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Clinical Trials/NCT04199026
NCT04199026RecruitingNot Applicable

Pilot Trial of an Implantable Microdevice for In Vivo Drug Sensitivity Testing in Patients With Sarcomas

M.D. Anderson Cancer Center1 site in 1 country20 target enrollmentStarted: February 25, 2025Last updated:
Conditions
Interventions
Drugs

Trial Snapshot

Phase
Not Applicable
Status
Recruiting
Enrollment
20
Locations
1
Primary Endpoint
Determination of the safety and technical feasibility of microdevice insertion/removal, as assessed by adverse events by CTCAE 5.0.

Study Overview

Brief Summary

This early phase I trial studies the side effects of implanting and removing a microdevice in patients with sarcomas that have spread to other places in the body (metastatic) or have come back (recurrent). Microdevices are rice-sized devices that are implanted into tumor tissue and are loaded with 10 different drugs that are delivered at very small doses, or "microdoses," which may only affect a very small, local area inside the tumor. The purpose of this study is to determine which drugs delivered in the microdevice affect tumor tissue in patients with sarcomas.

Detailed Description

PRIMARY OBJECTIVES:

I. Assess the safety of drug delivery microdevice (microdevice) placement and removal in subjects undergoing resection of sarcoma.

II. Determine the technical feasibility of microdevice placement and removal with intact surrounding tissue in subjects undergoing resection of a sarcoma.

SECONDARY OBJECTIVE:

I. Use the intratumoral cellular response to evaluate individual agents and/or drug combinations released from the microdevice reservoirs to assess the relative drug efficacy across all individual agents or drug combinations tested using the microdevice technology.

Study Design

Study Type
Interventional
Allocation
Na
Intervention Model
Single Group
Primary Purpose
Device Feasibility
Masking
None

Eligibility Criteria

Ages
10 Years to — (Child, Adult, Older Adult)
Sex
All
Accepts Healthy Volunteers
No

Inclusion Criteria

  • •Patients with a biopsy-confirmed recurrent or metastatic sarcoma for which surgery is indicated as a standard of care.
  • •10 years of age or older
  • •Documented, signed, dated informed consent to participate in the microdevice study
  • •Eastern Cooperative Oncology Group (ECOG) performance status of =< 2

Exclusion Criteria

  • •Subjects who do not wish to undergo surgical resection, or those who are high-risk or not candidates for surgical resection
  • •Age < 10 years old
  • •Women of childbearing potential without a negative pregnancy test; or women who are lactating
  • •Allergies or prior adverse drug reactions to any of the drugs loaded within the microdevice.

Arms & Interventions

Device Feasibility (microdevice, surgery)

Experimental

Patients undergo percutaneous implantation of up to 3 drug delivery microdevices up to 2 days before standard of care surgery. Patients receive doxorubicin hydrochloride, ifosfamide, vincristine, irinotecan, temozolomide, pazopanib, everolimus, polyethylene glycol, ganitumab, and temsirolimus via the microdevice in the absence of unacceptable toxicity. At the time of surgery 2 days later, patients have the drug delivery microdevice(s) removed.

Intervention: Irinotecan (Drug)

Device Feasibility (microdevice, surgery)

Experimental

Patients undergo percutaneous implantation of up to 3 drug delivery microdevices up to 2 days before standard of care surgery. Patients receive doxorubicin hydrochloride, ifosfamide, vincristine, irinotecan, temozolomide, pazopanib, everolimus, polyethylene glycol, ganitumab, and temsirolimus via the microdevice in the absence of unacceptable toxicity. At the time of surgery 2 days later, patients have the drug delivery microdevice(s) removed.

Intervention: Therapeutic Conventional Surgery (Procedure)

Device Feasibility (microdevice, surgery)

Experimental

Patients undergo percutaneous implantation of up to 3 drug delivery microdevices up to 2 days before standard of care surgery. Patients receive doxorubicin hydrochloride, ifosfamide, vincristine, irinotecan, temozolomide, pazopanib, everolimus, polyethylene glycol, ganitumab, and temsirolimus via the microdevice in the absence of unacceptable toxicity. At the time of surgery 2 days later, patients have the drug delivery microdevice(s) removed.

Intervention: Ganitumab (Biological)

Device Feasibility (microdevice, surgery)

Experimental

Patients undergo percutaneous implantation of up to 3 drug delivery microdevices up to 2 days before standard of care surgery. Patients receive doxorubicin hydrochloride, ifosfamide, vincristine, irinotecan, temozolomide, pazopanib, everolimus, polyethylene glycol, ganitumab, and temsirolimus via the microdevice in the absence of unacceptable toxicity. At the time of surgery 2 days later, patients have the drug delivery microdevice(s) removed.

Intervention: Drug Delivery Microdevice (Device)

Device Feasibility (microdevice, surgery)

Experimental

Patients undergo percutaneous implantation of up to 3 drug delivery microdevices up to 2 days before standard of care surgery. Patients receive doxorubicin hydrochloride, ifosfamide, vincristine, irinotecan, temozolomide, pazopanib, everolimus, polyethylene glycol, ganitumab, and temsirolimus via the microdevice in the absence of unacceptable toxicity. At the time of surgery 2 days later, patients have the drug delivery microdevice(s) removed.

Intervention: Doxorubicin Hydrochloride (Drug)

Device Feasibility (microdevice, surgery)

Experimental

Patients undergo percutaneous implantation of up to 3 drug delivery microdevices up to 2 days before standard of care surgery. Patients receive doxorubicin hydrochloride, ifosfamide, vincristine, irinotecan, temozolomide, pazopanib, everolimus, polyethylene glycol, ganitumab, and temsirolimus via the microdevice in the absence of unacceptable toxicity. At the time of surgery 2 days later, patients have the drug delivery microdevice(s) removed.

Intervention: Temozolomide (Drug)

Device Feasibility (microdevice, surgery)

Experimental

Patients undergo percutaneous implantation of up to 3 drug delivery microdevices up to 2 days before standard of care surgery. Patients receive doxorubicin hydrochloride, ifosfamide, vincristine, irinotecan, temozolomide, pazopanib, everolimus, polyethylene glycol, ganitumab, and temsirolimus via the microdevice in the absence of unacceptable toxicity. At the time of surgery 2 days later, patients have the drug delivery microdevice(s) removed.

Intervention: Everolimus (Drug)

Device Feasibility (microdevice, surgery)

Experimental

Patients undergo percutaneous implantation of up to 3 drug delivery microdevices up to 2 days before standard of care surgery. Patients receive doxorubicin hydrochloride, ifosfamide, vincristine, irinotecan, temozolomide, pazopanib, everolimus, polyethylene glycol, ganitumab, and temsirolimus via the microdevice in the absence of unacceptable toxicity. At the time of surgery 2 days later, patients have the drug delivery microdevice(s) removed.

Intervention: Pazopanib (Drug)

Device Feasibility (microdevice, surgery)

Experimental

Patients undergo percutaneous implantation of up to 3 drug delivery microdevices up to 2 days before standard of care surgery. Patients receive doxorubicin hydrochloride, ifosfamide, vincristine, irinotecan, temozolomide, pazopanib, everolimus, polyethylene glycol, ganitumab, and temsirolimus via the microdevice in the absence of unacceptable toxicity. At the time of surgery 2 days later, patients have the drug delivery microdevice(s) removed.

Intervention: Doxorubicin (Drug)

Device Feasibility (microdevice, surgery)

Experimental

Patients undergo percutaneous implantation of up to 3 drug delivery microdevices up to 2 days before standard of care surgery. Patients receive doxorubicin hydrochloride, ifosfamide, vincristine, irinotecan, temozolomide, pazopanib, everolimus, polyethylene glycol, ganitumab, and temsirolimus via the microdevice in the absence of unacceptable toxicity. At the time of surgery 2 days later, patients have the drug delivery microdevice(s) removed.

Intervention: Ifosfamide (Drug)

Device Feasibility (microdevice, surgery)

Experimental

Patients undergo percutaneous implantation of up to 3 drug delivery microdevices up to 2 days before standard of care surgery. Patients receive doxorubicin hydrochloride, ifosfamide, vincristine, irinotecan, temozolomide, pazopanib, everolimus, polyethylene glycol, ganitumab, and temsirolimus via the microdevice in the absence of unacceptable toxicity. At the time of surgery 2 days later, patients have the drug delivery microdevice(s) removed.

Intervention: Polyethylene Glycol (Drug)

Device Feasibility (microdevice, surgery)

Experimental

Patients undergo percutaneous implantation of up to 3 drug delivery microdevices up to 2 days before standard of care surgery. Patients receive doxorubicin hydrochloride, ifosfamide, vincristine, irinotecan, temozolomide, pazopanib, everolimus, polyethylene glycol, ganitumab, and temsirolimus via the microdevice in the absence of unacceptable toxicity. At the time of surgery 2 days later, patients have the drug delivery microdevice(s) removed.

Intervention: Temsirolimus (Drug)

Device Feasibility (microdevice, surgery)

Experimental

Patients undergo percutaneous implantation of up to 3 drug delivery microdevices up to 2 days before standard of care surgery. Patients receive doxorubicin hydrochloride, ifosfamide, vincristine, irinotecan, temozolomide, pazopanib, everolimus, polyethylene glycol, ganitumab, and temsirolimus via the microdevice in the absence of unacceptable toxicity. At the time of surgery 2 days later, patients have the drug delivery microdevice(s) removed.

Intervention: Vincristine (Drug)

Outcomes

Primary Outcomes

Determination of the safety and technical feasibility of microdevice insertion/removal, as assessed by adverse events by CTCAE 5.0.

Time Frame: Up to 1 year

Assess the safety of microdevice placement and removal in subjects undergoing resection of sarcoma.

To assess efficacy across all individual agents or drug combinations tested using the microdevice technology.

Time Frame: Up to 1 year

The primary outcome measure is the number of participants that experience a grade 3 or 4 adverse event, as defined by CTCAE 5.0. A second primary outcome measure of device technical feasibility measures the number of devices that successfully generate high-quality data from each of at least 50% of the patients enrolled. A successful device is one that generated high-quality data from at least 40% of the drugs in the device by IHC and/or other methodologies

Secondary Outcomes

  • Determine the drug antineoplastic drug effects observed in the adjacent tumor tissues following exposure to drug micro-doses released by each microdevice reservoir.(Up to 1 year)

Investigators

Sponsor Class
Other
Responsible Party
Sponsor

Study Sites (1)

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