惯性聚合 高效追踪和阅读你感兴趣的博客、新闻、科技资讯
阅读原文 在惯性聚合中打开

推荐订阅源

U
Unit 42
Vercel News
Vercel News
博客园 - 叶小钗
大猫的无限游戏
大猫的无限游戏
MyScale Blog
MyScale Blog
P
Proofpoint News Feed
量子位
Engineering at Meta
Engineering at Meta
B
Blog RSS Feed
博客园 - 【当耐特】
Recent Announcements
Recent Announcements
Google DeepMind News
Google DeepMind News
D
DataBreaches.Net
Stack Overflow Blog
Stack Overflow Blog
博客园 - 聂微东
小众软件
小众软件
Hugging Face - Blog
Hugging Face - Blog
人人都是产品经理
人人都是产品经理
IT之家
IT之家
T
The Blog of Author Tim Ferriss
Last Week in AI
Last Week in AI
OSCHINA 社区最新新闻
OSCHINA 社区最新新闻
Jina AI
Jina AI
博客园 - 三生石上(FineUI控件)

Scientific American

Former deputy surgeon general Erica Schwartz nominated as new CDC chief NASA Artemis II astronauts say thank you to the world Congress grills RFK, Jr., about vaccines and cuts to health budget How the Grand Canyon formed is a surprisingly messy story. Here's the latest clue How far from humanity were the astronauts of Artemis II? The answer will surprise you Effect of antiamyloid Alzheimer’s drugs ‘absent or trivial,’ Cochrane review finds The Trump administration is looking to experts to weigh in on peptides When a naked mole rat queen dies, that usually means war—but not for this colony NASA needs nuclear power for its moon base. Here’s the White House plan to get it Why do older people have fewer seasonal allergies? 250-million-year-old fossil proves mammal ancestors laid eggs A face-swapping illusion can unlock childhood memories 30 years of Pokémon—how the Japanese franchise mirrors real-world science Sperm whales may make their own vowel sounds, similar to human language Colombia will euthanize Pablo Escobar’s invasive ‘cocaine hippos’ NASA’s Artemis III will pit SpaceX against Blue Origin The East Coast could see blazing hot temperatures this week. Here’s why Scientists just discovered 5.6 million bees under a New York State cemetery The real science of Pokémon How chemists engineer the signature smells of luxury perfumes How two mathematicians solved a cryptography mystery The engineering marvels hidden inside six-figure watches Expensive versus affordable binoculars—what’s the difference? How physicists found a new type of magnet hiding in plain sight A hot pair of supplements, creatine and methylene blue dye, may not work together Unlikely paths to discovery The baffling ecological disaster that's killing America’s freshwater mussels Poem: ‘How I Became a Spitfire Pilot during My Cataract Operation’ DARPA built an AI to fact-check enemy weapons claims Mathematicians created an ‘impossible’ shape that shouldn’t exist
Randy Schekman
Tara Haelle · 2026-06-16 · via Scientific American

June 16, 2026

The Nobel laureate on how resilience can help young scientists succeed and why governmental support of science should be bipartisan

Randy Schekman speaks during a press conference at the University of California, Berkeley.

Josh Edelson/AFP via Getty Images

Join Our Community of Science Lovers!

Randy Schekman is a cell biologist at the University of California, Berkeley. He shared the 2013 Nobel Prize in Physiology or Medicine for discoveries revealing the mechanisms that regulate vesicle transport within cells, advancing understanding of how cells organize and move proteins.

[This interview was edited for length and clarity.]

How would you describe the current state of American science?


On supporting science journalism

If you're enjoying this article, consider supporting our award-winning journalism by subscribing. By purchasing a subscription you are helping to ensure the future of impactful stories about the discoveries and ideas shaping our world today.


American science and scientific research remain the envy of the world. Although the role and impact of basic scientific research have not always been appreciated by the public, both political parties have traditionally been very supportive of research in universities and research institutes. We now face a politically motivated decay of public support of science and the scientific method. Policies of the current federal administration and in certain states have imperiled our global leadership and prospects for the next generations of aspiring scholars of science with the potential for significant damage to our nation’s public health and biomedical and industrial leadership.

What needs to change in American science?

The political leadership of both of our major parties must step up to sustain the research enterprise in our public and private universities. The leadership of our scientific and university institutions must speak out more forcefully to the nation in defense of science. Despite the current crisis, our institutions of higher education remain strong and will survive, if even in a diminished capacity for the years ahead. To remain a global leader, we must invest in our science infrastructure.

What gives you optimism right now?

The American spirit of independence, ingenuity and ambition will restore our reputation as a beacon of leadership around the world. Despite proposed substantial cuts in the federal science budgets, a massive lobbying effort on the part of health care groups and scientists worked effectively to convince Congress to maintain status quo budgets for science in the current year. The potential for breakthrough scientific discoveries gives me hope.

Philanthropy has an equally important role in sustaining scientific excellence in the U.S. and around the world. I chair the advisory board of one such effort, the Aligning Science Across Parkinson’s (ASAP) initiative, a basic research program supported by the Sergey Brin [Family Foundation] and Michael J. Fox [Foundation for Parkinson’s Research]. Internationally collaborative and open-science efforts such as this are putting us on a path toward a meaningful treatment to halt the progression of Parkinson’s disease. I am confident that will happen in the next five years.

What’s your best advice for an early-career scientist?

Remain focused on the future and resilient in the face of the current cutbacks.

This shall pass, and American preeminence in science will be restored.

How has your field changed in the past few years?

Artificial intelligence and other computational tools have greatly improved the precision with which we are able to investigate biological processes. For instance, ASAP and the Allen Institute have a joint project that enables researchers to visualize and explore data from millions of human brain cells. This technology advancement helps them better understand the biological connections between neurodegenerative diseases, such as Parkinson’s and Alzheimer’s, as never before.

It’s Time to Stand Up for Science

If you enjoyed this article, I’d like to ask for your support. Scientific American has served as an advocate for science and industry for 180 years, and right now may be the most critical moment in that two-century history.

I’ve been a Scientific American subscriber since I was 12 years old, and it helped shape the way I look at the world. SciAm always educates and delights me, and inspires a sense of awe for our vast, beautiful universe. I hope it does that for you, too.

If you subscribe to Scientific American, you help ensure that our coverage is centered on meaningful research and discovery; that we have the resources to report on the decisions that threaten labs across the U.S.; and that we support both budding and working scientists at a time when the value of science itself too often goes unrecognized.

In return, you get essential news, captivating podcasts, brilliant infographics, can't-miss newsletters, must-watch videos, challenging games, and the science world's best writing and reporting. You can even gift someone a subscription.

There has never been a more important time for us to stand up and show why science matters. I hope you’ll support us in that mission.