There are a few guidelines recommend about management of eosinophilia worldwide, most of guielines recommend a thorough history-taking and physical examination. Subsequently, investigations are requested based on suspected causes. In cases where parasite infection is suspected, particularly in developing countries, stool microscopy and serology are recommended. However, limitations such as low sensitivity of stool microscopy, the inconvenience of collecting multiple stool samples, and the high cost and unavailability of serology may arise. Consequently, some physicians opt for empiric anthelminthic regimens in managing eosinophilic patients, even without stool tests or if stool test results are normal. If subsequent complete blood count (CBC) results show a recovery of absolute eosinophil count, it is assumed that eosinophilia was caused by a parasite infection. While some studies demonstrate the efficacy and simplicity of this approach, there is a risk of overestimating parasite infection in eosinophilic patients, potential adverse drug reactions from unnecessary anthelminthic treatment, and the possibility of drug resistance due to inappropriate dosing. To address this gap, no study has yet compared the efficacy between specific anthelminthic treatment based on test results and empirical anthelminthic treatment in eosinophilic patients. Therefore, the investigators are conducting this study.
Eosinophilia is defined as an absolute eosinophil count exceeding 500 cells per microliter, calculated by multiplying the white blood cell count by the percentage of eosinophils. Cause of eosinophilia vary from mild to life-threatening disease. Prevalence of each cause of eosinophilia vary on study population, the most common etiology in developing country is parasite infection. Stool microscopy can be conducted using various methods. The Kato-Katz technique, recommended by the WHO, exhibits a sensitivity of only 52.4 percent (95%CI = 47.6 - 57.1 percent). More sensitive methods for parasite detection in stool, such as stool culture or PCR, are not readily available and can be costly. In the intervention group of this study, the investigators employed three different parasite detection methods (stool microscopy, stool culture, and PCR) to enhance sensitivity in detecting parasites.
Study Type
INTERVENTIONAL
Allocation
RANDOMIZED
Purpose
TREATMENT
Masking
NONE
Enrollment
700
Participants receive empiric anthelminthic treatment which is albendazole 400 mg twice a day for seven consecutive days
Participants will receive specific anthelminthic treatment tailored to the results of the stool tests
Prince of Songkla University - Hat Yai Campus: Prince of Songkla University
Hat Yai, Changwat Songkhla, Thailand
RECRUITINGEosinophilia recovery
Recovery from eosinophilia was defined as an absolute eosinophil count of less than 500 cells per microliter, as measured from the complete blood count (CBC) four weeks after receiving anthelminthic treatment.
Time frame: From receive anthelminthic treatment to the end of treatment at 4 weeks
Change in AEC
Comparing the change in AEC from baseline between the \"specific treatment group\" and the \"empirical treatment group\" using either a paired t-test or the Wilcoxon signed-rank test.
Time frame: From receive anthelminthic treatment to the end of treatment at 4 weeks
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