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Manoj Gurung (PhD)
Arkansas Children's Nutrition Center
Research Biologist

Phone: (501) 364-2033
Fax:

(Employee information on this page comes from the REE Directory. Please contact your front office staff to update the REE Directory.)

Projects
Early Life Factors and Microbiota Impact on Healthy Development
In-House Appropriated (D)
  Accession Number: 445369

Publications (Clicking on the reprint icon Reprint Icon will take you to the publication reprint.)
Maternal immune cell gene expression associates with maternal gut microbiome, milk composition and infant gut microbiome - (Peer Reviewed Journal)
Infant microbiota communities and HMO supplementation independently and synergistically shape metabolite production and immune responses in healthy mice - (Peer Reviewed Journal)
Apiaceous Vegetables Improved Gut Dysbiosis Induced by Dextran Sodium Sulfate in mice consuming Total Western Diet - (Abstract Only)
Maternal immune cell gene expression during gestation associates with infant gut microbiota composition - (Abstract Only)
Effects of early life stress on skeletal health - (Abstract Only)
Human milk oligosaccharides and Bifidobacteria infantis interactively shape mouse splenic immune responses. - (Abstract Only)
Microbiota of infants consuming secretors or non-secretors mothers milk impacts gut and immune system in mice Reprint Icon - (Peer Reviewed Journal)
Gurung, M., Schlegel, B., Rajasundaram, D., Fox, R., Bode, L., Lindemann, S.R., Leroith, T., Read, Q.D., Simecka, C., Carol, L., Andres, A., Yeruva, V. 2024. Microbiota of infants consuming secretors or non-secretors mothers milk impacts gut and immune system in mice. mSystems. 9(4). Article e00294-24. https://doi.org/10.1128/msystems.00294-24.
The Role of Early-Life Gut Mycobiome on Child Health Reprint Icon - (Peer Reviewed Journal)
Rodriguez, K.A., Gurung, M., Talatala, R., Rearick, J.R., Ruebel, M., Stephens, K.E., Yeruva, V. 2024. The Role of Early-Life Gut Mycobiome on Child Health. Advances in Nutrition. 15(3):100185. https://doi.org/10.1016/j.advnut.2024.100185.
Reducing gut microbiome-driven adipose tissue inflammation alleviates metabolic syndrome Reprint Icon - (Peer Reviewed Journal)
Newman, N.K., Zhang, Y., Padiadpu, J., Miranda, C.L., Magana, A.A., Wong, C.P., Gurung, M., Gombart, A.F., Morgun, A.F., Shulzhenko, N. 2023. Reducing gut microbiome-driven adipose tissue inflammation alleviates metabolic syndrome. Microbiome. 11:208. https://doi.org/10.1186/s40168-023-01637-4.
Evaluation of a plant-based infant formula containing almonds and buckwheat on gut microbiota composition, intestine mor-phology, metabolic and immune markers in a neonatal piglet model Reprint Icon - (Peer Reviewed Journal)
Gurung, M., Rosa, F., Yelvington, B., Terry, N., Read, Q.D., Piccolo, B., Moody, B., Tripp, P., Pittman, H., Fay, B., Ross, T., Sikes, J., Flowers, J., Fox, R., Yoseph, F., Yeruva, V., Leroith, T., Talatala, R. 2023. Evaluation of a plant-based infant formula containing almonds and buckwheat on gut microbiota composition, intestine mor-phology, metabolic and immune markers in a neonatal piglet model. Nutrients. 15(2):383. https://doi.org/10.3390/nu15020383.
Microbiota and adipocyte mitochondrial damage in type 2 diabetes are linked by Mmp12+ macrophages Reprint Icon - (Peer Reviewed Journal)
Li, Z., Gurung, M., Rodrigues, R.R., Padiadpu, J., Newman, N.K., Manes, N.P., Pederson, J.W., Greer, R.L., Morgun, A., Shulzhenko, N. 2022. Microbiota and adipocyte mitochondrial damage in type 2 diabetes are linked by Mmp12+ macrophages. Journal of Experimental Medicine. 219(7):e20220017. https://doi.org/10.1084/jem.20220017.