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BIOMARKER:

KRAS wild-type

i
Other names: KRAS, KRAS proto-oncogene GTPase, KRAS1, KRAS2, NS, NS3, OES, CFC2, RALD, K-Ras, RASK2, KI-RAS, C-K-RAS, K-RAS2A, K-RAS2B, K-RAS4A, K-RAS4B, K-Ras 2, C-K-RAS, c-Ki-ras, c-Ki-ras2, Kirsten rat sarcoma viral oncogene homolog
Entrez ID:
Related biomarkers:
Related tests:
6d
To Evaluate IAH0968 in Combination With CAPEOX in HER2-positive Gastric Cancer (clinicaltrials.gov)
P2/3, N=574, Recruiting, SUNHO(China)BioPharmaceutical CO., Ltd. | N=90 --> 574 | Trial completion date: Jul 2028 --> Jul 2029 | Trial primary completion date: Jul 2026 --> Jul 2028
Enrollment change • Trial completion date • Trial primary completion date
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HER-2 (Human epidermal growth factor receptor 2) • PD-L1 (Programmed death ligand 1) • KRAS (KRAS proto-oncogene GTPase) • BRAF (B-raf proto-oncogene) • NRAS (Neuroblastoma RAS viral oncogene homolog)
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PD-L1 expression • HER-2 positive • HER-2 expression • HER-2 underexpression • KRAS wild-type • RAS wild-type • NRAS wild-type • HER-2 positive + RAS wild-type
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Herceptin (trastuzumab) • capecitabine • oxaliplatin • IAH0968
8d
BGB-53038-101: A First-in-human Study of BGB-53038, a Pan-KRAS Inhibitor, Alone or in Combinations in Participants With Advanced or Metastatic Solid Tumors With KRAS Mutations or Amplification (clinicaltrials.gov)
P1, N=47, Terminated, BeOne Medicines | N=514 --> 47 | Trial completion date: Dec 2026 --> Apr 2026 | Recruiting --> Terminated | Trial primary completion date: Dec 2026 --> Apr 2026; The Sponsor has made the decision to terminate this study due to the lack of promising efficacy, internal prioritization, and highly competitive landscape.
Enrollment change • Trial completion date • Trial termination • Trial primary completion date • First-in-human
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KRAS (KRAS proto-oncogene GTPase)
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KRAS mutation • KRAS wild-type
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Erbitux (cetuximab) • Tevimbra (tislelizumab-jsgr)
13d
First-line treatment patterns and real-world outcomes in patients with advanced KRAS-mutated non-small cell lung cancer with high unmet need. (PubMed, Lung Cancer)
Poor survival outcomes were observed across all 1 L treatment options. Patients with KRAS-mutated NSCLC and low PD-L1 expression had especially poor outcomes, highlighting the need for more effective treatment options.
Journal • Real-world evidence • PD(L)-1 Biomarker • IO biomarker
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KRAS (KRAS proto-oncogene GTPase)
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PD-L1 expression • KRAS mutation • KRAS G12C • KRAS wild-type • RAS wild-type • KRAS G12
13d
Furin-like enzyme dependency in KRAS-mutant colorectal cancer as a target for personalized treatment strategies. (PubMed, Biochim Biophys Acta Rev Cancer)
This review summarizes current evidence on the crosstalk between KRAS signaling and Furin-like enzymes, emphasizing their cooperative roles in tumour progression and immune escape. Targeting protein maturation by these enzymes may therefore represent a therapeutic approach for KRAS-mutant colorectal cancer, offering new opportunities for personalized treatment.
Review • Journal
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KRAS (KRAS proto-oncogene GTPase)
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KRAS mutation • KRAS wild-type • RAS wild-type
14d
Intratumoral Microbiome of Metastatic Pancreatic Ductal Adenocarcinoma. (PubMed, Int J Mol Sci)
Nonetheless, K. rosea emerges as a candidate taxon differentially enriched in PDAC, with potential stage- and KRAS-associated patterns. These findings highlight the need for orthogonal validation (qPCR, FISH, culture) and larger prospective cohorts to differentiate true biological associations from residual contamination or stochastic noise in low-biomass settings.
Journal
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KRAS (KRAS proto-oncogene GTPase)
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KRAS mutation • KRAS wild-type
15d
Prognostic Significance of Cdc42 Expression in Colorectal Cancer and Its Concordance Between Primary Tumors and Matched Metastases: A Retrospective Observational Study. (PubMed, J Clin Med)
High Cdc42 expression may serve as an adverse prognostic marker in CRC. Cdc42 shows moderate concordance between primary tumors and matched metastases without a consistent directional shift.
Observational data • Retrospective data • Journal
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KRAS (KRAS proto-oncogene GTPase) • CDC42 (Cell Division Cycle 42)
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KRAS wild-type • RAS wild-type
15d
Pancreatic Ductal Adenocarcinoma with ITSN1-ALK Fusion: Sustained Response to Alectinib with 19-Month Progression-Free Survival. (PubMed, Oncologist)
Oncologists should consider broad next-generation sequencing, including fusion detection, for patients with KRAS-wildtype PDAC. When an ALK fusion is identified, ALK inhibitor therapy can yield durable disease control.
Journal
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KRAS (KRAS proto-oncogene GTPase) • TP53 (Tumor protein P53) • CA 19-9 (Cancer antigen 19-9)
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TP53 mutation • ALK positive • KRAS wild-type • ALK fusion • RAS wild-type
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gemcitabine • Alecensa (alectinib) • Lorbrena (lorlatinib) • capecitabine • albumin-bound paclitaxel • TheraCIM (nimotuzumab)
15d
NF1 and SPRED1/2 cooperate through RAS-MAPK-independent functions. (PubMed, Proc Natl Acad Sci U S A)
The modulation of these NF1-SPRED1/2-dependent downstream signaling effectors were further corroborated in Schwann cell models derived from Neurofibromatosis type I patients that consisted of either plexiform neurofibroma cells or unaffected nerve cells abrogated of NF1 or neurofibromin RAS-GAP activity. Taken together, this study provides RAS-independent functions that are dependent on the cooperation of NF1 and SPRED1/2 in a manner that is uncoupled from canonical MAPK signaling.
Journal
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KRAS (KRAS proto-oncogene GTPase) • NF1 (Neurofibromin 1)
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KRAS mutation • KRAS wild-type
17d
Expression of LIFR in tumor and SHOC2, YAP1 in plasma mRNA as potential biomarkers in KRAS G12C NSCLC. (PubMed, Sci Rep)
In plasma, twelve genes were consistently detected, and SHOC2, YAP1, LZTR1, RGS3, and ZDHHC7 were significantly upregulated at week 6. Low tumor LIFR expression was associated with poorer survival, supporting its potential as a prognostic biomarker and highlighting the feasibility of plasma-based gene expression monitoring.
Journal
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KRAS (KRAS proto-oncogene GTPase) • TP53 (Tumor protein P53) • NRAS (Neuroblastoma RAS viral oncogene homolog) • STK11 (Serine/threonine kinase 11) • KEAP1 (Kelch Like ECH Associated Protein 1) • NFE2L2 (Nuclear Factor, Erythroid 2 Like 2) • YAP1 (Yes associated protein 1) • LIFR (LIF Receptor Subunit Alpha) • ENO1 (Enolase 1) • LZTR1 (Leucine Zipper Like Transcription Regulator 1)
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TP53 mutation • KRAS mutation • KRAS G12C • STK11 mutation • KRAS wild-type • KEAP1 mutation • RAS wild-type • KRAS G12
20d
Brain metastasis from KRAS wild-type pancreatic cancer and organoid correlates: a case report. (PubMed, J Gastrointest Oncol)
Successful generation of a BrM-derived organoid line enabled high-throughput drug screening, which recapitulated the patient's clinical resistance to standard therapies [gemcitabine/nab-paclitaxel, 5-fluorouracil (5-FU)], and showed sensitivity to afatinib, everolimus and RMC-6236...Physicians should also be aware that KRAS wild-type pancreatic cancer with atypical amplifications is likely to exhibit unique metastatic tropisms. Finally, we suggest that patient-derived organoids pharmacotyping can mirror clinical drug responses and help evaluate therapeutic avenues for patient treatment.
Journal
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KRAS (KRAS proto-oncogene GTPase) • PKMYT1 (Protein Kinase Membrane Associated Tyrosine/Threonine 1)
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KRAS wild-type • RAS wild-type
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Gilotrif (afatinib) • gemcitabine • 5-fluorouracil • everolimus • albumin-bound paclitaxel • lunresertib (Debio2513) • daraxonrasib (RMC-6236)
20d
Do all colorectal mucinous adenocarcinomas arise via the serrated neoplasia pathway? (PubMed, J Pathol Clin Res)
Survival analysis showed no significant difference between serrated-MAC and MAC-NOS. We have confirmed that a large majority of colorectal MAC have similar characteristics to SAC.
Journal
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KRAS (KRAS proto-oncogene GTPase) • BRAF (B-raf proto-oncogene)
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KRAS wild-type
21d
KRAS and BRAF mutations modify adjuvant chemotherapy outcomes in early stage colorectal cancer. (PubMed, NPJ Precis Oncol)
Adjuvant chemotherapy was classified as fluoropyrimidine monotherapy (5FU) or oxaliplatin-based therapy (Ox+)...Outcomes were similar between Ox+ and 5FU in double wild-type (KRAS and BRAF wild-type) tumors (OS HR = 1.11, 95% CI, 0.82-1.50). These findings suggest molecular heterogeneity in treatment associations that may inform adjuvant therapy selection.
Journal
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KRAS (KRAS proto-oncogene GTPase) • BRAF (B-raf proto-oncogene)
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BRAF V600E • KRAS mutation • BRAF mutation • BRAF V600 • KRAS wild-type • BRAF wild-type
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5-fluorouracil • oxaliplatin