Malaria is still the most severe strain of the human malaria parasites, and malaria disease is life-threatening which can result in severe anemia and cerebral malaria, especially in children in tropical Africa. Previous studies have shown that artemisinin and its derivatives could selectively kill erythrocytic stage of malaria and have a greater impact on the ring period. In recent years, there have been new findings of its mechanism continually. However, the concentration of artemisinin and its derivatives used in these studies can reach 50 to 80 times the half-inhibitory concentration in vitro. In this study, the international standard strain 3D7 of Plasmodium falciparum was used to culture in vitro. After half-inhibitory concentration of dihydroartemisinin was treated, the morphological changes of P. falciparum intraerythrocytic stage were observed, and then the 3D7 life cycle and effects of different developmental stages after dosing was explored. The 3D7 strain of P. falciparum was continuously synchronised more than 3 times. And dihydroartemisinin (DHA) at half maximal inhibitory concentration (10 nmol·L⁻¹) was administered for 6 hours after the last synchronization, and 3 life cycles were continuously observed (132 h). The results showed that compared with the parasites untreated by DHA, there was a noticeable delay in the life cycle of at least 36 h, indicating that the growth of 3D7 was significantly inhibited by DHA (<0.001), and the rate of ring formation was significantly reduced (<0.05). The trophozoites were abnormal in shape, such as shrink in size, and the number of merozoites in schizonts was significantly decreased (<0.05). These results suggested that non-killing concentrations of DHA (meaning parasites can be inhibited but not killed) can significantly inhibit the growth of P. falciparum, which may not only affect the ring stage, but also have an impact on other stages of the P. falciparum.
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http://dx.doi.org/10.19540/j.cnki.cjcmm.20180604.002 | DOI Listing |
Commun Biol
January 2025
Department of Cellular Architecture Studies, Division of Shionogi Global Infectious Diseases Division, Institute of Tropical Medicine (NEKKEN), Nagasaki University, Nagasaki, Japan.
The rapid intraerythrocytic replication of Plasmodium falciparum, a deadly species of malaria parasite, requires a quick but constant supply of phospholipids to support marked cell membrane expansion. In the malarial parasite, many enzymes functioning in phospholipid synthesis pathway have not been identified or characterized. Here, we identify P.
View Article and Find Full Text PDFPLoS One
January 2025
Department of Biomedical Sciences, Faculty of Health Sciences, University of Bamenda, Bambili, North West Region, Cameroon.
Background: Malaria and HIV are leading causes of death in Africa, including Cameroon. Antiretroviral therapy (ART) is expected to boost immunity and reduce vulnerability to opportunistic infections. Reports on comorbidities including malaria are common in Cameroon.
View Article and Find Full Text PDFmSphere
January 2025
Department of Molecular Genetics and Microbiology, University of New Mexico School of Medicine, Albuquerque, New Mexico, USA.
Malaria is a highly lethal infectious disease caused by parasites. These parasites are transmitted to vertebrate hosts when mosquitoes of the genus probe for a blood meal. Sporozoites, the infectious stage of , transit to the liver within hours of injection into the dermis.
View Article and Find Full Text PDFMikrobiyol Bul
January 2025
Sağlık Bilimleri Üniversitesi, Kayseri Şehir Eğitim ve Araştırma Hastanesi, Parazitoloji Laboratuvarı, Kayseri.
Sıtma, her yıl dünya nüfusunun yarısından fazlası için ciddi bir tehdit oluşturmaya devam etmektedir. Hastalığa neden olan Plasmodium parazitleri, yalnızca insanlarla sınırlı kalmayıp sürüngenlerden kuşlara, memelilerden diğer omurgalılara dek geniş enfeksiyon yelpazesine sahiptir. Plasmodium türleri, çevredeki değişikliklere uyum sağlamalarını sağlayan olağanüstü genetik esnekliğe sahiptir ve bu da onlara sıtma ilaçları gibi tedavi edici maddelere karşı hızla direnç geliştirme ve konakçı özgüllüğünü değiştirme potansiyeli verir.
View Article and Find Full Text PDF: Assessing vector bionomics is crucial to improving vector control strategies. Several entomological studies have been conducted to describe malaria transmission in different eco-epidemiological settings in Cameroon; knowledge gaps persist, particularly in highland areas. This study aimed to characterize malaria vectors in three localities along an altitudinal gradient in the western region: Santchou (700 m), Dschang (1400 m), and Penka Michel (1500 m).
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