Enadenotucirev
BiologicalEnadenotucirev is a live replicating oncolytic adenovirus; it is considered a BioSafety Level 1 (BSL-1) infectious substance.
NCT Number: NCT03916510
The use of chemoradiotherapy (CRT), in combination with surgery is the standard of care in the treatment of locally advanced rectal cancer. However some patients don't respond well to radiation.
More advanced radiotherapy techniques, that result in fewer toxicities, means that we are now able to combine new anti-cancer agents into standard treatment. Targeting the tumour early in this way has the potential to improve response rates.
Enadenotucirev is a specific type of anti-cancer virus that only targets cancer cells. It acts in the same way as any virus and can only survive by replicating inside cancer cells and not normal, non-cancerous cells. This means that it can selectively target and destroy tumours, without directly affecting normal cells. It also has the ability to attract cells from the body's immune system to help fight the cancer.
The addition of enadenotucirev to standard chemoradiotherapy treatment may have a combined effect on the cancer cells with potentially few, additional side effects.
This trial aims to determine the optimal dose and frequency of the virus to give by gradually increasing the number of doses each successive patient receives, and then increasing the dose of the virus itself. Each patient will receive a minimum of 3 doses, up to a maximum of 8, spread over the course of their 5 week standard chemoradiotherapy treatment. Patients will be closely monitored at all times to ensure that with each dosing group, there aren't excessive side effects.
Patients will then undergo surgery as part of their standard of care and be followed up for up to 4-6 weeks post-surgery.
This trial aims to determine the optimal dose and frequency that can then be used in future studies with the possibility of exploring the addition of Enadenotucirev to other chemoradiotherapy treatments.
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Notify Me18 year and older
All sexes
Interventional
Phase 1
Velindre Cancer Centre, Cardiff, United Kingdom
At present identifying novel radiosensitising agents in colorectal cancer is an area of high need for patients considering sphincter preserving surgery or needing down staging to facilitate surgery.
Although the combination of Enadenotucirev with chemoradiation is novel, there is a wealth of evidence to support the rationale for combining this class of agent with radiation and chemotherapy.
Enadenotucirev is a group B oncolytic virus under development for the systemic treatment of metastatic or advanced epithelial tumours. Enadenotucirev is a chimeric adenovirus type 11p (Adp/adenovirus type 3 (Ad3) virus, discovered through a process of bio-selection from a library of chimeric viruses produced from a pool of adenoviruses from seven different serotypes utilizing human HT-29 colorectal cancer (CRC) cells.
Enadenotucirev shows selective and potent toxicity in humans carcinoma cells with only very limited or no toxicity to normal (non-cancerous) human cells. Other than humans, there is no known permissive species for Enadenotucirev. The principle advantage of oncolytic therapy is that the virus replicates only in diseased cells meaning that the concentration of drug is amplified at the site of pathology so that it is higher in the tumour than in healthy tissue. Virus particles spread from cell to cell within a tumour nodule until they reach non-permissive normal tissues, in principle destroying all viable tumour cells they encounter.
While the overall understanding of the mechanism of action of Enadenotucirev in humans is still under investigation, it is now well established from non-clinical and clinical studies that the mechanism of anti-cancer efficacy of oncolytic viruses not only involves direct infection and lysis of tumour cells, but that immune responses stimulated via an increased release of tumour-associated antigens and immune-inflammatory activation signals play a key role.
CEDAR is dual endpoint, dose escalation phase 1 trial using a time to event continual reassessment method (TiTE CRM). Response and Toxicity endpoints will be combined in dose escalation models to identify the optimal dose schedule. Dose decisions are made using the statistical model which uses number of Dose Limiting Toxicities (DLT) experienced in different dosing schedules, instead of just using the data from that particular dose, as in the case of 3+3 model, meaning it uses all available data to make a dose decision.
This primary objective is to determine the optimal dose and frequency of the virus by firstly gradually increasing the number of doses each successive patient receives, and then increasing the dose of the virus itself. All participants will receive 3 loading doses in weeks 1-2, prior to initiation of standard chemoradiotherapy. Further doses of Enadenotucirev will either be given after or during and after standard chemoradiotherapy and this is dependent on which of the 4 different dose groups they are assigned to. The individual doses given will be either 1x10^12 viral particles (vp) or 3x10^12 vp.
Each patient will receive a minimum of 3 doses, up to a maximum of 8, spread over the course of 9 weeks. Patients will be closely monitored at all times to ensure that with each dosing group, there aren't excessive side effects.
Patients will then undergo surgery as part of their standard of care and be followed up for 4-6 weeks after surgery.
Dose Limiting Toxicities (DLTs)
DLTs are defined as any of the following occurring between the start of trial treatment until the Week 13 visit and assessed as possibly, probably or definitely related to enadenotucirev or the interaction between enadenotucirev and radiotherapy and/or capecitabine.
Renal:
o Development of proteinuria, 2+ as measured by urinalysis and confirmed with an albumin/creatinine ratio of >3g/mmol with a 24-hour urinary protein ≥1g/24h or if there is a decline in estimated glomerular filtration rate (eGFR) (where a decline in eGFR is defined as eGFR <60ml/min/1.73m2 or a drop in eGFR by 20% from screening, baseline of previous visit), following administration of enadenotucirev, shall be classified as a DLT. No further doses of enadenotucirev will be administered to that patient.
Acute hematologic toxicity:
Acute non-hematologic toxicity:
General:
Healthy volunteers accepted: No
Only the study team can determine whether someone qualifies for participation.
Inclusion criteria
(i) ≤3 mg/mmol or (ii) >3 mg/mmol with a 24 hour urinary protein <1.0 g/24 hours and
Exclusion criteria
Enadenotucirev is a live replicating oncolytic adenovirus; it is considered a BioSafety Level 1 (BSL-1) infectious substance.
Capecitabine is a chemotherapy drug licensed for use in rectal cancer, it is a non-cytotoxic pre-cursor of the cytotoxic 5-fluorouracil. Due to Capecitabine not being taken on Enadenotucirev dosing days it is considered an investigational medicinal product within this trial.
50 Gy/25#
Time frame: From Day 1 of treatment to Week 13 (13 weeks +/- 3 days)
Dose escalation for this trial was informed by a Time To Event Continual Reassessment Method (TiTE CRM). This statistical model was also able to determine the optimal dose schedule of enadenotucirev that can be administered with chemoradiation (highest treatment schedule resulting in less than 30% dose limiting toxicity rate). The definition of a DLT for this trial can be found in the study description section of this record.
Time frame: 13 weeks after starting treatment (+/- 3 days)
To inform the optimal dose and frequency of enadenotucirev that can be administered with chemoradiation. The MRI tumour regression grade uses the following scale and for the purposes of the trial analysis and dose escalation, scores of 1 or 2 were classified as responders and scores of 3, 4 or 5 were classified as non-responders:
Time frame: From start of treatment to end of treatment (9 weeks)
Ability to deliver enadenotucirev concurrently with chemoradiation, based on treatment tolerance for the combination of enadenotucirev, capecitabine and radiation.
Time frame: At 4-6 weeks post surgery (minimum 18 weeks after start of treatment)
To measure local response rate to combined therapy following treatment with enadenotucirev, capecitabine and radiotherapy. Pathological complete response (pCR) was only observable in patients undergoing surgery. The final resected tumour was assessed by an experienced lower gastrointestinal pathologist and staged according to the Royal College of Pathologists recommended standard datasets as per standard of care. Pathological complete response (pCR) is staged as ypT0N0 - a complete regression of the primary tumour (ypT0), with concurrently no (residual) tumoral invasion of the lymph nodes (ypN0).This notation is part of the TNM staging system used in oncology, where "T" stands for the size and extent of the main tumour, and "N" describes the presence of cancer in nearby lymph nodes.
Time frame: At 4-6 weeks post surgery (minimum 18 weeks after start of treatment)
To measure local response rate to combined therapy following treatment with enadenotucirev, capecitabine and radiotherapy. The Neoadjuvant Rectal (NAR) score ranges from 0-100, where a higher score equates to a worse prognosis. The NAR score outperforms pathological complete response (pCR) at predicting disease free survival (DFS) and overall survival (OS) in clinical trials using neoadjuvant therapy for rectal cancer. It similarly performs well at predicting DFS and OS in trials using pre-op chemo and chemoradiotherapy. Ref: George TJ, Allegra CJ, Yothers G. Neoadjuvant Rectal (NAR) Score: a New Surrogate Endpoint in Rectal Cancer Clinical Trials. Curr Colorectal Cancer Rep. 2015;11(5):275-80.
NAR = [5pN - 3(cT - pT) + 12]^2 / 9.61
Where:
cT is an element of the set {1, 2, 3, 4}, pT is in {0, 1, 2, 3, 4}, pN is in {0, 1, 2}. cT clinical tumour stage, pT pathologic tumour stage, pN pathologic nodal stage
University of Oxford
Other
A Phase 1 Trial of the Safety, Tolerability and Biological Effects of Intravenous Enadenotucirev, a Novel Oncolytic Virus, in Combination With Chemoradiotherapy in Locally Advanced Rectal Cancer
Acronym: CEDAR
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