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"lymphatic filariasis"

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Risk of Recrudescence of Lymphatic Filariasis after Post-MDA Surveillance in Brugia malayi Endemic Belitung District, Indonesia
Santoso, Yahya, Yanelza Supranelfy, Nungki Hapsari Suryaningtyas, Yulian Taviv, Aprioza Yenni, Maya Arisanti, Rika Mayasari, Vivin Mahdalena, Rizki Nurmaliani, Marini, K. Krishnamoorthy, Helena Ullyartha Pangaribuan
Korean J Parasitol 2020;58(6):627-634.
Published online December 29, 2020
DOI: https://doi.org/10.3347/kjp.2020.58.6.627
Belitung district in Bangka-Belitung Province, Indonesia with a population of 0.27 million is endemic for Brugia malayi and 5 rounds of mass drug administration (MDA) were completed by 2010. Based on the results of 3 transmission assessment surveys (TAS), the district is declared as achieving elimination of lymphatic filariasis (LF) in 2017. The findings of an independent survey conducted by the National Institute of Health Research and Development (NIHRD) in the same year showed microfilaria (Mf) prevalence of 1.3% in this district. In 2019, NIHRD conducted microfilaria survey in 2 villages in Belitung district. Screening of 311 and 360 individuals in Lasar and Suak Gual villages showed Mf prevalence of 5.1% and 2.2% with mean Mf density of 120 and 354 mf/ml in the respective villages. Mf prevalence was significantly higher among farmers and fishermen compared to others and the gender specific difference was not significant. The results of a questionnaire based interview showed that 62.4% of the respondents reported to have participated in MDA in Lasar while it was 57.7% in Suak Gual village. About 42% of the Mf positive cases did not participate in MDA. Environmental surveys identified many swampy areas supporting the breeding of Mansonia vector species. Persistence of infection is evident and in the event of successful TAS3 it is necessary to monitor the situation and plan for focal MDA. Appropriate surveillance strategies including xenomonitoring in post-MDA situations need to be developed to prevent resurgence of infection. Possible role of animal reservoirs is discussed.

Citations

Citations to this article as recorded by  Crossref logo
  • Lymphatic filariasis transmission 10 years after stopping mass drug administration in the Gomoa west district of Ghana
    Christian Akuamoah Boateng, Millicent Selassie Afatodzie, Angus McLure, Bethel Kwansa-Bentum, Dziedzom K. de Souza
    International Journal of Infectious Diseases.2025; 152: 107790.     CrossRef
  • Xenomonitoring as an epidemiological tool supporting post-stop surveillance of albendazole-ivermectin mass drug distribution in the Bougouni-Yanfolila evaluation unit, Sikasso, Mali, in 2023
    Lamine Soumaoro, Housseini Dolo, Yaya Ibrahim Coulibaly, Siaka Yamoussa Coulibaly, Salif Seriba Doumbia, Moussa Sangaré, Abdallah Amadou Diallo, Abdoul Fatah Diabaté, Michel Emmanuel Coulibaly, Ibrahima Dolo, Massitan Dembélé, Alpha Seydou Yaro, Thomas Nu
    BMC Infectious Diseases.2025;[Epub]     CrossRef
  • Current perspectives in the epidemiology and control of lymphatic filariasis
    Dziedzom K. de Souza, Moses J. Bockarie, Louisa A. Messenger
    Clinical Microbiology Reviews.2025;[Epub]     CrossRef
  • Evaluating the effectiveness of mass drug administration on lymphatic filariasis transmission and assessment of post-mass drug administration surveillance in Nigeria’s Federal Capital Territory
    Juliana Ajuma Amanyi-Enegela, Joseph Kumbur, Faizah Okunade, Donald Ashikeni, Rinpan Ishaya, Girija Sankar, William Enan Adamani, Moses Aderogba, Louise Makau-Barasa, Achai Emmanuel, Bosede Eunice Ogundipe, Chinwe Okoye, Babar Qureshi
    Infectious Diseases of Poverty.2025;[Epub]     CrossRef
  • Field Validation of Post-MDA LF Surveillance by using Molecular Xeno-monitoring: Preliminary Study in Belitung District, Indonesia
    Tri Wahono, Mara Ipa, Triwibowo Ambar Garjito, Yuneu Yuliasih, Agung Puja Kesuma, Muhammad Fajri Rokhmad, Sunardi Sunardi, Hafiz Permana Putra
    Journal of Multidisciplinary Applied Natural Science.2025;[Epub]     CrossRef
  • A Review of Bed Nets Usage and Sewerage Conditions as Risk Factors for Lymphatic Filariasis in Developing Countries
    Muhafasya Karunia Azzahra, Diva Alishya Shafwah, Cresti Sukmadevi Sondakh, Retno Adriyani
    JURNAL KESEHATAN LINGKUNGAN .2024; 16(1): 89.     CrossRef
  • Lymphatic Filariasis Elimination Status: Wuchereria bancrofti Infections in Human Populations after Five Effective Rounds of Mass Drug Administration in Zambia
    Belem Blamwell Matapo, Evans Mwila Mpabalwani, Patrick Kaonga, Martin Chitolongo Simuunza, Nathan Bakyaita, Freddie Masaninga, Namasiku Siyumbwa, Seter Siziya, Frank Shamilimo, Chilweza Muzongwe, Enala T. Mwase, Chummy Sikalizyo Sikasunge
    Tropical Medicine and Infectious Disease.2023; 8(7): 333.     CrossRef
  • Vector Surveillance for Lymphatic Filariasis After Mass Drug Administration in an Endemic Area: A Case Study in Bekasi
    Endang Puji Astuti, Joni Hendri, Mara Ipa, Andri Ruliansyah, Triwibowo Ambar Garjito
    JURNAL KESEHATAN LINGKUNGAN .2023; 15(2): 134.     CrossRef
  • Finding and eliminating the reservoirs: Engage and treat, and test and treat strategies for lymphatic filariasis programs to overcome endgame challenges
    Dziedzom K. de Souza, Joseph Otchere, Jeffrey G. Sumboh, Odame Asiedu, Joseph Opare, Kofi Asemanyi-Mensah, Daniel A. Boakye, Katherine M. Gass, Elizabeth F. Long, Collins S. Ahorlu
    Frontiers in Tropical Diseases.2022;[Epub]     CrossRef
  • 7,336 View
  • 197 Download
  • 4 Web of Science
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Antifilarial and Antibiotic Activities of Methanolic Extracts of Melaleuca cajuputi Flowers
Nazeh M. Al-Abd, Zurainee Mohamed Nor, Marzida Mansor Hasan, Mustafa Kassim
Korean J Parasitol 2016;54(3):273-280.
Published online June 30, 2016
DOI: https://doi.org/10.3347/kjp.2016.54.3.273
We evaluated the activity of methanolic extracts of Melaleuca cajuputi flowers against the filarial worm Brugia pahangi and its bacterial endosymbiont Wolbachia. Anti-Wolbachia activity was measured in worms and in Aedes albopictus Aa23 cells by PCR, electron microscopy, and other biological assays. In particular, microfilarial release, worm motility, and viability were determined. M. cajuputi flower extracts were found to significantly reduce Wolbachia endosymbionts in Aa23 cells, Wolbachia surface protein, and microfilarial release, as well as the viability and motility of adult worms. Anti-Wolbachia activity was further confirmed by observation of degraded and phagocytized Wolbachia in worms treated with the flower extracts. The data provided in vitro and in vivo evidence that M. cajuputi flower extracts inhibit Wolbachia, an activity that may be exploited as an alternative strategy to treat human lymphatic filariasis.

Citations

Citations to this article as recorded by  Crossref logo
  • Two decades of antifilarial drug discovery: a review
    Jaiprakash N. Sangshetti, Devanand B. Shinde, Abhishek Kulkarni, Rohidas Arote
    RSC Advances.2017; 7(33): 20628.     CrossRef
  • 9,473 View
  • 153 Download
  • 5 Web of Science
  • Crossref
Mini Reviews
Successful Control of Lymphatic Filariasis in the Republic of Korea
Hyeng-Il Cheun, Yoon Kong, Shin-Hyeong Cho, Jong-Soo Lee, Jong-Yil Chai, Joo-Shil Lee, Jong-Koo Lee, Tong-Soo Kim
Korean J Parasitol 2009;47(4):323-335.
Published online December 1, 2009
DOI: https://doi.org/10.3347/kjp.2009.47.4.323

A successful experience of lymphatic filariasis control in the Republic of Korea is briefly reviewed. Filariasis in the Republic of Korea was exclusively caused by infection with Brugia malayi. Over the past several decades from the 1950s to 2006, many investigators exerted their efforts to detection, treatment, and follow-up of filariasis patients in endemic areas, and to control filariasis. Mass, combined with selective, treatments with diethylcarbamazine to microfilaria positive persons had been made them free from microfilaremia and contributed to significant decrease of the microfilarial density in previously endemic areas. Significant decrease of microfilaria positive cases in an area influenced eventually to the endemicity of filariasis in the relevant locality. Together with remarkable economic growth followed by improvement of environmental and personal hygiene and living standards, the factors stated above have contributed to blocking the transmission cycle of B. malayi and led to disappearance of this mosquito-borne ancient disease in the Republic of Korea.

Citations

Citations to this article as recorded by  Crossref logo
  • Current Status and a Perspective of Mosquito-Borne Diseases in the Republic of Korea
    Jae Hyoung Im, Tong-Soo Kim, Moon-Hyun Chung, Ji Hyeon Baek, Hea Yoon Kwon, Jin-Soo Lee
    Vector-Borne and Zoonotic Diseases.2021; 21(2): 69.     CrossRef
  • Lymphatic filariasis in Asia: a systematic review and meta-analysis
    Negar Bizhani, Saeideh Hashemi Hafshejani, Neda Mohammadi, Mehdi Rezaei, Mohammad Bagher Rokni
    Parasitology Research.2021; 120(2): 411.     CrossRef
  • The global distribution of lymphatic filariasis, 2000–18: a geospatial analysis
    Elizabeth A Cromwell, Chris A Schmidt, Kevin T Kwong, David M Pigott, Denise Mupfasoni, Gautam Biswas, Shreya Shirude, Elex Hill, Katie M Donkers, Amir Abdoli, Michael R M Abrigo, Victor Adekanmbi, Olatunji O Adetokunboh Sr., Srividya Adinarayanan, Ehsan
    The Lancet Global Health.2020; 8(9): e1186.     CrossRef
  • Progress in the elimination of lymphatic filariasis in the Western Pacific Region: successes and challenges
    Aya Yajima, Kazuyo Ichimori
    International Health.2020; 13(Supplement): S10.     CrossRef
  • Prevention and Control Strategies for Parasitic Infections in the Korea Centers for Disease Control and Prevention
    Young Yil Bahk, Eun-Hee Shin, Shin-Hyeong Cho, Jung-Won Ju, Jong-Yil Chai, Tong-Soo Kim
    The Korean Journal of Parasitology.2018; 56(5): 401.     CrossRef
  • Short-Course, High-Dose Rifampicin Achieves Wolbachia Depletion Predictive of Curative Outcomes in Preclinical Models of Lymphatic Filariasis and Onchocerciasis
    Ghaith Aljayyoussi, Hayley E. Tyrer, Louise Ford, Hanna Sjoberg, Nicolas Pionnier, David Waterhouse, Jill Davies, Joanne Gamble, Haelly Metuge, Darren A. N. Cook, Andrew Steven, Raman Sharma, Ana F. Guimaraes, Rachel H. Clare, Andrew Cassidy, Kelly L. Joh
    Scientific Reports.2017;[Epub]     CrossRef
  • Follow-up Study of Patients Previously Diagnosed with Lymphatic Filariasis in Korea
    Hyeng Il Cheun, Hee Eun Shin, Da Won Ma, Sung Hee Hong, Tae Yun Kim, Sang Eun Lee, JungWon Ju, Yun-Kyu Park, Tong-Soo Kim, Shin Hyeong Cho
    Osong Public Health and Research Perspectives.2017; 8(6): 421.     CrossRef
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    Meagan A Barry, Kristy O Murray, Peter J Hotez, Kathryn M Jones
    Archives of Disease in Childhood.2016; 101(7): 640.     CrossRef
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    Kui-Hyun Yoon
    Annals of Laboratory Medicine.2015; 35(1): 169.     CrossRef
  • Seroepidemiology of Toxocariasis and Its Clinical Implications in Gwangju and Jeonnam-province, Korea
    Eun Jeong Won, Jin Kim, Myung-Geun Shin, Jong Hee Shin, Soon Pal Suh, Dong Wook Ryang
    Annals of Laboratory Medicine.2015; 35(4): 449.     CrossRef
  • Elimination of Lymphatic Filariasis
    EISAKU KIMURA
    Juntendo Medical Journal.2015; 61(4): 378.     CrossRef
  • Human Taeniasis in the Republic of Korea: Hidden or Gone?
    Jong-Yil Chai
    The Korean Journal of Parasitology.2013; 51(1): 9.     CrossRef
  • Surveillance and Vector Control of Lymphatic Filariasis in the Republic of Korea
    Shin Hyeong Cho, Da Won Ma, Bo Ra Koo, Hee Eun Shin, Wook Kyo Lee, Byong Suk Jeong, Chaeshin Chu, Won Ja Lee, Hyeng Il Cheun
    Osong Public Health and Research Perspectives.2012; 3(3): 145.     CrossRef
  • A Research Agenda for Helminth Diseases of Humans: The Problem of Helminthiases
    Sara Lustigman, Roger K. Prichard, Andrea Gazzinelli, Warwick N. Grant, Boakye A. Boatin, James S. McCarthy, María-Gloria Basáñez, Charles D. Mackenzie
    PLoS Neglected Tropical Diseases.2012; 6(4): e1582.     CrossRef
  • Recent Advances in the Use of Anthelmintics for Treating Nematode Infections
    Jong-Yil Chai
    Infection and Chemotherapy.2011; 43(1): 26.     CrossRef
  • Changing Patterns of Human Parasitic Infection in Korea
    Myoung-Hee Ahn
    Hanyang Medical Reviews.2010; 30(3): 149.     CrossRef
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    Yaobi Zhang, Chad MacArthur, Likezo Mubila, Shawn Baker
    BMC Medicine.2010;[Epub]     CrossRef
  • 12,560 View
  • 111 Download
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Clinical and Pathological Aspects of Filarial Lymphedema and Its Management
R. K. Shenoy
Korean J Parasitol 2008;46(3):119-125.
Published online September 20, 2008
DOI: https://doi.org/10.3347/kjp.2008.46.3.119

Lymphatic filariasis, transmitted by mosquitoes is the commonest cause of lymphedema in endemic countries. Among 120 million infected people in 83 countries, up to 16 million have lymphedema. Microfilariae ingested by mosquitoes grow into infective larvae. These larvae entering humans after infected mosquito bites grow in the lymphatics to adult worms that cause damage to lymphatics resulting in dilatation of lymph vessels. This earliest pathology is demonstrated in adults as well as in children, by ultrasonography, lymphoscintigraphy and histopathology studies. Once established, this damage was thought to be irreversible. This lymphatic damage predisposes to bacterial infection that causes recurrent acute attacks of dermato-lymphangio-adenitis in the affected limbs. Bacteria, mainly streptococci gain entry into the lymphatics through 'entry lesions' in skin, like interdigital fungal infections, injuries, eczema or similar causes that disrupt integrity of skin. Attacks of dermato-lymphangio-adenitis aggravates lymphatic damage causing lymphedema, which gets worse with repeated acute attacks. Elephantiasis is a late manifestation of lymphatic filariasis, which apart from limbs may involve genitalia or breasts. Lymphedema management includes use of antifilarial drugs in early stages, treatment and prevention of acute attacks through 'limb-hygiene', antibiotics and antifungals where indicated, and physical measures to reduce the swelling. In selected cases surgery is helpful.

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    SAGE Open Medical Case Reports.2025;[Epub]     CrossRef
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