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This research is being done to study the safety of implanting and retrieving a microdevice that releases up to 19 drugs directly within a cancerous lesion as a possible tool to evaluate the effectiveness of several approved cancer drugs against cutaneous T cell lymphoma and peripheral T cell lymphoma
This research study is a Pilot and Feasibility Study, which is the first time investigators are examining this study microdevice loaded with drugs in patients with cutaneous lesions of cutaneous T cell lymphoma (CTCL) or peripheral T cell lymphoma (PTCL) patients.
The FDA (the U.S. Food and Drug Administration) has not approved the use of all the drugs contained in the microdevice as a treatment for cutaneous or peripheral T cell lymphoma. All drugs used in this study are FDA approved. Some drugs are for different cancer indications. Romidepsin, vorinostat, bexarotene, brentuximab vedotin, pralatrexate, and mogamulizumab have been FDA approved for CTCL. The FDA has not approved the use of the microdevice as a tool to identify what cancer treatment is best for any disease.
In this research study, the investigators are investigating whether the microdevice loaded with 19 drugs can be safely inserted in and removed from cancerous skin lesion. The microdevice was developed as a tool with the ultimate goal to help screen several existing and investigational drugs directly within a patient's tumor to identify what drugs are the most effective for treating a patient's cancer.
This microdevice was investigated in laboratory studies and shown to help identify what drugs could be effective in treating a specific cancer type. The microdevice was able to release drugs only to the immediately surrounding tumor tissue in concentrations of one millionth of what is normally needed for a therapeutic dose. The microdevice can be retrieved along with a few millimeters of surrounding treated tumor tissue for analysis of tumor response to drug.
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| Label | Type | Description | Intervention Names |
|---|---|---|---|
| Initial Cohort | Experimental |
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| Expansion Cohort | Experimental |
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| Name | Type | Description | Arm Group Labels | Other Names |
|---|---|---|---|---|
| Microdevices | Device | The microdevice was developed as a tool with the ultimate goal to help screen several existing and investigational drugs directly within a patient's tumor to identify what drugs are the most effective for treating a patient's cancer. |
| Measure | Description | Time Frame |
|---|---|---|
| To Quantify The Number Of Microdevice-Related Failures Or Adverse Events As Assessed By CTCAE v4.0 After Microdevice Placement and Removal | "Failure" will be considered any of the following:
| 2 years |
| To Retrieve The Device With Sufficient Tissue Of Sufficient Quality | For the feasibility endpoint, a "successful" procedure will be defined as the ability to retrieve the device (by either skin punch biopsy tool or surgical excision) without damaging tumor tissue surrounding the microdevice to allow for immunohistochemistry analysis. For purposes of this endpoint, feasibility will be assessed on a per-device basis rather than a per-patient basis, with each device considered relatively independent in terms of placement, retrieval, and analysis. | 2 years |
| Measure | Description | Time Frame |
|---|---|---|
| Local Intralesional Response To Clinically Relevant Cancer Agents In Cutaneous T Cell Lymphomas | 2 years | |
| Intralesional Heterogeneity In Drug Response Using Quantitative Histopathologic Assessment Of Tumor Tissue | Comparison of tumor responses to like drug delivered from separate microdevices. |
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Inclusion Criteria:
Participants must have clinical diagnosis of cutaneous T-cell lymphoma or peripheral T-cell lymphoma with cutaneous involvement supported by histological evaluation of skin lesions.
Participants must have measurable cutaneous disease, based on the modified Severity Weighted Assessment Tool (mSWAT; definition provided in appendix E). Skin lesions situated in a previously irradiated area are considered measurable if progression has been demonstrated in such lesions.
Two lesions are amenable to placement of multiple devices in terms of lesion size and location, as assessed by dermatologist (minimum diameter of 1.5 cm).
Patient must have the following minimum washout period from previous treatments and cannot be on any systemic therapy at the time of implantation.
Age minimum of age 18.
ECOG performance status ≤2 (Karnofsky ≥60%, see Appendix A).
Participants will undergo laboratory testing within 28 days prior to the procedure. Participants must have marrow function as defined below:
Participants must be evaluated by a dermatologist or medical oncologist who will determine the clinically appropriate treatment strategy based on clinical history and extent of disease. Systemic therapy will be mandatory for cohort 2/expansion cohort, not for cohort 1. Systemic therapy may be initiated anytime within 4 weeks of MD removal.
Patients must be deemed medically stable to undergo percutaneous procedures by their treating cutaneous oncologist.
Ability to understand and the willingness to sign a written informed consent document.
Patients must be willing to undergo research-related genetic and transcriptomic sequencing (somatic and germline) and data management, including the deposition of de-identified genetic sequencing data in NIH central data repositories.
Patient is considered to have capacity to properly follow instructions at home for the care of device(s) that will each have an attached thin guidewire protruding through the skin and fixed in place (see Appendix B).
Exclusion Criteria:
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| Name | Role | Phone | Extension | |
|---|---|---|---|---|
| Cecilia Larocca, MD | Contact | 617-632-6571 | clarocca@partners.org |
| Name | Affiliation | Role |
|---|---|---|
| Cecilia Larocca, MD | Dana-Farber Cancer Institute | Principal Investigator |
| Facility | Status | City | State | ZIP | Country | Contacts |
|---|---|---|---|---|---|---|
| Dana Farber Cancer Institute | Recruiting | Boston | Massachusetts | 02115 | United States |
The Dana-Farber / Harvard Cancer Center encourages and supports the responsible and ethical sharing of data from clinical trials. De-identified participant data from the final research dataset used in the published manuscript may only be shared under the terms of a Data Use Agreement. Requests may be directed to: [contact information for Sponsor Investigator or designee]. The protocol and statistical analysis plan will be made available on Clinicaltrials.gov only as required by federal regulation or as a condition of awards and agreements supporting the research
Data can be shared no earlier than 1 year following the date of publication
BCH - Contact the Technology & Innovation Development Office at www.childrensinnovations.org or email TIDO@childrens.harvard.edu BIDMC - Contact the Beth Israel Deaconess Medical Center Technology Ventures Office at tvo@bidmc.harvard.edu BWH - Contact the Partners Innovations team at http://www.partners.org/innovation DFCI - Contact the Belfer Office for Dana-Farber Innovations (BODFI) at innovation@dfci.harvard.edu MGH - Contact the Partners Innovations team at http://www.partners.org/innovation
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Expansion cohort may enroll only after initial cohort has completed enrollment
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| Standard of care therapy | Other | Participant to receive standard of care therapy as previously determined by participant's treating oncologist and/or dermatologist, which may include a skin-directed or systemic therapy |
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| Standard of care systemic therapy | Other | Participant to receive standard of care therapy as previously determined by participant's treating oncologist and/or dermatologist, which must include a systemic therapy. |
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| 2 years |
| Assessment Of Microdevice-Predicted Tumor Response To Drug | Correlation of tumor response to drug released by microdevice compared with clinical response to systemic administration of like drug | 3 years |
| Quantitative Assessment Of Drug Effect On The Tumor Microenvironment And Signal Pathways By Immunofluorescence | Descriptive statistics will be used to summarize the quantitative measurements in cell number of different immunophenotypes and quantify signal transduction cascades. Descriptive statistics will be employed to summarize the variance in different measures of drug-induced microenvironment changes across participants. | 5 years |
| To Identify Genomic And Transcriptomic Biomarkers of Drug Response by Whole Exome and RNA Sequencing and Subsequent Correlations To Microdevice Predicted Tumor Response | Genetic alterations will be cataloged in terms of single nucleotide variants, insertions/deletions, and copy number changes and will be reported in a descriptive manner. Preliminary correlations between a specific genetic feature and specific clinical features will be tested using Fisher's exact test for categorical variables or the Wilcoxon Rank-Sum test for continuous variables. Analyses of correlations between genetic and clinical features in different specimen types and patient groups are exploratory, and will rely on descriptive statistics without formal hypothesis testing. For each genetic feature of interest (e.g. mutation, gene expression profile) we will divide patient samples into groups based on the presence or absence of the feature. We will then assess whether the presence of the feature is associated with clinical outcomes using odds ratios, or correlation between genetic feature and overall survival, using Kaplan Meier estimates, with 95% confidence intervals to each. | 5 years |
| ID | Term |
|---|---|
| D016410 | Lymphoma, T-Cell, Cutaneous |
| D016411 | Lymphoma, T-Cell, Peripheral |
| ID | Term |
|---|---|
| D016399 | Lymphoma, T-Cell |
| D008228 | Lymphoma, Non-Hodgkin |
| D008223 | Lymphoma |
| D009370 | Neoplasms by Histologic Type |
| D009369 | Neoplasms |
| D008232 | Lymphoproliferative Disorders |
| D008206 | Lymphatic Diseases |
| D006425 | Hemic and Lymphatic Diseases |
| D007160 | Immunoproliferative Disorders |
| D007154 | Immune System Diseases |
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