Probiotics (Bifidobacterium longum) Increase Bone Mass Density and Upregulate Sparc and Bmp-2 Genes in Rats with Bone Loss Resulting from Ovariectomy
- 2015
- BioMed Research International 2015
- Kolsoom Parvaneh
- M. Ebrahimi
- M. Sabran
- G. Karimi
- Angela Ng Min Hwei
- Saif Abdul-Majeed
- Z. Ahmad
- Z. Ibrahim
- R. Jamaluddin
- PubMed: 26366421
- DOI: 10.1155/2015/897639
Abstract
Probiotics are live microorganisms that exert beneficial effects on the host, when administered in adequate amounts. Mostly, probiotics affect the gastrointestinal (GI) tract of the host and alter the composition of gut microbiota. Nowadays, the incidence of hip fractures due to osteoporosis is increasing worldwide. Ovariectomized (OVX) rats have fragile bone due to estrogen deficiency and mimic the menopausal conditions in women. Therefore, this study aimed to examine the effects of Bifidobacterium longum (B. longum) on bone mass density (BMD), bone mineral content (BMC), bone remodeling, bone structure, and gene expression in OVX rats. The rats were randomly assigned into 3 groups (sham, OVX, and the OVX group supplemented with 1 mL of B. longum 10(8)-10(9) colony forming units (CFU)/mL). B. longum was given once daily for 16 weeks, starting from 2 weeks after the surgery. The B. longum supplementation increased (p < 0.05) serum osteocalcin (OC) and osteoblasts, bone formation parameters, and decreased serum C-terminal telopeptide (CTX) and osteoclasts, bone resorption parameters. It also altered the microstructure of the femur. Consequently, it increased BMD by increasing (p < 0.05) the expression of Sparc and Bmp-2 genes. B. longum alleviated bone loss in OVX rats and enhanced BMD by decreasing bone resorption and increasing bone formation.
Research Insights
Supplement | Health Outcome | Effect Type | Effect Size |
---|---|---|---|
Bifidobacterium longum B1-05 | Improved Bone Formation | Beneficial | Moderate |
Bifidobacterium longum B1-05 | Improved Bone Mass Density | Beneficial | Large |
Bifidobacterium longum B1-05 | Reduced Alveolar Bone Resorption | Beneficial | Moderate |
Bifidobacterium longum BI-05 | Improved Bone Formation | Beneficial | Moderate |
Bifidobacterium longum BI-05 | Improved Bone Mass Density | Beneficial | Large |
Bifidobacterium longum BI-05 | Improved Bone Microstructure | Beneficial | Moderate |
Bifidobacterium longum BI-05 | Reduced Alveolar Bone Resorption | Beneficial | Moderate |
Bifidobacterium longum BL03 | Improved Bone Formation | Beneficial | Moderate |
Bifidobacterium longum BL03 | Improved Bone Mass Density | Beneficial | Large |
Bifidobacterium longum BL03 | Reduced Alveolar Bone Resorption | Beneficial | Moderate |
Bifidobacterium longum MAK34B12L | Improved Bone Mass Density | Beneficial | Large |
Bifidobacterium longum MM-2 | Improved Bone Formation | Beneficial | Moderate |
Bifidobacterium longum MM-2 | Improved Bone Mass Density | Beneficial | Large |
Bifidobacterium longum MM-2 | Improved Bone Microstructure | Beneficial | Moderate |
Bifidobacterium longum MM-2 | Reduced Alveolar Bone Resorption | Beneficial | Moderate |
Bifidobacterium longum subsp. longum | Improved Bone Formation | Beneficial | Moderate |
Bifidobacterium longum subsp. longum | Improved Bone Mass Density | Beneficial | Large |
Bifidobacterium longum subsp. longum | Reduced Alveolar Bone Resorption | Beneficial | Moderate |