Sunnybrook Health Sciences Centre
Toronto, Ontario, M4N 3M5, Canada
Location status: Recruiting
Location contact
Gregory J Czarnota, PhD, MD
CONTACT
Gregory J Czarnota, PhD, MD
PRINCIPAL_INVESTIGATOR
NCT Number: NCT03908684
Our objective in this study is to identify an optimal ultrasound spectroscopy parameter that can be used as an early predictor of pathological complete or partial response in men with prostate cancer and men and women with rectum and head and neck cancers receiving treatment radiotherapy.
We have previously demonstrated that high-frequency ultrasound and spectroscopy, and recently conventional-frequency ultrasound and spectroscopy may be used to detect cell death in vitro, in situ and in vivo. The method can detect different forms of cell death and has been demonstrated to be sensitive to apoptotic, necrotic and mitotic cell death. The main goal, as described above, is to select the best ultrasound spectroscopy parameter to use as an early predictor of pathological complete response
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Observational
Toronto, Ontario, M4N 3M5, Canada
Location status: Recruiting
Gregory J Czarnota, PhD, MD
CONTACT
Gregory J Czarnota, PhD, MD
PRINCIPAL_INVESTIGATOR
The purpose of the study is to test the hypothesis that ultrasound imaging and spectroscopy may be used as a predictive marker of advanced tumour response to radiotherapy. The main goal is to select the best ultrasound ultrasound spectroscopy parameter and vascular distribution index to use as an early predictor of pathological complete or partial response as a primary endpoint. Tumour size decrease as a secondary endpoint. Other secondary endpoints will include measuring changes in blood vessel distribution with treatment and changes in ultrasound parameters will be correlated with two and five year survival rates. Finally, we will investigate if prostate masses can be characterized (benign vs. malignant) using ultrasound backscatter parameters.
Healthy volunteers accepted: No
Only the study team can determine whether someone qualifies for participation.
Inclusion criteria
(i) hemoglobin >90 mg/dL (ii) leukocytes >3,000/mL (iii) absolute neutrophil count >1,500/mL (iv) platelets >100,000/mL (v) total bilirubin within normal institutional limits (vi) AST(SGOT)/ALT(SGPT) <2.5 X institutional upper limit of normal (vii) creatinine within normal institutional limits or creatinine clearance >60 mL/min/1.73 m2 for patients with creatinine levels above institutional upper limit of normal
Exclusion criteria
(i) previous radiotherapy to an involved area (ii) active collagen vascular disease (iii) genetic diseases associated with hyper-radiosensitivity
Ultrasound Spectroscopy assess changes in five different ultrasound spectroscopic parameters over different times during treatment with radiotherapy as predictors of tumour shrinkage and pathologic complete response. Ultrasound parameters investigated will include mid-band fit (related to image intensity),spectroscopic slope (backscatter versus frequency), spectroscopic intercept, histogram fit size and shape parameters which can be used as estimates of scatterer size and concentration.
Other names: Ultrasound Spectroscopy
Time frame: Up to 5 years
Evaluate tumour response to radiotherapy as measured radiologically within the treated therapeutic region.
Time frame: Up to 5 years
Evaluating tumour response to radiotherapy as measured radiologically within the treated therapeutic region and assessing long-term clinical outcomes.
Contact information is provided by the study sponsor or research team.
Sunnybrook Health Sciences Centre
Other
Pilot Investigation of Ultrasound Cell Death Imaging and Spectroscopy as Early Indicators of Response to Radiation Treatment in Prostate, Rectum and Head and Neck Cancers, and to Characterize Prostate Masses
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