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Treatment With Zoledronic Acid Subsequent to Denosumab in Osteoporosis

Treatment With Zoledronic Acid Subsequent to Denosumab in Osteoporosis

Status
Completed
Phases
Phase 4
Study type
Interventional
Source
ClinicalTrials.gov
Registry ID
NCT03087851
Acronym
ZOLARMAB
Enrollment
61
Registered
2017-03-23
Start date
2017-03-13
Completion date
2020-08-01
Last updated
2021-02-21

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

Conditions

Osteoporosis

Keywords

Denosumab, Bone turnover markers, Bone mineral density

Brief summary

Denosumab is an antibody against receptor-activator of nuclear factor kappa-B ligand that prevents recruitment and differentiation of mature osteoclasts. Treatment markedly decrease bone resorption and fracture risk, and many patients will reach osteopenic bone mineral density (BMD) levels on treatment with denosumab. The treatment effect on bone turnover and BMD has, however, been demonstrated to be reversible. This study will show if the bone mass can be maintained by administrating zoledronic acid and if timing of the first dose of zoledronic acid after last dose of denosumab matters.

Detailed description

Background: Denosumab is an antibody against receptor-activator of nuclear factor kappa-B ligand that prevents recruitment and differentiation of osteoclasts. Treatment decreases bone resorption and fracture risk. After discontinuation, however, bone resorption increases and the bone mass gained during 2 years of therapy is lost within 1 year. At present denosumab treatment is considered to be life-long. Aim: To investigate if infusion of zoledronic acid can prevent increases in bone turnover and bone loss in patients previously treated with denosumab and if there is difference between infusing zoledronic acid at six or nine months after the last injection of denosumab or when bone turnover is increased. Methods: A randomized open label, interventional study in 60 patients investigating if treatment with zoledronic acid prevents bone loss after denosumab treatment when administrated six or nine months after last injection of deno-sumab or when bone turnover is increased. Forty patients will be allocated to the two intervention groups and 20 patients will be followed without treatment for up to 12 months after the last denosumab treatment. The patients in the observation group and the nine months group will be monitored monthly and if s-carboxy-terminal collagen cross-links (s-CTX) increases above 1.26ug/l (50% above the normal range for postmenopausal women and elderly men) infusion of zoledronic acid will be administered. Furthermore, a DXA scan (lumbar spine and hip sites) will be performed after three months in the observation group. If BMD has decreased more than 5% at any site, infusion of zoledronic acid will be administered. Finally, if a patient in the 9 months group or the in the observation group suffers an osteoporotic clinical vertebral or hip fracture, infusion of zoledronic acid will be administered. The patients will be monitored with DXA 6, 12 and 24 months after the infusion of zoledronic acid. Zoledronic acid will be re-administered if BMD has decreased more than 5% at the lumbar spine, total hip or femoral neck. If s-CTX in-creases above 1.26 ug/l during the 2nd year a second infusion of zoledronic acid will be administered. Perspectives: Many patients will reach osteopenic BMD levels on treatment with denosumab, however the treatment effect on bone turnover and BMD has been demonstrated to be reversible and it is therefore important to find out if denosumab treatment can be discontinued and bone mass maintained by other measures. This study will show if the bone mass can be maintained by administrating zoledronic acid and if timing of the first dose of zoledronic acid after last dose of denosumab matters. If bone loss can be prevented by zoledronic acid expenses on otherwise life-long denosumab treatment can be saved and long-term side effects of denosumab (atypical femur fractures and osteone-crosis of the jaw) can be prevented.

Interventions

DRUGZoledronic Acid

Intravenous infusion of 5 mg zoledronic acid

Sponsors

University of Aarhus
CollaboratorOTHER
Amgen
CollaboratorINDUSTRY
Aarhus University Hospital
Lead SponsorOTHER

Study design

Allocation
RANDOMIZED
Intervention model
PARALLEL
Primary purpose
PREVENTION
Masking
NONE

Eligibility

Sex/Gender
ALL
Age
50 Years to No maximum
Healthy volunteers
No

Inclusion criteria

* Postmenopausal women (postmenopausal for at least two years) * Men above 50 years * Treatment for at least two years with denosumab * Last denosumab injection less than five months ago

Exclusion criteria

* Low-energy vertebral fracture at any time * Low-energy hip fracture within the last 12 months * BMD T-score \< -2,5 (lumbar spine, total hip or femoral neck) * Alendronate treatment for more than three years prior to denosumab treatment * Ongoing treatment with glucocorticoids * Metabolic bone disease * Hormone replacement therapy * Cancer * Estimated glomerular filtration rate (eGFR) \< 35 mL/min * Allergy to zoledronic acid * Hypocalcaemia * Contraindications for zoledronic acid according to the SPC

Design outcomes

Primary

MeasureTime frameDescription
Change in Lumbar Spine BMD From Baseline to 6 Months After the Zoledronic Acid Infusion.baseline to 6 months after the zoledronic acid infusionChange in lumbar spine BMD from baseline to 6 months after the zoledronic acid infusion.
Number of Participants Who Fail to Maintain BMD2 years after the first ZOL treatmentFailure is defined as ≥ 3 % BMD loss at the lumbar spine

Secondary

MeasureTime frameDescription
Changes in Cortical Porosity Measured by High-resolution Peripheral Quantitative Computed Tomography (HR-pQCT) Scan at the Radius and Tibia From Baseline to One Year After the Zoledronic Acid Infusion.from baseline to one year after the zoledronic acid infusion.Changes in cortical porosity measured by high-resolution peripheral quantitative computed tomography (HR-pQCT) scan at the radius and tibia from baseline to one year after the zoledronic acid infusion.
Changes in p-CTX From Baseline to Six Months After the Zoledronic Acid Infusion.from baseline to six months after the zoledronic acid infusion.Changes in p-CTX from baseline to six months after the zoledronic acid infusion.
Changes in BMD From Baseline to One Year After the Zoledronic Acid Infusion.from baseline to one year after the zoledronic acid infusionChanges in lumbar spine BMD from baseline to one year after the zoledronic acid infusion.
Morphometric Vertebral Fractures Assessed by Vertebral Fracture Assessment (VFA) One and Two Years After the Zoledronic Acid Infusion.one and two years after the zoledronic acid infusion.Morphometric vertebral fractures assessed by vertebral fracture assessment (VFA) one and two years after the zoledronic acid infusion.
Changes in p-CTX From Baseline to 12 Months After the Zoledronic Acid Infusion.from baseline to 12 months after the zoledronic acid infusion.Changes in p-CTX from baseline to 12 months after the zoledronic acid infusion.
Changes in BMD From Baseline to Two Years After the Zoledronic Acid Infusion.from baseline to two years after the zoledronic acid infusion.Changes in lumbar spine BMD from baseline to two years after the zoledronic acid infusion.

Countries

Denmark

Participant flow

Recruitment details

We recruited participants from the Department of Endocrinology, Aarhus University Hospital, Denmark and via advertisements in newspapers and online. The Danish Health Data Authority provided two data extractions, with information on patients living in the Central Region of Denmark, who had redeemed a minimum of 5 prescriptions for denosumab (DMAB) within the last 3 years.

Participants by arm

ArmCount
6-month Group
Treated with zoledronate 5 mg
20
9-months Group
Treated with zoledronate 5 mg
20
Observation Group
Treated with zoledronate 5 mg
21
Total61

Withdrawals & dropouts

PeriodReasonFG000FG001FG002
Overall StudyWithdraw on medical grounds012

Baseline characteristics

Characteristic6-month Group9-months GroupObservation GroupTotal
Age, Categorical
<=18 years
0 Participants0 Participants0 Participants0 Participants
Age, Categorical
>=65 years
12 Participants8 Participants14 Participants34 Participants
Age, Categorical
Between 18 and 65 years
8 Participants12 Participants7 Participants27 Participants
Age, Continuous68 years
STANDARD_DEVIATION 8
65 years
STANDARD_DEVIATION 7
69 years
STANDARD_DEVIATION 9
68 years
STANDARD_DEVIATION 8
Ethnicity (NIH/OMB)
Hispanic or Latino
0 Participants0 Participants0 Participants0 Participants
Ethnicity (NIH/OMB)
Not Hispanic or Latino
20 Participants20 Participants21 Participants61 Participants
Ethnicity (NIH/OMB)
Unknown or Not Reported
0 Participants0 Participants0 Participants0 Participants
Lumbar spine BMD0,880 g/cm^2
STANDARD_DEVIATION 0.055
0,878 g/cm^20,871 g/cm^20,876 g/cm^2
Sex: Female, Male
Female
18 Participants17 Participants19 Participants54 Participants
Sex: Female, Male
Male
2 Participants3 Participants2 Participants7 Participants

Adverse events

Event typeEG000
affected / at risk
EG001
affected / at risk
EG002
affected / at risk
deaths
Total, all-cause mortality
0 / 200 / 200 / 21
other
Total, other adverse events
18 / 2018 / 2020 / 21
serious
Total, serious adverse events
0 / 201 / 204 / 21

Outcome results

Primary

Change in Lumbar Spine BMD From Baseline to 6 Months After the Zoledronic Acid Infusion.

Change in lumbar spine BMD from baseline to 6 months after the zoledronic acid infusion.

Time frame: baseline to 6 months after the zoledronic acid infusion

Population: Change in lumbar spine BMD from baseline to 6 months after the zoledronic acid infusion.

ArmMeasureValue (MEAN)Dispersion
6-month GroupChange in Lumbar Spine BMD From Baseline to 6 Months After the Zoledronic Acid Infusion.-2.1 percentage changeStandard Error 0.9
9-months GroupChange in Lumbar Spine BMD From Baseline to 6 Months After the Zoledronic Acid Infusion.-4.3 percentage changeStandard Error 1.1
Observation GroupChange in Lumbar Spine BMD From Baseline to 6 Months After the Zoledronic Acid Infusion.-3.0 percentage changeStandard Error 1.1
Primary

Number of Participants Who Fail to Maintain BMD

Failure is defined as ≥ 3 % BMD loss at the lumbar spine

Time frame: 2 years after the first ZOL treatment

Population: Number of Participants Who Fail to Maintain lumbar spine BMD from baseline to 24 months after the first ZOL

ArmMeasureValue (NUMBER)
6-month GroupNumber of Participants Who Fail to Maintain BMD10 participants
9-months GroupNumber of Participants Who Fail to Maintain BMD5 participants
Observation GroupNumber of Participants Who Fail to Maintain BMD6 participants
Secondary

Changes in BMD From Baseline to One Year After the Zoledronic Acid Infusion.

Changes in lumbar spine BMD from baseline to one year after the zoledronic acid infusion.

Time frame: from baseline to one year after the zoledronic acid infusion

Population: Changes in lumbar spine BMD from baseline to one year after the zoledronic acid infusion.

ArmMeasureValue (MEAN)Dispersion
6-month GroupChanges in BMD From Baseline to One Year After the Zoledronic Acid Infusion.-4.8 percentage changeStandard Error 0.7
9-months GroupChanges in BMD From Baseline to One Year After the Zoledronic Acid Infusion.-4.1 percentage changeStandard Error 1.1
Observation GroupChanges in BMD From Baseline to One Year After the Zoledronic Acid Infusion.-4.7 percentage changeStandard Error 1.2
Secondary

Changes in BMD From Baseline to Two Years After the Zoledronic Acid Infusion.

Changes in lumbar spine BMD from baseline to two years after the zoledronic acid infusion.

Time frame: from baseline to two years after the zoledronic acid infusion.

Population: Changes in lumbar spine BMD from baseline to two years after the zoledronic acid infusion.

ArmMeasureValue (MEAN)Dispersion
6-month GroupChanges in BMD From Baseline to Two Years After the Zoledronic Acid Infusion.-4.0 percentage changeStandard Error 0.8
9-months GroupChanges in BMD From Baseline to Two Years After the Zoledronic Acid Infusion.-4.1 percentage changeStandard Error 0.8
Observation GroupChanges in BMD From Baseline to Two Years After the Zoledronic Acid Infusion.-4.3 percentage changeStandard Error 1.5
Secondary

Changes in Cortical Porosity Measured by High-resolution Peripheral Quantitative Computed Tomography (HR-pQCT) Scan at the Radius and Tibia From Baseline to One Year After the Zoledronic Acid Infusion.

Changes in cortical porosity measured by high-resolution peripheral quantitative computed tomography (HR-pQCT) scan at the radius and tibia from baseline to one year after the zoledronic acid infusion.

Time frame: from baseline to one year after the zoledronic acid infusion.

Population: Changes in cortical porosity at the radius from baseline to one year after the zoledronic acid infusion.

ArmMeasureValue (MEAN)Dispersion
6-month GroupChanges in Cortical Porosity Measured by High-resolution Peripheral Quantitative Computed Tomography (HR-pQCT) Scan at the Radius and Tibia From Baseline to One Year After the Zoledronic Acid Infusion.-2.5 percentage changeStandard Error 7.4
9-months GroupChanges in Cortical Porosity Measured by High-resolution Peripheral Quantitative Computed Tomography (HR-pQCT) Scan at the Radius and Tibia From Baseline to One Year After the Zoledronic Acid Infusion.-1.6 percentage changeStandard Error 6.7
Observation GroupChanges in Cortical Porosity Measured by High-resolution Peripheral Quantitative Computed Tomography (HR-pQCT) Scan at the Radius and Tibia From Baseline to One Year After the Zoledronic Acid Infusion.-4.2 percentage changeStandard Error 7.2
Secondary

Changes in p-CTX From Baseline to 12 Months After the Zoledronic Acid Infusion.

Changes in p-CTX from baseline to 12 months after the zoledronic acid infusion.

Time frame: from baseline to 12 months after the zoledronic acid infusion.

Population: Changes in p-CTX from baseline to 12 months after the zoledronic acid infusion.

ArmMeasureValue (MEAN)Dispersion
6-month GroupChanges in p-CTX From Baseline to 12 Months After the Zoledronic Acid Infusion.0.58 ug/lStandard Deviation 0.23
9-months GroupChanges in p-CTX From Baseline to 12 Months After the Zoledronic Acid Infusion.0.40 ug/lStandard Deviation 0.2
Observation GroupChanges in p-CTX From Baseline to 12 Months After the Zoledronic Acid Infusion.0.49 ug/lStandard Deviation 0.21
Secondary

Changes in p-CTX From Baseline to Six Months After the Zoledronic Acid Infusion.

Changes in p-CTX from baseline to six months after the zoledronic acid infusion.

Time frame: from baseline to six months after the zoledronic acid infusion.

Population: Changes in p-CTX from baseline to six months after the zoledronic acid infusion.

ArmMeasureValue (MEAN)Dispersion
6-month GroupChanges in p-CTX From Baseline to Six Months After the Zoledronic Acid Infusion.0.60 ug/lStandard Deviation 0.35
9-months GroupChanges in p-CTX From Baseline to Six Months After the Zoledronic Acid Infusion.0.47 ug/lStandard Deviation 0.24
Observation GroupChanges in p-CTX From Baseline to Six Months After the Zoledronic Acid Infusion.0.47 ug/lStandard Deviation 0.2
Secondary

Morphometric Vertebral Fractures Assessed by Vertebral Fracture Assessment (VFA) One and Two Years After the Zoledronic Acid Infusion.

Morphometric vertebral fractures assessed by vertebral fracture assessment (VFA) one and two years after the zoledronic acid infusion.

Time frame: one and two years after the zoledronic acid infusion.

Population: Morphometric vertebral fractures assessed by vertebral fracture assessment (VFA) two years after the zoledronic acid infusion.

ArmMeasureValue (NUMBER)
6-month GroupMorphometric Vertebral Fractures Assessed by Vertebral Fracture Assessment (VFA) One and Two Years After the Zoledronic Acid Infusion.0 participants
9-months GroupMorphometric Vertebral Fractures Assessed by Vertebral Fracture Assessment (VFA) One and Two Years After the Zoledronic Acid Infusion.2 participants
Observation GroupMorphometric Vertebral Fractures Assessed by Vertebral Fracture Assessment (VFA) One and Two Years After the Zoledronic Acid Infusion.0 participants

Source: ClinicalTrials.gov · Data processed: Feb 28, 2026