SHIFA FAUZIYAH
Akademi Analisis Kesehatan Delima Husada. Jl. Arif Rahman Hakim No. 2B, Gresik 61111, East Java, Indonesia

Published : 2 Documents Claim Missing Document
Claim Missing Document
Check
Articles

Found 2 Documents
Search

Detection of Legionella pneumophila bacteria from water sources in Palembang City, Indonesia RADINAL KAUTSAR; SHIFA FAUZIYAH; FEBRIANA AQUARESTA; ALICIA MARGARETTA WIDYA; NUR SAMSYATUL FAJAR; MAMIK DAMAYANTI; TEGUH HARI SUCIPTO
Biodiversitas Journal of Biological Diversity Vol. 25 No. 4 (2024)
Publisher : Society for Indonesian Biodiversity

Show Abstract | Download Original | Original Source | Check in Google Scholar | DOI: 10.13057/biodiv/d250417

Abstract

Abstract. Kautsar R, Fauziyah S, Aquaresta F, Widya AM, Fajar NS, Damayanti M, Sucipto TH. 2024. Detection of Legionella pneumophila bacteria from water sources in Palembang City, Indonesia. Biodiversitas 25: 1499-1504. Legionella is a pathogenic bacterial genus that causes legionellosis. This bacteria is a gram-negative bacteria which is often found in warm and humid aquatic environments. Legionella spp. infection occurs due to inhalation of aerosols contaminated with Legionella spp. Until now, legionellosis is still a crucial public health problem in the world. Therefore, it is necessary to take preventive measures to detect the presence of Legionella spp. as early as possible. This study aimed to detect the presence of Legionella pneumophila from well water samples and drinking water sources in Palembang City using the Nested PCR method. The primers used in this study are specific primers that amplify the mip gene. The PCR amplification results showed that 2 of the 22 samples were positively contaminated with L. pneumophila. These positive samples came from well water and drinking water samples. Based on physical parameters, all samples are still safe for consumption because they have a normal temperature, are odorless and clear. Meanwhile, based on chemical parameters, the pH of all samples is still safe for consumption because it is still below the maximum threshold.
Phylogenetic analysis of Dengue virus and insect-specific Flavivirus in Aedes aegypti from Gresik, Indonesia 2019 RASYID NOOR HAKIM; MAMIK DAMAYANTI; SHIFA FAUZIYAH; TEGUH HARI SUCIPTO
Biodiversitas Journal of Biological Diversity Vol. 25 No. 6 (2024)
Publisher : Society for Indonesian Biodiversity

Show Abstract | Download Original | Original Source | Check in Google Scholar | DOI: 10.13057/biodiv/d250602

Abstract

Abstract. Hakim RN, Damayanti M, Fauziyah S, Sucipto TH. 2024. Phylogenetic analysis of Dengue virus and insect-specific Flavivirus in Aedes aegypti from Gresik, Indonesia 2019. Biodiversitas 25: 2340-2347. The spread of several Flaviviruses, such as Dengue virus and insect-specific Flavivirus, is periodically detected in Indonesia, including Surabaya, which is an endemic area. Gresik, as one of Surabaya's satellite cities, has high traffic mobility between regions, increasing the possibility of viral transmission. In this study, we identified Flaviviruses from Aedes aegypti mosquito isolates from Gresik collected in 2019. We also revealed the possibility of virus transmission from Surabaya to Gresik. The mosquito samples were collected using mosquito trap method. The Flavivirus Partial Nonstructural Protein 5 (NS5) -encoding gene region was isolated via the nested reverse transcription-polymerase chain reaction method. Sequence alignment and phylogenetic analysis were carried out to determine the kinship of Gresik strain virus isolates with the GenBank database. The results revealed that six out of 29 isolated samples (Sample from Duduk Sampeyan (47 and 43), Mengare (212 and 31), Kedamean (58), and Manyar (38)) exhibited a 220 bp DNA band, which corresponds to the NS5 gene. Further analysis using basic local alignment search tool - nucleotide and phylogenetic methods revealed that two sample sequences (38 and 212) are closely related to DENV-1 genotype 1, while the other four (31, 43, 47, and 58) are associated with Insect-Spesific Flavivirus (ISF). The similarity in NS5 partial sequence and genotype classifications of the dengue virus suggests the potential transmission of the virus from Surabaya to Gresik. We hypothesize that this phenomenon is closely linked to the population mobility between the two areas.