Gene/Protein Disease Symptom Drug Enzyme Compound
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Query: UMLS:C0018681 (headache)
56,091 document(s) hit in 31,850,051 MEDLINE articles (0.00 seconds)

9-cis-Retinoic acid (9-cis-RA) and all-trans-RA (ATRA) are naturally occurring hormones. The nuclear receptors that mediate the effects of retinoids are the retinoic acid receptors (RARs) and the retinoid X receptors (RXRs). ATRA binds RAR with high affinity but does not bind to RXR, whereas 9-cis-RA, an isomer of ATRA, is a ligand that binds and transactivates both RARs and RXRs. The goals of this study were to determine the safety, tolerability, pharmacokinetics, and metabolic profile of 9-cis-RA in advanced cancer patients. Forty-one patients received oral 9-cis-RA (ALRT1057; Panretin capsules) at doses ranging from 5-140 mg/m2/day. Twenty-six patients were treated once daily with up to 140 mg/m2; a subsequent cohort of 15 patients were treated twice daily (b.i.d.) at 100-140 mg/m2/day (50, 60, and 70 mg/m2 b.i.d.) to evaluate a b.i.d. dosing regimen. Headache was the most frequent adverse event and was dose limiting in 3 of 41 patients. Skin toxicity was the next most common toxicity and was seen in 11 of 41 patients; it was typically mild and limited to skin dryness and erythema. Other toxicities included conjunctivitis, flushing, diarrhea, transaminitis, hypercalcemia, and asymptomatic hypertryglyceridemia. Toxicities were typically dose related, occurred primarily above 83 mg/m2/day, and were not ameliorated by b.i.d. dosing. No tumor responses were observed. The mean day 1 area under the plasma concentration-time curve and peak plasma concentration values were dose-proportional over all dose levels, whereas day 15 area under the plasma concentration-time curve and peak plasma concentration values were nonlinear above 83 mg/m2/day, suggesting that 9-cis-RA induced its own metabolism at doses equal to and above 140 mg/m2/day. 9-cis-RA is a retinoid receptor pan agonist with a more favorable pharmacokinetic and toxicity profile than that observed with previously studied retinoids and merits further investigation.
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PMID:Phase I study of 9-cis-retinoic acid (ALRT1057 capsules) in adults with advanced cancer. 962 60

Retinoids mediate their biological response by binding to specific nuclear receptors, including retinoic acid receptors and/or retinoid X receptors. LGD1550 is a high-affinity ligand for all three retinoic acid receptors (alpha, beta, and gamma isoforms) and a potent inhibitor of AP-1, a protein that is closely linked with trophic responses and malignant transformation. We conducted a dose ranging study to evaluate the pharmacokinetics, safety, clinical tolerance, and potential efficacy of this drug in patients with advanced cancer. Twenty-seven patients received oral doses of LGD1550 once per day at doses ranging from 20-400 microg/m2. Skin toxicity was the dose-limiting reaction at the 400 microg/m2 daily dose level. Less prominent reactions included nausea and headache. No major antitumor effects were observed. Pharmacokinetic studies in 15 patients at five dose levels showed that the peak plasma concentration (Cmax) and areas under the plasma concentration-time curve on day 1 were dose-proportional and were similar to values obtained on days 15, 29, and 84. Unlike other retinoids, LGD1550 did not induce its own metabolism, and there was little evidence of drug accumulation. The t1/2 was approximately 5 h after both the initial and repeated doses. We conclude that once-daily doses of LGD1550 of up to 300 microg/m2 are relatively well tolerated. Additional clinical explorations are warranted, especially in patients with cancers of the prostate, thyroid, head and neck, and cervix.
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PMID:Initial clinical trial of a high-affinity retinoic acid receptor ligand (LGD1550). 1081 91

The novel anti-mitotic based tumor treating fields (TTFields) is FDA approved for recurrent glioblastoma. Recently the phase III upfront trial combining the Novo TTF-100A device, called Optune, with temozolomide following concurrent radiation therapy and chemotherapy, demonstrated improvement in survival. Wider use of this novel therapy is expected. The most common adverse event is dermatologic, which dominates compared to the next most frequently observed adverse event of headaches, the incidence of which was even in both arms in the phase III registration trial for recurrent glioblastoma. Our case review outlines the presentation, treatment, and outcome of representative patients using TTFields. In summary, preventative strategies to inform and educate patients and operators can prevent many of these dermatological events. Skin toxicity in the setting of concurrent use of TTFields with other therapies such as bevacizumab is an unknown and will need to be closely followed.
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PMID:Skin toxicities associated with tumor treating fields: case based review. 2884 43