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1.
Int J Orthop Trauma Nurs ; 52: 101078, 2024 Feb.
Article in English | MEDLINE | ID: mdl-38103456

ABSTRACT

OBJECTIVE: Many studies have reported conflicting results for the use of tramadol with the risk of fractures, especially hip fractures. This systematic review and meta-analysis study aimed to evaluate the association of tramadol use versus codeine use with the risk of hip fracture for the first time. METHODS: PubMed, Scopus, Google Scholar, and Web of Science databases were searched with specific keywords to find studies that examined the association of tramadol use with hip fracture risk in patients with osteoarthritis up to May 2023. The risk of hip fracture secondary to tramadol versus codeine use was estimated based on age and sex. This systematic review was conducted based on the PRISMA checklist. Heterogeneity between studies was evaluated using Cochran's Q and I2 tests. Egger's test was used to check publication bias. The Newcastle-Ottawa Checklist (NOS) was used to assess the quality of the studies. FINDINGS: Ten studies with 1,939,293 participants were reviewed. The majority of participants were female. Based on the study evaluation checklist, most studies were of good quality. Tramadol use significantly increases the overall risk of hip fracture. (HR: 1.32, 95% CI: 1.14, 1.51, P: 0.001, I2:19.3%) Tramadol use significantly increases the risk of hip fracture in men (HR: 1.48, 95% CI: 1.24, 1.73, P: 0.001 I2:35%) and age ≤65 years (HR: 1.63, 95% CI: 1.45, 1.80, P: 0.001, I2:0%). CONCLUSION: The use of tramadol significantly increases the risk of hip fracture. This increased risk of hip fracture was greater in males younger than 65 years.


Subject(s)
Hip Fractures , Osteoarthritis , Tramadol , Humans , Codeine , Hip Fractures/chemically induced , Osteoarthritis/drug therapy , Tramadol/adverse effects , Observational Studies as Topic
2.
Artif Cells Nanomed Biotechnol ; 46(7): 1314-1330, 2018 Nov.
Article in English | MEDLINE | ID: mdl-29043857

ABSTRACT

Magnetic carbon nanotubes (MCNTs) have been widely studied for their potential applications in medicine, diagnosis, cell biology, analytical chemistry, and environmental technology. Introduction of MCNTs paved the way for the emergence of new approaches in nanobiotechnology and biomedicine as a result of their multifarious properties embedded within either the carbon nanotubes (CNTs) or magnetic parts. Numerous preparation techniques exists for functionalizing CNTs with magnetic nanoparticles, and these versatile strategies lay the ground for the generation of novel and versatile systems which are applicable to many industries and biological areas. Here, we review and discuss the recent papers dealing with MCNTs and their application in biomedical and industrial fields.


Subject(s)
Biocompatible Materials/chemistry , Magnetic Phenomena , Nanomedicine/methods , Nanotubes, Carbon/chemistry , Physical Phenomena , Animals , Biocompatible Materials/metabolism , Humans
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