Skip to content

Antimicrobial Synthetic Bone Grafts

The Use of Antimicrobial Synthetic Bone Grafts in the Treatment of Bone Infection

Status
Completed
Phases
Phase 1Phase 2
Study type
Interventional
Source
ClinicalTrials.gov
Registry ID
NCT03945864
Enrollment
12
Registered
2019-05-10
Start date
2019-06-01
Completion date
2021-08-15
Last updated
2022-07-29

For informational purposes only — not medical advice. Sourced from public registries and may not reflect the latest updates. Terms

Conditions

Bone Graft Infection, Bone Infection

Brief summary

This project aims to produce synthetic bone tissue graft that supports bone regeneration and combats infection simultaneously, according to industry standards and regulations. This original and high value added biomaterial silver doped calcium phosphate based synthetic bone tissue will be used in clinical trials in patients with osteomyelitis and implant-related infections for the treatment. Chronic bone infections are one of the most important problems in orthopedic surgery and are not just a problem of developed societies. When open fracture cases, which may get infected in 1-50%, implant-related infections and diabetic foot ulcer cases are taken into consideration, osteomyelitis will be seen as a very common problem all over the world. Multiple surgeries, long-term use of antibiotics and the high costs affects all societies. The use of synthetic bone grafts is growing faster than the natural bone grafts in the world. USA has spent 246 million US dollars for the use of synthetic bone graft in 2010. For the treatment of bone infections antibiotic impregnated synthetic bone grafts with different characteristics are used. Although these antibiotic impregnated synthetic bone grafts are superior compared to antibiotic bone cement with the implementation of different antibiotics and to be absorbable but they cannot show optimum benefit because the release of antibiotics is not due to host matrix degradation but diffusion control. The other issue to be considered as this regard that the development of microbial resistance to these antibiotics which is also a serious problem. Innovative synthetic bone graft with better contribution of the needs of mechanical properties, depending on the applied bone region, optimized antimicrobial activity and bone tissue regeneration are needed. In this study, it will be determined whether this silver ion -doped antimicrobial synthetic bone graft that has the capacity to fill the bone voids that may occur in chronic bone infection during disease process or after surgical debridement, also has the capacity to treat the infection in the bone will be used in 12 patients who had been diagnosed as chronic osteomyelitis to see if it cause any unwanted side effect in normal usage conditions and generates unacceptable risks. Clinical, laboratory and radiological investigations will be used to demonstrate the healing of the infections and the cavities in the bone. Blood and urine levels of silver will be detected from patients. Antimicrobial activity of silver is well-known. The effectiveness of the silver and potential toxicity is related to the dose of silver and application form. In orthopedics, the use of silver is mostly limited to elemental silver coating of metal implants. There is no biotechnologic approach manufactured silver ion -doped calcium phosphate -based synthetic bone graft in the health sector yet. Ionic silver has advantages such as low toxicity, no tolerance of silver against bacteria, and strong antibacterial activity. The trapping of silver ions in the calcium phosphate based ceramic structure overcomes the other systems with its controlled release and its ability to be effective at minimum doses. The project is an original work since it will contribute to bone regeneration while at the same time removing the infection.

Interventions

DEVICEantimicrobial synthetic bone graft

It will be determined whether the silver ion-doped antimicrobial synthetic bone graft that has the capacity to fill the bone voids also has the capacity to treat the infection in the bone in 12 patients with chronic osteomyelitis

DEVICEparentaral antimicrobials and pure bone grafts

Historical data of the department will be used for comparison of the results

Sponsors

Eskisehir Osmangazi University
Lead SponsorOTHER

Study design

Allocation
NON_RANDOMIZED
Intervention model
PARALLEL
Primary purpose
TREATMENT
Masking
NONE

Intervention model description

experimental group will be compared with parental antibiotics group

Eligibility

Sex/Gender
ALL
Age
18 Years to 90 Years
Healthy volunteers
No

Inclusion criteria

* Patients with chronic osteomyelitis, infected non-union or implant-associated infection with an indication for artificial bone grafting who read and accept the Informed consent. * Male and female patients older than 18 years * Patients without heart, lung, renal or hepatic failure, epilepsy, cerebrovascular attack or ischemia * Patients who are not allergic to antibiotics * Patients with additional immunosuppression such as malignancy, diabetes mellitus, poly travma and open fractures * Patients using oral or parenteral corticosteroids, methotrexate, cyclosporine or other immunosuppressive drugs

Exclusion criteria

* Patients who have not accepted the method. * Patients outside the working age range * Pregnant women * Patients with heart, lung, renal, hepatic failure, epilepsy, cerebrovascular attack or ischemia * Patients with allergy to antibiotics * Patients with another silvery implant in the body like a silver-coated implant * Patients with a history of known allergies or hypersensitivity to silver

Design outcomes

Primary

MeasureTime frameDescription
bony healing of the cavities in the bone12 monthsNumber of Participants with bony healing of the cavities in the bone by x-ray

Countries

Turkey (Türkiye)

Outcome results

None listed

Source: ClinicalTrials.gov · Data processed: Feb 4, 2026