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1.
Telemed J E Health ; 26(12): 1507-1521, 2020 12.
Article in English | MEDLINE | ID: mdl-32213010

ABSTRACT

Objective: To evaluate clinical outcomes of telephone-based service for patients on warfarin. Methods: Five bibliographic databases and gray literature were searched for articles that reported the effects of telephone interventions provided to patients using warfarin compared with those receiving usual clinic-based care. Mean difference (MD) and relative risk (RR) were used to calculate the effects of telephone intervention on time in therapeutic range (TTR) and visit in range (VIR), respectively. Adverse events (AEs) were pooled and reported as incidence rate ratios. Results: A total of 1,840 articles were examined. Eight articles involving 8,087 subjects were included in the quantitative synthesis. The pooled estimates from seven studies showed no difference on TTR between the telephone service group and the usual care group (MD 2.30; 95% confidence interval [CI] -3.56 to 8.16). In addition, VIR in the telephone service group was not different from the usual care group (RR 1.22, 95% CI 0.87-1.71). Moreover, patients in telephone service groups appeared to have a lower incidence of AEs compared with usual care groups. Discussion: Telephone-based service could be considered as an alternative anticoagulant management. However, owing to a lack of evidence from well-designed studies, further high-quality randomized control trials are warranted.


Subject(s)
Telephone , Warfarin , Anticoagulants/adverse effects , Humans , Warfarin/adverse effects
2.
Cancer Manag Res ; 9: 11-18, 2017.
Article in English | MEDLINE | ID: mdl-28203106

ABSTRACT

PURPOSE: The aim of this study was to examine the antioxidant activity of ginger extract oral supplement in newly diagnosed cancer patients receiving adjuvant chemotherapy compared to placebo. PATIENTS AND METHODS: Newly diagnosed cancer patients receiving moderate-to-high emetogenic potential adjuvant chemotherapy were randomized to receive either a ginger extract (standardized 6-gingerol 20 mg/day) or a placebo 3 days prior to chemotherapy, which they continued daily. Oxidant/antioxidant parameters, including the activities of superoxide dismutase (SOD) and catalase (CAT) and levels of glutathione peroxidase (GPx), total glutathione (GSH/GSSG), lipid peroxidation products detected as malondialdehyde (MDA) and NO2-/NO3-, were measured at baseline and at days 1, 22, 43 and 64 after undergoing chemotherapy. Two-sided statistical analysis, with P < 0.05, was used to determine statistical significance. RESULTS: A total of 43 patients were included in the study: 19 and 24 patients were randomly assigned to the ginger group and placebo group, respectively. Antioxidant activity parameters, including SOD, CAT, GPx and GSH/GSSG, were significantly increased at day 64 in the ginger group compared to those in the placebo group, while MDA and NO2-/NO3- levels were significantly decreased (P < 0.0001). When compared to the baseline, the activities of SOD and CAT and the levels of GPx and GSH/GSSG were significantly higher on day 64 (P = 0.01), while the blood levels of MDA and NO2-/NO3- were significantly decreased (P < 0.01). CONCLUSION: Daily supplement of ginger extract started 3 days prior to chemotherapy has been shown to significantly elevate antioxidant activity and reduce oxidative marker levels in patients who received moderate-to-high emetogenic potential chemotherapy compared to placebo.

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