Target landscape
Open Targets · retrieved 2026-09-12 · weekly12 genes recurrently implicated in kidney cancer, triaged for whether anything can actually be aimed at them. The zeros are the informative rows.
Of 12 recurrently implicated genes, 6 carry any drug at all. That is a statement about these 12 gene targets, not about the disease: Kidney cancer does have labelled therapy — 16 drugs, listed in the next section.
Two different questions
The table below asks what can be aimed at 12 recurrently implicated genes. That is narrower than what is approved for the disease, and narrower again than what kidney cancer is actually treated with, which includes agents approved under broader indications. All three are on this page and they are kept apart deliberately.
| Gene | Drugs | Approval, and whether it reached this disease | Open Targets tractabilitycomputed from protein features and literature — a signal that a modality is worth trying, not evidence that it works | Cell therapy here |
|---|---|---|---|---|
| VHL | 0 | No drug— | antibody, protein degrader, small molecule | — |
| HIF1A | 0 | No drug— | protein degrader, small molecule | — |
| EPAS1 | 1 | 1 approvedBelzutifanApproved in kidney cancer: Belzutifan.25 active of 27 kidney cancer trials | protein degrader, small molecule | 0 active of 1 trial |
| PBRM1 | 0 | No drug— | protein degrader, small molecule | — |
| SETD2 | 0 | No drug— | protein degrader, small molecule | — |
| BAP1 | 0 | No drug— | protein degrader | — |
| KDM5C | 0 | No drug— | protein degrader, small molecule | — |
| MTOR | 25 | 2 approvedPerhexiline, RidaforolimusApproved in cardiovascular disorder, angina pectoris. No kidney cancer indication appears on these drugs’ labels.3 active of 10 kidney cancer trials | antibody, protein degrader, small molecule | — |
| KDR across cancers → | 70 | 19 approvedAxitinib, Cabozantinib, Cabozantinib S-Malate, Cediranib, Fruquintinib, Lenvatinib, Midostaurin, Nintedanib, Nintedanib Esylate, Pazopanib, Ramucirumab, Regorafenib, Rivoceranib, Sorafenib, Sunitinib, Sunitinib Malate, Surufatinib, Tivozanib, VandetanibApproved in kidney cancer: Axitinib, Cabozantinib, Lenvatinib, Pazopanib, Sorafenib, Sunitinib, Tivozanib.180 active of 799 kidney cancer trials | antibody, other clinical modality, protein degrader, small molecule | 0 active of 4 trials |
| MET across cancers → | 36 | 6 approvedAmivantamab, Cabozantinib, Cabozantinib S-Malate, Capmatinib, Crizotinib, TepotinibApproved in kidney cancer: Cabozantinib.62 active of 113 kidney cancer trials | antibody, other clinical modality, protein degrader, small molecule | — |
| CD274 across cancers → | 13 | 5 approvedAtezolizumab, Avelumab, Cosibelimab, Durvalumab, SugemalimabApproved in kidney cancer: Avelumab.45 active of 111 kidney cancer trials | antibody, other clinical modality, protein degrader, small molecule | — |
| CA9 | 4 | 2 approvedEthoxzolamide, SulthiameApproved in epilepsy. No kidney cancer indication appears on these drugs’ labels.8 active of 19 kidney cancer trials | antibody, protein degrader, small molecule | 2 active of 2 trials |
Dataset evidence counts studies in the 521-study ranked set whose title or abstract names the gene; the bar is scaled to VHL. Sources: Open Targets Platform and NCBI GEO, retrieved 2026-09-12. Clinical stage is the highest reached for any indication — see the per-drug indications noted in each row. Target-prioritisation reference only; not clinical or prescribing guidance.
What is actually approved here
openFDA drug labels · weekly16 drugs carry an FDA label naming kidney cancer: Aldesleukin, Avelumab, Axitinib, Belzutifan, Bevacizumab, Cabozantinib, Everolimus, Ipilimumab, Lenvatinib, Nivolumab, Pazopanib, Pembrolizumab, Sorafenib, Sunitinib, Temsirolimus, Tivozanib. Separately, 24 of the drugs returned for the genes in the table above are approved only for other diseases and reach kidney cancer through trials, not through their labels.
Every label that names kidney cancer
| Drug | Role | What the label says |
|---|---|---|
| AldesleukinPROLEUKIN | Labelled here | Metastatic Renal Cell Carcinoma Proleukin is indicated for the treatment of adults with metastatic renal cell carcinoma (RCC). |
| AvelumabBAVENCIO | Labelled here | Advanced Renal Cell Carcinoma BAVENCIO in combination with axitinib is indicated for the first-line treatment of patients with advanced renal cell carcinoma (RCC) [see Clinical Studies |
| AxitinibINLYTA | Labelled here | First-Line Advanced Renal Cell Carcinoma INLYTA in combination with avelumab is indicated for the first-line treatment of patients with advanced renal cell carcinoma (RCC). |
| BelzutifanWELIREG | Labelled here | Renal Cell Carcinoma with a Clear Cell Component (ccRCC) in combination with pembrolizumab or pembrolizumab and berahyaluronidase alfa-pmph, for the adjuvant treatment of adult patients with ccRCC at intermediate-high or high risk of recurrence following nephrectomy, or following nephrectomy and resection of metastatic lesions. |
| BevacizumabALYMSYS, Avastin, JOBEVNE | Labelled here | Metastatic renal cell carcinoma in combination with interferon-alfa. |
| CabozantinibCABOMETYX | Labelled here | Renal Cell Carcinoma CABOMETYX is indicated for the treatment of patients with advanced renal cell carcinoma (RCC). |
| EverolimusAfinitor, Afinitor Disperz, Everolimus | Labelled here | Renal Cell Carcinoma (RCC) AFINITOR is indicated for the treatment of adult patients with advanced RCC after failure of treatment with sunitinib or sorafenib. |
| IpilimumabYERVOY | Labelled here | Renal Cell Carcinoma (RCC) • Treatment of adult patients with intermediate or poor risk advanced renal cell carcinoma, as first-line treatment in combination with nivolumab. |
| LenvatinibLenvima | Labelled here | Renal Cell Carcinoma (RCC) In combination with pembrolizumab, for the first line treatment of adult patients with advanced renal cell carcinoma (RCC). |
| NivolumabOPDIVO, OPDIVO QVANTIG | Labelled here | Renal Cell Carcinoma (RCC) • adult patients with intermediate or poor risk advanced renal cell carcinoma, as a first-line treatment in combination with ipilimumab. |
| PazopanibPazopanib, VOTRIENT, pazopanib | Labelled here | Renal Cell Carcinoma VOTRIENT ® is indicated for the treatment of adults with advanced renal cell carcinoma (RCC). |
| PembrolizumabKEYTRUDA, KEYTRUDA QLEX | Labelled here | Renal Cell Carcinoma (RCC) in combination with axitinib, for the first-line treatment of adult patients with advanced RCC. |
| SorafenibNexavar, Sorafenib, Sorafenib Tosylate | Labelled here | Renal Cell Carcinoma NEXAVAR is indicated for the treatment of patients with advanced renal cell carcinoma (RCC). |
| SunitinibSUNITINIB MALATE, SUTENT, Sunitinib Malate | Labelled here | Advanced Renal Cell Carcinoma SUTENT is indicated for the treatment of adult patients with advanced renal cell carcinoma (RCC). |
| TemsirolimusTemsirolimus, Torisel | Labelled here | TORISEL ® is a kinase inhibitor indicated for the treatment of advanced renal cell carcinoma. |
| TivozanibFOTIVDA | Labelled here | FOTIVDA is a kinase inhibitor indicated for the treatment of adult patients with relapsed or refractory advanced renal cell carcinoma (RCC) following two or more prior systemic therapies. |
0 labels match indications_and_usage:"renal cell carcinoma" OR indications_and_usage:"kidney cancer"; they collapse to 16 distinct molecules once salt forms, biosimilars and co-formulated hyaluronidase are merged. Source: openFDA drug label API (api.fda.gov/drug/label.json), retrieved 2026-09-12. Labels change; this reflects the current label text, not the approval history. Not prescribing guidance.
Cell therapy against CD70
ClinicalTrials.gov · retrieved 2026-09-12 · weeklyCD70 is the busiest cell-therapy antigen in kidney cancer: 15 registered trials, 9 still active.
| Trial | Phase | Status | Title | Last update |
|---|---|---|---|---|
| NCT06010875 | 1 | Recruiting | A Clinical Research About CD70-targeted CAR-T in the Treatment of CD70-positive Advanced/Metastatic Solid Tumors | 2023-11-08 |
| NCT05518253 | 1 | Recruiting | A Clinical Study of CD70-targeted CAR-T in the Treatment of CD70-positive Advanced/Metastatic Solid Tumors | 2025-05-31 |
| NCT07551349 | 1/2 | Recruiting | Dual-target CD70/CAIX CAR-NK Cells for Advanced Clear Cell Renal Cell Carcinoma | 2026-04-24 |
| NCT07072234 | 1 | Recruiting | Phase I Study of Allogeneic Transforming Growth Factor-beta Receptor Type 2 Knockout CD70 CAR NK Cells in Treatment Refractory Clear Cell Renal Cell Carcinoma | 2026-04-29 |
| NCT07645690 | EARLY/1 | Recruiting | The Safety and Efficacy of Allogeneic CD70 CAR-T Therapy in Unresectable or Metastatic Clear Cell Renal Cell Carcinoma | 2026-06-22 |
| NCT02830724 | 1/2 | Recruiting | Administering Peripheral Blood Lymphocytes Transduced With a CD70-Binding Chimeric Antigen Receptor to People With CD70 Expressing Cancers | 2026-08-13 |
| NCT06383507 | 1 | Not yet recruiting | A Clinical Study of Anti-CD70 UCAR-T in Relapsed or Refractory Solid Tumors | 2024-04-25 |
| NCT06870279 | 1 | Not yet recruiting | A Clinical Research of CD70-targeted CAR-NKT Cells (CGC738) Therapy in RCC | 2025-04-24 |
| NCT07113977 | EARLY/1 | Not yet recruiting | Clinical Study of a Novel Humanized CD70-Targeted CAR-T Cell Incorporating TLR2 for Advanced Renal Cell Carcinoma Therapy | 2025-08-11 |
| NCT05420519 | 1 | Unknown | Clinical Study of CD70-targeted CAR-T Therapy for Advanced/Advanced Renal Cancer | 2023-08-18 |
10 of 15 shown, most recently active first. Other antigens searched: PD-1 (10), VEGFR (4), CA9 (2), CTLA-4 (1), HIF-2alpha (1). Source: ClinicalTrials.gov API v2, retrieved 2026-09-12. Trials are matched on the antigen named in the title or intervention, so a trial stating only a product code is missed.
Research momentum
PubMed MeSH · monthlyEvery term below is a share of the kidney cancer literature, not a count, because the field itself grew: 2015–2018 (n=6,000) against 2021–2025 (n=6,000). A topic whose papers doubled while the field doubled has not risen.
These are sample shares. The two windows hold 6,337 and 9,283 papers; MeSH terms were read from an evenly spaced sample of 6,000 and 6,000 of them, taken across the whole window rather than from its most recent papers. Percentages carry sampling error of roughly a percentage point and small differences between two terms are not meaningful.
Rising, with a real baseline
| MeSH term | 2015–18 | 2021–25 | Change | Share now |
|---|---|---|---|---|
| Tumor Microenvironment | 0.72% | 7.62% | 10.63× | 457 papers |
| Single-Cell Analysis | 0.08% | 0.87% | 10.39× | 52 papers |
| Carcinoma | 0.23% | 2.18% | 9.35× | 131 papers |
| Gallium Radioisotopes | 0.08% | 0.48% | 5.79× | 29 papers |
| Ipilimumab | 0.47% | 2.35% | 5.03× | 141 papers |
| Progression-Free Survival | 0.52% | 2.38% | 4.61× | 143 papers |
| Antibodies, Monoclonal, Humanized | 0.65% | 2.75% | 4.23× | 165 papers |
| Colonic Neoplasms | 0.08% | 0.32% | 3.8× | 19 papers |
| RNA | 0.13% | 0.43% | 3.25× | 26 papers |
| DNA | 0.08% | 0.27% | 3.2× | 16 papers |
Cooling
| MeSH term | 2015–18 | 2021–25 | Change | Share now |
|---|---|---|---|---|
| Pyrroles | 7.15% | 0.37% | 0.05× | 22 papers |
| Indoles | 7.2% | 0.48% | 0.07× | 29 papers |
| Imidazoles | 1.78% | 0.2% | 0.11× | 12 papers |
| Dose-Response Relationship, Drug | 1.85% | 0.23% | 0.13× | 14 papers |
| Multivariate Analysis | 2.63% | 0.33% | 0.13× | 20 papers |
| Sirolimus | 1.52% | 0.22% | 0.14× | 13 papers |
Biggest topics now
| MeSH term | 2015–18 | 2021–25 | Change | Share now |
|---|---|---|---|---|
| Kidney Neoplasms | 90.5% | 98.58% | 1.09× | 5915 papers |
| Prognosis | 20.85% | 22.7% | 1.09× | 1362 papers |
| Nephrectomy | 20.7% | 14.45% | 0.7× | 867 papers |
| Biomarkers, Tumor | 13.0% | 13.68% | 1.05× | 821 papers |
| Gene Expression Regulation, Neoplastic | 12.52% | 13.38% | 1.07× | 803 papers |
| Treatment Outcome | 18.0% | 8.92% | 0.5× | 535 papers |
| Cell Proliferation | 9.15% | 8.72% | 0.95× | 523 papers |
| Tumor Microenvironment | 0.72% | 7.62% | 10.63× | 457 papers |
| Kidney | 7.42% | 7.27% | 0.98× | 436 papers |
| Immune Checkpoint Inhibitors | 0.0% | 6.22% | 62167.67× | 373 papers |
Publication mix
| Type | 2015–18 | 2021–25 |
|---|---|---|
| Clinical Trial | 0.0% | 0.0% |
| Randomized Controlled Trial | 2.0% | 1.5% |
| Review | 11.3% | 8.6% |
| Meta-Analysis | 2.4% | 1.4% |
| Case Reports | 0.0% | 1.8% |
Query: Carcinoma, Renal Cell[MeSH Major Topic] NOT ("Wilms Tumor"[MeSH] OR "Angiomyolipoma"[MeSH] OR "Adenoma, Oxyphilic"[MeSH] OR "Kidney Transplantation"[MeSH] OR "Acute Kidney Injury"[MeSH] OR "Renal Insufficiency, Chronic"[MeSH]). Terms need at least 12 papers in the recent window and, in the rising table, at least 5 in the earlier one — a term going from 1 paper to 12 is a large fold change and no evidence of anything. Ubiquitous descriptors (Humans, Animals, age bands) and the disease’s own term are dropped. Windows are read whole where they fit and sampled where they do not; the totals and the sample sizes are both in the JSON beside this page. Source: PubMed MeSH, retrieved 2026-09-12.
Disease burden
What the public sources count, and how closely each category matches this disease. The same figures for every disease on the site are on one table.
| Measure | Value | Match | What it counts |
|---|---|---|---|
| New cases each year | 80,450 cases/year | direct | 2026 SEER Cancer Stat Facts, Kidney and Renal Pelvis Cancer, retrieved 2026-09-12 |
| Deaths each year | 15,160 deaths/year | direct | 2026 SEER Cancer Stat Facts, Kidney and Renal Pelvis Cancer, retrieved 2026-09-12 |
| Incidence rate | 18 cases per 100,000 people per year | direct | 2019-2023 SEER Cancer Stat Facts, Kidney and Renal Pelvis Cancer, retrieved 2026-09-12 |
| Death rate | 3.4 deaths per 100,000 people per year | direct | 2020-2024 SEER Cancer Stat Facts, Kidney and Renal Pelvis Cancer, retrieved 2026-09-12 |
| People living with it | 687,999 people living with the disease | direct | 2023 SEER Cancer Stat Facts, Kidney and Renal Pelvis Cancer, retrieved 2026-09-12 |
| Median age at diagnosis | 65.0 years | direct | 2019-2023 SEER Cancer Stat Facts, Kidney and Renal Pelvis Cancer, retrieved 2026-09-12 |
| median age at death | 73 years | direct | 2020-2024 SEER Cancer Stat Facts, Kidney and Renal Pelvis Cancer, retrieved 2026-09-12 |
| Five-year relative survival | 79.2% | direct | 2016-2022 SEER Cancer Stat Facts, Kidney and Renal Pelvis Cancer, retrieved 2026-09-12 |
Years of life lost
2.8 years per case, 224,230 a year, from survival and age at diagnosis rather than from a death count. derived proxy What this costs to fund is in Funding.
3 assumptions behind this estimate
- Five-year relative survival stands in for cure; a death after five years is not counted.
- The median age at diagnosis stands in for the whole age distribution.
- Life expectancy at birth (78.4 years) is the reference, rather than remaining expectancy at the age of death from a life table.
- Each assumption moves the result by more than the difference between the two diseases currently on this site, so this figure separates a disease from one ten times its size, not from a close neighbour.
Funding
NIH RePORTER · quarterlyNIH obligations naming kidney cancer, after removing the 3,658 records across all years that matched the search but are about something else. That filter is not cosmetic: without it this section reports another field’s funding as this disease’s.
NIH obligations by fiscal year
| Year | Obligations | Awards | Distinct projects | Dropped as off-topic |
|---|---|---|---|---|
| FY2013 | $35.2M | 73 | 64 | 276 |
| FY2014 | $25.1M | 59 | 58 | 278 |
| FY2015 | $23.9M | 61 | 57 | 268 |
| FY2016 | $26.8M | 65 | 58 | 260 |
| FY2017 | $31.3M | 75 | 64 | 283 |
| FY2018 | $36.1M | 92 | 76 | 298 |
| FY2019 | $35.8M | 85 | 71 | 286 |
| FY2020 | $38.3M | 80 | 67 | 274 |
| FY2021 | $31.9M | 69 | 65 | 292 |
| FY2022 | $44.7M | 88 | 76 | 289 |
| FY2023 | $51.7M | 100 | 88 | 290 |
| FY2024 | $57.8M | 110 | 97 | 297 |
| FY2025 | $58.4M | 107 | 93 | 267 |
Where FY2025 money went
| Institution | Obligations | Awards |
|---|---|---|
| Division Of Basic Sciences - Nci | $11.3M | 11 |
| Ut Southwestern Medical Center | $7.7M | 15 |
| Dana-Farber Cancer Inst | $5.1M | 8 |
| National Heart, Lung, And Blood Institute | $3.4M | 0 |
| Beth Israel Deaconess Medical Center | $3.1M | 7 |
| University Of California, San Diego | $3.0M | 0 |
| Yale University | $1.8M | 4 |
| Stanford University | $1.8M | 4 |
| University Of Tx Md Anderson Can Ctr | $1.5M | 2 |
| Eunice Kennedy Shriver National Institute Of Child Health & Human Development | $1.5M | 0 |
Text search renal cell carcinoma over project title, terms and abstract, per fiscal year. Awards are individual funding actions; distinct projects collapse them by core project number, so a multi-year grant counts once. The most recent year may be incomplete. Source: NIH RePORTER, retrieved 2026-09-12.
What that buys
Against 224,230 years of life lost a year, FY2025 obligations are $261 per life-year — $726 per case. The estimate and its assumptions are in Disease burden.
Who funds it, FY2025
The total says how much. These say who from, through what kind of award, and to whom — which a dollar figure cannot.
NIH institutes
Projects by administering institute. The rows above are the top 7 and account for 107 of 107.
Award mechanisms
R01 is an investigator-initiated grant; ZIA is NIH intramural, meaning the work happens inside NIH rather than being funded outside it. The rows above are the top 15 and account for 100 of 107.
Where it lands
Share of $58.4M in FY2025. The top three hold 41%.
Public datasets, ranked
NCBI GEO + Europe PMC + iCite · weekly1,285 human GEO series match kidney cancer. Keyword relevance cannot tell a 342-sample patient cohort from a six-well cell-line experiment, so this ranking scores four things GEO does not expose: how often the accession is named in full-text papers, field-normalised citation impact, clinical annotation, and cohort type.
Composition of the 521-study ranked set
Established
high reuse, older| Accession | Study | Samples | MentionsEurope PMC | RCR | Evidence |
|---|---|---|---|---|---|
| GSE53757 | Gene array analysis of clear cell renal cell carcinoma tissue versus matched normal kidney tissue2014 · array | 144 | 515 | 4.4 | patient cohortAPT 0.75molecular169 cites |
| GSE15641 | Gene signatures of progression and metastasis in renal cell cancer2009 · array | 92 | 180 | 7.2 | patient cohortAPT 0.75molecular357 cites |
| GSE53000 | Expression data from spatially separated samples of different ccRCC patients2014 · spatial | 62 | 54 | 24.5 | patient cohortAPT 0.95998 cites |
| GSE40435 | Integrative genome-wide gene expression profiling of clear cell renal cell carcinoma in Czech Republic2013 · array | 202 | 269 | 3.0 | patient cohortAPT 0.75118 cites |
| GSE67501 | Expression data in human renal cell carcinoma samples from patients who did or did not respond to anti-PD-1 (Nivolumab) immunotherapy2016 · array | 11 | 142 | 4.2 | patient cohortAPT 0.75survivalmolecularNIVOLUMABPD-1162 cites |
| GSE167573 | Next generation sequencing of TFE3-translocation renal cell carcinoma and adjacent normal tissue transcriptomes2021 · sequencing | 77 | 90 | 6.1 | patient cohortAPT 0.75molecular126 cites |
| GSE14994 | Patterns of gene expression and copy-number alterations in VHL disease-associated and sporadic ccRCC2009 · array | 229 | 42 | 6.7 | patient cohortAPT 0.95molecularVHL334 cites |
| GSE22541 | Expression data from pulmonary metastases and primary tumors of clear-cell renal cell carcinoma (ccRCC) with different disease-free survivals2010 · array | 68 | 138 | 2.0 | patient cohortAPT 0.75survivalmolecular83 cites |
Recent
2022 onward, by score| Accession | Study | Samples | MentionsEurope PMC | RCR | Evidence |
|---|---|---|---|---|---|
| GSE175540 | Tertiary lymphoid structures generate and propagate anti-tumor antibody-producing plasma cells in renal cell cancer2022 · spatial | 24 | 76 | 39.9 | patient cohortAPT 0.95survival669 cites |
| GSE181294 | Dissecting the immune suppressive human prostate tumor microenvironment via integrated single-cell and spatial transcriptomic analyses2022 · single-cell | 51 | 61 | 20.0 | patient cohortAPT 0.75stagemolecular254 cites |
| GSE178481 | A transcriptional metastatic signature predicts survival in clear cell renal cell carcinoma2022 · single-cell | 26 | 22 | 5.5 | patient cohortAPT 0.75survivalmolecular47 cites |
| GSE242299 | Single-cell transcriptional profiling of clear cell renal cell carcinoma reveals a tumor-associated endothelial tip cell phenotype2024 · single-cell | 31 | 23 | 4.3 | patient cohortAPT 0.75survivalstage39 cites |
| GSE207493 | Integrative single-cell analysis of transcriptional and epigenetic regulatory features in the human clear cell renal cell carcinoma2023 · chromatin | 38 | 43 | 6.0 | cell lineAPT 0.75molecular85 cites |
| GSE202813 | Single-cell analysis of immune and stroma cell remodeling in renal cell carcinoma primary tumors and bone metastatic lesions2023 · single-cell | 33 | 9 | 5.5 | patient cohortAPT 0.75molecular47 cites |
Sources: NCBI GEO + Europe PMC + iCite, retrieved 2026-09-12. SubSeries are collapsed to one row per study by linked PMID. Of 1,285 series retrieved, 178 were dropped by the profile’s exclusion rules and 451 named the disease only in passing. The ranked set is a relevance-ranked sample, not a census, so the composition figures describe the sample only.
Where the gaps are
Derived from the sections above · recomputed on every refreshEach card below is a disagreement between two of the tables on this page — a drug that exists but was never tried here, a target that looks tested and was not, a gene with no drug whose product has a busy clinical programme. They are computed from the same facts as the tables, so they cannot contradict them.
VHL
No drug, no trial, no clinical programme of any kind. Whatever the biology says, nothing has been built.
HIF1A
No drug, no trial, no clinical programme of any kind. Whatever the biology says, nothing has been built.
PBRM1
No drug, no trial, no clinical programme of any kind. Whatever the biology says, nothing has been built.
SETD2
No drug, no trial, no clinical programme of any kind. Whatever the biology says, nothing has been built.
BAP1
No drug, no trial, no clinical programme of any kind. Whatever the biology says, nothing has been built.
KDM5C
No drug, no trial, no clinical programme of any kind. Whatever the biology says, nothing has been built.
How a machine reads this page
StaticThis page is written to be quoted correctly by a model as much as read by a person. The same facts are available as JSON at the sibling URL below, which is what to cite.
Fully server-rendered
Every figure is in the HTML at first byte. No JavaScript runs, no figure is fetched after load, and nothing on this page requires a renderer to see.
Every number carries a source
Each section names the API it came from and the date it was retrieved: Open Targets (2026-09-12), ClinicalTrials.gov (2026-09-12), openFDA (2026-09-12), NCBI GEO (2026-09-12), PubMed (2026-09-12), NIH RePORTER (2026-09-12).
Negatives stated explicitly
Where nothing exists for kidney cancer — no drug, no trial, no approval — the page says so in those words rather than omitting the row. An absent row is unquotable; a stated negative is the finding.
Denominators, not just percentages
Every share is printed with the count and the total it came from, so a figure can be checked rather than taken.
The filters are published
3 exclusion patterns are applied to free text before anything is ranked, because none of consequence among tumour lines; HK-2 as the non-tumour kidney is used as a model system in tubular injury, nephrotoxicity and fibrosis, where HK-2 is the proximal tubule. What was removed and why is stated in each section rather than silently applied.
{
"disease": "Kidney cancer",
"mesh": "Carcinoma, Renal Cell",
"facts": "https://usebiotransfer.org/disease/kidney-cancer.json",
"methods": "https://usebiotransfer.org/methods/",
"note": "Every figure on the page is in that JSON with its source and retrieval date. Quote from it rather than from the HTML."
}