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25-羟基胆钙化醇可逆转育肥肉鸡因热应激导致的骨质量改变,这与对肠道完整性和炎症的影响有关。

25-hydroxycholecalciferol reverses heat induced alterations in bone quality in finisher broilers associated with effects on intestinal integrity and inflammation.

作者信息

Zhang Huaiyong, Majdeddin Maryam, Gaublomme Djoere, Taminiau Bernard, Boone Matthieu, Elewaut Dirk, Daube George, Josipovic Iván, Zhang Keying, Michiels Joris

机构信息

Laboratory for Animal Nutrition and Animal Product Quality, Department of Animal Sciences and Aquatic Ecology, Ghent University, 9000, Ghent, Belgium.

Key laboratory of Animal Disease-resistant Nutrition, Ministry of Education, Institute of Animal Nutrition, Sichuan Agricultural University, Ya'an, 611130, Sichuan, China.

出版信息

J Anim Sci Biotechnol. 2021 Oct 8;12(1):104. doi: 10.1186/s40104-021-00627-6.

Abstract

BACKGROUND

Alterations in ambient temperature have been associated with multiple detrimental effects on broilers such as intestinal barrier disruption and dysbiosis resulting in systemic inflammation. Inflammation and 25-hydroxycholecalciferol (25-OH-D) have shown to play a negative and positive role, respectively, in the regulation of bone mass. Hence the potential of 25-OH-D in alleviating heat induced bone alterations and its mechanisms was studied.

RESULTS

Heat stress (HS) directly induced a decrease in tibia material properties and bone mass, as demonstrated by lower mineral content, and HS caused a notable increase in intestinal permeability. Treatment with dietary 25-OH-D reversed the HS-induced bone loss and barrier leak. Broilers suffering from HS exhibited dysbiosis and increased expression of inflammatory cytokines in the ileum and bone marrow, as well as increased osteoclast number and activity. The changes were prevented by dietary 25-OH-D administration. Specifically, dietary 25-OH-D addition decreased abundance of B- and T-cells in blood, and the expression of inflammatory cytokines, especially TNF-α, in both the ileum and bone marrow, but did not alter the diversity and population or composition of major bacterial phyla. With regard to bone remodeling, dietary 25-OH-D supplementation was linked to a decrease in serum C-terminal cross-linked telopeptide of type I collagen reflecting bone resorption and a concomitant decrement in osteoclast-specific marker genes expression (e.g. cathepsin K), whereas it did not apparently change serum bone formation markers during HS.

CONCLUSIONS

These data underscore the damage of HS to intestinal integrity and bone health, as well as that dietary 25-OH-D supplementation was identified as a potential therapy for preventing these adverse effects.

摘要

背景

环境温度变化已被证明会对肉鸡产生多种有害影响,如肠道屏障破坏和微生物群失调,进而导致全身炎症。炎症和25-羟基维生素D(25-OH-D)在骨量调节中分别发挥着负面和正面作用。因此,研究了25-OH-D缓解热应激诱导的骨骼改变的潜力及其机制。

结果

热应激(HS)直接导致胫骨材料特性和骨量下降,表现为矿物质含量降低,且热应激导致肠道通透性显著增加。日粮添加25-OH-D可逆转热应激诱导的骨质流失和屏障渗漏。遭受热应激的肉鸡表现出微生物群失调,回肠和骨髓中炎性细胞因子表达增加,破骨细胞数量和活性也增加。日粮添加25-OH-D可预防这些变化。具体而言,日粮添加25-OH-D可降低血液中B细胞和T细胞的丰度,以及回肠和骨髓中炎性细胞因子的表达,尤其是肿瘤坏死因子-α,但不会改变主要细菌门类的多样性、数量或组成。关于骨重塑,日粮补充25-OH-D与反映骨吸收的血清I型胶原C端交联肽减少以及破骨细胞特异性标记基因(如组织蛋白酶K)表达的相应减少有关,而在热应激期间,它并未明显改变血清骨形成标志物。

结论

这些数据强调了热应激对肠道完整性和骨骼健康的损害,以及日粮补充25-OH-D被确定为预防这些不良反应的潜在疗法。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/0662/8499578/146e2a397a3a/40104_2021_627_Fig1_HTML.jpg

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