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yin, d.

Publications and source records attributed to yin, d..

2 recordsLinked to original sources

Transcriptomic analysis of cecal mucosal immunity in SPF White Leghorn chicks infected with precocious and parent strains of Eimeria tenella

Eimeria tenella (E. tenella) preferentially invades the cecum of young chickens and causes enormous economic losses to the global poultry industry. In this study, chick infection models of virulent parent strain and precocious attenuated line were established with schizogony (2 dpi) and gametogony (6 dpi) as two critical sampling time points. Combined with pathogenicity detection, transcriptome sequencing, mucosal immune index measurement and homologous challenge protection assays, we systematically deciphered the differential molecular mechanisms underlying pathogenicity and immune regulation between the two strains. Pathogenicity results showed that increased infection dosages suppressed weight gain and aggravated bloody diarrhea and oocyst shedding in both strains. In particular, infection with 1 x 105 sporulated oocysts of the parent strain caused massive chick mortality, while the precocious line exhibited markedly lower virulence. Transcriptomic data revealed that gametogony (6 dpi) represented the peak of host immune response. The parent strain persistently overactivated the NF- {kappa}B - mediated positive feedback cascade of coagulation and complement as well as ECM remodeling, triggering steroid metabolic disorder and antioxidant exhaustion, which ultimately induced severe hemorrhagic necrosis of the cecum. By contrast, the precocious line specifically activated the PPAR - {gamma} signaling pathway to negatively restrain excessive inflammation, accompanied by enriched TLR signaling and leukocyte transendothelial migration pathways, thereby forming an immune cascade of "lipid anti - inflammation - pathogen elimination - mucosal repair". Immunoprotection trials verified that priming with 1 x 104 sporulated oocysts of the precocious line significantly alleviated cecal lesions and reduced oocyst output upon secondary challenge, conferring stable mucosal immune protection. The expression trends of seven hub genes (PPARG, PLIN1, CYP1A1, THBS1, FMO4, CYP2C18, CYP14) detected via qRT - PCR were consistent with RNA - seq data. This study identified a dual regulatory paradigm consisting of NF - {kappa}B - mediated tissue injury and PPAR - {gamma} - dependent anti - inflammatory responses, refined the mucosal immune theoretical framework for commercially available precocious attenuated strains, and provided candidate molecular targets for targeted anti - coccidial intervention in chickens.

microbiology↗

Comparison of Four Density Gradient Centrifugation Protocols for Purification of Toxoplasma gondii PRU Brain Cysts

Toxoplasma gondii is an obligate intracellular zoonotic protozoan that establishes persistent brain cysts in infected hosts, causing chronic infection and neuropathological damage. Efficient isolation and purification of brain cysts are essential for studying its biological characteristics and developing effective control strategies. The present study aimed to establish a reliable method for purifying brain cysts of the T. gondii PRU strain with high yield, viability, and practicality. Brain cysts harvested from experimentally infected ICR mice were purified using four different density gradient centrifugation methods: lymphocyte separation medium (LSM), Percoll, cesium chloride (CsCl), and sucrose. Purification efficiency was systematically evaluated, and the infection model was validated via brain histopathology. Cyst counts and purification yields were quantified, while cyst and bradyzoite viability were assessed using FDA/PI staining, trypan blue exclusion, and in vivo infectivity assays. Infected mice displayed the most severe clinical signs at 15 days post-infection (dpi), accompanied by significantly reduced body weight compared with uninfected controls (P < 0.05) and prominent perivascular inflammatory infiltration in the brain. Among the four purification methods, Percoll, CsCl, and sucrose gradients yielded significantly higher cyst numbers than LSM (P < 0.001), with no significant differences observed among the three gradient-based methods. Cysts purified by Percoll and LSM retained high viability and remained fully infectious in mice. Sucrose-purified cysts exhibited decreased viability, but their bradyzoites remained infective. In contrast, cysts and bradyzoites purified by CsCl were completely non-viable. These results clarify the advantages and limitations of each protocol and provide an optimized technical reference for T. gondii brain cyst research, supporting the development of toxoplasmosis prevention and control measures.

microbiology↗