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Completed

NCT Number: NCT05887466

Study to Evaluate the Safety and Efficacy of ESC-derived Dopamine Progenitor Cell Therapy in PD Patients

Indication: Patients who were diagnosed with Parkinson's disease ≥ 5 years ago.

Purpose: To find the maximum tolerable dose and evaluate the safety and exploratory efficacy of allogenic embryonic stem cell-derived A9 dopamine progenitor cell (A9-DPC) therapy in patients who were diagnosed with Parkinson's disease ≥ 5 years ago, as a treatment for delaying or stopping the progression of Parkinson's disease or inducing recovery of damaged brain.

Number of Subjects: Up to 12 subjects. [Low dose] 3.15X10^6 cells/body: 6 subjects. [High dose] 6.30X10^6 cells/body: 6 subjects.

Study Design: Single center, open, single dosing, dose-escalation, phase 1/2a study

Endpoints:

[Primary Safety Endpoints]

1. Occurrence of treatment-emergent adverse events (TEAEs) after administration of the IP 2. Failure or rejection of transplantation and occurrence of bleeding and infection at Week 12 (3months), Week 24 (6months), Week 48 (12months) and Week 96 (24months) after administration of the IP 3. Occurrence of adverse event of special interest (AESI)* after administration of the IP

* AESI: a) death, b) generation of a neoplasm or malignant tumor in tissues or organs, c) onset of an immune reaction including worsening of a previous autoimmune disease or new occurrence, and d) other delayed adverse events related to this embryonic stem cell treatment.

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Key information

Age range

50 year–75 year

Sex eligibility

All sexes

Study type

Interventional

Phase

Phase 1 / Phase 2

Primary location

Yonsei University Health System, Severance Hospital

Seoul, 03722, South Korea

About this study

Study Period: Approximately 35 months from the date of approval by the Institutional Review Board (IRB) (However, it can be extended depending on the subject enrollment period or the time to study closure)

Indication: Patients who were diagnosed with Parkinson's disease ≥ 5 years ago

Purpose: To find the maximum tolerable dose and evaluate the safety and exploratory efficacy of allogenic embryonic stem cell-derived A9 dopamine progenitor cell (A9-DPC) therapy in patients who were diagnosed with Parkinson's disease ≥ 5 years ago, as a treatment for delaying or stopping the progression of Parkinson's disease or inducing recovery of damaged brain.

Number of Subjects: Up to 12 subjects [Low dose] Dose: 3.15X10^6 cells/body Study group(A9-DPC): 6 subjects [High dose] Dose: 6.30X10^6 cells/body Study group(A9-DPC): 6 subjects

Study Design: Single center, open, single dosing, dose-escalation, phase 1/2a study

Endpoints:

[Primary Safety Endpoints]

  • Occurrence of treatment-emergent adverse events (TEAEs) after administration of the IP
  • Failure or rejection of transplantation and occurrence of bleeding and infection at Week 12 (3 months), Week 24 (6 months), Week 48 (12 months) and Week 96 (24 months) after administration of the IP
  • Occurrence of adverse event of special interest (AESI)* after administration of the IP *AESI: a) death, b) generation of a neoplasm or malignant tumor in tissues or organs, c) onset of an immune reaction including worsening of a previous autoimmune disease or new occurrence, and d) other delayed adverse events related to this embryonic stem cell treatment.

[Exploratory Efficacy Endpoints]

  • Change in the following clinical endpoints at Week 4 (1 month), Week 12 (3 months), Week 24 (6 months), Week 36 (9 months), Week 48 (12 months), Week 72 (18 months) and Week 96 (24 months) after administration of the IP compared to screening
  • MDS-UPDRS Total Score, part Ⅲ & part Ⅳ (defined on/off)
  • K-MMSE
  • Seoul Neuropsychological screening battery (SNSB, Screening & Week 96 (24 months))
  • Hoehn & Yahr scale
  • Change in the following clinical endpoints at Week 4 (1 month), Week 12 (3 months), Week 24 (6 months), Week 36 (9 months), Week 48 (12 months), Week 72 (18 months) and Week 96 (24 months) after administration of the IP compared to baseline
  • K-MoCA
  • Parkinson's Questionnaire (PDQ-39)
  • Schwab and England ADL scale (SEADL) 4Non-Motor Symptoms Scale for Parkinson's Disease (NMS)
  • Change in Graft size through MRI at Week 12 (3 months), Week 24 (6 months), Week 48 (12 months) and Week 96 (24 months) after administration of the IP compared to baseline 4. Change in Cerebral FDG uptake and Striatal FDG uptake at Week 48 (12 months) and Week 96 (24 months) after administration of the IP compared to baseline 5. Change in density of dopamine transporters as measured by FP-CIT PET at Week 48 (12 months) and Week 96 (24 months) after administration of the IP compared to screening 6. Percentage of subjects who used concomitant medication related to Parkinson-mobility or Parkinson-Non-mobility during the whole clinical trial period and change in dose of each concomitant medication (per component) at 12 week intervals compared to the dose of each concomitant medication (per component) from the date of administration of IP to Week 12.
  • Changes in the following clinical evaluation variables confirmed through the Parkinson's Disease diary at 48 weeks (12 months), 72 weeks (18 months), and 96 weeks (24 months) after administration of the investigational drug compared to baseline:
  • Total waking time
  • Total on-time
  • Total off-time
  • Total dyskinesia time

[Other Safety Endpoints]

  • Vital signs
  • Laboratory tests
  • Physical examination

Who can participate

Healthy volunteers accepted: No

Only the study team can determine whether someone qualifies for participation.

Inclusion criteria

  • Patient with Parkinson's disease based on UK PD Society Brain Bank criteria at the time of the screening visit
  • Patient with Parkinson's disease at the age of 50 to 75 years old at the time of the screening visit
  • Patient who was diagnosed with Parkinson' disease ≥ 5 years ago at the time of the screening visit
  • Patient on a stable dose of medicine such as levodopa for ≥ 3 months before screening who has wearing off for ≥ 2 hours a day or freezing of gait responding to dopamine supplement or motor complications such as dyskinesia
  • At least moderate impairment in activity of daily living (MDS-UPDRS part II ≥13)
  • Patient on a stabile dose of standard treatment for Parkinson's disease (e.g., levodopa, dopamine agonists, MAO-B inhibitors, amantadine, anticholinergics, etc.) for ≥ 3 months before screening
  • ≥ 40% in L-dopa responsiveness at the time of the screening visit
  • Hoehn & Yahr stage ≥ 3 during the off state and stage ≤ 3 during the on state at the time of the screening visit
  • Decreased dopamine transporters as measured by FP-CIT PET at the time of the screening visit
  • Able to undergo MRI
  • Signed consent after being sufficiently informed of the study

Exclusion criteria

  • Parkinson's disease dementia based on the Movement Disorders Society Task Force criteria
  • Parkinsonism plus syndrome confirmed by PET and MRI images at the screening visit
  • Patient that does not meet the criteria for Parkinson's disease dementia but has major visual hallucination
  • Freezing of gait with no or ambiguous response to L-dopa
  • Drug-induced parkinsonism
  • History of uncontrolled seizure disorders within 24 weeks before screening
  • Congenital developmental delay
  • Past or current coagulation factor related diseases at the time of the screening visit
  • Ongoing malignancies at the time of the screening visit or diagnosis of malignancies within the past 5 years
  • Active tuberculosis, autoimmune disease, or decreased immunity at the time of the screening visit (treatment with chemotherapy within the past 3 years or white blood cell [WBC] <3X10^3 cells/µL)
  • Patient diagnosed with diabetes mellitus
  • Participation in another clinical trial within 4 weeks before screening
  • History of treatment with cell therapy, except for blood transfusion, before study participation
  • Side effects to anesthetics, contrast agents, etc.
  • Past or current clinically significant diseases in the liver (including liver transplant), kidney, respiratory system, cardiovascular system, etc. or clinically significant laboratory test results at the time of the screening visit
  • Platelet count < 5.0X10^4/microL
  • Serum creatinine > 1.5 mg/dL
  • eGFR < 60 mL/min/1.73 m^2
  • AST or ALT ≥ 3 x ULN (Upper Limit of Normal)
  • Total bilirubin ≥ 1.5 x ULN (Upper Limit of Normal)
  • Hepatitis B or C
  • Human immunodeficiency virus (HIV) positive
  • History of brain surgery
  • Pregnant and lactating woman
  • Positive pregnancy test at the time of screening; or woman of childbearing potential and man who plan a pregnancy during the study or who do not agree to use clinically appropriate methods of contraception* described below Hormone contraceptives (subdermal contraceptive implants, injections, oral contraceptives, etc.), intrauterine device (IUD) (or intra uterine system [IUS]), subject's or partner's surgical sterilization (vasectomy, tubal ligation, etc.), double barrier method (combined use of barrier methods such as cervical cap or diaphragm in combination with male condom)
  • Ineligible for other reasons based on the judgment of the investigator

Treatment and study plan

Allogenic embryonic stem cell-derived A9 dopamine progenitor cell (A9-DPC) Low Dose

Biological

Biological/Vaccine: Allogenic embryonic stem cell-derived A9 dopamine progenitor cell (A9-DPC)_Low Dose

  • IP Name : Allogenic embryonic stem cell-derived A9 dopamine progenitor cell (A9-DPC)
  • Main ingredients and quantities: A9-DPC -Low Dose :

7.0X10^6 cells (Use 3.15X10^6 cells of this)

  • Formulation: milky white cell suspension
  • Storage method: Refrigerated storage (5±3#)
  • Expiration date: within 36 hours of manufacture
  • Frequency: single dosing
  • Method: The subject pierces a burr hole in the skull on the day of surgery. Then the cells are injected at a predetermined stem cell administration point of the putamen in the brain of the subject. One side is administered in three tracks per putamen (6 tracks total brain). Do the same for the other side.

Allogenic embryonic stem cell-derived A9 dopamine progenitor cell (A9-DPC) High Dose

Biological

Biological/Vaccine: Allogenic embryonic stem cell-derived A9 dopamine progenitor cell (A9-DPC)_High Dose

  • IP Name : Allogenic embryonic stem cell-derived A9 dopamine progenitor cell (A9-DPC)
  • Main ingredients and quantities: A9-DPC -High Dose :

1.4X10^7 cells (Use 6.30X10^6 cells of this)

  • Formulation: milky white cell suspension
  • Storage method: Refrigerated storage (5±3#)
  • Expiration date: within 36 hours of manufacture
  • Frequency: single dosing
  • Method: The subject pierces a burr hole in the skull on the day of surgery. Then the cells are injected at a predetermined stem cell administration point of the putamen in the brain of the subject. One side is administered in three tracks per putamen (6 tracks total brain). Do the same for the other side.

Primary outcomes

  1. Occurrence of treatment-emergent adverse events (TEAEs) after administration of the IP

    Time frame: Up to 96 Weeks (24 months) after IP administration

    Present frequency and percentage by each dose group about occurrence of treatment-emergent adverse events (TEAEs) after administration of the IP

  2. Failure or rejection of transplantation

    Time frame: Week 12 (3 months)

    Present frequency and percentage by each dose group about failure or rejection of transplantation at Week 12 (3 months) after administration of the IP

  3. Failure or rejection of transplantation

    Time frame: Week 24 (6 months)

    Present frequency and percentage by each dose group about failure or rejection of transplantation at Week 24 (6 months) after administration of the IP

  4. Failure or rejection of transplantation

    Time frame: Week 48 (12 months)

    Present frequency and percentage by each dose group about failure or rejection of transplantation at Week 48 (12 months) after administration of the IP

  5. Failure or rejection of transplantation

    Time frame: Week 96 (24 months)

    Present frequency and percentage by each dose group about failure or rejection of transplantation at Week 96 (24 months) after administration of the IP

  6. Occurrence of bleeding

    Time frame: Week 12 (3 months)

    Present frequency and percentage by each dose group about occurrence of bleeding at Week 12 (3 months) after administration of the IP

  7. Occurrence of bleeding

    Time frame: Week 24 (6 months)

    Present frequency and percentage by each dose group about occurrence of bleeding at Week 24 (6 months) after administration of the IP

  8. Occurrence of bleeding

    Time frame: Week 48 (12 months)

    Present frequency and percentage by each dose group about occurrence of bleeding at Week 48 (12 months) after administration of the IP

  9. Occurrence of bleeding

    Time frame: Week 96 (24 months)

    Present frequency and percentage by each dose group about occurrence of bleeding at Week 96 (24 months) after administration of the IP

  10. Occurrence of infection

    Time frame: Week 12 (3 months)

    Present frequency and percentage by each dose group about occurrence of infection at Week 12 (3 months) after administration of the IP

  11. Occurrence of infection

    Time frame: Week 24 (6 months)

    Present frequency and percentage by each dose group about occurrence of infection at Week 24 (6 months) after administration of the IP

  12. Occurrence of infection

    Time frame: Week 48 (12 months)

    Present frequency and percentage by each dose group about occurrence of infection at Week 48 (12 months) after administration of the IP

  13. Occurrence of infection

    Time frame: Week 96 (24 months)

    Present frequency and percentage by each dose group about occurrence of infection at Week 96 (24 months) after administration of the IP

  14. Occurrence of adverse event of special interest (AESI)* after administration of the IP

    Time frame: Up to 96 Weeks (24 months) after IP administration

    Present frequency and percentage by each dose group about occurrence of adverse event of special interest (AESI)* after administration of the IP

    *AESI: a) death, b) generation of a neoplasm or malignant tumor in tissues or organs, c) onset of an immune reaction including worsening of a previous autoimmune disease or new occurrence, and d) other delayed adverse events related to this embryonic stem cell treatment.

Secondary outcomes

  1. Change in the MDS-UPDRS Total Score, part Ⅲ (defined on/off) & part Ⅳ

    Time frame: -Day 14 to -Day 4, Week 4, Week 12, Week 24, Week 36, Week 48, Week 72, Week 96

    Present descriptive statistics (number of subjects, average, standard deviation, median, minimum, maximum) by each dose group about changes in the MDS-UPDRS Total Scores, part Ⅲ (defined on/off) & part Ⅳ up to 96 Weeks (24 months) after IP administration compared to baseline (-Day 14 to -Day 4).

    • Defined-on condition: condition that the most positive functional effect, as agreed by the subject and the tester, after treatment with drugs for controlling the symptoms of Parkinson's disease
    • Defined-off condition: condition after 12 hours off drugs for controlling the symptoms of Parkinson's disease
  2. Change in the K-MMSE

    Time frame: -Day 14 to -Day 4, Week 4, Week 12, Week 24, Week 36, Week 48, Week 72, Week 96

    Present descriptive statistics (number of subjects, average, standard deviation, median, minimum, maximum) by each dose group about changes in the K-MMSE up to 96 Weeks (24 months) after IP administration compared to baseline (-Day 14 to -Day 4).

  3. Change in the Seoul Neuropsychological screening battery (SNSB, Screening & Week 96 (24 months))

    Time frame: -Day 14 to -Day 4, Week 96

    Present descriptive statistics (number of subjects, average, standard deviation, median, minimum, maximum) by each dose group about changes in the Seoul Neuropsychological Screening battery (SNSB) between baseline (-Day 14 to -Day 4) and 96 Weeks (24 months) after IP administration.

  4. Hoehn & Yahr scale

    Time frame: Day 14 to -Day 4, Week 4, Week 12, Week 24, Week 36, Week 48, Week 72, Week 96

    Change in the Hoehn & Yahr scale

  5. Change in the K-MoCA

    Time frame: -Day 2, Week 4, Week 12, Week 24, Week 36, Week 48, Week 72, Week 96

    Present descriptive statistics (number of subjects, average, standard deviation, median, minimum, maximum) by each dose group about changes in the K-MoCA up to 96 Weeks (24 months) after IP administration compared to baseline (-Day 2).

  6. Change in the Parkinson's Questionnaire (PDQ-39)

    Time frame: -Day 2, Week 4, Week 12, Week 24, Week 36, Week 48, Week 72, Week 96

    Present descriptive statistics (number of subjects, average, standard deviation, median, minimum, maximum) by each dose group about changes in the Parkinson's Questionnaire (PDQ-39) up to 96 Weeks (24 months) after IP administration compared to baseline (-Day 2).

  7. Change in the Schwab and England ADL scale (SEADL)

    Time frame: -Day 2, Week 4, Week 12, Week 24, Week 36, Week 48, Week 72, Week 96

    Present descriptive statistics (number of subjects, average, standard deviation, median, minimum, maximum) by each dose group about changes in the Schwab and England ADL scale (SEADL) up to 96 Weeks (24 months) after IP administration compared to baseline (-Day 2).

  8. Change in the Non-Motor Symptoms Scale for Parkinson's Disease (NMS)

    Time frame: -Day 2, Week 4, Week 12, Week 24, Week 36, Week 48, Week 72, Week 96

    Present descriptive statistics (number of subjects, average, standard deviation, median, minimum, maximum) by each dose group about changes in the Non-Motor Symptoms Scale for Parkinson's Disease (NMS) up to 96 Weeks (24 months) after IP administration compared to baseline (-Day 2).

  9. Change in Graft size through MRI

    Time frame: -Day 2, Week 12, Week 24, Week 48, Week 96

    Present descriptive statistics (number of subjects, average, standard deviation, median, minimum, maximum) by each dose group about change in Graft size through MRI at Week 12 (3 months), Week 24 (6 months), Week 48 (12 months) and Week 96 (24 months) after administration of the IP compared to baseline (-Day 2)

  10. Change in Cerebral FDG uptake and Striatal FDG uptake

    Time frame: -Day 2, Week 48, Week 96

    Present descriptive statistics (number of subjects, average, standard deviation, median, minimum, maximum) by each dose group about change in Cerebral FDG uptake and Striatal FDG uptake at Week 48 (12 months) and Week 96 (24 months) after administration of the IP compared to baseline (-Day 2)

  11. Change in density of dopamine transporters as measured by FP-CIT PET

    Time frame: -Day 14 to -Day 4, Week 48, Week 96

    Present descriptive statistics (number of subjects, average, standard deviation, median, minimum, maximum) by each dose group about change in density of dopamine transporters as measured by FP-CIT PET at Week 48 (12 months) and Week 96 (24 months) after administration of the IP compared to screening (-Day 14 to -Day 4)

  12. Percentage of subjects who used concomitant medication related to Parkinson-mobility or Parkinson-Non-mobility during the whole clinical trial period and Change in dose of each concomitant medication (per component)

    Time frame: Day 0 (Postoperative day #0), Week 4, Week 12, Week 24, Week 36, Week 48, Week 72, Week 96

    Present the frequency and percentage use of concomitant medication related to Parkinson-mobility or Parkinson-Non-mobility during the whole clinical trial period by each dose group.

    Also Present descriptive statistics (number of subjects, average, standard deviation, median, minimum, maximum) by each dose group about change in dose of each concomitant medication (per component) at 12 week intervals compared to the dose of each concomitant medication (per component) from the date of administration of IP to Week 12.

  13. Parkinson's Disease diary

    Time frame: Day 0 (POD #0), Week 48, Week 72, Week 96

    Changes in the following clinical evaluation variables confirmed through the Parkinson's Disease diary at 48 weeks (12 months), 72 weeks (18 months), and 96 weeks (24 months) after administration of the investigational drug compared to baseline: 1) Total waking time: total waking hours [hours], 2) Total on-time: hours with drug effect [hours], 3)Total off-time: hours without drug effect [hours], 4)Total dyskinesia time: hours with dyskinesia [hours]

Other outcomes

  1. Vital signs

    Time frame: -Day14 to -Day 4, -Day 2, Day 0 (Postoperative day #0), Week 4, Week 12, Week 24, Week 36, Week 48, Week 72, Week 96

    Present descriptive statistcs(number of subjects, average, standard deviation, median, minimum, maximum) by each dose group for each point in time

  2. Laboratory tests

    Time frame: -Day 14 to -Day 4, Day 0 (Postoperative day #0), Week 4, Week 12, Week 24, Week 36, Week 48, Week 72, Week 96

    Present descriptive statistcs(number of subjects, average, standard deviation, median, minimum, maximum) by each dose group for each point in time

  3. Physical examination

    Time frame: -Day 14 to -Day 4, -Day 2, Day 0 (Post operative day #0), Week 4, Week 12, Week 24, Week 36, Week 48, Week 72, Week 96

    Present descriptive statistcs(number of subjects, average, standard deviation, median, minimum, maximum) by each dose group for each point in time

Sponsors and collaborators

Lead sponsor

S.Biomedics Co., Ltd.

Industry

Collaborators

  • Yonsei University

Registry information

Official study title

A Single Center, Open, Single Dosing, Dose-escalation, Phase 1/2a Study to Evaluate the Safety and Exploratory Efficacy of Embryonic Stem Cell-derived A9 Dopamine Progenitor Cell (A9-DPC) Therapy in Patients With Parkinson's Disease

Important dates

Study start
2023
Primary completion
2025
Study completion
2025
First posted
Jun 2, 2023
Registry last updated
Apr 13, 2026

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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