Establishment of Novel High-Standard Chemiluminescent Assay for NTPase in Two Protozoans and Its High-Throughput Screening.
Masamitsu HaradaJun NagaiRiho KurataKenji ShimizuXiaofeng CuiTakayuki IsagawaHiroaki SembaJun IshiharaYasuhiro YoshidaNorihiko TakedaKoji MaemuraTomo YonezawaPublished in: Marine drugs (2020)
Toxoplasma gondii is a major protozoan parasite and infects human and many other warm-blooded animals. The infection leads to Toxoplasmosis, a serious issue in AIDS patients, organ transplant recipients and pregnant women. Neospora caninum, another type of protozoa, is closely related to Toxoplasma gondii. Infections of the protozoa in animals also causes serious diseases such as Encephalomyelitis and Myositis-Polyradiculitis in dogs or abortion in cows. Both Toxoplasma gondii and Neospora caninum have similar nucleoside triphosphate hydrolases (NTPase), NcNTPase and TgNTPase-I in Neospora caninum and Toxoplasma gondii, respectively. These possibly play important roles in propagation and survival. Thus, we targeted the enzymes for drug discovery and tried to establish a novel high-standard assay by a combination of original biochemical enzyme assay and fluorescent assay to determine ADP content. We then validated whether or not it can be applied to high-throughput screening (HTS). Then, it fulfilled criterion to carry out HTS in both of the enzymes. In order to identify small molecules having inhibitory effects on the protozoan enzyme, we also performed HTS using two synthetic compound libraries and an extract library derived from marine bacteria and then, identified 19 compounds and 6 extracts. Nagasaki University collected many extracts from over 18,000 marine bacteria found in local Omura bay, and continues to compile an extensive collection of synthetic compounds from numerous drug libraries established by Japanese chemists.
Keyphrases
- toxoplasma gondii
- high throughput
- drug discovery
- pregnant women
- end stage renal disease
- endothelial cells
- ejection fraction
- newly diagnosed
- chronic kidney disease
- oxidative stress
- interstitial lung disease
- emergency department
- patient reported outcomes
- cancer therapy
- systemic sclerosis
- patient reported
- drug induced
- anti inflammatory
- single cell
- induced pluripotent stem cells
- pluripotent stem cells