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Taechowisan, T.

Publications and source records attributed to Taechowisan, T..

2 recordsLinked to original sources

Antibacterial and Anticancer Activities of Insulicolides from Streptomyces sp. UL09; An Endophyte of Ulva rigida C. Agardh

Marine macroalgae host endophytic microbial communities that serve as valuable reservoirs for drug discovery. In this study, the endophytic actinomycete Streptomyces sp. UL09 was isolated from the internal thallus tissues of the green macroalga Ulva rigida C. Agardh. Fermentation of strain UL09 yielded the nitrobenzoyl sesquiterpenoids insulicolide B (1.63 mg/L) and insulicolide C (1.79 mg/L). The planar structures of compounds 1 and 2 were assigned as insulicolides B and C, respectively, via spectroscopic analysis and comparison with literature data. In vitro bioassays revealed moderate activity against Gram-positive bacteria (MIC 128-512 g/mL), including MRSA Sp3 (MIC 128-256 g/mL). These compounds exhibited cytotoxic activity against human cancer cell lines (HeLa, HepG2, and MDA-MB-231) with IC50 values ranging from 34.35 to 142.64 g/mL. Both compounds demonstrated lower cytotoxicity toward non-malignant Vero cells. Molecular docking simulations predicted that both metabolites target the catalytic ATP-binding cleft of human Polo-like kinase 1 (Plk1), with insulicolide B displaying a favorable docking score ({Delta}G = -9.273 kcal/mol). Furthermore, pkCSM predicted high intestinal absorption and no alerts for the assessed toxicity endpoints. These findings establish Streptomyces sp. UL09 as a viable alternative biological source of insulicolides B and C, highlighting their potential as leads for oncology applications.

microbiology↗

High-Yield Production of Cytotoxic Actinomycin D from Endophytic Streptomyces parvulus AL036 through Nutritional Optimization

Endophytic actinomycetes are bacteria that live inside plant tissues without causing harm to the plant, producing various bioactive compounds. This study aimed to isolate and characterize an endophytic actinomycete from Alpinia galanga roots, and to investigate its bioactive compounds. A Streptomyces strain designated AL036 was isolated and identified as Streptomyces parvulus through morphological, biochemical, and 16S rDNA sequence analysis. Similar to Streptomyces parvulus Tc022, this strain exhibited actinomycin D as its major bioactive compound. Media optimization experiments and cytotoxic activity against non-cancerous and cancer cell lines were carried out. The starch casein medium was identified as a medium supporting significantly higher actinomycin D production (103.67 mg/L) compared to the initial medium (ISP-2). Further optimization revealed that a specific carbon-to-nitrogen ratio (20 g/L soluble starch and 2 g/L casein) maximized production (199.33 mg/L). Sugar supplementation did not enhance production but influenced mycelial growth. The purified actinomycin D exhibited cytotoxicity against HeLa cells and LLC-MK2 cells, with IC50 values of 10.22 {+/-} 2.53 {micro}g/ml and 17.78 {+/-} 3.97 {micro}g/ml, respectively. This study isolated a new Streptomyces parvulus AL036, with efficient actinomycin D production similar to Tc022. Media optimization significantly improved production, highlighting the importance of carbon and nitrogen sources. Both crude extract and purified actinomycin D showed cytotoxicity and selectivity for some cancer cells.

microbiology↗