Metabolic bone disorders and the promise of marine osteoactive compounds

被引:7
作者
Carletti, Alessio [1 ,2 ,6 ]
Gavaia, Paulo Jorge [1 ,2 ,3 ]
Cancela, Maria Leonor [1 ,2 ,4 ]
Laize, Vincent [1 ,5 ]
机构
[1] Univ Algarve, Ctr Marine Sci CCMAR, Faro, Portugal
[2] Univ Algarve, Fac Med & Biomed Sci FMCB, Faro, Portugal
[3] Assoc Oceano Verde GreenCoLab, Faro, Portugal
[4] Univ Algarve, Algarve Biomed Ctr ABC, Faro, Portugal
[5] Collaborat Lab Sustainable & Smart Aquaculture S2A, Olhao, Portugal
[6] Max Planck Inst Heart & Lung Res, Dept Dev Genet, Bad Nauheim, Germany
基金
欧盟地平线“2020”;
关键词
Bone erosive disorders; Marine natural compounds; Marine pharmacology; Osteoanabolic compounds; Antiresorptive compounds; Osteoporosis; VITAMIN-D SUPPLEMENTATION; STIMULATES OSTEOBLAST DIFFERENTIATION; PROMOTES OSTEOGENIC DIFFERENTIATION; INDUCED OSTEOCLAST DIFFERENTIATION; RANKL-INDUCED OSTEOCLASTOGENESIS; STEM-CELL TRANSPLANTATION; OVARIECTOMIZED RAT MODEL; PLACEBO-CONTROLLED TRIAL; N-3; FATTY-ACIDS; NF-KAPPA-B;
D O I
10.1007/s00018-023-05033-x
中图分类号
Q5 [生物化学]; Q7 [分子生物学];
学科分类号
071010 ; 081704 ;
摘要
Metabolic bone disorders and associated fragility fractures are major causes of disability and mortality worldwide and place an important financial burden on the global health systems. These disorders result from an unbalance between bone anabolic and resorptive processes and are characterized by different pathophysiological mechanisms. Drugs are available to treat bone metabolic pathologies, but they are either poorly effective or associated with undesired side effects that limit their use. The molecular mechanism underlying the most common metabolic bone disorders, and the availability, efficacy, and limitations of therapeutic options currently available are discussed here. A source for the unmet need of novel drugs to treat metabolic bone disorders is marine organisms, which produce natural osteoactive compounds of high pharmaceutical potential. In this review, we have inventoried the marine osteoactive compounds (MOCs) currently identified and spotted the groups of marine organisms with potential for MOC production. Finally, we briefly examine the availability of in vivo screening and validation tools for the study of MOCs.
引用
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页数:30
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共 303 条
[1]   The Relationship Between Omega-3, Omega-6 and Total Polyunsaturated Fat and Musculoskeletal Health and Functional Status in Adults: A Systematic Review and Meta-analysis of RCTs [J].
Abdelhamid, Asmaa ;
Hooper, Lee ;
Sivakaran, Ruksana ;
Hayhoe, Richard P. G. ;
Welch, Ailsa ;
Abdelhamid, Asmaa ;
Ajabnoor, Sarah ;
Alabdulghafoor, Faye ;
Alkhudairy, Lena ;
Biswas, Priti ;
Brainard, Julii ;
Bridges, Charlene ;
Brown, Tracey J. ;
Deane, Katherine ;
Donaldson, Daisy ;
Hanson, Sarah ;
Hooper, Lee ;
Jimoh, Oluseyi Florence ;
Martin, Nicole ;
O'Brien, Alex ;
Rees, Karen ;
Song, Fujian ;
Thorpe, Gabrielle ;
Wang, Xia ;
Winstanley, Lauren .
CALCIFIED TISSUE INTERNATIONAL, 2019, 105 (04) :353-372
[2]   Reactive Oxygen Species in Osteoclast Differentiation and Possible Pharmaceutical Targets of ROS-Mediated Osteoclast Diseases [J].
Agidigbi, Taiwo Samuel ;
Kim, Chaekyun .
INTERNATIONAL JOURNAL OF MOLECULAR SCIENCES, 2019, 20 (14)
[3]   Dioxinodehydroeckol Enhances the Differentiation of Osteoblasts by Regulating the Expression of Phospho-Smad1/5/8 [J].
Ahn, Byul-Nim ;
Karadeniz, Fatih ;
Kong, Chang-Suk ;
Nam, Ki-Ho ;
Jang, Mi-Soon ;
Seo, Youngwan ;
Kim, Han Seong .
MARINE DRUGS, 2016, 14 (09)
[4]   Salinosporamide A (NPI-0052) potentiates apoptosis, suppresses osteoclastogenesis, and inhibits invasion through down-modulation of NF-κB-regulated gene products [J].
Ahn, Kwang Seok ;
Sethi, Gautam ;
Chao, Ta-Hsiang ;
Neuteboom, Saskia T. C. ;
Chaturvedi, Madan M. ;
Palladino, Michael A. ;
Younes, Anas ;
Aggarwal, Bharat B. .
BLOOD, 2007, 110 (07) :2286-2295
[5]   Amphirionin-5, a novel linear polyketide from a cultured marine dinoflagellate Amphidinium species with a potent cell proliferation-promoting activity [J].
Akakabe, Mai ;
Kumagai, Keiko ;
Tsuda, Masayuki ;
Konishi, Yuko ;
Tominaga, Akira ;
Tsuda, Masashi ;
Fukushi, Eri ;
Kawabata, Jun .
TETRAHEDRON LETTERS, 2014, 55 (24) :3491-3494
[6]   Carbonic Anhydrase II Activators in Osteopetrosis Treatment: A Review [J].
Alkhayal, Zikra ;
Shinwari, Zakia ;
Gaafar, Ameera ;
Alaiya, Ayodele .
CURRENT ISSUES IN MOLECULAR BIOLOGY, 2023, 45 (02) :1373-1386
[7]   Insertion Mutation in Tnfrsf11a Causes a Paget's Disease-Like Phenotype in Heterozygous Mice and Osteopetrosis in Homozygous Mice [J].
Alonso, Nerea ;
Wani, Sachin ;
Rose, Lorraine ;
Van't Hof, Rob J. ;
Ralston, Stuart H. ;
Albagha, Omar M. E. .
JOURNAL OF BONE AND MINERAL RESEARCH, 2021, 36 (07) :1376-1386
[8]   Combination and sequential treatment in women with postmenopausal osteoporosis [J].
Anastasilakis, Athanasios D. ;
Polyzos, Stergios A. ;
Yavropoulou, Maria P. ;
Makras, Polyzois .
EXPERT OPINION ON PHARMACOTHERAPY, 2020, 21 (04) :477-490
[9]   Paget's disease of bone [J].
Appelman-Dijkstra, Natasha M. ;
Papapoulos, Socrates E. .
BEST PRACTICE & RESEARCH CLINICAL ENDOCRINOLOGY & METABOLISM, 2018, 32 (05) :657-668
[10]   Vitamin K Deficiency Bleeding in Infancy [J].
Araki, Shunsuke ;
Shirahata, Akira .
NUTRIENTS, 2020, 12 (03)