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The Impact of Parathyroid Hormone (PTH) on Craniofacial Osseous Regeneration in Bone

The Impact of Parathyroid Hormone (PTH) on Craniofacial Osseous Regeneration in Bone

Status
Terminated
Phases
Phase 2
Study type
Interventional
Source
ClinicalTrials.gov
Registry ID
NCT01279187
Enrollment
27
Registered
2011-01-19
Start date
2011-02-28
Completion date
2015-11-30
Last updated
2018-02-07

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

Conditions

Implant

Keywords

dental, implant

Brief summary

Good bone healing and bone build-up are necessary for the success of dental implants. Research in animals and humans has shown that a drug, called Forteo, can increase bone build-up and bone strength over time. Forteo has been approved by the Food and Drug Administration (FDA) for use in patients with a condition where bone is broken down and weakened, called osteoporosis. The investigators do not know, however, whether Forteo is effective for use in humans for improving bone healing after implant placement, and whether it will have the same bone-building and bone-strengthening effects as for patients with osteoporosis. This research study is being done to learn what effect 7 weeks of treatment with Forteo will have on bone build-up and strengthening of bone for patients receiving implants.

Detailed description

A single center, placebo-controlled, double blind parallel study of teriparatide use in patients requiring dental implant therapy is planned. Subjects who qualify based on the inclusion/exclusion criteria will be randomly placed into one of two treatment groups, teriparatide (20 μg/day) or placebo control. Both patients and investigators will be blinded. Serum and gingival crevicular fluid (GCF) samples, radiographs, and a tetracycline-labelled bone core will constitute the main data gathered for analysis. After implant surgery, patients will return at 2 weeks for post-operative care and then at 14 weeks for an implant impression and again at 16 weeks to receive the final restoration. Twelve months after implant placement, patients will be seen for a follow-up exam and standardized radiograph to ensure proper healing.

Interventions

DRUGTeriparatide

20ug per day,via subcutaneous injection, for 7 weeks

DRUGPlacebo

20ug per day, self administered injection, for 7 weeks

Sponsors

Eli Lilly and Company
CollaboratorINDUSTRY
University of Michigan
Lead SponsorOTHER

Study design

Allocation
RANDOMIZED
Intervention model
PARALLEL
Primary purpose
TREATMENT
Masking
QUADRUPLE (Subject, Caregiver, Investigator, Outcomes Assessor)

Eligibility

Sex/Gender
ALL
Age
30 Years to 85 Years
Healthy volunteers
Yes

Inclusion criteria

* Age range 30-85 yrs * Sex: male and female (female subjects must be postmenopausal, surgically sterilized or utilizing birth control or abstinence throughout the period of Teriparatide administration) * Subjects must be able and willing to follow study procedures and instructions; * Subjects must have read, understood and signed an informed consent form; * Subjects must have a need for the replacement of at least one tooth in the mandibular premolar/molar region with at least 12 months since the tooth extraction. * Sites must be adaptable for dental implant placement without the necessity for grafting.

Exclusion criteria

* Subjects under 30 years or over 85 years of age, * Female subjects who are pregnant, lactating, or female subjects who are of childbearing potential who are not using contraceptives, * Subjects with metabolic bone diseases such as Paget's disease, hypercalcemia (mild to moderate hypocalcemia is acceptable for entry into the study), moderate to severe vitamin D3 abnormalities (If vitamin D levels are below 16 ng/ml and patient exhibits interest, dietary supplementation will be suggested and levels re-evaluated after 4 weeks and reconsidered for inclusion at that time), any other metabolic bone diseases including osteoporosis, * Subjects with prior radiation therapy, bone metastases or other skeletal malignancy, * Subjects on medications that would affect bone metabolism, * Subjects with growth hormone deficiency, * Subjects with uncontrolled diabetes, sprue, inflammatory bowel disease or other disorders that would affect calcium absorption * Subjects that are heavy smokers (\> 1 pack/d), * Subjects with tetracycline sensitivity or allergy, * Subjects on bisphosphonates, * Subjects with any form of kidney disease including kidney stones (urolithiasis and nephrolithiasis), * Subjects with known allergies to tetracycline and/or demeclocycline,

Design outcomes

Primary

MeasureTime frameDescription
Bone Formation Rate10 weeksTo determine the impact of PTH on bone quality and bone turnover in the oral cavity. The primary outcome variable will be bone formation rate.

Secondary

MeasureTime frameDescription
Bone Turnover (Mineral Apposition Rates)10 weeksBone turnover was assessed indirectly by bone histomorphometry using the following abbreviations: Mineral Apposition Rate (MAR): Distance between 2 fluorochrome markers that comprise a double label on the surfaces of cancellous bone measured at an average of 4 equally-spaced sites per double label. These measurements will be performed on 20 double fluorochrome labels per bone and the average divided by the time between the midpoints of the two labeling periods. MAR serves as an index of osteoblast activity. Reported for cancellous (Cn), endocortical (Ec) at baseline (pre-drug intervention, listed as first set) and at the end of drug intervention (second set). First set refers to baseline information (pre-drug), and second set refers to data evaluated at the end of the drug administration phase. Periosteal (Ps) data and Ec.Mar Endocortical MAR second set was reviewed but no analyzable labeling was noted and so this data is not reported.
Bone Turnover: Cortical Tissue Area10 weeksBone turnover was assessed indirectly by evaluating cellular parameters of PTH action (i.e. numbers of osteoblasts, osteoclasts, apoptotic osteoblasts). The methods used to obtain the outcomes described below were bone histomorphometry using the following abbreviation: Ct.T.Ar: Ct Cort(ex)(ical) Tissue Area (2D)b First set refers to baseline pre-drug data and second set was taken at the end of the drug administration phase.
Bone Turnover: Bone Perimeter Length10 weeksBone histomorphometry was used to assess bone perimeter length in mm as follows: Cn.Pm cancellous: Cancellous Bone Perimeter Ec.Pm: endocortical bone perimeter Ps.Pm: Periosteal Periosteal bone perimeter
Bone Turnover: Bone Percentages10 weeksOc.S/BS cancellous: Osteoclast suface divided by bone surface. Osteoclastic surface as percent of total bone surface in cancellous bone. Percent cancellous bone perimeter with osteoclasts (large, multinuclear, TRAP positive cells). OS/BS cancellous: Osteoid surface divided by bone surface. Percentage of cancellous bone perimeter covered with osteoid. Oc.S/BS endocortical: Osteoclastic surface as percent of total bone surface in endocortical bone. OS/BS endocortical: Percentage of endocortical bone perimeter covered with osteoid. Oc.S/BS Periosteal: Osteoclastic surface as percent of total bone surface in periosteal bone. Ob.S/BS Periosteal: Percent periosteal bone perimeter with osteoid and adjacent osteoblasts, identified as plump cells with a single, eccentric nucleus and a pale-staining golgi apparatus. Osteoblast Surface divided by bone surface in periosteal bone. OS/BS Periosteal: Percentage of periosteal bone perimeter covered with osteoid.

Countries

United States

Participant flow

Participants by arm

ArmCount
Teriparatide
demeclocycline HCl (150 mg, four times per day for 3d) followed by a 12 day intermission then 3 more days of demeclocycline HCl (150 mg, four times per day). One day after the last demeclocycline dosage, subjects will be instructed to self-administer teriparatide (or placebo) for 7 weeks. Twenty-five days after the last demeclocycline dosage, subjects will begin their second set of tetracycline labels:(250 mg, four times per day) for three days, followed by 12 days off, and then repeat another 3 days of tetracycline HCl (250 mg, four times per day). On day of the last teriparatide (or placebo) injection, subjects will present for bone core removal and dental implant placement. Teriparatide: 20ug per day,via subcutaneous injection, for 7 weeks
14
Control
demeclocycline HCl (150 mg, four times per day for 3d) followed by a 12 day intermission then 3 more days of demeclocycline HCl (150 mg, four times per day). One day after the last demeclocycline dosage, subjects will be instructed to self-administer teriparatide (or placebo) for 7 weeks. Twenty-five days after the last demeclocycline dosage, subjects will begin their second set of tetracycline labels:(250 mg, four times per day) for three days, followed by 12 days off, and then repeat another 3 days of tetracycline HCl (250 mg, four times per day). On day of the last teriparatide (or placebo) injection, subjects will present for bone core removal and dental implant placement. Placebo: 20ug per day, self administered injection, for 7 weeks
13
Total27

Baseline characteristics

CharacteristicTeriparatideControlTotal
Age, Continuous54 years53.5 years53.95 years
Region of Enrollment
United States
14 Participants13 Participants27 Participants
Sex: Female, Male
Female
9 Participants6 Participants15 Participants
Sex: Female, Male
Male
5 Participants7 Participants12 Participants

Adverse events

Event typeEG000
affected / at risk
EG001
affected / at risk
deaths
Total, all-cause mortality
0 / 140 / 13
other
Total, other adverse events
12 / 1411 / 13
serious
Total, serious adverse events
0 / 140 / 13

Outcome results

Primary

Bone Formation Rate

To determine the impact of PTH on bone quality and bone turnover in the oral cavity. The primary outcome variable will be bone formation rate.

Time frame: 10 weeks

ArmMeasureValue (MEDIAN)Dispersion
TeriparatideBone Formation Rate1.76 mm2/weekStandard Deviation 0.99
ControlBone Formation Rate2.22 mm2/weekStandard Deviation 1.67
Secondary

Bone Turnover: Bone Percentages

Oc.S/BS cancellous: Osteoclast suface divided by bone surface. Osteoclastic surface as percent of total bone surface in cancellous bone. Percent cancellous bone perimeter with osteoclasts (large, multinuclear, TRAP positive cells). OS/BS cancellous: Osteoid surface divided by bone surface. Percentage of cancellous bone perimeter covered with osteoid. Oc.S/BS endocortical: Osteoclastic surface as percent of total bone surface in endocortical bone. OS/BS endocortical: Percentage of endocortical bone perimeter covered with osteoid. Oc.S/BS Periosteal: Osteoclastic surface as percent of total bone surface in periosteal bone. Ob.S/BS Periosteal: Percent periosteal bone perimeter with osteoid and adjacent osteoblasts, identified as plump cells with a single, eccentric nucleus and a pale-staining golgi apparatus. Osteoblast Surface divided by bone surface in periosteal bone. OS/BS Periosteal: Percentage of periosteal bone perimeter covered with osteoid.

Time frame: 10 weeks

ArmMeasureGroupValue (MEAN)Dispersion
TeriparatideBone Turnover: Bone PercentagesOc.S/BS Periosteal0.1 percentage (%)Standard Deviation 0.2
TeriparatideBone Turnover: Bone PercentagesOS/BS Periosteal5 percentage (%)Standard Deviation 22
TeriparatideBone Turnover: Bone PercentagesOb.S/BS Periosteal6 percentage (%)Standard Deviation 13
TeriparatideBone Turnover: Bone PercentagesOc.S/BS cancellous0.34 percentage (%)Standard Deviation 0.42
TeriparatideBone Turnover: Bone PercentagesOc.S/BS endocortical0 percentage (%)Standard Deviation 0
TeriparatideBone Turnover: Bone PercentagesOS/BS endocortical14 percentage (%)Standard Deviation 27
TeriparatideBone Turnover: Bone PercentagesOS/BS cancellous8 percentage (%)Standard Deviation 10
ControlBone Turnover: Bone PercentagesOc.S/BS endocortical0.3 percentage (%)Standard Deviation 0.7
ControlBone Turnover: Bone PercentagesOS/BS cancellous12 percentage (%)Standard Deviation 11
ControlBone Turnover: Bone PercentagesOc.S/BS Periosteal0.4 percentage (%)Standard Deviation 1.2
ControlBone Turnover: Bone PercentagesOc.S/BS cancellous0.15 percentage (%)Standard Deviation 0.21
ControlBone Turnover: Bone PercentagesOS/BS endocortical17 percentage (%)Standard Deviation 23
ControlBone Turnover: Bone PercentagesOb.S/BS Periosteal5 percentage (%)Standard Deviation 11
ControlBone Turnover: Bone PercentagesOS/BS Periosteal25 percentage (%)Standard Deviation 28
Secondary

Bone Turnover: Bone Perimeter Length

Bone histomorphometry was used to assess bone perimeter length in mm as follows: Cn.Pm cancellous: Cancellous Bone Perimeter Ec.Pm: endocortical bone perimeter Ps.Pm: Periosteal Periosteal bone perimeter

Time frame: 10 weeks

ArmMeasureGroupValue (MEAN)Dispersion
TeriparatideBone Turnover: Bone Perimeter LengthCn.Pm cancellous Cancellous bone Perimeter20.8 mmStandard Deviation 11.1
TeriparatideBone Turnover: Bone Perimeter LengthEc.Pm endocortical bone perimeter2.9 mmStandard Deviation 1.5
TeriparatideBone Turnover: Bone Perimeter LengthPs.Pm Periosteal Periosteal bone perimeter4.1 mmStandard Deviation 0.9
ControlBone Turnover: Bone Perimeter LengthCn.Pm cancellous Cancellous bone Perimeter18.7 mmStandard Deviation 9.6
ControlBone Turnover: Bone Perimeter LengthEc.Pm endocortical bone perimeter3.6 mmStandard Deviation 1.3
ControlBone Turnover: Bone Perimeter LengthPs.Pm Periosteal Periosteal bone perimeter4.3 mmStandard Deviation 1.1
Secondary

Bone Turnover: Cortical Tissue Area

Bone turnover was assessed indirectly by evaluating cellular parameters of PTH action (i.e. numbers of osteoblasts, osteoclasts, apoptotic osteoblasts). The methods used to obtain the outcomes described below were bone histomorphometry using the following abbreviation: Ct.T.Ar: Ct Cort(ex)(ical) Tissue Area (2D)b First set refers to baseline pre-drug data and second set was taken at the end of the drug administration phase.

Time frame: 10 weeks

ArmMeasureGroupValue (MEAN)Dispersion
TeriparatideBone Turnover: Cortical Tissue AreaCt.T.Ar first set Cortical Tissue Area2.2 mm2/weekStandard Deviation 1.6
TeriparatideBone Turnover: Cortical Tissue AreaCt. T.Ar second set Cortical Tissue Area2.2 mm2/weekStandard Deviation 1.6
ControlBone Turnover: Cortical Tissue AreaCt.T.Ar first set Cortical Tissue Area1.8 mm2/weekStandard Deviation 1
ControlBone Turnover: Cortical Tissue AreaCt. T.Ar second set Cortical Tissue Area1.8 mm2/weekStandard Deviation 0.9
Secondary

Bone Turnover (Mineral Apposition Rates)

Bone turnover was assessed indirectly by bone histomorphometry using the following abbreviations: Mineral Apposition Rate (MAR): Distance between 2 fluorochrome markers that comprise a double label on the surfaces of cancellous bone measured at an average of 4 equally-spaced sites per double label. These measurements will be performed on 20 double fluorochrome labels per bone and the average divided by the time between the midpoints of the two labeling periods. MAR serves as an index of osteoblast activity. Reported for cancellous (Cn), endocortical (Ec) at baseline (pre-drug intervention, listed as first set) and at the end of drug intervention (second set). First set refers to baseline information (pre-drug), and second set refers to data evaluated at the end of the drug administration phase. Periosteal (Ps) data and Ec.Mar Endocortical MAR second set was reviewed but no analyzable labeling was noted and so this data is not reported.

Time frame: 10 weeks

ArmMeasureGroupValue (MEAN)Dispersion
TeriparatideBone Turnover (Mineral Apposition Rates)Cn.MAR (Cancellous MAR) - first set0.5 um/dayStandard Deviation 0.1
TeriparatideBone Turnover (Mineral Apposition Rates)Ec.MAR Endocortical MAR - first set0.7 um/dayStandard Deviation 0.7
TeriparatideBone Turnover (Mineral Apposition Rates)Cn.MAR Cancellous MAR- second set0.2 um/dayStandard Deviation 0.2
ControlBone Turnover (Mineral Apposition Rates)Cn.MAR Cancellous MAR- second set0.3 um/dayStandard Deviation 0.2
ControlBone Turnover (Mineral Apposition Rates)Cn.MAR (Cancellous MAR) - first set0.3 um/dayStandard Deviation 0.2
ControlBone Turnover (Mineral Apposition Rates)Ec.MAR Endocortical MAR - first set0.6 um/dayStandard Deviation 0.4

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