Utilization of Nanotechnology to Improve Bone Health in Osteoporosis Exploiting Nigella sativa and Its Active Constituent Thymoquinone

Osteoporosis, a chronic bone disorder, is one of the leading causes of fracture and morbidity risk. Numerous medicinally important herbs have been evaluated for their efficacy in improving bone mass density in exhaustive preclinical and limited clinical studies. L. has been used as local folk medici...

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Veröffentlicht in:Bioengineering (Basel) 2022-11, Vol.9 (11), p.631
Hauptverfasser: Ahmad, Javed, Albarqi, Hassan A, Ahmad, Mohammad Zaki, Orabi, Mohamed A A, Md, Shadab, Bandopadhyay, Ritam, Ahmed, Faraha, Khan, Mohammad Ahmed, Ahamad, Javed, Mishra, Awanish
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Sprache:eng
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Zusammenfassung:Osteoporosis, a chronic bone disorder, is one of the leading causes of fracture and morbidity risk. Numerous medicinally important herbs have been evaluated for their efficacy in improving bone mass density in exhaustive preclinical and limited clinical studies. L. has been used as local folk medicine, and traditional healers have used it to manage various ailments. Its reported beneficial effects include controlling bone and joint diseases. The present manuscript aimed to provide a sound discussion on the pharmacological evidence of and its active constituent, thymoquinone, for its utility in the effective management of osteoporosis. is reported to possess anti-IL-1 and anti-TNF- -mediated anti-inflammatory effects, leading to positive effects on bone turnover markers, such as alkaline phosphatase and tartrate-resistant acid phosphatase. It is reported to stimulate bone regeneration by prompting osteoblast proliferation, ossification, and decreasing osteoclast cells. Thymoquinone from has exhibited an antioxidant effect on bone tissue by reducing the FeNTA-induced oxidative stress. The present manuscript highlights phytochemistry, pharmacological effect, and the important mechanistic perspective of and its active constituents for the management of osteoporosis. Further, it also provides sound discussion on the utilization of a nanotechnology-mediated drug delivery approach as a promising strategy to improve the therapeutic performance of and its active constituent, thymoquinone, in the effective management of osteoporosis.
ISSN:2306-5354
2306-5354
DOI:10.3390/bioengineering9110631