Three-dimensional structural parameters correlate better with the intestinal function compared to two-dimensional structural parameters. The objective of the present study was to investigate the three-dimensional morphometrical features of the small intestine in rabbits using a design-based stereology. Five adult male New Zealand rabbits were used in this research. The total volume, volume fraction of different layers, internal surface area, villus and circular folds amplification factors were estimated in the whole and various segments of the small intestine. The small intestine volume was estimated to be 59.57 ± 8.57 cm. The jejunum and ileum showed the most and the least total volumes, respectively (p < 0.05). The volume fractions of the tunica mucosa, tela submucosa and tunica muscularis were 62.57% ± 2.78%, 21.11% ± 2.01% and 16.25% ± 0.94%, respectively. The minimum volume of the tela submucosa was observed in the ileum (p < 0.05) and the fractional volume of the tunica muscularis in the ileum was significantly more than those of other segments (p < 0.05). The surface area of the entire small intestine was estimated to be 8302.31 ± 1872.39 cm. The jejunum and ileum segments showed the most and the least surface areas, respectively. The increase in the intestinal surface area attributable to the presence of villi was estimated to be 6.82 ± 0.84, and that for circular folds was accounted for 1.36 ± 0.09. The largest amplification factors of villi and circular folds were observed in the duodenum and ileum, respectively. Our data presented the three-dimensional morphometry of the small intestine of the rabbit as a translational model and provided basic findings for the diagnosis and treatment of intestinal diseases in this species.
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http://dx.doi.org/10.1111/ahe.70025 | DOI Listing |
J Immunol
March 2025
Department of Microbiology and Immunology, Medical College of Wisconsin, Milwaukee, WI, United States.
B cell depletion is an efficacious therapy for multiple sclerosis, but its long-term safety profile in the gastrointestinal tract has not been specifically studied. This is of importance because the gut is the largest reservoir of IgA in the body, which maintains gut homeostasis in part by regulating the composition of the gut microbiota. This was addressed by development of a prolonged B cell depletion model using human CD20 transgenic mice and B cell depletion with the anti-human CD20 antibodies rituximab, a humanized mouse monoclonal, and 2H7, the mouse precursor to ocrelizumab.
View Article and Find Full Text PDFMycotoxin Res
March 2025
Institute of Feed Research, Chinese Academy of Agricultural Sciences, Beijing, 100081, China.
Aflatoxin B1 (AFB1) and zearalenone (ZEN) are the most prevalent mycotoxins in production, posing a serious threat to human and animal health. Therefore, it is very urgent to find a safe and efficient method for the biodegradation of these mycotoxins. Our previous study demonstrated that Bacillus subtilis ZJ-2019-1 moderately degrades both mycotoxins in vitro and ZEN in female gilts.
View Article and Find Full Text PDFCell Tissue Res
March 2025
Department of Pharmacology, School of Medicine, Iwate Medical University, Iwate, Japan.
While the prolonged consumption of sucrose-containing beverages is known to impact many organs, their specific effects on the small intestine remain elusive. This study aimed to evaluate how regular intake of sucrose, in amounts typically consumed, affects goblet cells, which play a critical role in regulating the mucosal barrier and innate immune defenses in the small intestine. Ten-week-old male ddY mice, a model of diet-induced obesity, were given a regular diet with either plain water or 7% sucrose water.
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Small
March 2025
College of Food Science, Southwest University, Chongqing, 400715, China.
Hybrid multicompartment artificial architectures, inherited from different compartmental systems, possess separate microenvironments that can perform different functions. Herein, a hybrid compartmentalized architecture via hybridizing ferritin nanocage (Fn) with non-aqueous droplets using aminated-modified amphiphilic gelatin (AGEL) is proposed, which enables the generation of compartmentalized emulsions with hybrid multicompartments. The resulting compartmentalized emulsions are termed "hybrasome".
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