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Niimi, K.

Publications and source records attributed to Niimi, K..

3 recordsLinked to original sources

Human-specific fast synaptic kinetics enable rapid detection of predictive features

Humans can discern the underlying principles in complex environments, but the cellular basis of this ability is unclear. By comparing layer 2/3 cortical pyramidal neurons in five mammals (mouse, rat, marmoset, macaque and human), we found that human neurons exhibited distinctively faster kinetics of excitatory synaptic transmissions. In a computational model, neurons with human-type synapses detected hidden patterns more quickly in noise, and this superiority was only evident in unsupervised learning. Tracking synaptic weights revealed that human synapses were potentiated sharply and persistently by the patterns, while macaque-type synapses were broadly potentiated, which were easily eroded. These data suggest that the human-specific acceleration of synaptic kinetics enables the rapid extraction of latent structures in complex environments, providing a cellular basis for our efficient cognitive abilities.

neuroscience↗

Morning sickness-like changes during pregnancy in non-human primates and rodents

Nausea and vomiting of pregnancy (NVP), commonly referred to as "morning sickness," causes a range of symptoms including nausea, vomiting, weight loss, anorexia, and malaise in pregnant women during early pregnancy. Although NVP highly affects the quality of life of pregnant women, the absence of model animals has prevented us from revealing the underlying mechanisms. Here, to identify whether non-human animals may serve as models for studying NVP, we analyzed metabolic changes during pregnancy in common marmosets and mice. Marmosets exhibited a transient weight decrease during the period of placental development in approximately 22% of pregnancies. Some marmosets repeatedly showed transient weight loss across multiple pregnancies, suggesting individual variations in the likelihood of NVP-like symptoms. Although mice did not show apparent alteration in body weight, they exhibited a slowdown in food intake and alterations in locomotor activity during the corresponding phase. These shared alterations suggest that marmosets and mice may exhibit phenomena analogous to human NVP and could serve as useful models for investigating its biological basis. HighlightsO_LIMarmosets exhibited a transient weight loss during placental development in 22% of pregnancies. C_LIO_LIThere was individual variation in how often the transient weight loss occurred in marmosets. C_LIO_LIFood intake and activity in C57BL/6 mice are altered during the corresponding gestational phase. C_LIO_LIMultiple morning sickness-like phenomena were observed in non-human mammals. C_LI

physiology↗

Proteomic profiling of bacterial extracellular vesicles for exploring ovarian cancer biomarkers

Extracellular vesicles (EVs) are present in body fluids and act as disease biomarkers. Emerging evidence has proven that EVs are released not only from mammalian cells but also from bacteria. Ovarian cancer has a dismal prognosis because of difficulties in early detection. This study aimed to identify bacterial EV (BEV) proteins associated with ovarian cancer. Fifteen patients with ovarian cancer or benign tumors were recruited, and EVs were isolated from the ascites. BEVs were recovered from seven in vitro-cultured strains of bacteria present in the vaginal microbiota, and LC-MS/MS analysis was performed. The detected peptide data were annotated to both human and bacterial references, and the human data showed that the profiles of cancer EVs were distinct from those of patients with benign tumors. As analyzed by bacterial proteins, P15636_Protease1 was found as the BEV-associated protein highly expressed in patients with cancer. To distinguish patients with cancer, the area under the curve was 0.88 (95% CI, 0.64-1.00). In addition, homology analysis showed that P15636_Protease1 is a unique protein only detected in bacteria. In this study, ovarian cancer-specific bacterial proteins were identified on EVs, and BEVs in bodily fluids are promising in the discovery of disease biomarkers.

cancer biology↗