Boulder Biologics Research Center
Boulder, Colorado, 80303, United States
NCT Number: NCT07751640
This pilot study evaluated the safety, tolerability, and exploratory epigenetic outcomes of a single same-day autologous bone marrow procedure in adults with Parkinson's disease (PD) or Parkinson-plus syndromes (PPS). Ten participants underwent posterior superior iliac spine bone marrow aspiration under local anesthesia. The unprocessed aspirate (BMA) was filtered and administered intravenously via normal saline infusion on the same day. A portion of the aspirate was centrifuged to produce a bone marrow aspirate concentrate (BMAC), which was atomized intranasally using a mucosal atomization device. Cells were not expanded in culture or genetically modified. The procedure was performed under the Same Surgical Procedure exception (21 CFR 1271.15(b)); an investigational new drug application (IND 31770) was submitted to the FDA Center for Biologics Evaluation and Research (CBER).
The primary outcome was safety and tolerability, assessed by treatment-emergent adverse events (TEAEs) graded per CTCAE v5.0 criteria through 12 months post-treatment. Exploratory outcomes included DNA methylation biological age (GrimAge-based composite and organ/system Systems Age clocks) measured from peripheral blood at baseline and approximately 6 months, and characterization of the delivered cell product by automated hematology and multiparameter flow cytometry.
This study is active but is not currently recruiting participants.
Notify Me40 year–85 year
All sexes
Interventional
Phase 1 / Phase 2
Boulder, Colorado, 80303, United States
Parkinson's disease (PD) and Parkinson-plus syndromes (PPS), including progressive supranuclear palsy (PSP), multiple system atrophy (MSA), corticobasal syndrome (CBS), and Lewy body dementia (LBD), are progressive neurodegenerative disorders characterized by motor dysfunction, non-motor symptoms, and progressive disability. Currently available therapies are primarily symptomatic and do not alter the underlying neurodegenerative process.
Autologous bone marrow aspirate contains mesenchymal stromal cells (MSCs), hematopoietic progenitor cells, and numerous trophic, immunomodulatory, and anti-inflammatory bioactive factors that may support neuronal repair and tissue homeostasis. Preclinical studies suggest these cells and associated soluble factors may promote neuroprotection by modulating inflammation, oxidative stress, mitochondrial dysfunction, and neurotrophic signaling. Because the cell product is autologous and minimally manipulated, it avoids ex vivo culture expansion and genetic modification and is expected to have low immunogenic potential.
Intranasal administration may facilitate transport of cells and soluble factors to the central nervous system through olfactory and trigeminal pathways, while intravenous administration provides systemic exposure. Combining both delivery routes may provide complementary central nervous system and peripheral biologic effects using a single same-day autologous procedure.
This pilot study was designed primarily to evaluate the safety and tolerability of combined intravenous bone marrow aspirate (BMA) and intranasal bone marrow aspirate concentrate (BMAC) administration in adults with PD or PPS. Exploratory objectives include evaluation of changes in DNA methylation-derived biological age biomarkers and characterization of the administered autologous cell product.
Healthy volunteers accepted: No
Only the study team can determine whether someone qualifies for participation.
Inclusion criteria
General:
PD Inclusion Criteria:
PPS Inclusion Criteria:
(DLB)
(PSP)
(MSA)
(CBD)
Exclusion criteria
Same-day autologous bone marrow aspirate (BMA) administered intravenously and bone marrow aspirate concentrate (BMAC) administered intranasally via mucosal atomization. Both products derived from a single posterior superior iliac spine aspiration. No ex vivo expansion, genetic modification, or cryopreservation performed.
Time frame: Baseline through Month 12
Incidence, severity, and relationship to study treatment of treatment-emergent adverse events (TEAEs) following a single same-day autologous bone marrow procedure consisting of intravenous bone marrow aspirate (BMA) and intranasal bone marrow aspirate concentrate (BMAC). Adverse events will be graded according to the National Cancer Institute Common Terminology Criteria for Adverse Events (CTCAE) Version 5.0 (Grade 1=mild, Grade 2=moderate, Grade 3=severe, Grade 4=life-threatening, Grade 5=death related to adverse event). Serious adverse events (SAEs) include death, life-threatening events, hospitalization or prolongation of hospitalization, persistent or significant disability, congenital anomaly, or other important medical events. TEAEs will be recorded throughout the study and assessed by the investigator for relationship to study treatment.
Time frame: Baseline and 6 months
Whole-blood DNA methylation will be analyzed using the Clock Foundation GrimAge assay. GrimAge biological age will be estimated in years at baseline and Month 6. The outcome will be reported as the mean participant-level change from baseline to Month 6. Negative values indicate a reduction in estimated biological age.
Time frame: Day 0
Bone marrow mesenchymal stromal cell (MSC) concentration in the administered bone marrow aspirate (intravenous) and bone marrow aspirate concentrate (intranasal), quantified by multiparameter flow cytometry using a Sysmex XF-1600 analyzer. MSCs are identified by sequential gating of singlets, viable cells (7-AAD negative), CD45-negative cells, and CD271-positive/CD73-positive cells. Outcome reported as MSC concentration (cells/mL).
Time frame: Baseline, Month 3, Month 6, and Month 12
Change from baseline to Months 3, 6, and 12 in the Movement Disorder Society Non-Motor Rating Scale (MDS-NMS). The MDS-NMS assesses the frequency and severity of non-motor symptoms in Parkinson's disease. Higher total scores indicate greater non-motor symptom burden and worse disease severity.
Time frame: Baseline, Month 3, Month 6, and Month 12
Change from baseline to Months 3, 6, and 12 in the Parkinson's Disease Questionnaire-39 (PDQ-39) Summary Index, a measure of health-related quality of life. Scores range from 0 to 100, with higher scores indicating poorer health-related quality of life.
Time frame: Baseline, Month 3, Month 6, and Month 12
Change from baseline to Months 3, 6, and 12 in the Non-Motor Symptoms Questionnaire (NMSQ). Scores range from 0 to 30, with higher scores indicating more non-motor symptoms.
Time frame: Baseline, Month 3, Month 6, and Month 12
Change from baseline to Months 3, 6, and 12 in the SCales for Outcomes in Parkinson's Disease-Autonomic (SCOPA-AUT). Total scores range from 0 to 69. Higher scores indicate greater autonomic symptom burden and worse autonomic dysfunction.
Time frame: Baseline, Month 3, and Month 6
Change from baseline to Months 3, 6, and 12 in the Scales for Outcomes in Parkinson's Disease-Cognition (SCOPA-COG). Total scores range from 0 to 43, with higher scores indicating better cognitive function.
Time frame: Baseline and Month 6
Change from baseline to Month 6 in time required to complete the Five Times Sit-to-Stand Test. Outcome reported in seconds. Lower values indicate better lower extremity functional performance.
Time frame: Baseline and Month 6
Change from baseline to Month 6 in gait speed measured using the 10-Meter Walk Test. Outcome reported as walking speed (meters/second). Higher values indicate better walking performance.
Time frame: Baseline and Month 6
Change from baseline to Month 6 in the Unified Multiple System Atrophy Rating Scale (UMSARS). Higher scores indicate greater disease severity.
Time frame: Baseline and Month 6
Change from baseline to Month 6 in the Progressive Supranuclear Palsy Clinical Deficits Scale (PSP-CDS). Scores range from 0 to 21. Higher scores indicate greater disease severity.
Time frame: Baseline and Month 6
Change from baseline to Month 6 in Hoehn and Yahr stage. Stages range from 1 to 5. Higher stages indicate greater disease severity.
Time frame: Baseline and Month 6
Change from baseline to Month 6 in the SPES/SCOPA-Motor score. Scores range from 0 to 42. Higher scores indicate worse motor impairment.
Time frame: Baseline, Month 3, and Month 6
Change from baseline to Months 3, 6, and 12 in the Montreal Cognitive Assessment (MoCA), a validated screening instrument for global cognitive function. Total scores range from 0 to 30, with higher scores indicating better cognitive performance.
Time frame: Baseline and Month 6
Change from baseline to Month 6 in the Movement Disorder Society-Unified Parkinson's Disease Rating Scale Part III (MDS-UPDRS Part III) Motor Examination score. Scores range from 0 to 132. Higher scores indicate greater motor impairment.
Time frame: Baseline and Month 6
Exploratory descriptive analysis of gut microbiota composition using shotgun metagenomic sequencing of stool specimens. Analyses include microbial taxonomic composition, alpha diversity, beta diversity, relative microbial abundance, and microbial community structure
Time frame: Baseline and 6 months
Exploratory descriptive analysis of nasopharyngeal microbiota composition using shotgun metagenomic sequencing. Analyses include microbial taxonomic composition, alpha diversity, beta diversity, relative microbial abundance, and microbial community structure.
Time frame: Day 0 and 6 months
Change in total white blood cell count measured by automated hematology analyzer. Results summarized descriptively using observed values and change from baseline.
Time frame: Day 0
Concentration of tissue non-specific alkaline phosphatase (TNAP/MSCA-1)-positive mesenchymal stromal cells within the CD271-positive/CD73-positive MSC population, quantified by multiparameter flow cytometry. Outcome reported as TNAP-positive MSC concentration (cells/mL).
Time frame: Day 0
Frequency of mesenchymal stromal cells among viable nucleated bone marrow cells, quantified by multiparameter flow cytometry. Outcome reported as the percentage of viable nucleated cells identified as CD271-positive/CD73-positive MSCs.
Time frame: Day 0
Total number of mesenchymal stromal cells delivered to each participant through intravenous bone marrow aspirate and intranasal bone marrow aspirate concentrate administration. Absolute cell counts are calculated using volumetric counting beads.
Time frame: Day 0
Percentage of viable mesenchymal stromal cells in the administered cell product as determined by 7-aminoactinomycin D (7-AAD) exclusion using multiparameter flow cytometry.
Time frame: Baseline to Month 6
Change in total white blood cell count measured by automated hematology analyzer. White blood cell count will be summarized descriptively as observed values and change from baseline to evaluate hematologic safety following intranasal autologous bone marrow aspirate concentrate administration.
Time frame: Baseline to Month 6
Change in hemoglobin concentration measured by automated hematology analyzer. Results will be summarized descriptively to evaluate hematologic safety.
Time frame: Baseline to Month 6
Change in platelet count measured by automated hematology analyzer. Results will be summarized descriptively.
Time frame: Baseline to Month 6
Change in serum creatinine concentration measured by standard clinical chemistry methods. Results will be summarized descriptively to evaluate renal safety.
Time frame: Baseline to Month 6
Change in serum alanine aminotransferase concentration measured by standard clinical chemistry methods. Results will be summarized descriptively to evaluate hepatic safety.
Time frame: Baseline to Month 6
Change in serum aspartate aminotransferase concentration measured by standard clinical chemistry methods. Results will be summarized descriptively.
Time frame: Baseline to Month 6
Change in serum high-sensitivity C-reactive protein concentration measured using a high-sensitivity immunoassay. Results will be summarized descriptively to evaluate changes in systemic inflammation following treatment.
Time frame: Baseline to Month 6
Change in erythrocyte sedimentation rate measured using the Westergren method. Results will be summarized descriptively to evaluate systemic inflammatory activity following treatment.
Time frame: Baseline and Month 6
Whole-blood DNA methylation will be analyzed using the Clock Foundation Systems Age algorithm. Cellular Systems Age will be estimated in years at baseline and Month 6 and summarized as the mean participant-level change from baseline.
Time frame: Baseline and Month 6
Whole-blood DNA methylation will be analyzed using the Clock Foundation Systems Age algorithm. Brain Systems Age will be estimated in years at baseline and Month 6 and summarized as the mean participant-level change from baseline.
Time frame: Baseline and Month 6
Whole-blood DNA methylation will be analyzed using the Clock Foundation Systems Age algorithm. Kidney Systems Age will be estimated in years at baseline and Month 6 and summarized as the mean participant-level change from baseline.
Time frame: Baseline and Month 6
Whole-blood DNA methylation will be analyzed using the Clock Foundation Systems Age algorithm. Muscle Systems Age will be estimated in years at baseline and Month 6 and summarized as the mean participant-level change from baseline.
Time frame: Baseline and Month 6
Whole-blood DNA methylation will be analyzed using the Clock Foundation Systems Age algorithm. Immune Systems Age will be estimated in years at baseline and Month 6 and summarized as the mean participant-level change from baseline.
Time frame: Baseline and Month 6
Whole-blood DNA methylation will be analyzed using the Clock Foundation Systems Age algorithm. Lung Systems Age will be estimated in years at baseline and Month 6 and summarized as the mean participant-level change from baseline.
Time frame: Baseline and Month 6
Whole-blood DNA methylation will be analyzed using the Clock Foundation Systems Age algorithm. Vascular Systems Age will be estimated in years at baseline and Month 6 and summarized as the mean participant-level change from baseline.
Time frame: Baseline and Month 6
Whole-blood DNA methylation will be analyzed using the Clock Foundation Systems Age algorithm. Extracellular Matrix Systems Age will be estimated in years at baseline and Month 6 and summarized as the mean participant-level change from baseline.
Time frame: Baseline and Month 6
Whole-blood DNA methylation will be analyzed using the Clock Foundation Systems Age algorithm. Metabolic Systems Age will be estimated in years at baseline and Month 6 and summarized as the mean participant-level change from baseline.
Time frame: Baseline and Month 6
Whole-blood DNA methylation will be analyzed using the Clock Foundation Systems Age algorithm. Inflammation Systems Age will be estimated in years at baseline and Month 6 and summarized as the mean participant-level change from baseline.
Apeiron Research Center
Other
A Single-Arm, Open-Label, Within-Subject Pilot Study (Phase I/IIa) Evaluating the Safety, Tolerability, and Exploratory Epigenetic Outcomes of a Single Same-Day Administration of Autologous Bone Marrow Aspirate (Intravenous) and Autologous Bone Marrow Aspirate Concentrate (Intranasal) in Adults With Parkinson's Disease or Parkinson-Plus Syndromes
Acronym: SPARC-PD
OpenTrials presents study information sourced from ClinicalTrials.gov. The official registry record should be consulted for the latest information.
View the official ClinicalTrials.gov record (opens in a new tab)This listing is for discovery and informational purposes only. It is not medical advice, does not guarantee that a study is recruiting, and does not determine eligibility. Contact the study team and a qualified healthcare professional when considering participation.
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