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Suyama, S.

Publications and source records attributed to Suyama, S..

3 recordsLinked to original sources

Hexa-acylated lipopolysaccharides from the gut microbiota enhance cancer immunotherapy responses

Immune checkpoint inhibitors (ICI), such as anti-PD-1, have revolutionized cancer treatment, but they are only effective for a minority of patients. The gut microbiome plays a crucial role in modulating immunotherapy treatment responses, and previous studies correlated lipopolysaccharide (LPS)-producing gut microbes with poorer prognosis. However, LPS from diverse bacterial species have activities ranging from immunostimulatory to inhibitory. By functionally analyzing fecal metagenomes from 112 melanoma patients prior to anti-PD-1 therapy, we found that a subset of LPS-producing bacteria encoding immunostimulatory hexa-acylated LPS was enriched in the microbiomes of clinical responders. We confirmed robust activation of the NF-kB pathway by hexa-acylated LPS in vitro, and this activation was significantly inhibited by penta-acylated LPS in a dose-dependent manner. Importantly, oral administration of hexa-acylated LPS augmented anti-PD-1-mediated anti-tumor immunity in an in vivo mouse model of cancer immunotherapy. Microbiome hexa-acylated LPS may therefore represent an accessible predictor and potential enhancer of clinical anti- PD-1 immunotherapy responses. Statement of significanceFunctional rather than taxonomic profiling of patient gut microbiomes reveals hexa-acylated LPS as a novel biomarker of responsiveness and a targetable pathway for enhancing responses to anti-PD-1, informing future studies and current patient treatment.

microbiology↗

Physiological Evaluation of Far Infrared-Emitting Garments on Sleep and Thermoregulation

Garments engineered to emit far-infrared (FIR) spectral frequencies have potential conditioning benefits. This study aimed to explore the physiological effects of FIR-emitting clothes on sleep propensities involving thermoregulation and autonomic nervous function. In this double-blind, randomized, placebo-controlled, crossover study, fifteen healthy male participants (age 21.6 {+/-} 1.5 years, body mass index 23.1 {+/-} 1.9, Pittsburgh Sleep Quality Index 5.0 {+/-} 2.0) wore a whole-body FIR garment (wavelength: 5-20 m at 40{degrees}C), while a total body garment with the 100% polyester fiber without ceramic components was used as control for the intervention. To compare the physiological variables between the two electroencephalograms, the tympanic membrane temperature, sweating rate, skin temperature, and humidity were measured during sleep. Heart rate variability during sleep was also calculated. The percentage of rapid eye movement (REM) sleep was significantly higher in the FIR compared than in control (p = 0.027). We found a significant main effect of tympanic membrane temperature in time, equivalent to core body temperature. (2-way ANOVA; (F(26, 234)=4.046, p<0.001). Furthermore, the sweating rate was significantly lower when sleeping with FIR predominantly in the final phase of sleep (garment x time interaction (F(26,572)=55.05, p<0.001). Although there were no significant differences in skin surface temperature between the two garments, FIR provided significantly lower skin humidity during the middle of night sleep compared with the control. Regarding LF, a significant garment type x time interaction (F(1.87, 48.57)=3.36, p=0.046). Post-hoc analysis revealed that the LF value of FIR was higher in the final phase of sleep than that of control (p=0.027). Then present results suggest that sleeping with FIR in comparison to with control, has a beneficial effect to facilitate restorative sleep, presumably involving proper thermoregulation.

neuroscience↗

Enterocloster clostridioformis induces host intestinal epithelial responses that protect against Salmonella infection

Promoting resistance to enteric pathogen infection is a core function of the gut microbiota. However, many of the host-commensal interactions that likely mediate this protection remain uncharacterised. By screening gnotobiotic mice monocolonised with a range of mouse-derived commensal bacteria we have identified Enterocloster clostridioformis as a protective species against Salmonella Typhimurium infection. Unlike the colonisation resistance induced by some commensal bacteria, E. clostridioformis selectively induces a previously uncharacterised microbe adaptation response at the level of the caecal intestinal epithelium and the underlying mucosal immune system to mediate host-dependent resistance to infection. Triggering this pathway may therefore constitute a novel strategy to enhance protective responses against enteric infections.

microbiology↗