Gene/Protein Disease Symptom Drug Enzyme Compound
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Query: UMLS:C0042963 (vomiting)
31,883 document(s) hit in 31,850,051 MEDLINE articles (0.00 seconds)

In a phase I study conducted by the EORTC Soft Tissue and Bone Sarcoma Group, 40 patients with advanced soft tissue sarcomas, most of whom had gastrointestinal stromal tumors (GISTs), received imatinib at doses of 400 mg q.d., 300 mg b.i.d., 400 mg b.i.d., or 500 mg b.i.d. Dose-limiting toxicities, including severe nausea, vomiting, edema and rash, were seen at the highest dose level; the maximum tolerated dose was therefore 400 mg b.i.d. Imatinib was active in the group of 35 patients with GISTs, producing partial responses in 19 (54%) patients and stable disease in 13 patients (37%). Responding patients have now been followed for a minimum of 10 months. The most common side effects seen in patients continuing on therapy have been periorbital edema (40%), peripheral edema (37.5%), fatigue (30%), skin rash (30%) and nausea/vomiting (25%). Severe late myelosuppression has also been seen occasionally. Eighteen (51%) GIST patients continue to have partial responses and 11 (31%) continue with stable disease. Thus, 82% of patients with GISTs are still obtaining clinically important benefits with continued imatinib therapy. Some patients showed accelerated progressive disease shortly after starting imatinib. On the other hand, following drug withdrawal, 2 patients had reductions in tumor burden and remain alive without drug therapy. In summary, imatinib is generally well tolerated and has significant activity during long-term treatment of patients with advanced GISTs.
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PMID:Update of phase I study of imatinib (STI571) in advanced soft tissue sarcomas and gastrointestinal stromal tumors: a report of the EORTC Soft Tissue and Bone Sarcoma Group. 1252 78

Imatinib related non-haematological side-effects are reported in <10% of chronic myeloid leukaemia patients and include oedema, weight gain, nausea, vomiting and muscle cramps. Cutaneous reactions are well-recognized events occurring mostly in patients treated at doses of 600 mg/d and higher, either in stable or progressive disease. We report on our experience relating to dermatological toxicities in imatinib treated CML patients showing a spectrum of skin reactions ranging from rashes to cutaneous carcinoma.
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PMID:Early and tardive skin adverse events in chronic myeloid leukaemia patients treated with imatinib. 1565 2

Imatinib targets KIT and platelet-derived growth factor receptors (PDGFR) and is highly effective in the treatment of CML and GIST patients. Pancreatic cancers express KIT and PDGFRs. Therefore, 26 patients with unresectable pancreatic cancer were randomized to either gemcitabine (1000 mg/m2 weekly) or imatinib (2x400 mg po) treatment daily. Pancreatic adenocarcinoma was confirmed histologically and expression of KIT and PDGFRbeta was determined immunohistochemically in the biopsy specimens. Quality of life was assessed with two standard questionnaires. No objective responses were seen in either group. Median time to progression was 77 and 29 days (P=0.411) and median survival time was 140 and 60 days (P=0.517) for gemcitabine and imatinib, respectively. Survival and treatment responses were independent of KIT and PDGFRbeta expression in patients treated with imatinib. Grade 3/4 toxicities of imatinib treatment were anemia, elevated liver enzymes, vomiting, and dyspnea. Patients treated with imatinib reported diarrhoea and/or altered bowel function more frequently, which were treatable symptomatically. Quality of life was similar in both groups. In this small series of pancreatic cancer patients, treatment with imatinib was not associated with a significant control of cancer progression.
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PMID:The tyrosine kinase inhibitor imatinib fails to inhibit pancreatic cancer progression. 1589 16

Chronic myeloid leukemia is a myeloproliferative disorder characterized by the presence of the Philadelphia chromosome, t(9:22). Extramedullary blast crisis is a rare event. Imatinib mesylate has become the treatment of choice, especially for patients for whom allogenic stem cell transplantation is not an option. Imatinib produces complete cytogenetic responses in excess of 80%. However, the penetration of the drug and its metabolites into the CNS (Central Nervous System) is poor. Hence for patients who are on prolonged imatinib therapy and continue to have complete cytogenetic responses, the central nervous system may become a sanctuary site. We report a patient who had a complete hematologic and cytogenetic response and presented with headache and vomiting. The MRI showed meningeal enhancement and the CSF (Cerebro Spinal Fluid) examination was positive for blasts. He was started on cranial radiotherapy and triple intrathecal chemotherapy. He showed good symptomatic improvement and cleared the blasts in the CSF. At the end of radiation, he was in complete hematological remission but had 50% marrow metaphases positive for Philadelphia chromosome. As he did not have a matched sibling donor, the dose of imatinib was increased to 600 mg daily. He continues to be in complete hematologic remission at the time of this report.
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PMID:Isolated central nervous system blast crisis in chronic myeloid leukemia. 1599 75

We report a rare case of symptomatic hypoglycemia in a patient with intra-abdominal recurrence of a previously resected gastrointestinal stromal tumor (GIST). The patient is a 65-year-old woman who underwent resection of a large abdominal mass arising from the stomach, histologically diagnosed as a high-grade leiomyosarcoma. She was lost to follow up. Five years later, the mass recurred; core biopsy demonstrated a CD 117-positive, spindle-cell tumor, consistent with a GIST. She was placed on Gleevec, as there was evidence of multifocal disease, but imaging revealed only mild improvement. Subsequently, her clinical status deteriorated, and she was hospitalized for dehydration, vomiting, and mental status changes. Her blood glucose on admission was 22 mg/dL, and a dextrose infusion (50%) was necessary to maintain adequate blood glucose levels. Measurements of insulin, proinsulin, c-peptide, beta-hydroxybutyrate, and thyroid-stimulating hormone were normal, as were cosyntropin stimulation and glucagon response tests. Suspicions arose for tumor-secreted insulin-like factor. She underwent resection of the dominant 44-cm recurrence, with immediate rebound hyperglycemia, followed by complete normalization of her blood glucose levels. She was discharged on postoperative Day 5 without symptoms or insulin, and is alive with disease at 20 months. Paraneoplastic syndromes occur in only 15 per cent of patients with known malignancies (e.g., lung cancer and metastatic carcinoid), and are rarely reported in the setting of GIST. Hypoglycemia is most often observed in presence of insulinoma and only isolated case reports in GIST patients exist. Overexpression of insulin-like growth factor II is thought to be the mechanism of action. Supportive management and palliative resection or debulking is recommended when possible.
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PMID:Hypoglycemia in the setting of advanced gastrointestinal stromal tumor. 1721 25

Receptor activated tyrosine kinases such as c-kit, c-fms and PDGFR are known targets of inhibition by imatinib mesylate (Gleevec) and are expressed on AML blasts. Marrow stromal cells and monocytes express KIT ligand, M-CSF and PDGF and are therefore capable of activating survival pathways in these leukemic cells. Given the synergy in vitro between Ara-C and imatinib mesylate on AML cell growth inhibition, we initiated a Phase I study combining CLAG+imatinib mesylate in AML patients. Patients with relapsed, refractory AML or CML myeloid blast crisis were eligible to receive Cladribine 5mg/m(2) days 3-7, Cytarabine 2gm/m(2) days 3-7, G-CSF 300mcg days 2-7, and escalating doses of imatinib mesylate given on days 1-15. The level 1 Gleevec dose was 400mg, while level 2 was 600mg and the level 3 dose 800mg. A total of 16 patients were enrolled, 15 AML and 1 CML myeloid blast crisis. The dose escalation occurred as planned and there was no clear evidence of added toxicity due to imatinib mesylate. One patient with an extensive cardiac history died of cardiac causes on day 1 of therapy however no other deaths occurred within 30 days of starting therapy. One patient had a Grade 3 skin rash at dose level 2. The most common toxicities encountered during induction therapy were nausea, vomiting, rash and diarrhea that were transient and/or reversible. At the 800mg dose 1 patient developed a decline in cardiac ejection fraction on day 20 who later died of sepsis, so this was considered a dose limiting toxicity. Of 16 evaluable patients 11 achieved a hypocellular marrow after initial induction with 1 additional patient achieving a hypocellular marrow following a second course of the same regimen. Four patients (25%) achieved a complete morphologic response with normal cytogenetics, 2 patients (12.5%) achieved a complete morphologic response only and 1 patient had a complete response in the bone marrow but incomplete blood count recovery. The overall response rate was 43.8%. The median overall survival was 175 days (95% CI 16.24-333.76) and the median relapse free survival was 76 days. The addition of imatinib mesylate to CLAG was well tolerated with acceptable toxicities and response rates comparable to other salvage regimens. To assess the efficacy of imatinib mesylate in combination with CLAG, a larger phase II trial is now planned.
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PMID:Phase I study of cladribine, cytarabine (Ara-C), granulocyte colony stimulating factor (G-CSF) (CLAG Regimen) and simultaneous escalating doses of imatinib mesylate (Gleevec) in relapsed/refractory AML. 1857 21

Tyrosine kinase inhibitors (TKI) are effective in the targeted treatment of various malignancies. Imatinib was the first to be introduced into clinical oncology, and it was followed by drugs such as gefitinib, erlotinib, sorafenib, sunitinib, and dasatinib. Although they share the same mechanism of action, namely competitive ATP inhibition at the catalytic binding site of tyrosine kinase, they differ from each other in the spectrum of targeted kinases, their pharmacokinetics as well as substance-specific adverse effects. With variations from drug to drug, tyrosine kinase inhibitors cause skin toxicity, including folliculitis, in more than 50% of patients. Among the tyrosine kinase inhibitors that are commercially available as yet, the agents that target EGFR, erlotinib and gefitinib, display the broadest spectrum of adverse effects on skin and hair, including folliculitis, paronychia, facial hair growth, facial erythema, and varying forms of frontal alopecia. In contrast, folliculitis is not common during administration of sorafenib and sunitinib, which target VEGFR, PDGFR, FLT3, and others, whereas both agents have been associated with subungual splinter hemorrhages. Periorbital edema is a common adverse effect of imatinib. Besides the haematological side effects of most of TKIs like anemia, thrombopenia and neutropenia, the most common extra-heamatologic adverse effects are edema, nausea, hypothyroidism, vomiting and diarrhea. Regarding possible long term effects, recently cardiac toxicity with congestive heart failure is under debate in patients receiving imatinib and sunitinib therapy; however, this observation was probably relate to patients selection, although, TKIs overall appear to be a very well tolerated drug class.
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PMID:Tyrosine kinase inhibitors - a review on pharmacology, metabolism and side effects. 1968 44

On December 19, 2008, the U.S. Food and Drug Administration approved imatinib mesylate tablets for oral use (Gleevec(R); Novartis Pharmaceuticals Corporation, East Hanover, NJ) for the adjuvant treatment of adult patients following complete gross resection of Kit(+) (CD117(+)) gastrointestinal stromal tumor (GIST). A randomized, double-blind, placebo-controlled study enrolling 713 patients was submitted. The primary objective of the clinical trial was to compare the recurrence-free survival (RFS) intervals of the two groups. Overall survival (OS) was a secondary endpoint. Eligible patients were > or =18 years of age with a histological diagnosis of GIST (Kit(+)), resected tumor size > or =3 cm, and a complete gross resection within 14-70 days prior to registration. Imatinib, 400 mg orally, was administered once daily for 1 year. The study was terminated after completion of the third protocol-specified interim analysis. At that time, 100 RFS events were confirmed by a blinded central independent review. With a median follow-up of 14 months, 30 RFS events were observed in the imatinib group and 70 were observed in the placebo group (hazard ratio, 0.398; 95% confidence interval, 0.259-0.610; two-sided p-value < .0001). OS results are immature. Most patients in both groups experienced at least one adverse reaction, and 31% of the imatinib group and 18% of the placebo group experienced grade > or =3 adverse reactions. The most frequently reported adverse reactions (> or =20%) were diarrhea, fatigue, nausea, edema, decreased hemoglobin, rash, vomiting, and abdominal pain. Drug was discontinued for adverse reactions in 17% and 3% of the imatinib and placebo-treated patients, respectively.
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PMID:Approval summary: imatinib mesylate in the adjuvant treatment of malignant gastrointestinal stromal tumors. 2020 41

Imatinib mesylate is a widely used tyrosine-kinase inhibitor (TKI) in chronic myeloid leukemia (CML) treatment. Imatinib has contributed to complete and prolong cytogenetic responses so that it is now the standard treatment of CML. Recently, Imatinib mesylate has shown a significantly prolonged progression-free survival and overall survival in metastatic and locally advanced c-Kit positive gastro-intestinal stromal tumors (GISTs) and more recently a prolonged disease-free survival in operated high risk GIST. Imatinib is a welltolerated treatment with few side effects mainly gastro-intestinal symptoms (nausea, vomiting and diarrhea), headaches, rash and periorbital edema. Hemorrhage incidents are rare in patients treated with Imatinib. They are more frequently seen in CML patients. Hemorrhage incidents in CML include in many cases upper gastro-intestinal (GI) tract bleeding and central nervous system bleeding in rare ones. In GIST patients treated with Imatinib, hemorrhage incidents are exclusively made of upper GI tract bleeding consecutive to tumor perforation or necrosis. In our observation, we present the case of a subdural hematoma occurring in a patient treated with adjuvant Imatinib for a high risk localized gastric GIST. No other case of subdural hematoma in GIST treated with Imatinib has been reported in literature.
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PMID:Subdural hematoma during therapy of gastro-intestinal stromal tumor (GIST) with Imatinib mesylate. 2568 60

Although anticancer drugs have existed for over 50 years, targeted drugs have only recently been marketed, and their side effects may not be completely understood. The patient is a 56-year-old woman with a gastrointestinal stromal tumor who presented with headache, nausea, and vomiting lasting 2 weeks. An MRI to rule out brain metastasis found a large right-hemispheric subdural hematoma without metastases. She denied trauma, seizures, or alcohol abuse. Laboratory test results were normal. Eight months prior, she had begun a dose escalation of imatinib, which became the suspected cause of her hemorrhage. The literature was reviewed for reports of intracranial hemorrhage with targeted chemotherapeutics excluding metastases, anticoagulation, and trauma. Multiple events have been documented but only one for imatinib with gastrointestinal stromal tumor. Imatinib is believed to cause platelet dysfunction (missed by standard testing), leading to intracranial hemorrhage. Intracranial hemorrhage risk may be under-reported and neurosurgical consultation for immediate treatment and oncology for reinitiation of chemotherapy are recommended.
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PMID:Subdural hematoma in a patient taking imatinib for GIST: a case report and discussion of risk with other chemotherapeutics. 2662 84


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