The fastest way to fund science. $1.8M+ funded, powered by $RSC. Post an RFP. Discover high quality preregistered proposals. Paid peer review in 10 days.

Earth 🌍🌎🌏
Since January 2025, ResearchHub has deployed over $1.5M in research funding to scientists worldwide. We just redesigned our funding page to make it even easier for funders and researchers to connect. Take a look ↓ researchhub.com/fund
3
15
88
13,271
Same navitoclax dose, two routes. Free, it caused leukopenia, weight loss and deaths in fibrotic mice. In P-selectin-seeking nanoparticles it did not, and still cut liver and lung fibrosis. Target: senescent-like macrophages.
Excited to share our new paper, out today in @ScienceMagazine! We developed senescence-modulating nanoparticles (SMNPs) that target P-selectin+ pathogenic senescent-like macrophages in fibrotic tissues and tumors. science.org/doi/10.1126/scie…
1
2
666
Hinterleitner, Barthet, Goldberg et al., Senescence-directed nanotherapy ameliorates fibrosis and overcomes immune exclusion in cancer, Science, Memorial Sloan Kettering (Lowe and Heller labs; mouse models, human tissue correlative only; specifics verified on the bioRxiv preprint). science.org/doi/10.1126/scie…
62
Fly larvae short on protein lived longer as adults, but females came out up to 28% lighter and laid fewer early eggs. Knocking down one storage protein, Lsp2, matched the lifespan gain with no significant egg drop (flies).
A fruit-fly protein thought only to store amino acids in fact responds to nutritional deficiency in both development and adulthood, resulting in lifespan extension go.nature.com/4d486TP
1
1
848
🔬 Advancing today’s biomedical research to build a healthier tomorrow involves more than publishing research results in journal. It involves verifying those findings through scientific rigor and scrutiny, transforming promising research into discoveries upon which the world can act. To that end, NIH has launched a new reproducibility and replication initiative rooted in one clear conviction—that discovery and independent verification are inseparable pillars of science. Read more in my @ScienceMagazine editorial ➡️ science.org/doi/10.1126/scie…
4
19
90
4,927
Age-linked gene shifts in the human prefrontal cortex, per cell type: 8,223 across development, 27 in young adulthood, 1 in middle age. From 60 it remodels again, mostly in glia (post-mortem, 284 donors aged 0-97, 1.3M nuclei).
A paper in Nature presents the largest-known map of gene expression in the human prefrontal cortex region of the brain. go.nature.com/4yLUu82
1
3
1,063
Yang et al., Lifespan single-cell transcriptomic atlas of the human prefrontal cortex, Nature, Icahn School of Medicine at Mount Sinai (open access; PsychAD Consortium, 1,307,674 nuclei from 284 neurotypical donors, post-mortem). nature.com/articles/s41586-0…
110
To this day, we still don't fully understand what happens to consciousness at the boundary between life and death. A neuroscientist at @GIGAConscious (@Coma_Science) is raising $172K on ResearchHub to study how near-death experiences form, evolve, and reshape people's lives. đź§µ
2
5
13
858
Most studies only interview people who report a near-death experience. This one won't. Charlotte's team will follow 300 emergency and ICU survivors, beginning within 72 hours of awakening and continuing for 12 months.
1
2
167
Every survivor will be studied, from those with no recalled experience to those reporting profound, life-changing near-death experiences. By following everyone, not just the most dramatic cases, the team hopes to build a clearer picture of consciousness at the edge of death. Fund the proposal. → researchhub.com/proposal/323…
1
143
In the largest spectroscopy meta-analysis of depression, 1,180 patients against 1,066 controls, the glutamate-plus-glutamine signal in medial frontal cortex was lower, not higher: -0.38. Glutamate alone showed no difference.
Glutamate dysregulation is a key driver of issues such as anxiety, anhedonia, bipolar disorders, headaches, autism spectrum disorder, TBIs, irritability, inability to focus etc Here's what you need to know. Threadđź§µ
1
9
1,430
Moriguchi et al., Glutamatergic neurometabolite levels in major depressive disorder: a systematic review and meta-analysis of proton magnetic resonance spectroscopy studies, Molecular Psychiatry 2019, Keio University, CAMH Toronto and Yokohama City University (open access; 49 studies; the decrease reached significance only in medicated patients). doi.org/10.1038/s41380-018-0…
2
201
Stool pooled from 3 severely depressed men, given to antibiotic-depleted rats, produced anhedonia (p=0.022) and anxiety-like behavior (p=0.029). Ten years on, the largest human trial, n=60, missed its primary endpoint.
Scientists transferred gut bacteria from depressed people to rats. The rats then developed behaviors characteristic of depression (anhedonia and anxiety-like behavior).
1
2
1,325
Kelly et al., Transferring the blues: Depression-associated gut microbiota induces neurobehavioural changes in the rat, Journal of Psychiatric Research 2016, APC Microbiome Institute, University College Cork (28 rats, 13 given depressed-donor microbiota; the human trial is Li et al., Cell Host and Microbe, July 2026, remission 43.3% vs 26.7%, p=0.176). doi.org/10.1016/j.jpsychires…
1
172
ResearchHub retweeted
Should we use @ginkgo’s autonomous lab to test if Claude’s gene editor actually works ? Lmk what you think
Today we announced the Claude-led discovery of a molecular machine that we suspect could represent a new gene editing mechanism. Its precise function, biotechnological utility (if any), or level of significance is not yet clear, but at minimum it is work I would have been proud to do as a PhD student. The work was done mostly, though not entirely, by Claude: our life sciences team suggested a broad area of research, Claude read through the literature and a bunch of genome data and discovered something interesting, then Claude proposed experiments to verify the discovery and our team carried them out. It’s easy to dismiss this as a one-off or curiosity, but we’ve repeatedly seen a pattern where AI performance in new intellectual domains goes from weak to superhuman in a matter of a few years. In 2023 models struggled to do math at the level of an average high-school student. In 2024 they started to do well on math competitions for the best high-schoolers in the country, in 2025 they started to solve minor open problems, in early 2026 more significant open problems, and in late 2026 they are beginning to solve the top few open problems in all of mathematics. We believe AI for biology is on a similar exponential trend. The main difference between biology and mathematics, of course, is that math can be done purely theoretically, while biology requires experimentation. Some have used this to draw the conclusion that AI’s utility in biology will be limited. We think this is wrong. As we’ve demonstrated today, humans can collaborate with AI to perform the experiments, validate key results in a few weeks and, if necessary, work with the AI to iterate on what they find. Eventually it may even be possible for Claude itself to safely perform the experiments by autonomously controlling lab equipment, with appropriate safeguards in place, but we aren’t doing that today (our lab is also a BSL1/BSL2 facility that doesn't handle materials dangerous to humans). More broadly, biomedical advancement has many stages — from fundamental biology discoveries, to translational research, to drug discovery, clinical trials, and finally the actual delivery of medicines and health care to patients. We are also interested in these later stages, but even simply accelerating the first stage of fundamental biological discoveries has the potential to speed up and broaden the entire pipeline. Improving our understanding of biology and sharpening biologists’ tools can drive forward all of the later stages, for example by identifying new drug targets, finding new therapeutic modalities, allowing for more precise measurement, and speeding up the experimental loop which itself further accelerates our understanding of biology. This will not in itself speed up clinical trial times, but if it succeeds it could greatly increase the number of promising candidates that go into the pipeline — an increase in throughput even though latency remains. In Machines of Loving Grace, I wrote about AI’s potential to “cure most diseases in 5-10 years” — a goal that sounds impossible, but one I believe is just barely possible if AI is applied to every stage of the pipeline. The first step is showing that AI can first help with, and then drive, biological discoveries. Claude’s discovery is the latest in a line of related prior work that goes back decades, beginning with systems like CRISPR, and continuing with discoveries like the bridge recombinase and VIPR in the past few years. Recently, there has been heightened interest in systems based on reverse transcriptase (RT) enzymes, the enzyme underlying the system Claude identified. And most recently, a Stanford team working independently described a novel RT system with an associated non-coding array that is in some ways similar to the one Claude found, though they are distinct systems that evolved independently from each other. I believe that we’re at the very beginning of finding such systems and developing them into powerful tools for biotechnology. I’m proud of the resources Anthropic has invested in accelerating the public benefits of AI through the life sciences, and we’re aiming both to grow our life sciences team and to work with other scientists to extend this approach to a broad range of problems. If you have a proposal for a research collaboration or are interested in joining our life sciences team, please reach out.
36
35
260
26,723
The Athanatos Foundation has launched a new funding pool on ResearchHub, committing up to $23K to independent replication studies investigating the reported effects of epothilone B on anesthetic sensitivity. đź§µ
2
6
22
1,239
What this RFP funds Researchers are invited to propose the strongest replication possible, including: → Rodent replication (up to $15K) → Tetrahymena replication (up to $5K) → One high-value extension or data audit (up to $3K) Positive, negative, and inconclusive results are all valuable.
1
2
184
Researchers in anesthesiology and related fields are encouraged to submit proposals. Community members can also contribute directly to the funding pool. Submit a proposal or fund the research ↓ researchhub.com/grant/32943/…
2
186