ORIGINAL ARTICLES

Surveillance and trends of soil-transmitted helminth infections in Liaoning Province, 2016—2020

  • YU Wei-jun ,
  • WANG Zi-jiang ,
  • WANG Bo ,
  • MAO Ling-ling ,
  • WU Qi-jun ,
  • YAO Wen-qing ,
  • SUN Ying-wei
Expand
  • 1. Liaoning Provincial Center for Disease Control and Prevention, Shenyang 110005, China
    2. Shengjing Hospital of China Medical University, Shenyang 110004, China

Received date: 2021-08-11

  Revised date: 2021-09-23

  Online published: 2022-03-31

Supported by

Major Scientific and Technological Projects for the Prevention and Treatment of Major Infectious Diseases(2017ZX10103007)

Abstract

Objective To investigate the prevalence and transmission of soil-transmitted helminth (STH) in Liaoning Province, in order to provide scientific evidence for development of control plans, strategies and measures aagainst these diseases in Liaoning Province. Methods The surveillance was performed during 2016—2020 in Liaoning Province according to the National Surveillance Program and Implementation Guideline for Chlonorchiasis and Soil-transmitted Helminthiasis. One county (city or district) per provincial city was selected annually as a surveillance site. Each surveillance site was further divided 5 regions as geographical east, west, south, north and centre. One village was chosen from each region to conduct surveillance, and 200 permanent residents over 3 years old were randomly enrolled from each village. Fecal samples ( > 30 g) from enrolled residents were collected and were examined for STH eggs (two slide-reading for each sample) using the modified Kato-Katz thick smear method to estimate infection rate and intensity. The samples that are positive for hookworm eggs were further examined by test-tube filter paper incubation for the larva to identify the species. Cellophane anal swab method was used to detect Enterobius vermicularis eggs in children aged 3-9 years. The contamination of Ascaris eggs and hookworm larvae was also monitored in soil samples collected from 5 households in each village. Chi-square test was used to compare the infection rates. Results Total 69 909 people were recruited from 70 surveillance sites in Liaoning Province during 2016—2020, including 4 659 children aged 3-9, and the overall infection rate of STH infection was 0.26% (184/69 909), and the infection rate of A. lumbricoides and Trichuris trichiura were 0.25% (178/69 909) and 0.01% (6/69 909), respectively. Hookworm and E. vermicularis were not detected. The STH infection rate in the residents from 2016—2020 respectively were 0.59% (89/15 097), 0.19% (28/14 554), 0.27% (33/12 044)), 0.13%(19/14 103), and 0.11%(15/14 111) (χ2 = 59.44, P < 0.01). The top three cities with the highest infection rate of STH include Dandong (1.77%, 89/5 042), Dalian (0.56%, 28/5 004) and Benxi (0.42%, 23/5 451). The STH infection rate in females was 0.27% (94/35 057) and in males was 0.26% (90/34 852). The difference was not statistically significant (χ2 = 0.07, P > 0.05). The infection rate in the 60-69 age group was the highest (0.36%, 50/13 803), followed by the 40-49 age group (0.32%, 34/10 788) and the age group over 70 years old (0.31%, 23/7 396). The differences were statistically significant among the different age groups (χ2 = 18.30, P < 0.01). The infection rate in Man ethnicity (0.55%, 97/17 643) was statistical-significantly higher than that in Han ethnicity (0.17%, 87/51 154) (χ2 = 75.04, P < 0.01). The STH infection rate among medical personnel, farmers and workers were 0.67% (2/298), 0.31% (158/50 631) and 0.28% (7/2 542), respectively. The differences were statistically significant (χ2 = 26.90, P < 0.01). The infection rate among participants with primary school, education, middle school education and college education or higher were 0.32% (76/24 019), 0.26% (93/36 406) and 0.28% (5/1 815), respectively. The difference was not statistically significant (χ2 = 10.12, P > 0.05). Among 69 909 people surveyed, only 232 people (0.33%) had taken deworming medications within 3 months prior to the examination. A total of 1 757 soil samples were examined in Liaoning Province during 2016—2020, and the result indicated the positive rate of A. lumbricoides eggs of 2.22% (39/1 757), while hookworm larvae not found. Conclusion The STH infection rate showed a declining trend and remained at a low level in Liaoning Province during 2016—2020, with mainly Ascaris infection. Attention should be paid to the 60-69 age group, farmers, people with primary school education, Man ethnicity, and the residents in southern Liaoning Province in the control practice.

Cite this article

YU Wei-jun , WANG Zi-jiang , WANG Bo , MAO Ling-ling , WU Qi-jun , YAO Wen-qing , SUN Ying-wei . Surveillance and trends of soil-transmitted helminth infections in Liaoning Province, 2016—2020[J]. CHINESE JOURNAL OF PARASITOLOGY AND PARASITIC DISEASES, 2022 , 40(2) : 211 -215 . DOI: 10.12140/j.issn.1000-7423.2022.02.012

References

[1] Zhu HH,, Zhou CH,, Zhang MZ, et al. Engagement of the national institute of parasitic diseases in control of soil-transmitted helminthiasis in China[J]. Adv Parasitol, 2020, 110: 217-244.
[2] Jourdan PM,, Lamberton PHL,, Fenwick A, et al. Soil-transmitted helminth infections[J]. Lancet, 2018, 391: 252-265.
[3] Chen YD,, Zhou CH,, Zhu HH, et al. National survey on the current status of important human parasitic diseases in China in 2015[J]. Chin J Parasitol Parasit Dis, 2020, 38(1): 5-12. (in Chinese)
[3] (陈颖丹,, 周长海,, 朱慧慧, 等. 2015年全国人体重点寄生虫病现状调查分析[J]. 中国寄生虫学与寄生虫病杂志, 2020, 38(1): 5-12.)
[4] Guan YH,, Zhang JY,, Wang CY, et al. Flea fauna studies in Liaoning Province[J]. Chin J Vector Biol Control, 2017, 28(6): 576-582. (in Chinese)
[4] (关玉辉,, 张家勇,, 王纯玉. 辽宁省蚤类区系及其分布特征[J]. 中国媒介生物学及控制杂志, 2017, 28(6): 576-582.)
[5] National Health and Family Planning Commission of the People’s Republic of China. Detection of intestinal helminths the Kato-Katz method (WS/T 570-2017)[S]. 2017. (in Chinese)
[5] (中华人民共和国国家卫生和计划生育委员会. 肠道蠕虫检测改良加藤厚涂片法(WS/T 570-2017)[S]. 2017.)
[6] Xu JT,, Wang JQ,, Wang L, et al. Investigation on human parasitic infection in Liaoning Province[J]. Chin J Parasit Dis Control, 1991, 4(1): 72-73. (in Chinese)
[6] (许景田,, 王井泉,, 王莉, 等. 辽宁省人体寄生虫感染调查[J]. 中国寄生虫病防治杂志, 1991, 4(1): 72-73.)
[7] Shang DG,, Geng YZ,, Wang JH. Analysis of soil nematode disease surveillance results in Liaoning Province, 2012-2015[J]. Chin Pract J Rural Doct, 2016, 23(11): 34-37. (in Chinese)
[7] (尚德高,, 耿英芝,, 王健辉. 2012-2015年辽宁省土源性线虫病监测结果分析[J]. 中国实用乡村医生杂志, 2016, 23(11): 34-37.)
[8] Shang DG,, Mao LC,, Yu MN, et al. Analysis on the epidemiological situation of soil-transmitted nematode infections in Liaoning Province from 2006 to 2010[J]. Int J Med Parasit Dis, 2012, 39(6): 370-372. (in Chinese)
[8] (尚德高,, 毛丽翠,, 于美娜, 等. 2006-2010年辽宁省土源性线虫病监测分析[J]. 国际医学寄生虫病杂志, 2012, 39(6): 370-372.)
[9] Zhu HH,, Huang JL,, Zhu TJ, et al. National surveillance of soil-transmitted helminth infections in 2017[J]. Chin J Parasitol Parasit Dis, 2019, 37(1): 12-17. (in Chinese)
[9] (朱慧慧,, 黄继磊,, 诸廷俊, 等. 2017年全国土源性线虫感染监测数据分析[J]. 中国寄生虫学与寄生虫病杂志, 2019, 37(1): 12-17.)
[10] Duan HJ,, Wu XL,, Fu YR, et al. Surveillance on soil-transmitted nematode infections in 2018 in Ningxia, China[J]. Chin J Parasitol Parasit Dis, 2020, 38(4): 440-444. (in Chinese)
[10] (段红菊,, 吴向林,, 付益仁, 等. 2018年宁夏土源性线虫感染情况监测结果分析[J]. 中国寄生虫学与寄生虫病杂志, 2020, 38(4): 440-444.)
[11] Chen Z,, Jiang WS,, Li D, et al. Analysis of soil-transmitted helminth infection in populations in national surveillance sites of Jiangxi Province during 2016-2019[J]. Chin J Parasitol Parasit Dis, 2020, 38(5): 534-541. (in Chinese)
[11] (陈喆,, 姜唯声,, 李东, 等. 2016-2019年江西省土源性线虫病国家监测点人群感染情况分析[J]. 中国寄生虫学与寄生虫病杂志, 2020, 38(5): 534-541.)
Outlines

/

〈 〉