1.Osteoporosis Treatment Prescription in Very High-Risk Fracture Population: A Single-Centre Experience
Victoria Wei Fang Boey ; Hwee Ching Tee ; Jin Hui Ho
Journal of the ASEAN Federation of Endocrine Societies 2026;41(S1):69-
Introduction:
Osteoporosis is associated with increased fracture risk,
leading to significant morbidity and mortality. Despite
established clinical guidelines, a substantial gap remains
between recommended and actual prescribing practices.
Patients at very high fracture risk have poorer outcomes
and are recommended to receive anabolic or parenteral
antiresorptive therapies. However, access to these
treatments is limited in Malaysian government hospitals
due to cost constraints.
Methodology:
This retrospective clinical audit evaluated osteoporosis
treatment prescriptions among very high-risk patients
attending the Osteoporosis Endocrine Clinic at Hospital
Queen Elizabeth II from 2020 to 2025. Very high fracture
risk was defined according to the American Association
of Clinical Endocrinologists criteria, including recent
fractures, fractures on therapy, multiple fractures, high fall
risk, glucocorticoid use, very high FRAX probability (>30%
major osteoporotic fracture or >4.5% hip fracture), or very
low bone mineral density (T-score <−3.0).
Results:
A total of 120 patients were included, with a median age
of 68 years (interquartile range [IQR] 62–73). Most were of
Chinese ethnicity (60%, n = 72), with a median body mass
index of 22.6 kg/m² (IQR 19.6–26). Secondary osteoporosis
was present in 70% of patients, commonly due to aromatase
inhibitor use (45%), glucocorticoid-induced osteoporosis
(13.3%), thyroid disorders (10.8%), and vitamin D insufficiency (9.2%). Only 12% of patients (n = 14) received anabolic or parenteral antiresorptive therapy, while 88% (n =
106) were treated with oral alendronate. Among those on
alendronate, 19.8% (n = 21) developed adverse outcomes,
including treatment failure (n = 13), gastrointestinal side
effects (n = 6), and atypical femoral fractures (n = 2).
Conclusion
The uptake of guideline-recommended therapy in very
high-risk osteoporosis patients remains low. A notable proportion of patients treated with oral alendronate
experienced adverse outcomes or suboptimal responses.
Addressing financial and systemic barriers is crucial to
improving access to advanced therapies and optimizing
patient outcomes.
Prescriptions
;
Osteoporosis
2.Severe Osteoporosis with Fragility Fracture Revealing Primary Hyperparathyroidism
Sarojini Devi Simanchalam ; Poh Shean Wong ; Nor Afidah Abdul Karim ; Noor Lita Adam ; Fauzi Azizan
Journal of the ASEAN Federation of Endocrine Societies 2026;41(S1):73-
Introduction:
Primary hyperparathyroidism (PHPT) is frequently asymptomatic or detected incidentally; however, delayed diagnosis may lead to severe skeletal complications. Early recognition is essential, as timely identification and management
of parathyroid disease can prevent significant morbidity,
although diagnosis may be challenging when clinical and
imaging findings are inconclusive.
Case:
A 46-year-old female with severe bilateral hearing impairment presented to the orthopedic clinic with 3 years’ history
of bilateral knee pain and was found to have a right intertrochanteric femur fracture following minimal trauma.
She was referred for evaluation of suspected secondary
osteoporosis. She has had intermittent constipation and
long-standing oligomenorrhea since menarche. There was
no history of childhood fractures or use of medications
affecting bone metabolism. Examination revealed bilateral
knee bowing.
Initial evaluation considered metabolic bone disease, including Paget’s disease; however, skeletal survey showed no
features suggestive of Paget’s disease or multiple myeloma.
Biochemical investigations demonstrated persistent
hypercalcemia (2.65–3.1 mmol/L) with inappropriately
elevated intact parathyroid hormone (peak 7.62 pmol/L),
consistent with PHPT. Serum phosphate was low-normal.
Concomitant vitamin D deficiency (25-OH vitamin D
34.46 nmol/L) improved following replacement. Bone
mineral density confirmed severe osteoporosis (lumbar
spine T-score −5, z-score -4.1); (forearm −6.7, z-score -6.1)
reflecting prolonged untreated disease.
Neck ultrasound demonstrated a mixed solid-cystic
lesion posterior to the right thyroid lobe, suggestive of a
parathyroid adenoma. The TC-99 m Sestamibi scan showed
no definite focal uptake. However, subsequent SPECT-CT
revealed focal tracer uptake at the posterior right thyroid
gland, consistent with a hyperfunctioning parathyroid
gland. Parathyroidectomy was done. Postoperatively, the
calcium level normalized.
Conclusion
Severe osteoporosis and fragility fracture occur, reflecting
prolonged exposure to excess parathyroid hormone and
significant skeletal morbidity. Early biochemical evaluation
in unexplained severe osteoporosis is essential, as timely
diagnosis and definitive management of parathyroid
disease are critical to halt ongoing bone loss and prevent
irreversible complications.
Hyperparathyroidism, Primary
;
Osteoporosis
3.Plastrum Testudinis Stimulates Bone Formation through Wnt/β-catenin Signaling Pathway Regulated by miR-214.
Qing LIN ; Bi-Yi ZHAO ; Xiao-Yun LI ; Wei-Peng SUN ; Hong-Hao HUANG ; Yu-Mei YANG ; Hao-Yu WANG ; Xiao-Feng ZHU ; Li YANG ; Rong-Hua ZHANG
Chinese journal of integrative medicine 2025;31(8):707-716
OBJECTIVE:
To investigate the Wnt signaling pathway and miRNAs mechanism of extracts of Plastrum Testudinis (PT) in the treatment of osteoporosis (OP).
METHODS:
Thirty female Sprague Dawley rats were randomly divided into 5 groups by random number table method, including sham group, ovariectomized group (OVX), ovariectomized groups treated with high-, medium-, and low-dose PT (160, 80, 40 mg/kg per day, respectively), with 6 rats in each group. Except for the sham group, the other rats underwent bilateral ovariectomy to simulate OP and received PT by oral gavage for 10 consecutive weeks. After treatment, bone mineral density was measured by dual-energy X-ray absorptiometry; bone microstructure was analyzed by micro-computed tomography and hematoxylin and eosin staining; and the expressions of osteogenic differentiation-related factors were detected by immunochemistry, Western blot, and quantitative polymerase chain reaction. In addition, Dickkopf-1 (Dkk-1) was used to inhibit the Wnt signaling pathway in bone marrow mesenchymal stem cells (BMSCs) and miRNA overexpression was used to evaluate the effect of miR-214 on the osteogenic differentiation of BMSCs. Subsequently, PT extract was used to rescue the effects of Dkk-1 and miR-214, and its impacts on the osteogenic differentiation-related factors of BMSCs were evaluated.
RESULTS:
PT-M and PT-L significantly reduced the weight gain in OVX rats (P<0.05). PT also regulated the bone mass and bone microarchitecture of the femur in OVX rats, and increased the expressions of bone formation-related factors including alkaline phosphatase, bone morphogenetic protein type 2, collagen type I alpha 1, and runt-related transcription factor 2 when compared with the OVX group (P<0.05 or P<0.01). Meanwhile, different doses of PT significantly rescued the inhibition of Wnt signaling pathway-related factors in OVX rats, and increased the mRNA or protein expressions of Wnt3a, β-catenin, glycogen synthase kinase-3β, and low-density lipoprotein receptor-related protein 5 (P<0.05 or P<0.01). PT stimulated the osteogenic differentiation of BMSCs inhibited by Dkk-1 and activated the Wnt signaling pathway. In addition, the expression of miR-214 was decreased in OVX rats (P<0.01), and it was negatively correlated with the osteogenic differentiation of BMSCs (P<0.01). MiR-214 mimic inhibited Wnt signaling pathway in BMSCs (P<0.05 or P<0.01). Conversely, PT effectively counteracted the effect of miR-214 mimic, thereby activating the Wnt signaling pathway and stimulating osteogenic differentiation in BMSCs (P<0.05 or P<0.01).
CONCLUSION
PT stimulates bone formation in OVX rats through β-catenin-mediated Wnt signaling pathway, which may be related to inhibiting miR-214 in BMSCs.
Animals
;
MicroRNAs/genetics*
;
Female
;
Rats, Sprague-Dawley
;
Wnt Signaling Pathway/genetics*
;
Osteogenesis/genetics*
;
Mesenchymal Stem Cells/cytology*
;
Cell Differentiation/drug effects*
;
Bone Density/drug effects*
;
Ovariectomy
;
Osteoporosis/drug therapy*
;
beta Catenin/metabolism*
;
Rats
;
Intercellular Signaling Peptides and Proteins/metabolism*
;
Drugs, Chinese Herbal/pharmacology*
4.Effect of astragaloside IV on osteogenic differentiation of BMSCs in osteoporotic rats via regulation of miR-21 and inhibition of the Notch signaling pathway.
Jingjing XIAO ; Xiaolan LIU ; Jianying HUANG ; Ben DOU
Journal of Central South University(Medical Sciences) 2025;50(7):1126-1136
OBJECTIVES:
The core pathology of osteoporosis lies in bone resorption exceeding bone formation; thus, promoting osteogenesis is a key therapeutic strategy. The osteogenic differentiation of bone marrow mesenchymal stem cells (BMSCs) forms the biological basis of bone formation. Astragaloside IV (A-IV), a major active component of Astragalus membranaceus, is known to enhance osteogenesis, but its precise molecular mechanisms remain unclear. This study aims to investigate the effects of A-IV on the proliferation and osteogenic differentiation of BMSCs from osteoporotic rats and to elucidate its molecular mechanism through the regulation of microRNA-21 (miR-21) and Notch2 expression.
METHODS:
After 1 week of adaptive feeding, mature female SD rats were randomly divided into a sham-operated (Sham) group (n=4) and an ovariectomized (OVX) group (n=8) to establish an osteoporosis model. Twelve weeks after surgery, BMSCs were isolated from femoral bone marrow and cultured. Cells were divided into a S-BMSCs group (from Sham), an O-BMSCs group (from OVX), and an A-BMSCs group (from OVX-derived BMSCs treated with A-IV). S-BMSCs and O-BMSCs were induced for osteogenic differentiation using osteogenic induction medium, whereas A-BMSCs were treated with A-IV before induction. Flow cytometry was used to identify mesenchymal stem cell surface markers (CD29) and hematopoietic stem cell marker (CD34) to confirm BMSC characteristics. Cell proliferation was assessed using the methyl thiazolyl tetrazolium (MTT) assay. Alizarin red staining was performed to quantify calcium nodule formation, and alkaline phosphatase (ALP) activity assays were used to evaluate osteogenic differentiation. Real-time reverse transcription PCR (real-time RT-PCR) was used to detect changes in osteogenic-related genes, runt-related transcription factor 2 (Runx2) and osteopontin (OPN), as well as miR-21 expression. Western blotting was performed to assess Runx2, OPN, and Notch2 protein expression.
RESULTS:
Flow cytometry confirmed that O-BMSCs retained the phenotypic characteristics of mesenchymal stem cells. A-IV significantly enhanced the proliferation of BMSCs from osteoporotic rats (P<0.05), increased ALP activity, and upregulated the mRNA and protein expression of Runx2 and OPN (P<0.05). Bioinformatic and experimental analyses demonstrated that miR-21 directly targeted Notch2. A-IV treatment increased miR-21 expression while suppressing Notch2 protein expression and inhibiting activation of the Notch signaling pathway (P<0.05).
CONCLUSIONS
Astragaloside IV promotes the osteogenic differentiation of BMSCs derived from osteoporotic rats by upregulating miR-21 expression and inhibiting the key Notch signaling protein Notch2, thereby relieving the Notch2-mediated suppression of osteogenesis.
Animals
;
Triterpenes/pharmacology*
;
Saponins/pharmacology*
;
Osteogenesis/drug effects*
;
MicroRNAs/metabolism*
;
Rats, Sprague-Dawley
;
Female
;
Cell Differentiation/drug effects*
;
Mesenchymal Stem Cells/drug effects*
;
Signal Transduction/drug effects*
;
Osteoporosis/pathology*
;
Rats
;
Cells, Cultured
;
Receptor, Notch2/metabolism*
;
Receptors, Notch/metabolism*
;
Ovariectomy
;
Cell Proliferation/drug effects*
5.SP7 transcription factor ameliorates bone defect healing in low-density lipoprotein receptor-related protein 5 (LRP5)-dependent osteoporosis mice.
Yue XI ; Qifeng JIANG ; Wei DAI ; Chaozhen CHEN ; Yang WANG ; Xiaoyan MIAO ; Kaichen LAI ; Zhiwei JIANG ; Guoli YANG ; Ying WANG
Journal of Zhejiang University. Science. B 2025;26(3):254-268
Loss-of-function variants of low-density lipoprotein receptor-related protein 5 (LRP5) can lead to reduced bone formation, culminating in diminished bone mass. Our previous study reported transcription factor osterix (SP7)-binding sites on the LRP5 promoter and its pivotal role in upregulating LRP5 expression during implant osseointegration. However, the potential role of SP7 in ameliorating LRP5-dependent osteoporosis remained unknown. In this study, we used mice with a conditional knockout (cKO) of LRP5 in mature osteoblasts, which presented decreased osteogenesis. The in vitro experimental results showed that SP7 could promote LRP5 expression, thereby upregulating the osteogenic markers such as alkaline phosphatase (ALP), Runt-related transcription factor 2 (Runx2), and β-catenin (P<0.05). For the in vivo experiment, the SP7 overexpression virus was injected into a bone defect model of LRP5 cKO mice, resulting in increased bone mineral density (BMD) (P<0.001) and volumetric density (bone volume (BV)/total volume (TV)) (P<0.001), and decreased trabecular separation (Tb.Sp) (P<0.05). These data suggested that SP7 could ameliorate bone defect healing in LRP5 cKO mice. Our study provides new insights into potential therapeutic opportunities for ameliorating LRP5-dependent osteoporosis.
Animals
;
Low Density Lipoprotein Receptor-Related Protein-5/metabolism*
;
Osteoporosis/genetics*
;
Mice
;
Mice, Knockout
;
Sp7 Transcription Factor/physiology*
;
Osteogenesis
;
Bone Density
;
Osteoblasts/metabolism*
;
Core Binding Factor Alpha 1 Subunit/metabolism*
;
Mice, Inbred C57BL
;
beta Catenin/metabolism*
6.Philippine clinical practice guidelines on screening, diagnosis, management and prevention of primary osteoporosis and fragility fractures among postmenopausal women and older men.
Julie LI-YU ; Angela SISON-AGUILAR ; Irewin TABU ; Joy BAUTISTA ; Eunice Victoria CO ; Seurinane Sean ESPAÑOLA ; Maria Eizelle FERNANDEZ ; Julie GABAT-TAN ; Tricia GUISON-BAUTISTA ; Lenore LUGUE-LIZARDO ; Eva Irene MAGLONZO ; Edmund MARTINEZ ; Daisy MEDINA ; Queenie NGALOB-SAMONTE ; Nathaniel ORILLAZA JR. ; Mary Ruth PADUA ; Joseph PATRICIO ; Jonathan RONQUILLO ; Ma. Carissa Abigail ROXAS-PANUDA ; Hannah URBANOZO-CORPUZ ; Angeli WYSON-WONG ; Irvin PARADA
Journal of the ASEAN Federation of Endocrine Societies 2025;40(2):18-26
BACKGROUND
This first clinical practice guideline (CPG) on osteoporosis prevention and management in the Philippines is the output of a shared undertaking by a multidisciplinary CPG development team spearheaded by the Osteoporosis Society of the Philippines Foundation, Inc. and joined by the Philippine Academy of Family Physicians; the Philippine College of Endocrinology, Diabetes, and Metabolism; the Philippine Orthopedic Association; the Philippine Obstetrics and Gynecological Society and the Philippine Rheumatology Association. This guideline seeks to augment and update the "Consensus statements on osteoporosis diagnosis, prevention and management in the Philippines," initially published in 2011, incorporating evidence-based practices developed in the last decade.
METHODOLOGYThe steering committee formulated and prioritized clinical questions based on meetings and stakeholder consultations. A PICO (population, intervention, comparator, outcome) format was used to develop clinical questions and guide the systematic search for evidence. The development of guidelines followed the ADAPTE process. Once completed, panel discussions were done using the Evidence to Decision Framework. After the panel discussions, the final recommendations were revised.
RESULTSThirty-four recommendations were formulated to address 27 clinical questions related to screening, prevention, diagnosis, pharmacologic and nonpharmacologic treatment, surgical management, follow-up, and continuity of care. With these recommendations, the developers aim to establish a standard of care in the prevention, diagnosis and management of osteoporosis and fragility fractures in both in-patient and out-patient cases that are appropriate to the Philippine context. Specifically, the CPG development group aims to use these recommendations to define the standard of care for osteoporosis as part of universal healthcare services once the program is implemented nationally. Relevant stakeholders may also use the recommendations to inform public and private payor policies for patients with fragility fractures, as well as by local government units or private companies looking to establish orthogeriatric centers with fracture liaison services.
CONCLUSIONThis guideline is helpful for physicians and other allied health personnel in screening, diagnosis, management and prevention of primary osteoporosis and fragility fractures among postmenopausal women and older men.
Human ; Philippines ; Guideline ; Osteoporosis
7.Association between bone mineral density and vascular health in rheumatoid arthritis.
Chuanhui XU ; Yi Wye LAI ; Shih-Huan CHOU ; Xiaoe ZHANG ; Ee Tzun KOH ; Rinkoo DALAN ; Khai Pang LEONG
Singapore medical journal 2025;66(3):147-153
INTRODUCTION:
Rheumatoid arthritis (RA) is associated with heightened cardiovascular disease and increased susceptibility to osteoporosis, with shared underlying mechanisms. This study aimed to investigate the association between vascular function and bone mineral density (BMD).
METHODS:
We conducted a cross-sectional study of 49 patients with RA at Tan Tock Seng Hospital, Singapore. Endothelial function was measured as reactive hyperaemia index (RHI)-endothelial peripheral arterial tonometry and aortic stiffness as carotid-femoral pulse wave velocity (cf-PWV) using SphygmoCor. Univariable and multivariable linear regression analyses were performed to evaluate the associations between BMD and vascular function. We used natural logarithm RHI (lnRHI) and cf-PWV as response variables, and each BMD as covariate, adjusting for body mass index, positive anti-cyclic citrullinated peptide, cumulative prednisolone dose, hydroxychloroquine use and Systematic COronary Risk Evaluation 2.
RESULTS:
We recruited 49 patients (mean age 61.08 ± 8.20 years), of whom 44 (89.80%) were women and 39 (81.25%) were Chinese. Significant associations were found between lnRHI and BMD at the lumbar spine (β = 0.4289, P = 0.037) and total hip (β = 0.7544, P = 0.014) in univariable analyses. Multivariable analyses confirmed these associations, showing that lower BMD at the lumbar spine (β = 0.7303, P = 0.001), femoral neck (β = 0.8694, P = 0.030) and total hip (β = 0.8909, P = 0.010) were significantly associated with worse lnRHI. No significant associations were found between BMD and cf-PWV.
CONCLUSION
Lower BMD is associated with endothelial dysfunction, but not aortic stiffness in patients with RA. Further longitudinal studies are needed to confirm these associations and understand the underlying mechanisms.
Humans
;
Arthritis, Rheumatoid/complications*
;
Female
;
Male
;
Bone Density
;
Middle Aged
;
Cross-Sectional Studies
;
Vascular Stiffness
;
Aged
;
Singapore
;
Pulse Wave Analysis
;
Osteoporosis/complications*
;
Endothelium, Vascular/physiopathology*
;
Cardiovascular Diseases/complications*
;
Carotid-Femoral Pulse Wave Velocity
;
Hyperemia
8.Study on mechanism of Yourenji Capsules in improving osteoporosis based on network pharmacology and proteomics.
Yun-Hang GAO ; Han LI ; Jian-Liang LI ; Ling SONG ; Teng-Fei CHEN ; Hong-Ping HOU ; Bo PENG ; Peng LI ; Guang-Ping ZHANG
China Journal of Chinese Materia Medica 2025;50(2):515-526
This study aimed to explore the pharmacological mechanism of Yourenji Capsules(YRJ) in improving osteoporosis by combining network pharmacology and proteomics technologies. The SD rats were randomly divided into a blank control group and a 700 mg·kg~(-1) YRJ group. The rats were subjected to gavage administration with the corresponding drugs, and the blank serum, drug-containing serum, and YRJ samples were compared using ultra performance liquid chromatography-quadrupole time-of-flight tandem mass spectrometry(UPLC-Q-TOF-MS/MS) to analyze the main components absorbed into blood. Network pharmacology analysis was conducted based on the YRJ components absorbed into blood to obtain related targets of the components and target genes involved in osteoporosis, and Venn diagrams were used to identify the intersection of drug action targets and disease targets. The STRING database was used for protein-protein interaction(PPI) network analysis of potential target proteins to construct a PPI network. Gene Ontology(GO) functional enrichment and Kyoto Encyclopedia of Genes and Genomes(KEGG) pathway enrichment were performed using Enrichr to investigate the potential mechanism of action of YRJ. Ovariectomy(OVX) was performed to establish a rat model of osteoporosis, and the rats were divided into a sham group, a model group, and a 700 mg·kg~(-1) YRJ group. The rats were given the corresponding drugs by gavage. The femurs of the rats were subjected to label-free proteomics analysis to detect differentially expressed proteins, and GO functional enrichment and KEGG pathway enrichment analyses were performed on the differentially expressed proteins. With the help of network pharmacology and proteomics results, the mechanism by which YRJ improves osteoporosis was predicted. The analysis of the YRJ components absorbed into blood revealed 23 bioactive components of YRJ, and network pharmacology results indicated that key targets involved include tumor necrosis factor(TNF), tumor protein p53(TP53), protein kinase(AKT1), and matrix metalloproteinase 9(MMP9). These targets are mainly involved in osteoclast differentiation, estrogen signaling pathways, and nuclear factor-kappa B(NF-κB) signaling pathways. Additionally, the proteomics analysis highlighted important pathways such as peroxisome proliferator-activated receptor(PPAR) signaling pathways, mitogen-activated protein kinase(MAPK) signaling pathways, and β-alanine metabolism. The combined approaches of network pharmacology and proteomics have revealed that the mechanism by which YRJ improves osteoporosis may be closely related to the regulation of inflammation, osteoblast, and osteoclast metabolic pathways. The main pathways involved include the NF-κB signaling pathways, MAPK signaling pathways, and PPAR signaling pathways, among others.
Animals
;
Drugs, Chinese Herbal/administration & dosage*
;
Osteoporosis/metabolism*
;
Proteomics
;
Rats
;
Rats, Sprague-Dawley
;
Network Pharmacology
;
Female
;
Protein Interaction Maps/drug effects*
;
Capsules
;
Humans
;
Signal Transduction/drug effects*
9.Era value and new directions of traditional Chinese medicine in preventing and treating osteoporosis from perspective of "bone health program".
Yi-Li ZHANG ; Chuan-Rui SUN ; Kai SUN ; Ai-Li XU ; Hao SHEN ; He YIN ; Ling-Hui LI ; Li-Guo ZHU ; Xu WEI
China Journal of Chinese Materia Medica 2025;50(3):569-574
Facing the requirements of promoting the healthy China initiative and improving people's health, the "bone health program" was proposed in 2024. In-depth development of a traditional Chinese medicine(TCM) prevention and control system is of strategic significance to the implementation of the "bone health program". Focusing on osteoporosis(OP), a representative disease affecting people's bone health, this paper concludes that accelerating the research on the prevention and control of OP by TCM is conducive to enhancing the knowledge and awareness of OP among the public, and it is beneficial to revealing the evolutionary pattern of OP and improving the understanding and management of this disease. Additionally, it can provide an overall framework for and strengthen the systematicity and completeness of the research on the prevention and treatment of OP by TCM. Meanwhile, it can help to explore new research paradigms and optimize the existing research model, so as to promote innovative breakthroughs in the prevention and treatment of bone health-related diseases by TCM. Under the overall layout of the "bone health program", importance should be attached to the early prevention and the innovation of very early diagnosis and intervention of OP. Emphasis should be put on the discovery of the target network of disease and treatment mechanism for revealing the core pathogenesis of OP and the therapeutic mechanism of TCM. In addition to local lesions of the bone and its clinical outcomes, attention should be paid to the development of multiple metabolic complications. The fusion of advanced interdisciplinary technologies should be promoted for OP and its complications, and thus a research and development system based on clinical application scenarios and driven by big data can be built. The measures above will facilitate the progress in the prevention and treatment of OP and other bone diseases by TCM and provide new momentum for enriching and deepening the research connotation of the "bone health program".
Osteoporosis/therapy*
;
Humans
;
Medicine, Chinese Traditional/methods*
;
Drugs, Chinese Herbal/therapeutic use*
;
China
;
Bone and Bones/drug effects*
10.Influence of iron metabolism on osteoporosis and modulating effect of traditional Chinese medicine.
Yi-Li ZHANG ; Bao-Yu QI ; Chuan-Rui SUN ; Xiang-Yun GUO ; Shuang-Jie YANG ; Ping LIU ; Xu WEI
China Journal of Chinese Materia Medica 2025;50(3):575-582
Recent studies have shown that an imbalance in iron metabolism can affect the composition and microstructural changes of bone, disrupting bone homeostasis and leading to osteoporosis(OP). The imbalance in iron metabolism, along with its induced local abnormal microenvironment and cellular iron death, has become a new focal point in OP research, drawing increasing attention from the academic community regarding the regulation of iron metabolism to prevent and manage OP. From the perspective of traditional Chinese medicine(TCM), iron metabolism imbalance has potential connections to TCM theories regarding internal organs, as well as treatments aimed at tonifying the kidney, strengthening the spleen, and activating blood circulation. Evidence is continually emerging that TCMs and effective components that tonify the kidney, strengthen the spleen, and activate blood circulation can prevent and manage OP by regulating iron metabolism. This article analyzes the relationship between iron and bone, as well as the effects of TCM formulations on improving iron metabolism and influencing bone metabolism, from the perspectives of iron metabolism mechanisms and TCM interventions, aiming to broaden existing clinical strategies for prevention and treatment and inject new momentum into the field of OP as it moves into a new era.
Osteoporosis/drug therapy*
;
Humans
;
Iron/metabolism*
;
Drugs, Chinese Herbal/pharmacology*
;
Animals
;
Medicine, Chinese Traditional
;
Bone and Bones/drug effects*


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