1.Acanthamoeba in Southeast Asia – Overview and Challenges
Chooseel BUNSUWANSAKUL ; Tooba MAHBOOB ; Kruawan HOUNKONG ; Sawanya LAOHAPRAPANON ; Sukhuma CHITAPORNPAN ; Siriuma JAWJIT ; Atipat YASIRI ; Sahapat BARUSRUX ; Kingkan BUNLUEPUECH ; Nongyao SAWANGJAROEN ; Cristina C SALIBAY ; Chalermpon KAEWJAI ; Maria DE LOURDES PEREIRA ; Veeranoot NISSAPATORN
The Korean Journal of Parasitology 2019;57(4):341-357
Acanthamoeba, one of free-living amoebae (FLA), remains a high risk of direct contact with this protozoan parasite which is ubiquitous in nature and man-made environment. This pathogenic FLA can cause sight-threatening amoebic keratitis (AK) and fatal granulomatous amoebic encephalitis (GAE) though these cases may not commonly be reported in our clinical settings. Acanthamoeba has been detected from different environmental sources namely; soil, water, hot-spring, swimming pool, air-conditioner, or contact lens storage cases. The identification of Acanthamoeba is based on morphological appearance and molecular techniques using PCR and DNA sequencing for clinico-epidemiological purposes. Recent treatments have long been ineffective against Acanthamoeba cyst, novel anti-Acanthamoeba agents have therefore been extensively investigated. There are efforts to utilize synthetic chemicals, lead compounds from medicinal plant extracts, and animal products to combat Acanthamoeba infection. Applied nanotechnology, an advanced technology, has shown to enhance the anti-Acanthamoeba activity in the encapsulated nanoparticles leading to new therapeutic options. This review attempts to provide an overview of the available data and studies on the occurrence of pathogenic Acanthamoeba among the Association of Southeast Asian Nations (ASEAN) members with the aim of identifying some potential contributing factors such as distribution, demographic profile of the patients, possible source of the parasite, mode of transmission and treatment. Further, this review attempts to provide future direction for prevention and control of the Acanthamoeba infection.
Acanthamoeba
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Amoeba
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Animals
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Asia, Southeastern
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Asian Continental Ancestry Group
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Encephalitis
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Humans
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Keratitis
;
Nanoparticles
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Nanotechnology
;
Parasites
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Plants, Medicinal
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Polymerase Chain Reaction
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Sequence Analysis, DNA
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Soil
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Swimming Pools
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Water
2. Anti-encystment and amoebicidal activity of Lonicera japonica Thunb. and its major constituent chlorogenic acid in vitro
Tooba MAHBOOB ; Abdul-Majid AZLAN ; Tian-Chye TAN ; Veeranoot NISSAPATORN ; Chandramathi SAMUDI ; Shamala Devi SEKARAN ; Christophe WIART
Asian Pacific Journal of Tropical Medicine 2016;9(9):866-871
Objective To examine the acanthamoebicidal effects of ethyl acetate, aqueous and butanol fractions of dried flower buds of Lonicera japonica (L. japonica) Thunb. (Flos Lonicerae) in vitro. Methods Acanthamoeba triangularis isolates were obtained from environmental water samples and identified by PCR. They were exposed to ethyl acetate, water and butanol fractions of L. japonica Thunb. at concentrations ranging from 0.5 mg/mL to 1.5 mg/mL. The extracts were evaluated for growth inhibition at 24, 48 and 72 h, respectively. Chlorogenic acid at a concentration of 1 mg/mL was examined for inhibition of encystment. Results Ethyl acetate fraction at a concentration of 1.5 mg/mL evoked a significant reduction of trophozoite viability by 48.9% after 24 h, 49.2% after 48 h and 33.7% after 72 h chlorogenic acid, the major active constituent of L. japonica Thunb. at the concentration of 1 mg/mL reduced the cysts/trophozoite ratio by 100% after 24 h, 84.0% after 48 h and 72.3% after 72 h. This phenolic compound at concentration of 1 mg/mL concurrent with 0.6% hydrogen peroxide inhibited hydrogen peroxide-induced encystment by 92.8% at 72 h. Conclusions Results obtained from this study show that ethyl acetate fraction at 1.5 mg/mL is the most potent fraction of L. japonica Thunb. and its major constituent chlorogenic acid showed the remarkable inhibition of encystment at a concentration of 1 mg/mL.