Gene/Protein Disease Symptom Drug Enzyme Compound
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Query: UMLS:C0027497 (nausea)
23,468 document(s) hit in 31,850,051 MEDLINE articles (0.00 seconds)

Crizotinib is an ATP-competitive small-molecule inhibitor of the receptor tyrosine kinases (RTK) c-Met, anaplastic lymphoma kinase (ALK), and ROS1. There is convincing clinical evidence for the effectiveness in non-small-cell lung cancer (NSCLC) harboring EML4-ALK rearrangements resulting in constitutional activation of the ALK-RTK. The drug is approved for this entity, which represents no more than 3-5% of all NSCLC. However, in this population, impressive response rates are generated. The same seems to be true for ROS-1 rearrangements; however, these only occur in approximately 1% of all NSCLC. The role in c-Met altered cancers needs to be determined. Toxicities include visual impairment, nausea, peripheral edema, QT-prolongation, and liver enzyme elevation. Also, the occurrence of renal cysts is reported. Fluorescence in situ hybridization (FISH) detecting the ALK rearrangement has to be performed on tumor tissue to predict crizotinib efficacy. The role of immunohistochemistry in this setting needs to be determined. It has high concordance with FISH results when strongly positive or completely negative. The high efficacy of crizotinib in ALK- and ROS-positive lung cancer as new molecular targets beside the epidermal growth factor receptor (EGFR) underscores the importance of molecular typing in NSCLC.
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PMID:Crizotinib. 2475 93

About 4% of non-small-cell lung carcinomas involve an EML4-ALK tyrosine kinase fusion gene and occur almost absolutely in carcinomas arising in non-smokers. Crizotinib, the first inhibitor of anaplastic lymphoma kinase (ALK), ROS1 and c-Met receptor kinase, has been used in the treatment of ALK-positive non-small cell lung cancer. Side effects of crizotinib mostly consist of grade 1-2 gastrointestinal events (nausea, vomiting, diarrhea and constipation), grade 1-2 edema and fatigue; grade 1 visual disorders, rare cases of elevated liver enzymes and pneumonitis. We are presenting a case of adenocarcinoma of lung, who progressed on first-line chemotherapy and received crizotinib as second line therapy for 9 months. Patient has very good partial response to crizotinib and had some side effects of crizotinib like nausea, vomiting, diarrhea, fatigue, asthenia and anorexia, asymptomatic transaminitis in the first 2 to 3 weeks of therapy and managed symptomatically. But after 9 months, he developed sudden onset left sided vision loss. On fundoscopic examination he was found to have "cherry red spot" and fundus flourescein angiography revealed central retinal artery occlusion (CRAO). After 15 days of vision loss patient developed pleural effusion, and pleural fluid cytology was positive for malignant cells. Visual symptoms are very well known in the literature as side effects of crizotinib, but CRAO is not yet been documented. As this patient is not having any prothrombotic state like diabetes, hypertension, atherosclerosis, hyperhomocysteinemia or any genetic disorders except malignancy. Hypercoagulability disorders are known to be commonly associated with a variety of cancer types including lung cancer. This appears to be a sign of early crizotinib resistance in this patient because there was no history of prior hypercoagulable state. To the best of our knowledge this is the first case report in the world literature, as CRAO presenting as a sign of crizotinib resistance in an adenocarcinoma of lung patient who was on crizotinib.
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PMID:Central retinal artery occlusion, an early sign of crizotinib resistance in an alk positive adenocarcinoma of lung: A rare case report. 2760 84

Crizotinib is an ATP-competitive small-molecule inhibitor of the receptor tyrosine kinases (RTK) C-Met, ALK and ROS1. There is a robust effectiveness in non-small-cell lung cancer (NSCLC) harbouring EML4-ALK-rearrangements resulting in constitutional activation of the ALK-RTK. The drug is approved for this entity, which represents no more than 3-5% of all NSCLC. However, in this population, impressive response rates are generated. The same is true for ROS-1 rearrangements; however, these only occur in approximately 1% of all NSCLC. In small series, efficacy is also reported in patients, whose tumours harbour a MET Exon 4 skipping mutation (approx. 3% of all NSCLC). Toxicities include visual impairment, nausea, peripheral edema, QT-prolongation and liver-enzyme elevation. Also, the occurrence of renal cysts is reported. The detection of ALK-protein by immunohistochemistry is a predictor of efficacy for crizotinib. In cases of doubt, fluorescence in situ hybridisation (FISH) detecting the ALK-rearrangement has to be performed on tumour tissue. FISH is also the method of choice to detect ROS1-rearrangement, whereas MET-mutations are detected by sequencing methods. The high efficacy of crizotinib in ALK- and ROS-rearranged as well as MET mutated lung cancer as new molecular targets beside the epidermal growth factor receptor (EGFR) underscores the importance of molecular typing in NSCLC.
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PMID:Crizotinib. 3006 59