Disease-Modifying Adjunctive Therapy of Osteopenia and Osteoporosis with a Multimineral Marine Extract, LithoLexal® Bone

Author:

O’Gorman Denise M.1,Naderi Zahra2,Yeganeh Ali3,Malboosbaf Ramin4ORCID,Eriksen Erik Fink5

Affiliation:

1. Marigot Ltd., Carrigaline Co., P43 E409 Cork, Ireland

2. Obstetrics and Gynaecology Department, Iran University of Medical Sciences, Tehran 1449614535, Iran

3. Trauma and Injury Research Centre, Rasool Akram Hospital, Iran University of Medical Sciences, Tehran 1449614535, Iran

4. Endocrine Research Centre, Institute of Endocrinology and Metabolism, Iran University of Medical Sciences, Tehran 1449614535, Iran

5. Spesialistsenteret Pilestredet Park and Department of Odontology, University of Oslo, 0315 Oslo, Norway

Abstract

There is evidence to suggest that restoration of major/rare biominerals by supplementation can produce osteogenic and anti-resorptive effects in humans. LithoLexal® is a natural extract harvested from a marine alga, Lithothamnion sp., with a porous microstructure and multimolecular composition rich in calcium (32% w/w) and magnesium (2.2% w/w) together with ~72 trace bioelements. In vitro, LithoLexal® demonstrated cellular-level osteogenic efficacy through enhancing the maturation and activity of pre-osteoblasts. This extract also expressed the ability to suppress osteoclastogenesis by downregulating the pro-resorptive cytokines TNF-α and IL-1β and the master regulator of inflammation NF-κB. Parathyroid hormone inhibition of parathyroid hormone secretion is another bioactivity of LithoLexal® Bone reported with both short- and long-term administration at a longer duration and higher magnitude than what calcium carbonate could induce. Due to these bioactivities that affect pathogenetic factors of osteoporosis, LithoLexal® Bone is referred to as a disease-modifying adjunctive therapy (DMAT). In postmenopausal animal models, LithoLexal® monotherapy preserved bone mineral density, microarchitecture, and biomechanical properties, while calcium carbonate failed to produce significant outcomes. The pro-resorptive effect of a high-fat diet was also efficiently counteracted in vivo by supplementary LithoLexal®. A large clinical trial on postmenopausal women verified the mitigating effects of LithoLexal® Bone on bone resorption and turnover rate. The characteristic composition of LithoLexal® together with its lattice microstructure are suggested to underlie its in vivo bioactivities. In conclusion, adjunctive therapy with LithoLexal® Bone is an attractive option for clinical prevention and treatment of osteopenia/osteoporosis.

Funder

Nordic Medical Ltd.

Publisher

MDPI AG

Subject

General Medicine

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