This study will evaluate whether the addition of Rosuvastatin to standard chemoradiation therapy for the treatment of locally advanced rectal cancer may improve the pathological response rate and survival compared to standard chemoradiation therapy alone.
The standard treatment of locally advanced rectal cancer involves neoadjuvant chemoradiation therapy (CRT) followed by surgery and further adjuvant chemotherapy. The pathologic complete responses associated with neoadjuvant CRT are 10-20%. The prognosis of patients undergoing neoadjuvant CRT is associated to the extent of post-treatment tumour regression, the final primary tumour stage and presence of involved lymph nodes in the surgical specimen. This data suggests that treatments that enhance the pathological response may result in improvements in survival. Overwhelming preclinical and clinical evidence suggests that statins demonstrate anticancer properties and sensitize cancer tissues and protects normal tissues to the effects of radiation. Hence, the investigators hypothesize that the addition of rosuvastatin to standard CRT for the treatment of locally advanced rectal cancer may improve the pathological response rate. This protocol describes an open-label single-arm phase 2 study designed to test this hypothesis. Moreover, this study will also identify genetic, serological, and pathological biomarkers that may be both prognostic and predictive of response and toxicity to treatment.
Study Type
INTERVENTIONAL
Allocation
NA
Purpose
TREATMENT
Masking
NONE
Enrollment
45
40 mg rosuvastatin orally once per day with or without food, swallowed whole (not chewed, crushed or divided) starting 2 weeks prior to the initiation of radiation therapy and stopped at 4 weeks after the completion of radiation. Total duration of Rosuvastatin is 11 weeks if 25 fractions of radiotherapy are given, or 12 weeks if 30 fractions of radiotherapy are given.
Tom Baker Cancer Centre
Calgary, Alberta, Canada
To determine the pathological complete response rate in patients with high-risk locally advanced rectal cancer treated with standard neo-adjuvant chemotherapy and radiation in combination with rosuvastatin.
The rate of post-surgical specimens that demonstrate absence of any residual invasive disease or Grade 4 (complete) histological regression using the Dworak classification.
Time frame: Up to 3 years
To determine the Ro resection rate
The rate that the surgical margins are negative of any invasive disease.
Time frame: Up to 3 years
To determine the pathological near-complete or complete tumour response rate
Grade 3 (near-complete) or 4 (complete) histological regression using the Dworak classification.
Time frame: Up to 3 years
To determine the sphincter preservation rate
The proportion of patients that undergo a sphincter preservation surgery versus abdominoperineal resection.
Time frame: Up to 3 years
To determine the down staging rate
Proportion of patients that have a down staging of the primary tumour and/or lymph nodes; i.e. comparison between cT/N and ypT/N
Time frame: Up to 3 years
To determine 3-year disease free survival
The proportion of patients alive with no clinical, radiological, or pathological evidence of rectal cancer recurrence at 3 years, starting at the time treatment was initiated. This definition includes, recurrence or relapse of rectal cancers, second primary cancer or death as events
Time frame: Up to 3 years
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To determine 3-year overall survival
The proportion of patients alive at 3 years, starting at the time treatment was initiated.
Time frame: Up to 3 years
To determine the neoadjuvant rectal cancer (NAR) score
A surrogate endpoint of overall survival following neoadjuvant rectal cancer therapy.
Time frame: Up to 3 years
Number of participants with treatment-related adverse events as assessed by CTCAE v4.0.
Time frame: Up to 3 years
To identify the genetic biomarkers that may be both prognostic and predictive of response and toxicity to treatment.
BRAF and KRAS genetic testing. Direct exon sequencing.
Time frame: up to 3 years
To identify serological biomarkers that may be both prognostic and predictive of response and toxicity to treatment.
Changes in the levels of HMG CoA reductase pathway metabolites (Mevalonate, Ubiquinone) will also be performed using pre- and post-treatment serological markers.
Time frame: up to 3 years
To identify pathological biomarkers that may be both prognostic and predictive of response and toxicity to treatment.
IHC using pre- and post FFPE tumour tissue samples. (Ki67, phopsorylated AKT, HMG CoA reductase, GGPS1 and ApopTag, p21, p27 and rhoA)
Time frame: up to 3 years
Tmax will be collected as pharmacokinetic data
Time frame: up to 3 years
Cmax will be collected as pharmacokinetic data
Time frame: up to 3 years
T1/2 will be collected as pharmacokinetic data
Time frame: up to 3 years
Dose normalized Cmax will be collected as pharmacokinetic data
Time frame: up to 3 years
Area under the curve (AUC) will be collected as pharmacokinetic data
Time frame: up to 3 years
Dose normalized AUC will be collected as pharmacokinetic data
Time frame: up to 3 years