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Effect of calcium glucoheptonate on proliferation and osteogenesis of osteoblast-like cells in vitro.
Modi, Prashant Kumar; Prabhu, Ashwini; Bhandary, Yashodhar P; Shenoy P, Sudheer; Hegde, Aparna; Es, Sindhu Priya; Johnson, Renjith P; Das, Shankar Prasad; Vazirally, Sahil; Rekha, Punchappady-Devasya.
Affiliation
  • Modi PK; Yenepoya Research Centre, Yenepoya (Deemed to be University), Mangalore, Karnataka, India.
  • Prabhu A; Yenepoya Research Centre, Yenepoya (Deemed to be University), Mangalore, Karnataka, India.
  • Bhandary YP; Yenepoya Research Centre, Yenepoya (Deemed to be University), Mangalore, Karnataka, India.
  • Shenoy P S; Yenepoya Research Centre, Yenepoya (Deemed to be University), Mangalore, Karnataka, India.
  • Hegde A; Yenepoya Research Centre, Yenepoya (Deemed to be University), Mangalore, Karnataka, India.
  • Es SP; Yenepoya Research Centre, Yenepoya (Deemed to be University), Mangalore, Karnataka, India.
  • Johnson RP; Yenepoya Research Centre, Yenepoya (Deemed to be University), Mangalore, Karnataka, India.
  • Das SP; Yenepoya Research Centre, Yenepoya (Deemed to be University), Mangalore, Karnataka, India.
  • Vazirally S; Global Calcium Pvt. Ltd., Bangalore, Karnataka, India.
  • Rekha PD; Yenepoya Research Centre, Yenepoya (Deemed to be University), Mangalore, Karnataka, India.
PLoS One ; 14(9): e0222240, 2019.
Article in En | MEDLINE | ID: mdl-31498830
Calcium is the key macromineral having a role in skeletal structure and function, muscle contraction, and neurotransmission. Bone remodeling is maintained through a constant balance between calcium resorption and deposition. Calcium deficiency is resolved through calcium supplementation, and among the supplements, water-soluble organic molecules attracted great pharmaceutical interest. Calcium glucoheptonate is a highly water-soluble organic calcium salt having clinical use; however, detailed investigations on its biological effects are limited. We assessed the effects of calcium glucoheptonate on cell viability and proliferation of osteoblast-like MG-63 cells. Calcium uptake and mineralization were evaluated using Alizarin red staining of osteoblast-like MG-63 cells treated with calcium glucoheptonate. Expression of osteogenic markers were monitored by western blotting, immunofluorescence, and qRT-PCR assays. Increased proliferation and calcium uptake were observed in the MG-63 cells treated with calcium glucoheptonate. The treatment also increased the expression of osteopontin and osteogenic genes such as collagen-1, secreted protein acidic and cysteine rich (SPARC), and osteocalcin. Calcium glucoheptonate treatment did not exert any cytotoxicity on colorectal and renal epithelial cells, indicating the safety of the treatment. This is the first report with evidence for its beneficial effect for pharmaceutical use in addressing calcium deficiency conditions.
Subject(s)

Full text: 1 Collection: 01-internacional Database: MEDLINE Main subject: Osteoblasts / Osteogenesis / Sugar Acids / Cell Survival / Cell Proliferation Limits: Humans Language: En Journal: PLoS One Journal subject: CIENCIA / MEDICINA Year: 2019 Document type: Article Affiliation country: India Country of publication: United States

Full text: 1 Collection: 01-internacional Database: MEDLINE Main subject: Osteoblasts / Osteogenesis / Sugar Acids / Cell Survival / Cell Proliferation Limits: Humans Language: En Journal: PLoS One Journal subject: CIENCIA / MEDICINA Year: 2019 Document type: Article Affiliation country: India Country of publication: United States