MARCELIA SUGATA
Department of Biology, Faculty of Science and Technology, Universitas Pelita Harapan. Jl. M.H. Thamrin Boulevard 1100, Tangerang 15811, Banten, Indonesia

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Thrombolytic potential in bacteria isolated from fermented durian tempoyak CHRISTY PRISKILA; VALERIE VIDIAN; ASTIA SANJAYA; MARCELIA SUGATA; REINHARD PINONTOAN
Biodiversitas Journal of Biological Diversity Vol. 23 No. 11 (2022)
Publisher : Society for Indonesian Biodiversity

Show Abstract | Download Original | Original Source | Check in Google Scholar | DOI: 10.13057/biodiv/d231124

Abstract

Abstract. Priskila C, Vidian V, Sanjaya A, Sugata M, Pinontoan R. 2022. Thrombolytic potential in bacteria isolated from fermented durian tempoyak. Biodiversitas 23: 5731-5737. Cardiovascular disease is one of the leading causes of death worldwide and is primarily caused by dysregulation in the blood clotting system leading to the formation of unwanted blood clots (thrombi). Thrombolytic therapy, which aims to break down unwanted blood clots, employs various agents possessing thrombolytic activity. However, the harmful side effects of conventional thrombolytic agents necessitate the exploration of new and safer agents with high thrombolytic activities. Thrombolytic agents can be obtained from various sources, including fermented foods. Tempoyak is a condiment made from fermented durian, which is found in some regions of Indonesia, and is reported to contain beneficial microorganisms. The aim of this study was to isolate and identify thrombolytic agents from tempoyak. After several pure microbial colonies were successfully isolated from tempoyak, they were screened for proteolytic activity on skim milk agar medium. The isolated colonies with proteolytic activity were then subjected to several tests, including the whole blood clot lysis test, euglobulin clot lysis test, fibrin plate method, and zymography. Subsequently, the isolates with thrombolytic and fibrinolytic activity potential were identified in terms of their morphology and biochemistry. In this study, three bacteria with thrombolytic activity potential were successfully isolated. Fibrin zymography indicated that the molecular weights of the proteins that play roles in the fibrinolytic activity ranged from approximately 30 to 153 kDa, which were suspected to correspond to serine protease, cysteine protease, and/or metalloprotease. All three isolates were identified as belonging to the genus Corynebacterium. This is the first report discussing the thrombolytic and fibrinolytic activities of Corynebacterium sp. derived from fermented food.
A comparative assessment of Lactiplantibacillus plantarum isolated from chicken and humans as candidates for probiotics JESSICA SUNARDI; EMILY TANIA PURNAMA; MARCELIA SUGATA; HANS VICTOR; TAN TJIE JAN; JUANDY JO
Biodiversitas Journal of Biological Diversity Vol. 24 No. 9 (2023)
Publisher : Society for Indonesian Biodiversity

Show Abstract | Download Original | Original Source | Check in Google Scholar | DOI: 10.13057/biodiv/d240964

Abstract

Abstract. Sunardi J, Purnama ET, Sugata M, Victor H, Jan TT, Jo J. 2023. A comparative assessment of Lactiplantibacillus plantarum isolated from chicken and humans as candidates for probiotics. Biodiversitas 24: 5198-5206. Lactiplantibacillus plantarum is commonly analyzed as a potential probiotic. We hereby investigated two strains isolated from chicken crop (Lpb. plantarum F75) and human breast milk (Lpb. plantarum SU-KC1a). Ability to withstand osmotic stress (1.5%, 2.5% or 3.5% of NaCl) and phenol compounds (0.2% or 0.5%), ability to survive gastric juices for a maximum of 120 minutes and bile salt for a maximum 3 hours, as well as susceptibility to 25 antibiotic discs, were compared between both strains. Whole genomes of both strains were sequenced and analyzed in silico to determine the availability of antibiotic-resistance genes as well as the presence of mobile genetic elements and plasmid. Both strains were sensitive to increased concentrations of NaCl and phenol as well as to prolonged exposure to gastric juices. In contrast, both strains could withstand a prolonged exposure of 0.3% of bile salt. Both isolates had similar genome sizes and were susceptible to many tested antibiotics. The detected resistance genes were observed within the chromosomal genomes but no mobile genetic element nor plasmid was found. In conclusion, both strains of Lpb. plantarum displayed several characteristics of beneficial bacteria and could be used as probiotic candidates for poultry and human beings, respectively.