ho of Columbia University Medical Center and provided attendees networking opportunities to gain valuable insights into the future of life sciences innovation. 
In addition, the jury designated Chun-Hao Huang of Algen Biotechnologies as honourable mention. Algen Biotechnologies is a platform therapeutics and drug discovery company using world-leading CRISPR and AI to find treatments for cancer, inflammation and metabolic diseases.
The winners were selected by an esteemed, international panel of judges, which included:Laurie Glimcher, MD, President and CEO at Dana-Farber Cancer InstituteJorge Guzman, MD, CEO at Cleveland Clinic Abu DhabiProf. Shahrukh Khurshid Hashmi, MD, Director of Research, Department of Health, Abu DhabiYasmine Hayek Kobeissi, PhD, CQF, BSc., Executive Director at Blue Horizon AdvisorsAnya Schiess, Managing Partner at J.P. Morgan Life Sciences Private CapitalWalid Zaher, PhD, Co-Founder and CEO, Carexso
Dr. Asma Al Mannaei, Executive Director of the Research and Innovation Centre at the Department of Health – Abu Dhabi said: “Under the directives of the UAE’s wise leadership, and renowned for its world-leading medical infrastructure, Abu Dhabi stands at the forefront of healthcare excellence, offering an unparalleled opportunity for advancement in healthcare for global partners. It was our utmost pleasure hosting the J.P. Morgan Asset Management Life Sciences Innovation Summit 2024 on the sidelines of Abu Dhabi Global Healthcare Week and we commend the winners for their pioneering efforts in driving impactful advancements in healthcare; their dedication to innovation not only transforms the landscape of medicine, but also holds the promise of improving lives worldwide.” 
Stephen Squinto, PhD, Chief Investment Officer, J.P. Morgan Life Sciences Private Capital said: “We are thrilled with the level of biotech passion and innovation that we observed at this year’s Summit in Abu Dhabi. The energy was truly palpable we are thrilled to announce Rayees Rahman as the winner of our first Life Sciences Innovation Summit. Harmonic Discovery’s approach embodies the next generation of drug discovery and development. We appreciate the time and effort of all participants and cannot wait for our next event in the region.”
Nabil Kobeissi, Chief Executive Officer of Blue Horizon Advisors, said: “As the main sponsor, we are committed to nurturing and fostering the growth of all 11 finalists in this vibrant biotech ecosystem. This Summit marks the beginning of a transformative journey, and we are confident that it will pave the way for a flourishing hub in the region. We are also pleased to announce that we will commit to invest in and partner with the winner, Harmonic Discovery, to support its future growth in the region.”
Sponsors for the event included J.P. Morgan Life Sciences Private Capital, J.P. Morgan Commercial Bank, Blue Horizon Advisors, United Al Saqer Group, Thermo Fisher Scientific, and Salam Capital. The Summit organisation, logistics and finalist recruitment were facilitated by Lyfebulb.
Of importance, at the Summit, Mr. Mohamed Al Breiki, Executive Director of Sustainable Development at Masdar City, announced that Masdar City Free Zone would award all 11 Finalists complimentary business licenses to further support their establishment in the region. Masdar City is one of the world’s most sustainable urban developments and innovation hubs with a growing focus on life science entrepreneurship in Abu Dhabi.

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Congregating in the Lion City for a Win-Win Future of Intelligent Computing at the Global Data Center Facility Summit 2024

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SINGAPORE, May 17, 2024 /PRNewswire/ — On May 17, 2024, the Global Data Center Facility Summit 2024 was held in Singapore with the theme of “Power the Digital Era Forward.” At the summit, over 600 data center industry leaders, technical experts, and ecosystem partners gathered to discuss new trends and opportunities of the global data center industry in the intelligent computing era. The attendees also got to experience all-scenario, all-ecosystem, and all-service end-to-end (E2E) solutions, share innovative practices of green data centers in the Asia Pacific and Europe, and experience the exhibition vehicle to unveil the mystery of Outdoor PowerPOD that features one power system per container. By fully embracing the intelligent computing era, Huawei strives to power the digital era forward.

Seizing Opportunities Brought by AI and Jointly Building Green & Reliable Computing Infrastructure
At the opening speech, Charles Yang, Senior Vice President of Huawei and President of Marketing, Sales and Services, Huawei Digital Power, noted that since ChatGPT ushered in the AI era, large models keep pushing the limits of computing power and the intelligent computing industry is witnessing an unprecedented construction boom. As predicted, 100 GW will be added to the global data center installed capacity and the market value will exceed US$600 billion in the next five years.
According to Charles, with opportunities come challenges. The primary challenge concerning the data center industry is reliability and electricity. Data centers are scaling up from the MW-level to the GW-level. E2E reliability of data centers is becoming even more important than ever. In response to the opportunities, Huawei will work with customers and partners to expand the industry space.
Steering Data Centers to the AI Era with Product + Service + Ecosystem
During the summit, Sun Xiaofeng, President of Huawei Data Center Facility & Critical Power Business, delivered a speech titled “Power the Digital Era Forward. ” He stated that as AI large models are penetrating, the surging compute demands drive the expansive growth in data center.
To address the challenges, Huawei strives to build product + service + ecosystem E2E data center solutions that feature fast deployment, flexible cooling, green energy, and ultimate reliability.
Fast deployment: Data centers are fully modularized and prefabricated to ensure high quality and efficient construction.Flexible cooling: Air-liquid fusion and integrated cooling source emerges as the optimal cooling architecture for intelligent computing.Green energy: New generation-grid-load-storage integrated solution is built to ensure the sound operations of intelligent computing centers.Ultimate reliability: Data centers are safeguarded through reliable products and preventive protection.Currently, Huawei’s global service network covers more than 170 countries with over 1800 professional engineers, providing 24/7 technical support. With N+ flagship service centers, Huawei has built a one-hour service radius for its customers.
The ecosystem is a key part for a win-win future of intelligent computing. Huawei works with partners to develop comprehensive E2E solutions and provide customers with one-stop data center services.
During the summit, Huawei and the ASEAN Centre for Energy released a white paper on “Building Next Generation Data Center Facility in ASEAN.” The document provides insights into the status quo, challenges, and trends of data centers in the ASEAN region, and emphasizes that efficient and energy-saving products and solutions should be applied. It also proposes future-oriented policy recommendations for data center markets.
In the ecosystem exhibition area, Huawei showcased scenario-based solutions for large-, medium-, and small-sized data centers, and demonstrated data center consulting, design, integrated development, and delivery capabilities with dozens of ecosystem partners including CIMC, Weichai, CSCEC, and Huashi.
On a special note, the Huawei Outdoor PowerPOD exhibition vehicle made its global debut. The Huawei Outdoor PowerPOD features one power system per container, outdoor deployment, plug-and-play, and high protection rating and reliability. It has become the preferred choice for decoupling the power supply architecture.
A single tree cannot make a forest.
AI is presenting great opportunities. By delving into the industry, aggregating partner ecosystems, and making innovations applicable to transformations, Huawei will continue to help customers build reliable computing infrastructure, accelerating the industry to embrace AI and powering the digital era forward.
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