Breakthrough Prize Foundation
Scientists changing the world.
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Music legend Lionel Richie expressed his awe at being among some of the world’s leading scientific minds, reflecting on the excitement of learning about innovations shaping the future. He celebrated the importance of recognizing scientists whose work transforms everyday life, noting that the Breakthrough Prize brings these often-unsung pioneers into the spotlight where they belong.
Watch the 2026 Breakthrough Prize Ceremony - link in bio!
Academy Award–winning directors Ron Howard and Brian Grazer paid tribute to Jim Lovell, honoring his remarkable legacy as an astronaut who journeyed to space four times. Reflecting on his courage, resilience, and leadership in the face of extraordinary challenges, and how his story continues to inspire the world to see further and aim higher.
Watch the 2026 Breakthrough Prize Ceremony – link in bio!
Stream the 2026 Breakthrough Prize ceremony now, and watch the stars come out to shine a light on great scientists like Cliff Brangwynne and Anthony Hyman, who discovered how cells self-organize through phase separation into tiny membrane-free liquid droplets, revealing a new way biological systems are structured and function. Link in bio.
#breakthroughprize
Stream the 2026 Breakthrough Prize ceremony now, and watch the stars come out to shine a light on great scientists like Jean Bennett, Katherine High and Albert Maguire, who developed a gene therapy for inherited blindness.
#breakthroughprize

The Twelfth Breakthrough Prize Ceremony is now streaming on YouTube. Don’t miss the stories, the laureates, and the celebration of groundbreaking discovery. Link in bio.
Stream the 2026 Breakthrough Prize ceremony on Sunday April 26 at 3PM Eastern, and watch the stars come out to shine a light on great scientists like Stuart Orkin and Swee Lay Thein, whose work laid the foundations for gene therapies for sickle-cell disease and beta-thalassemia.
#breakthroughprize
Children with Leber congenital amaurosis experience early-onset blindness due to mutations in the RPE65 gene, which disrupts the retina’s ability to respond to light.
Scientists Jean Bennett (University of Pennsylvania), Katherine High (University of Pennsylvania, Children’s Hospital of Philadelphia, and Rockefeller University), and Albert Maguire (University of Pennsylvania) developed a gene therapy that delivers a healthy copy of RPE65 directly to retinal cells. Tested in animals and humans, the therapy successfully restored vision, becoming the first FDA-approved gene replacement therapy for a genetic disease. Children who once faced darkness can now recognize faces, read signs, and navigate their world with confidence. For this transformative work, the three scientists are honored with the 2026 Breakthrough Prize in Life Sciences.
@uofpenn @childrensphila @rockefelleruniv
Watch the 2026 Breakthrough Prize Ceremony premiere on Sunday, April 26 at 3 PM Eastern and see how these scientists transformed lives – link in bio!

Children with Leber congenital amaurosis experience early-onset blindness due to mutations in the RPE65 gene, which disrupts the retina’s ability to respond to light.
Scientists Jean Bennett (University of Pennsylvania), Katherine High (University of Pennsylvania, Children’s Hospital of Philadelphia, and Rockefeller University), and Albert Maguire (University of Pennsylvania) developed a gene therapy that delivers a healthy copy of RPE65 directly to retinal cells. Tested in animals and humans, the therapy successfully restored vision, becoming the first FDA-approved gene replacement therapy for a genetic disease. Children who once faced darkness can now recognize faces, read signs, and navigate their world with confidence. For this transformative work, the three scientists are honored with the 2026 Breakthrough Prize in Life Sciences.
@uofpenn @childrensphila @rockefelleruniv
Watch the 2026 Breakthrough Prize Ceremony premiere on Sunday, April 26 at 3 PM Eastern and see how these scientists transformed lives – link in bio!

Children with Leber congenital amaurosis experience early-onset blindness due to mutations in the RPE65 gene, which disrupts the retina’s ability to respond to light.
Scientists Jean Bennett (University of Pennsylvania), Katherine High (University of Pennsylvania, Children’s Hospital of Philadelphia, and Rockefeller University), and Albert Maguire (University of Pennsylvania) developed a gene therapy that delivers a healthy copy of RPE65 directly to retinal cells. Tested in animals and humans, the therapy successfully restored vision, becoming the first FDA-approved gene replacement therapy for a genetic disease. Children who once faced darkness can now recognize faces, read signs, and navigate their world with confidence. For this transformative work, the three scientists are honored with the 2026 Breakthrough Prize in Life Sciences.
@uofpenn @childrensphila @rockefelleruniv
Watch the 2026 Breakthrough Prize Ceremony premiere on Sunday, April 26 at 3 PM Eastern and see how these scientists transformed lives – link in bio!

Children with Leber congenital amaurosis experience early-onset blindness due to mutations in the RPE65 gene, which disrupts the retina’s ability to respond to light.
Scientists Jean Bennett (University of Pennsylvania), Katherine High (University of Pennsylvania, Children’s Hospital of Philadelphia, and Rockefeller University), and Albert Maguire (University of Pennsylvania) developed a gene therapy that delivers a healthy copy of RPE65 directly to retinal cells. Tested in animals and humans, the therapy successfully restored vision, becoming the first FDA-approved gene replacement therapy for a genetic disease. Children who once faced darkness can now recognize faces, read signs, and navigate their world with confidence. For this transformative work, the three scientists are honored with the 2026 Breakthrough Prize in Life Sciences.
@uofpenn @childrensphila @rockefelleruniv
Watch the 2026 Breakthrough Prize Ceremony premiere on Sunday, April 26 at 3 PM Eastern and see how these scientists transformed lives – link in bio!

Children with Leber congenital amaurosis experience early-onset blindness due to mutations in the RPE65 gene, which disrupts the retina’s ability to respond to light.
Scientists Jean Bennett (University of Pennsylvania), Katherine High (University of Pennsylvania, Children’s Hospital of Philadelphia, and Rockefeller University), and Albert Maguire (University of Pennsylvania) developed a gene therapy that delivers a healthy copy of RPE65 directly to retinal cells. Tested in animals and humans, the therapy successfully restored vision, becoming the first FDA-approved gene replacement therapy for a genetic disease. Children who once faced darkness can now recognize faces, read signs, and navigate their world with confidence. For this transformative work, the three scientists are honored with the 2026 Breakthrough Prize in Life Sciences.
@uofpenn @childrensphila @rockefelleruniv
Watch the 2026 Breakthrough Prize Ceremony premiere on Sunday, April 26 at 3 PM Eastern and see how these scientists transformed lives – link in bio!

Children with Leber congenital amaurosis experience early-onset blindness due to mutations in the RPE65 gene, which disrupts the retina’s ability to respond to light.
Scientists Jean Bennett (University of Pennsylvania), Katherine High (University of Pennsylvania, Children’s Hospital of Philadelphia, and Rockefeller University), and Albert Maguire (University of Pennsylvania) developed a gene therapy that delivers a healthy copy of RPE65 directly to retinal cells. Tested in animals and humans, the therapy successfully restored vision, becoming the first FDA-approved gene replacement therapy for a genetic disease. Children who once faced darkness can now recognize faces, read signs, and navigate their world with confidence. For this transformative work, the three scientists are honored with the 2026 Breakthrough Prize in Life Sciences.
@uofpenn @childrensphila @rockefelleruniv
Watch the 2026 Breakthrough Prize Ceremony premiere on Sunday, April 26 at 3 PM Eastern and see how these scientists transformed lives – link in bio!

Children with Leber congenital amaurosis experience early-onset blindness due to mutations in the RPE65 gene, which disrupts the retina’s ability to respond to light.
Scientists Jean Bennett (University of Pennsylvania), Katherine High (University of Pennsylvania, Children’s Hospital of Philadelphia, and Rockefeller University), and Albert Maguire (University of Pennsylvania) developed a gene therapy that delivers a healthy copy of RPE65 directly to retinal cells. Tested in animals and humans, the therapy successfully restored vision, becoming the first FDA-approved gene replacement therapy for a genetic disease. Children who once faced darkness can now recognize faces, read signs, and navigate their world with confidence. For this transformative work, the three scientists are honored with the 2026 Breakthrough Prize in Life Sciences.
@uofpenn @childrensphila @rockefelleruniv
Watch the 2026 Breakthrough Prize Ceremony premiere on Sunday, April 26 at 3 PM Eastern and see how these scientists transformed lives – link in bio!

Children with Leber congenital amaurosis experience early-onset blindness due to mutations in the RPE65 gene, which disrupts the retina’s ability to respond to light.
Scientists Jean Bennett (University of Pennsylvania), Katherine High (University of Pennsylvania, Children’s Hospital of Philadelphia, and Rockefeller University), and Albert Maguire (University of Pennsylvania) developed a gene therapy that delivers a healthy copy of RPE65 directly to retinal cells. Tested in animals and humans, the therapy successfully restored vision, becoming the first FDA-approved gene replacement therapy for a genetic disease. Children who once faced darkness can now recognize faces, read signs, and navigate their world with confidence. For this transformative work, the three scientists are honored with the 2026 Breakthrough Prize in Life Sciences.
@uofpenn @childrensphila @rockefelleruniv
Watch the 2026 Breakthrough Prize Ceremony premiere on Sunday, April 26 at 3 PM Eastern and see how these scientists transformed lives – link in bio!
Children with Leber congenital amaurosis experience early-onset blindness due to mutations in the RPE65 gene, which disrupts the retina’s ability to respond to light.
Scientists Jean Bennett (University of Pennsylvania), Katherine High (University of Pennsylvania, Children’s Hospital of Philadelphia, and Rockefeller University), and Albert Maguire (University of Pennsylvania) developed a gene therapy that delivers a healthy copy of RPE65 directly to retinal cells. Tested in animals and humans, the therapy successfully restored vision, becoming the first FDA-approved gene replacement therapy for a genetic disease. Children who once faced darkness can now recognize faces, read signs, and navigate their world with confidence. For this transformative work, the three scientists are honored with the 2026 Breakthrough Prize in Life Sciences.
@uofpenn @childrensphila @rockefelleruniv
Watch the 2026 Breakthrough Prize Ceremony premiere on Sunday, April 26 at 3 PM Eastern and see how these scientists transformed lives – link in bio!

Children with Leber congenital amaurosis experience early-onset blindness due to mutations in the RPE65 gene, which disrupts the retina’s ability to respond to light.
Scientists Jean Bennett (University of Pennsylvania), Katherine High (University of Pennsylvania, Children’s Hospital of Philadelphia, and Rockefeller University), and Albert Maguire (University of Pennsylvania) developed a gene therapy that delivers a healthy copy of RPE65 directly to retinal cells. Tested in animals and humans, the therapy successfully restored vision, becoming the first FDA-approved gene replacement therapy for a genetic disease. Children who once faced darkness can now recognize faces, read signs, and navigate their world with confidence. For this transformative work, the three scientists are honored with the 2026 Breakthrough Prize in Life Sciences.
@uofpenn @childrensphila @rockefelleruniv
Watch the 2026 Breakthrough Prize Ceremony premiere on Sunday, April 26 at 3 PM Eastern and see how these scientists transformed lives – link in bio!
Stream the 2026 Breakthrough Prize ceremony on Sunday April 26 at 3PM Eastern, and watch the stars come out to shine a light on great scientists like Frank Merle, who tamed equations describing critical systems like rogue waves.
#breakthroughprize
By the 1970s, most fundamental forces—gravity, electromagnetism, and radioactive decay—were well understood. But the strong nuclear force, which holds atomic nuclei together and powers the sun, remained a mystery.
Then David Gross and his colleagues discovered asymptotic freedom, showing that the strong force weakens as particles approach one another but grows stronger as they move apart, confining them within the nucleus. This discovery led to quantum chromodynamics, completing the Standard Model of particle physics.
For his lifetime of pioneering contributions to, and leadership in, theoretical physics, David Gross (Kavli Institute for Theoretical Physics, and University of California, Santa Barbara) is awarded the 2026 Special Breakthrough Prize in Fundamental Physics.
@ucsantabarbara @kavlifoundation
Learn more about his journey at the 2026 Breakthrough Prize Ceremony, Sunday, April 26 at 3 PM Eastern – link in bio!

By the 1970s, most fundamental forces—gravity, electromagnetism, and radioactive decay—were well understood. But the strong nuclear force, which holds atomic nuclei together and powers the sun, remained a mystery.
Then David Gross and his colleagues discovered asymptotic freedom, showing that the strong force weakens as particles approach one another but grows stronger as they move apart, confining them within the nucleus. This discovery led to quantum chromodynamics, completing the Standard Model of particle physics.
For his lifetime of pioneering contributions to, and leadership in, theoretical physics, David Gross (Kavli Institute for Theoretical Physics, and University of California, Santa Barbara) is awarded the 2026 Special Breakthrough Prize in Fundamental Physics.
@ucsantabarbara @kavlifoundation
Learn more about his journey at the 2026 Breakthrough Prize Ceremony, Sunday, April 26 at 3 PM Eastern – link in bio!

By the 1970s, most fundamental forces—gravity, electromagnetism, and radioactive decay—were well understood. But the strong nuclear force, which holds atomic nuclei together and powers the sun, remained a mystery.
Then David Gross and his colleagues discovered asymptotic freedom, showing that the strong force weakens as particles approach one another but grows stronger as they move apart, confining them within the nucleus. This discovery led to quantum chromodynamics, completing the Standard Model of particle physics.
For his lifetime of pioneering contributions to, and leadership in, theoretical physics, David Gross (Kavli Institute for Theoretical Physics, and University of California, Santa Barbara) is awarded the 2026 Special Breakthrough Prize in Fundamental Physics.
@ucsantabarbara @kavlifoundation
Learn more about his journey at the 2026 Breakthrough Prize Ceremony, Sunday, April 26 at 3 PM Eastern – link in bio!

By the 1970s, most fundamental forces—gravity, electromagnetism, and radioactive decay—were well understood. But the strong nuclear force, which holds atomic nuclei together and powers the sun, remained a mystery.
Then David Gross and his colleagues discovered asymptotic freedom, showing that the strong force weakens as particles approach one another but grows stronger as they move apart, confining them within the nucleus. This discovery led to quantum chromodynamics, completing the Standard Model of particle physics.
For his lifetime of pioneering contributions to, and leadership in, theoretical physics, David Gross (Kavli Institute for Theoretical Physics, and University of California, Santa Barbara) is awarded the 2026 Special Breakthrough Prize in Fundamental Physics.
@ucsantabarbara @kavlifoundation
Learn more about his journey at the 2026 Breakthrough Prize Ceremony, Sunday, April 26 at 3 PM Eastern – link in bio!

By the 1970s, most fundamental forces—gravity, electromagnetism, and radioactive decay—were well understood. But the strong nuclear force, which holds atomic nuclei together and powers the sun, remained a mystery.
Then David Gross and his colleagues discovered asymptotic freedom, showing that the strong force weakens as particles approach one another but grows stronger as they move apart, confining them within the nucleus. This discovery led to quantum chromodynamics, completing the Standard Model of particle physics.
For his lifetime of pioneering contributions to, and leadership in, theoretical physics, David Gross (Kavli Institute for Theoretical Physics, and University of California, Santa Barbara) is awarded the 2026 Special Breakthrough Prize in Fundamental Physics.
@ucsantabarbara @kavlifoundation
Learn more about his journey at the 2026 Breakthrough Prize Ceremony, Sunday, April 26 at 3 PM Eastern – link in bio!

By the 1970s, most fundamental forces—gravity, electromagnetism, and radioactive decay—were well understood. But the strong nuclear force, which holds atomic nuclei together and powers the sun, remained a mystery.
Then David Gross and his colleagues discovered asymptotic freedom, showing that the strong force weakens as particles approach one another but grows stronger as they move apart, confining them within the nucleus. This discovery led to quantum chromodynamics, completing the Standard Model of particle physics.
For his lifetime of pioneering contributions to, and leadership in, theoretical physics, David Gross (Kavli Institute for Theoretical Physics, and University of California, Santa Barbara) is awarded the 2026 Special Breakthrough Prize in Fundamental Physics.
@ucsantabarbara @kavlifoundation
Learn more about his journey at the 2026 Breakthrough Prize Ceremony, Sunday, April 26 at 3 PM Eastern – link in bio!

By the 1970s, most fundamental forces—gravity, electromagnetism, and radioactive decay—were well understood. But the strong nuclear force, which holds atomic nuclei together and powers the sun, remained a mystery.
Then David Gross and his colleagues discovered asymptotic freedom, showing that the strong force weakens as particles approach one another but grows stronger as they move apart, confining them within the nucleus. This discovery led to quantum chromodynamics, completing the Standard Model of particle physics.
For his lifetime of pioneering contributions to, and leadership in, theoretical physics, David Gross (Kavli Institute for Theoretical Physics, and University of California, Santa Barbara) is awarded the 2026 Special Breakthrough Prize in Fundamental Physics.
@ucsantabarbara @kavlifoundation
Learn more about his journey at the 2026 Breakthrough Prize Ceremony, Sunday, April 26 at 3 PM Eastern – link in bio!

By the 1970s, most fundamental forces—gravity, electromagnetism, and radioactive decay—were well understood. But the strong nuclear force, which holds atomic nuclei together and powers the sun, remained a mystery.
Then David Gross and his colleagues discovered asymptotic freedom, showing that the strong force weakens as particles approach one another but grows stronger as they move apart, confining them within the nucleus. This discovery led to quantum chromodynamics, completing the Standard Model of particle physics.
For his lifetime of pioneering contributions to, and leadership in, theoretical physics, David Gross (Kavli Institute for Theoretical Physics, and University of California, Santa Barbara) is awarded the 2026 Special Breakthrough Prize in Fundamental Physics.
@ucsantabarbara @kavlifoundation
Learn more about his journey at the 2026 Breakthrough Prize Ceremony, Sunday, April 26 at 3 PM Eastern – link in bio!
By the 1970s, most fundamental forces—gravity, electromagnetism, and radioactive decay—were well understood. But the strong nuclear force, which holds atomic nuclei together and powers the sun, remained a mystery.
Then David Gross and his colleagues discovered asymptotic freedom, showing that the strong force weakens as particles approach one another but grows stronger as they move apart, confining them within the nucleus. This discovery led to quantum chromodynamics, completing the Standard Model of particle physics.
For his lifetime of pioneering contributions to, and leadership in, theoretical physics, David Gross (Kavli Institute for Theoretical Physics, and University of California, Santa Barbara) is awarded the 2026 Special Breakthrough Prize in Fundamental Physics.
@ucsantabarbara @kavlifoundation
Learn more about his journey at the 2026 Breakthrough Prize Ceremony, Sunday, April 26 at 3 PM Eastern – link in bio!

By the 1970s, most fundamental forces—gravity, electromagnetism, and radioactive decay—were well understood. But the strong nuclear force, which holds atomic nuclei together and powers the sun, remained a mystery.
Then David Gross and his colleagues discovered asymptotic freedom, showing that the strong force weakens as particles approach one another but grows stronger as they move apart, confining them within the nucleus. This discovery led to quantum chromodynamics, completing the Standard Model of particle physics.
For his lifetime of pioneering contributions to, and leadership in, theoretical physics, David Gross (Kavli Institute for Theoretical Physics, and University of California, Santa Barbara) is awarded the 2026 Special Breakthrough Prize in Fundamental Physics.
@ucsantabarbara @kavlifoundation
Learn more about his journey at the 2026 Breakthrough Prize Ceremony, Sunday, April 26 at 3 PM Eastern – link in bio!
Stream the 2026 Breakthrough Prize ceremony on Sunday April 26 at 3PM Eastern and watch the stars come out to shine a light on great scientists like the hundreds of contributors to the Muon g-2 collaborations, who measured the magnetic behavior of a sub-atomic particle to extraordinary precision.
#breakthroughprize
Carolina Figueiredo, Vera Rubin New Frontiers Prize laureate, described the Breakthrough Prize as a unique and inspiring experience, especially as a young scientist. She spoke about the growing presence of women in physics, emphasizing the importance of recognition and community in creating a more welcoming environment. She also noted how events like this help connect different fields and bring science to broader audiences.
#breakthroughprize
Matea Cañizares’ video on quark-gluon plasma earned her the 2025 Breakthrough Junior Challenge award. At the 2026 Breakthrough Prize, she shared her excitement about attending, noting that the event highlights scientists, fosters collaboration, and brings together people across generations, inspiring young people like herself.
#breakthroughprize
Trình Xem Câu Chuyện Instagram là một công cụ dễ sử dụng giúp bạn xem và lưu câu chuyện Instagram, video, ảnh hoặc IGTV một cách bí mật. Với dịch vụ này, bạn có thể tải xuống nội dung và thưởng thức ngoại tuyến bất cứ lúc nào. Nếu bạn tìm thấy điều gì đó thú vị trên Instagram mà bạn muốn xem sau này hoặc muốn xem câu chuyện mà vẫn giữ ẩn danh, Trình Xem của chúng tôi là lựa chọn hoàn hảo. Anonstories cung cấp giải pháp tuyệt vời để giữ kín danh tính của bạn. Instagram ra mắt tính năng Câu Chuyện vào tháng 8 năm 2023, và nhanh chóng được các nền tảng khác áp dụng do định dạng hấp dẫn và nhạy cảm với thời gian. Câu Chuyện cho phép người dùng chia sẻ cập nhật nhanh, bất kể là ảnh, video, hay selfie, được bổ sung với văn bản, emoji, hoặc bộ lọc, và chỉ hiển thị trong 24 giờ. Khoảng thời gian giới hạn này tạo ra mức độ tương tác cao so với các bài đăng thường xuyên. Trong thế giới ngày nay, Câu Chuyện là một trong những cách phổ biến nhất để kết nối và giao tiếp trên mạng xã hội. Tuy nhiên, khi bạn xem một Câu Chuyện, người tạo có thể thấy tên của bạn trong danh sách người xem, điều này có thể gây lo ngại về quyền riêng tư. Nếu bạn muốn duyệt Câu Chuyện mà không bị phát hiện, Anonstories sẽ hữu ích. Nó cho phép bạn xem nội dung công khai trên Instagram mà không tiết lộ danh tính của mình. Chỉ cần nhập tên người dùng của hồ sơ mà bạn tò mò và công cụ này sẽ hiển thị Câu Chuyện mới nhất của họ. Các tính năng của Trình Xem Anonstories: - Duyệt Ẩn Danh: Xem Câu Chuyện mà không xuất hiện trong danh sách người xem. - Không Cần Tài Khoản: Xem nội dung công khai mà không cần đăng ký tài khoản Instagram. - Tải Nội Dung: Lưu bất kỳ nội dung Câu Chuyện nào trực tiếp vào thiết bị của bạn để sử dụng ngoại tuyến. - Xem Highlight: Truy cập các Highlight trên Instagram, ngay cả khi đã qua 24 giờ. - Theo Dõi Đăng Lại: Theo dõi các bài đăng lại hoặc mức độ tương tác trên Câu Chuyện của hồ sơ cá nhân. Hạn chế: - Công cụ này chỉ hoạt động với các tài khoản công khai; các tài khoản riêng tư không thể truy cập. Lợi ích: - Thân thiện với quyền riêng tư: Xem bất kỳ nội dung Instagram nào mà không bị phát hiện. - Đơn giản và dễ dàng: Không cần cài đặt ứng dụng hoặc đăng ký. - Công cụ độc quyền: Tải và quản lý nội dung theo cách mà Instagram không cung cấp.
Theo dõi các cập nhật Instagram một cách kín đáo trong khi bảo vệ quyền riêng tư của bạn và vẫn giữ ẩn danh.
Xem hồ sơ và ảnh một cách ẩn danh dễ dàng với Trình Xem Hồ Sơ Riêng Tư.
Công cụ miễn phí này cho phép bạn xem Câu Chuyện Instagram ẩn danh, đảm bảo hoạt động của bạn không bị phát hiện bởi người tải lên câu chuyện.
Anonstories cho phép người dùng xem Câu Chuyện Instagram mà không cảnh báo người tạo.
Hoạt động mượt mà trên iOS, Android, Windows, macOS và các trình duyệt hiện đại như Chrome và Safari.
Ưu tiên duyệt web an toàn, ẩn danh mà không yêu cầu thông tin đăng nhập.
Người dùng có thể xem Câu Chuyện công khai chỉ bằng cách nhập tên người dùng—không cần tài khoản.
Tải ảnh (JPEG) và video (MP4) một cách dễ dàng.
Dịch vụ này miễn phí.
Nội dung từ các tài khoản riêng tư chỉ có thể truy cập bởi những người theo dõi.
Các tệp chỉ được sử dụng cho mục đích cá nhân hoặc giáo dục và phải tuân thủ quy định bản quyền.
Nhập tên người dùng công khai để xem hoặc tải xuống câu chuyện. Dịch vụ tạo liên kết trực tiếp để lưu nội dung vào thiết bị của bạn.