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"Muslimova, Elena"
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Infigratinib in children with achondroplasia: the PROPEL and PROPEL 2 studies
by
Cormier-Daire, Valerie
,
Phillips, John
,
Burren, Christine
in
Clinical practice guidelines
,
Genetic disorders
,
Growth disorders
2022
Background:
Achondroplasia is the most common short-limbed skeletal dysplasia resulting from gain-of-function pathogenic variants in fibroblast growth factor receptor 3 (FGFR3) gene, a negative regulator of endochondral bone formation. Most treatment options are symptomatic, targeting medical complications. Infigratinib is an orally bioavailable, FGFR1–3 selective tyrosine kinase inhibitor being investigated as a direct therapeutic strategy to counteract FGFR3 overactivity in achondroplasia.
Objectives:
The main objective of PROPEL is to collect baseline data of children with achondroplasia being considered for future enrollment in interventional studies sponsored by QED Therapeutics. The objectives of PROPEL 2 are to obtain preliminary evidence of safety and efficacy of oral infigratinib in children with achondroplasia, to identify the infigratinib dose to be explored in future studies, and to characterize the pharmacokinetic (PK) profile of infigratinib and major metabolites.
Design:
PROPEL (NCT04035811) is a prospective, noninterventional clinical study designed to characterize the natural history and collect baseline data of children with achondroplasia over 6−24 months. PROPEL 2 (NCT04265651), a prospective, phase II, open-label study of infigratinib in children with achondroplasia, consists of a dose-escalation, dose-finding, and dose-expansion phase to confirm the selected dose, and a PK substudy.
Methods and analysis:
Children aged 3−11 years with achondroplasia who completed ⩾6 months in PROPEL are eligible for PROPEL 2. Primary endpoints include treatment-emergent adverse events and change from baseline in annualized height velocity. Four cohorts at ascending dose levels are planned for dose escalation. The selected dose will be confirmed in the dose-expansion phase.
Ethics:
PROPEL and PROPEL 2 are being conducted in accordance with the International Conference on Harmonization Good Clinical Practice guidelines, principles of the Declaration of Helsinki, and relevant human clinical research and data privacy regulations. Protocols have been approved by local health authorities, ethics committees, and institutions as applicable. Parents/legally authorized representatives are required to provide signed informed consent; signed informed assent by the child is also required, where applicable.
Discussion:
PROPEL and PROPEL 2 will provide preliminary evidence of the safety and efficacy of infigratinib as precision treatment of children with achondroplasia and will inform the design of future studies of FGFR-targeted agents in achondroplasia.
Registration:
ClinicalTrials.gov: NCT04035811; NCT04265651.
Journal Article
Oral Infigratinib Therapy in Children with Achondroplasia
by
Cormier-Daire, Valerie
,
Phillips, John
,
Candler, Toby
in
Achondroplasia
,
Achondroplasia - drug therapy
,
Achondroplasia - genetics
2025
Achondroplasia is a genetic skeletal condition that results in disproportionately short stature and medical complications throughout life. Infigratinib is an orally bioavailable FGFR1-3 selective tyrosine kinase inhibitor in development for achondroplasia.
In this phase 2 dose-finding study, we evaluated the safety and efficacy of oral infigratinib in children with achondroplasia between the ages of 3 and 11 years. A total of 72 children were enrolled in five sequential cohorts to receive daily infigratinib at doses of 0.016 mg per kilogram of body weight (cohort 1), 0.032 mg per kilogram (cohort 2), 0.064 mg per kilogram (cohort 3), 0.128 mg per kilogram (cohort 4), and 0.25 mg per kilogram (cohort 5) for 6 months, followed by 12 months of extended treatment in which the dose in cohorts 1 and 2 could be escalated to the next ascending level at months 6 and 12. The primary safety outcome was the incidence of adverse events that led to a decrease in the dose or discontinuation of infigratinib. The primary efficacy outcome was the change from baseline in the annualized height velocity.
During treatment, all the children had at least one adverse event, most of which were mild or moderate in severity; none resulted in treatment discontinuation. In cohort 5, an increased annualized height velocity was observed, which persisted throughout the duration of the study, with a mean change from baseline at 18 months of 2.50 cm per year (95% confidence interval [CI], 1.22 to 3.79; P = 0.001). The mean change from baseline in height z score was 0.54 (95% CI, 0.35 to 0.72) relative to an untreated achondroplasia reference population at 18 months; the mean change from baseline in the upper-to-lower body segment ratio was -0.12 (95% CI, -0.18 to -0.06).
The administration of oral infigratinib did not result in any apparent major safety signal and increased the annualized height velocity and z score and decreased the upper-to-lower body segment ratio at 18 months of treatment in cohort 5. (Funded by BridgeBio Pharma; PROPEL2 ClinicalTrials.gov number, NCT04265651.).
Journal Article
OR21-05 Low-dose Infigratinib, An Oral Selective Fibroblast Growth Factor Receptor (FGFR) Tyrosine Kinase Inhibitor, Demonstrates Activity In Murine Models Of Achondroplasia And Hypochondroplasia
Disclosure: E. Muslimova: Employee; Self; QED Therapeutics. Stock Owner; Self; QED Therapeutics. B. Demuynck: None. L. Loisay: None. M. Paull: Employee; Self; QED Therapeutics. Stock Owner; Self; QED Therapeutics. L. Legeai-Mallet: None. Background: FGFR3 is a negative regulator of bone growth and gain-of-function mutations in the FGFR3 gene result in different skeletal osteochondrodysplasias, including achondroplasia (ACH) and hypochondroplasia (HCH). ACH is the most common form of rhizomelic short stature, affecting between 1 in 15,000 and 1 in 30,000 live births worldwide. The incidence of HCH is thought to be approximately the same as ACH. Currently, there is only one approved therapy for ACH and no approved therapies for HCH. Previously we demonstrated that the oral, selective FGFR 1-3 tyrosine kinase inhibitor (TKI) infigratinib has preclinical activity in a mouse model mimicking ACH (Fgfr3Y367C/+). We hypothesized that infigratinib could improve defective endochondral ossification and ameliorate the phenotype in a mouse model of HCH (Fgfr3N534K/+), which is the first and only HCH mouse model that expresses the most frequent human heterozygous mutation p.Asn540Lys.Methods:Fgfr3N534K/+ mice were given subcutaneous injections of infigratinib or vehicle control every 3 days (1 mg/kg) or daily (1 mg/kg) for 15 days (post-natal day [PND] 4-19) or 21 days (PND 3-24), respectively. Results:Fgfr3N534K/+ mice treated with 1 mg/kg infigratinib daily for a total of 21 days showed a statistically significant increase in appendicular and axial skeleton (tibia +3.18%, femur +3.16%, humerus +3.04%, ulna +2.94%, radius +3.01%). Treatment with infigratinib modified skull shape, length of the mandible, and foramen magnum length (+3.72%). Cartilage growth plate organization, in particular the hypertrophic chondrocyte area, was modified, indicating that chondrocyte differentiation is improved. These results, although of a lower magnitude, are in line with those previously reported from the Fgfr3Y367C/+ mouse model of ACH, which showed a statistically significant improvement in upper limbs (humerus +7.3%, ulna +11.1%, radius +14.2 %), lower limbs (femur +10.4%, tibia +16.8%), and foramen magnum length (+3.76%), when infigratinib was administered at a dose of 0.5 mg/kg. Conclusions: Low-dose treatment with infigratinib in the Fgfr3N534K/+ HCH mouse model ameliorated the clinical hallmarks of human pathology and significantly lengthened the axial skeleton, the appendicular skeleton and improved foramen magnum length. Development of infigratinib in ACH is currently ongoing. These latest findings with infigratinib in this mouse model of HCH support the rationale for targeting FGFR3 with a specific TKI such as infigratinib for the treatment of children with HCH. Presentation: Saturday, June 17, 2023
Journal Article
PSAT102 Qualitative Research in Children and Parents of Children with Achondroplasia to Cognitively Debrief Three Patient-Reported Outcome Measures and Confirm the Content Validity of a Clinical-Assessed Measure
by
Medicine, Veterinary
,
Lee, Anne
,
Savarirayan, Ravi
in
Clinical outcomes
,
Parents & parenting
,
Pediatric Endocrinology
2022
Background Achondroplasia (ACH) is the most common non-lethal form of skeletal dysplasia affecting 1 in 25,000 live births. Individuals with ACH experience various medical, emotional, and functional challenges during their lifetime. Qualitative research was conducted to evaluate the content, clarity, and relevance of three existing patient-reported outcome (PRO) measures being considered for the assessment of health-related quality of life and functional status in studies of children with ACH. In addition, the content and appropriateness of the clinician reported WeeFIM was also evaluated. Methods Combined concept elicitation (CE) and cognitive debriefing (CD) interviews were conducted with children with ACH (8–17 years of age) and parents of children with ACH. The PRO measures that were evaluated included the QoLISSY, PedsQL, and Pain-NRS. Data from the CE portion of the interview were used to map the concepts of importance to the PROs and to the WeeFIM. Study materials were prepared with the input of patient advocacy groups and key opinion leaders. The study was approved by a central Institutional Review Board and conducted in the US. All interviews were conducted via online video calls, recorded, and transcribed. Transcripts were analyzed using qualitative software. Results 26 participants in the US were interviewed (n=8 children and n=18 parents). Half of the children with ACH included in the study were female (50%), with a mean age 13±2 years. All children attended school (88% public school). Parents (mean age 42±6 years) were predominantly female (89%), Caucasian (92%), had a college degree or higher (72%), were married (83%), and had on average 3 children, 1 with ACH. All parents and children reported the PedsQL and QoLISSY are easy to complete, and ≥90% found the items to be relevant. Participants found the recall periods easy to think about (83% for past month in PedsQL and 45% for past week in QoLISSY). PedsQL was easier to understand than the QoLISSY (67% of participants), but QoLISSY was more relevant to the condition (61% of participants). Most respondents (79%) recommended the inclusion of both questionnaires in studies with ACH. The Pain-NRS was found to be clear (88%), relevant (88%), and easy to complete (81%). Based on the mapping, all three PRO measures cover most important concepts. The WeeFIM contains many important functional concepts (such as difficulty bathing, dressing, and toileting), not covered in other PRO measures, although some items are not relevant to individuals with ACH. Conclusions In general, all three PRO measures were found to be content valid, clear, comprehensive, and relevant for use in studies with children with ACH. The WeeFIM covers important functional concepts not covered by other PRO measures. Psychometric properties of these measures, including reliability and validity, should be evaluated. Presentation: Saturday, June 11, 2022 1:00 p.m. - 3:00 p.m.
Journal Article
PSAT103 Qualitative Research in Children with Achondroplasia and Parents of Children with Achondroplasia: Medical Challenges and Impacts
by
Lee, Anne
,
Savarirayan, Ravi
,
Haider, Amer
in
Interviews
,
Parents & parenting
,
Qualitative research
2022
Background Achondroplasia (ACH) is the most common form of non-lethal skeletal dysplasia affecting 1 in 25,000 live births. Individuals with ACH experience various medical symptoms/complications and impacts during their lifetime. Qualitative research was conducted to better understand ACH related symptoms/complications and their impacts to health-related quality of life (HRQoL) in this population. Methods Combined concept elicitation (CE) and cognitive debriefing (CD) interviews were conducted in the US with children with ACH (8–17 years of age) and parents of children with ACH. Study materials were developed with input from patient advocacy groups and key opinion leaders. A central Institutional Review Board reviewed and approved the study; all participants provided written informed consent. The CE portion of the interview sought to understand the important concepts for individuals with ACH. Results of the CD portion of the interview are presented elsewhere. The percentages of medical challenges (ACH-related symptoms/complications) and impacts of these challenges to HRQoL were calculated separately for children and parents. Saturation, the point at which no new concepts were mentioned, was also evaluated. All interviews were conducted via online video calls and were recorded and transcribed. Transcripts were analyzed using qualitative software. Results 26 participants (n=8 children and n=18 parents) were interviewed. Half of the children with ACH were female (50%); mean age 13±2 years. All children (100%) attended school (88% attended public school). Parents were predominantly female (89%), Caucasian (92%), had a college degree or higher (72%), were married (83%), and had a mean age of 42±6 years. Similar medical challenges were reported by both children and parents, although the frequency differed. Pain was the most common symptom reported by both children and parents (88% and 83%, respectively), followed by feeling hot or sweaty (88% and 78%). Difficulties with concentrating or remembering (50% for both), sleep apnea (13% and 50%), speech issues (63% and 50%), ear infections (50% and 78%), and balance problems (75% and 56%) were reported by children and parents, respectively. Fatigue and muscle fatigue/loose joints was reported by 63% of children, but only 33% of parents. The most common impacts reported by children and parents were difficulty reaching objects (88% and 78%), toileting (25% and 63%), bathing (38% and 56%), walking (75% and 56%), running (88% and 56%), and dressing (25% and 50%). In general, saturation was achieved for most challenges and impacts. Conclusions This research provides detailed information on the medical challenges and impacts children with ACH face in everyday life. The concepts identified with high frequency will be mapped to patient-reported outcome (PRO) and functional measures to identify the most appropriate and relevant measures to include in studies of ACH. Presentation: Saturday, June 11, 2022 1:00 p.m. - 3:00 p.m.
Journal Article
THU165 PROPEL, PROPEL 2 And PROPEL OLE Studies Of Infigratinib In Children With Achondroplasia: Design And Status Of 3 Ongoing Trials
Disclosure: R. Savarirayan: Advisory Board Member; Self; Ascendis Pharma, BioMarin, QED Therapeutics, Sanofi. Consulting Fee; Self; BioMarin. Grant Recipient; Self; Ascendis Pharma, BioMarin, QED Therapeutics, Therachon. Research Investigator; Self; Ascendis Pharma, BioMarin, QED Therapeutics, Therachon. J. De Bergua: None. P. Arundel: None. H. McDevitt: None. V. Cormier-Daire: Advisory Board Member; Self; BioMarin. V. Saraff: None. M. Skae: None. B. Delgado: None. A. Leiva-Gea: None. M. Salcedo: None. J. Salles: None. M.P. Nicolino: None. M. Rossi: Advisory Board Member; Self; BioMarin. P. Kannu: Advisory Board Member; Self; Novartis, Ipsen. Grant Recipient; Self; CIHR. M. Bober: Advisory Board Member; Self; Biomarin. Consulting Fee; Self; Ascendis Pharma, BioMarin, Pfizer, QED Therapeutics. Grant Recipient; Self; Ascendis Pharma, BioMarin, Pfizer, QED Therapeutics. Research Investigator; Self; Ascendis Pharma, BioMarin, Pfizer, QED Therapeutics. J. Phillips III: None. H. Saal: Advisory Board Member; Self; Alexion. Grant Recipient; Self; Alexion, BioMarin, Pfizer, QED Therapeutics. Research Investigator; Self; Alexion, BioMarin, Pfizer, QED Therapeutics. P. Harmatz: Consulting Fee; Self; Audentes, Aeglea, Homology, JCR, Denali, Inventiva, Paradigm, Capsida, Chiesi, Avrobio. Grant Recipient; Self; BioMarin, Inventiva. Research Investigator; Self; BioMarin, Shire/Takeda, QED Therapeutics, RegenXbio, Denali, Ascendis, Amicus, Allievex, JCR, Orphazyme, Idorsia, Sangamo. C. Burren: Grant Recipient; Self; Amgen, Pfizer, QED Therapeutics. Research Investigator; Self; Amgen, Pfizer, QED Therapeutics. T. Candler: None. T. Cho: Employee; Self; QED Therapeutics. Stock Owner; Self; QED Therapeutics. E. Muslimova: Employee; Self; QED Therapeutics. Stock Owner; Self; QED Therapeutics. R. Weng: Employee; Self; QED Therapeutics. Stock Owner; Self; QED Therapeutics. D. Rogoff: Employee; Self; QED Therapeutics. Stock Owner; Self; QED Therapeutics. J. Hoover-Fong: Consulting Fee; Self; Pfizer/Therachon, BioMarin, QED Therapeutics, Sanofi, Ascendis Pharma. Grant Recipient; Self; Pfizer/Therachon, BioMarin, Ascendis Pharma. Research Investigator; Self; Pfizer/Therachon, BioMarin, Ascendis Pharma. M. Irving: Advisory Board Member; Self; Ascendis Pharma, BioMarin, QED Therapeutics, Sanofi, Therachon/Pfizer. Speaker; Self; BioMarin, QED Therapeutics. Background: Achondroplasia (ACH), the most common short-limbed skeletal dysplasia, is characterized by defective endochondral ossification resulting from gain-of-function mutations in the fibroblast growth factor receptor 3 (FGFR3) gene, a negative regulator of endochondral bone formation. Infigratinib is a selective, orally bioavailable FGFR1-3 tyrosine kinase inhibitor being investigated for the treatment of ACH in the observational and 2 interventional studies, as detailed below. Methods: PROPEL (NCT04035811) is a non-interventional clinical assessment study designed to characterize the natural history of ∼250 children 2.5 to <17 years of age with ACH over a 6−24-month period. Primary objective: collect baseline height velocity measurements in children who may participate in an interventional study with infigratinib. Primary endpoint: annualized growth velocity (AGV). Further objectives: collect other baseline growth measurements; evaluate exploratory biomarker indicators of growth; assess ACH-related medical events reported as medical history, or non-treatment adverse events (AEs), health-related quality of life, body pain, functional abilities and cognitive functions in children with ACH. PROPEL 2 (NCT04265651) is a phase 2, open-label study of infigratinib in children 3−11 years of age with ACH who completed ≥6 months of observation in PROPEL. This study includes dose-escalation (extended dose-finding treatment phase, n≥40), a pharmacokinetics sub-study (n≥18), and a dose-expansion phase (n≈20) to confirm the selected dose and provide evidence of efficacy. Primary endpoints: AEs; change from baseline in AGV; and infigratinib pharmacokinetics. Secondary endpoints: safety/tolerability of infigratinib; changes from baseline in anthropometric parameters. Exploratory outcomes: changes in quality of life (QoL) and other parameters of disease burden. PROPEL OLE (NCT05145010) is a phase 2, open-label extension study in ∼230 children who completed an interventional study with infigratinib and, potentially, in ≤50 infigratinib-naïve children. Primary objectives: safety, tolerability; and efficacy of long-term daily doses of infigratinib. Secondary objectives: changes in other indicators of growth/development, skeletal abnormalities, QoL/disease burden, and cognitive functions. Children may receive infigratinib until they reach final height. Summary: The PROPEL, PROPEL 2, and PROPEL OLE studies are ongoing. Together, they are intended to contribute to the understanding of the natural history of ACH, provide key evidence on the safety and efficacy of oral infigratinib, including QoL and skeletal changes in children with ACH, and inform the design of future studies in this setting. Presentation: Thursday, June 15, 2023
Journal Article
THU181 Evaluation Of Bone Mineral Density In A Cohort Of Children With ACH Participating In The PROPEL 2 Study Of Infigratinib
Disclosure: R. Savarirayan: Advisory Board Member; Self; Ascendis Pharma, BioMarin, QED Therapeutics, Sanofi, Sanofi. Consulting Fee; Self; BioMarin. Grant Recipient; Self; Ascendis Pharma, BioMarin, QED Therapeutics, Therachon. Research Investigator; Self; Ascendis Pharma, BioMarin, QED Therapeutics, Therachon. J. De Bergua: None. P. Arundel: None. J. Salles: None. A. Leiva-Gea: None. M. Irving: Advisory Board Member; Self; Ascendis Pharma, BioMarin, QED Therapeutics, Sanofi, Therachon/Pfizer. Speaker; Self; BioMarin, QED Therapeutics. V. Saraff: None. H. McDevitt: None. M. Salcedo: None. M.P. Nicolino: None. V. Cormier-Daire: Advisory Board Member; Self; BioMarin. P. Kannu: Advisory Board Member; Self; Novartis, Ipsen. Grant Recipient; Self; CIHR. M. Skae: None. M. Bober: Advisory Board Member; Self; Biomarin. Consulting Fee; Self; Ascendis Pharma, Biomarin, Pfizer, QED Therapeutics. Grant Recipient; Self; Ascendis Pharma, BioMarin, Pfizer, QED Therapeutics. Research Investigator; Self; Ascendis Pharma, BioMarin, Pfizer, QED Therapeutics. J. Phillips III: None. T. Candler: None. P. Harmatz: Consulting Fee; Self; Audentes, Aeglea, Homology, JCR, Denali, Inventiva, Paradigm, Capsida, Chiesi, Avrobio. Grant Recipient; Self; BioMarin, Inventiva. Research Investigator; Self; BioMarin, Shire/Takeda, QED Therapeutics, RegenXbio, Denali, Ascendis, Amicus, Allievex, JCR, Orphazyme, Idorsia, Sangamo. H. Saal: Advisory Board Member; Self; Alexion. Grant Recipient; Self; Alexion, BioMarin, Pfizer, QED Therapeutics. Research Investigator; Self; Alexion, BioMarin, Pfizer, QED Therapeutics. J. Hoover-Fong: Consulting Fee; Self; Pfizer/Therachon, BioMarin, QED Therapeutics, Sanofi, Ascendis Pharma. Grant Recipient; Self; Pfizer/Therachon, BioMarin, Ascendis Pharma. Research Investigator; Self; Pfizer/Therachon, BioMarin, Ascendis Pharma. E. Muslimova: Employee; Self; QED Therapeutics. Stock Owner; Self; QED Therapeutics. T. Cho: Employee; Self; QED Therapeutics. Stock Owner; Self; QED Therapeutics. R. Weng: Employee; Self; QED Therapeutics. Stock Owner; Self; QED Therapeutics. D. Rogoff: Employee; Self; QED Therapeutics. Stock Owner; Self; QED Therapeutics. Background: Achondroplasia (ACH) is the most common form of short-limbed skeletal dysplasias and is caused by an activating pathogenic variant of the fibroblast growth factor receptor 3 (FGFR3) gene. People with ACH are at risk for several significant co-morbidities, including foramen magnum stenosis, obstructive sleep apnea, chronic otitis media with conductive hearing loss, spinal stenosis, and a propensity towards obesity. Decreased bone mass has been observed previously in gain-of-function mutation Fgfr3 mice, and adults with ACH can have a decrease in bone mineral density (BMD). Here we describe baseline BMD of a cohort of children with ACH participating in PROPEL 2, a proof-of-concept study evaluating preliminary efficacy and safety of infigratinib, an oral FGFR-1-3 tyrosine kinase inhibitor in development for ACH. Methods: Dual energy X-ray absorptiometry (DXA) scans of the spine (L1-4) were collected at baseline in children participating in PROPEL 2 using a Hologic or GE Lunar scanner following a pre-specified image acquisition procedure. Images were evaluated by a single reviewer. Results are expressed as z-score for age and sex based on average-height children. Results: 52 children (mean±SD age: 7.97±1.9 years; 29 female; mean±SD height z-score: -5.4±1) were included in this analysis. BMD of the lumbar spine was -0.96±0.9 SDS (min -4.1; max 0.7 SDS). No statistical difference was found between males and females. 85% of children (n=44) had a BMD <0 SDS, from which 21 (40%) had a BMD between -2 and < -1 SDS, 18 (35%) presented a BMD between -1 and 0, and 5 (10%) presented a BMD < -2 SDS. Eight children (15%) had a BMD >0 SDS. No correlations were observed between BMD and age, height z-score or BMI. Conclusion: Our findings show that lumbar spine BMD is lower in children with ACH compared with normative data from children of average height. Low BMD in the context of short stature is difficult to interpret, raising the question of the degree to which low bone status can be attributed to smaller bone size relative to age. Even though our findings do not take into account children’s height, no correlation between BMD and baseline height z-score was identified in this cohort, suggesting that the findings may not be solely attributable to overall height. These findings reinforce the need to better understand how to circumvent this limitation in children with skeletal dysplasias in order to improve DXA interpretation and avoid misdiagnoses. Presentation: Thursday, June 15, 2023
Journal Article
OR27-03 Oral Infigratinib Treatment Is Well Tolerated And Significantly Increases Height Velocity In Children With Achondroplasia: Month 6 Results From The PROPEL 2 Dose-finding Study
2023
Disclosure: R. Savarirayan: Advisory Board Member; Self; Ascendis Pharma, BioMarin, QED Therapeutics, Sanofi. Consulting Fee; Self; BioMarin. Grant Recipient; Self; Ascendis Pharma, BioMarin, QED Therapeutics, Theracon. Research Investigator; Self; Ascendis Pharma, BioMarin, QED Therapeutics, Theracon. J. De Bergua: None. P. Arundel: None. J. Salles: None. V. Saraff: None. B. Delgado: None. A. Leiva-Gea: None. H. McDevitt: None. M.P. Nicolino: None. M. Rossi: Advisory Board Member; Self; BioMarin. M. Salcedo: None. V. Cormier-Daire: Advisory Board Member; Self; BioMarin. M. Skae: None. P. Kannu: Advisory Board Member; Self; Novartis, Ipsen. Grant Recipient; Self; CIHR. M.B. Bober: Advisory Board Member; Self; Biomarin. Consulting Fee; Self; Ascendis Pharma, BioMarin, Pfizer, QED Therapeutics. Grant Recipient; Self; Ascendis Pharma, BioMarin, Pfizer, QED Therapeutics. Research Investigator; Self; Ascendis Pharma, BioMarin, Pfizer, QED Therapeutics. J. Phillips: None. H. Saal: Advisory Board Member; Self; Alexion. Grant Recipient; Self; Alexion, BioMarin, Pfizer, QED Therapeutics. Research Investigator; Self; Alexion, BioMarin, Pfizer, QED Therapeutics. P. Harmatz: Consulting Fee; Self; Audentes, Aeglea, Homology, JCR, Denali, Inventiva, Paradigm, Capsida, Chiesi, Avrobio. Grant Recipient; Self; BioMarin, Inventiva. Research Investigator; Self; BioMarin, Shire/Takeda, QED, RegenXbio, Denali, Ascendis, Amicus, Allievex, JCR, Orphazyme, Idorsia, Sangamo. C.P. Burren: Grant Recipient; Self; Amgen, Pfizer, QED Therapeutics. Research Investigator; Self; Amgen, Pfizer, QED Therapeutics. T. Candler: None. T. Cho: Employee; Self; QED Therapeutics. Stock Owner; Self; QED Therapeutics. E. Muslimova: Employee; Self; QED Therapeutics. Stock Owner; Self; QED Therapeutics. R. Weng: Employee; Self; QED Therapeutics. Stock Owner; Self; QED Therapeutics. S. Raj: None. J. Hoover-Fong: Consulting Fee; Self; Pfizer/Therachon, BioMarin, QED Therapeutics, Sanofi, Ascendis Pharma. Grant Recipient; Self; Pfizer/Therachon, BioMarin, Ascendis Pharma. Research Investigator; Self; Pfizer/Therachon, BioMarin, Ascendis Pharma. M. Irving: Advisory Board Member; Self; Ascendis Pharma, BioMarin, QED Therapeutics, Sanofi, Therachon/Pfizer. Speaker; Self; BioMarin, QED Therapeutics. D. Rogoff: Employee; Self; QED Therapeutics. Stock Owner; Self; QED Therapeutics. Background: Achondroplasia (ACH), the most common short-limbed skeletal dysplasia, is characterized by impaired endochondral ossification resulting from gain-of-function pathogenic variants in the fibroblast growth factor receptor 3 (FGFR3) gene, a negative regulator of endochondral bone growth. People with ACH are at risk for several significant co-morbidities, including compression of the brainstem due to foramen magnum stenosis, sleep-disordered breathing, chronic otitis media with conductive hearing loss, and symptomatic spinal stenosis. Infigratinib is an oral, selective FGFR1-3 tyrosine kinase inhibitor being investigated for the treatment of children with ACH in a phase 2 interventional study (PROPEL 2). Methods: PROPEL 2 (NCT04265651) is a phase 2 dose-finding, open-label study of infigratinib in children 3−11 years of age with ACH who participated for ≥6 months in PROPEL (NCT04035811), a non-interventional clinical assessment study. The PROPEL 2 dose-escalation (DE) phase comprises 5 ascending dose cohorts ranging from 0.016 mg/kg/day to 0.25 mg/kg/day. The primary endpoints are safety; change from baseline (BL) in annualized height velocity (AHV); and infigratinib pharmacokinetics in this population. Secondary endpoints include changes from BL in body proportions, and changes in quality of life. Other parameters of disease burden are evaluated as exploratory endpoints. Summary: Children enrolled in the PROPEL 2 DE phase completed ≥6 months of treatment at the assigned cohort dose. Cohorts 1-3 (n=37; doses 0.016, 0.032, and 0.064 mg/kg/day) did not show a significant increase in AHV and these doses were assessed as non-efficacious. Treatment at the cohort 4 dose (0.128 mg/kg/day) resulted in an increase in AHV from BL of 1.52 cm/year in children ≥5 years old (n=11; p=0.02). Infigratinib at the cohort 5 dose (n=10 with month 6 data, 0.25 mg/kg/day) resulted in a significant mean increase from BL of 3.03 cm/year (p=0.0022). In children considered responders (Δ in AHV ≥25% from BL, n=8/10), the mean change in AHV at the cohort 5 dose was +3.81±1.8 cm/year, with a median of +4.14 cm/year. Infigratinib was well tolerated with no serious AEs or AEs that led to study discontinuation, with most AEs mild or moderate in severity. At the cohort 5 dose level, no grade 3 AEs or treatment-related AEs were reported. Conclusion: Oral infigratinib in children with ACH, up to a dose of 0.25 mg/kg/day, was well tolerated and showed dose-dependent increases in AHV, with a significant mean change from BL of +3.03cm/year at the cohort 5 dose. The safety and efficacy of this oral, once-daily dose of infigratinib at 0.25 mg/kg/day will be further explored in a phase 3 randomized controlled study. If these phase 2 data are confirmed, infigratinib could potentially offer children with ACH the first safe and effective oral therapy to improve growth, enhance functionality and decrease medical complications. Presentation: Saturday, June 17, 2023
Journal Article
Infigratinib in children with achondroplasia: the PROPEL and PROPEL 2 studies
2022
Background: Achondroplasia is the most common short-limbed skeletal dysplasia resulting from gain-of-function pathogenic variants in fibroblast growth factor receptor 3 (FGFR3) gene, a negative regulator of endochondral bone formation. Most treatment options are symptomatic, targeting medical complications. Infigratinib is an orally bioavailable, FGFR1-3 selective tyrosine kinase inhibitor being investigated as a direct therapeutic strategy to counteract FGFR3 overactivity in achondroplasia. Objectives: The main objective of PROPEL is to collect baseline data of children with achondroplasia being considered for future enrollment in interventional studies sponsored by QED Therapeutics. The objectives of PROPEL 2 are to obtain preliminary evidence of safety and efficacy of oral infigratinib in children with achondroplasia, to identify the infigratinib dose to be explored in future studies, and to characterize the pharmacokinetic (PK) profile of infigratinib and major metabolites. Design: PROPEL (NCT04035811) is a prospective, noninterventional clinical study designed to characterize the natural history and collect baseline data of children with achondroplasia over 6-24 months. PROPEL 2 (NCT04265651), a prospective, phase II, open-label study of infigratinib in children with achondroplasia, consists of a dose-escalation, dose-finding, and dose-expansion phase to confirm the selected dose, and a PK substudy. Methods and analysis: Children aged 3-11 years with achondroplasia who completed ⩾6 months in PROPEL are eligible for PROPEL 2. Primary endpoints include treatment-emergent adverse events and change from baseline in annualized height velocity. Four cohorts at ascending dose levels are planned for dose escalation. The selected dose will be confirmed in the dose-expansion phase. Ethics: PROPEL and PROPEL 2 are being conducted in accordance with the International Conference on Harmonization Good Clinical Practice guidelines, principles of the Declaration of Helsinki, and relevant human clinical research and data privacy regulations. Protocols have been approved by local health authorities, ethics committees, and institutions as applicable. Parents/legally authorized representatives are required to provide signed informed consent; signed informed assent by the child is also required, where applicable. Discussion: PROPEL and PROPEL 2 will provide preliminary evidence of the safety and efficacy of infigratinib as precision treatment of children with achondroplasia and will inform the design of future studies of FGFR-targeted agents in achondroplasia.
Journal Article
PSAT105 Evaluation of Body Mass Index and Metabolic Parameters in Children with Achondroplasia Participating in the PROPEL Study
by
Cormier-Daire, Valerie
,
Burren, Christine
,
Rogoff, Daniela
in
Body mass index
,
Cholesterol
,
Hemoglobin
2022
Background Achondroplasia (ACH) is the most common short-limbed skeletal dysplasia, affecting between 1 in 15,000 to 1 in 30,000 live births. Children and adults with ACH have disproportionate short stature and are at risk for several significant co-morbidities, including obstructive sleep apnea, chronic otitis media with conductive hearing loss, and spinal stenosis. Obesity is a health problem in ACH and aggravates breathing difficulties (i.e. sleep apnea), back and joint pain, and reduced mobility. Individuals with ACH are predisposed to abdominal obesity, although the cause is not completely understood. The metabolic effect of visceral obesity does not suggest an association with the development of a diabetic profile. The objective of this study is to evaluate body mass index (BMI) and metabolic parameters in children with ACH participating in the PROPEL study, a prospective, non-interventional study designed to examine baseline growth parameters and health status in children being assessed for potential enrollment into interventional studies with infigratinib, an oral FGFR1–3 inhibitor in development for ACH. Methods Data were analyzed from 86 children (mean age 6.1±2.5 years; female n=52) enrolled in PROPEL. BMI was calculated at enrollment and compared with sex- and age-specific BMI curves for children with ACH in the United States. Cholesterol, triglycerides, and hemoglobin A1c were measured centrally in a subset of children. Results BMI (mean±SD) was 21.2±2.2 in females (range 16.8–26.2) and 20.5±1.6 in males (range 17.9–24.6), with 8/52 girls (15%) and 1/34 boys (2.9%) presenting BMI above the 95% of the sex- and age-specific BMI curves for ACH. The mean±SD for cholesterol and triglycerides measured in a subset of 43 children were 4.2±0.7 mmol/L (normal range [NR] 2.59–4.66) and 0.9±0.5 mmol/L (NR 0.56–1.36), respectively. Cholesterol was elevated in 9/43 children (20.9%), while triglycerides were high in 8/43 (18.7%). Hemoglobin A1c (HbA1c) was measured in 28 children and had a mean±SD of 0.052±0.002 (NR Hb fraction 0.04–0.06). Although all values were within normal ranges, 19/28 (68%) of children had values above the mean for laboratory reference values. Conclusion Results from this work illustrate the importance of using BMI tables developed for children with ACH when providing guidance on weight management. Furthermore, our findings suggest that, in this cohort, average cholesterol and HbA1c levels, although normal, are above the mean for the reference population; this highlights the importance of a healthy diet, weight management and regular physical activity starting at young age. Additional studies are needed to understand the relationship between BMI and body composition in individuals with short stature and to further investigate the clinical relevance of these findings given that no association between increased BMI and metabolic syndrome has been described in adults with ACH. Presentation: Saturday, June 11, 2022 1:00 p.m. - 3:00 p.m.
Journal Article