This study explores the key clinical issues in the field of neoadjuvant therapy for locally advanced rectal cancer. There are three core problems with the currently recommended total neoadjuvant therapy (TNT) in the guidelines: the lack of evidence-based consensus on the timing of radiotherapy and chemotherapy, the undefined number of chemotherapy cycles, and the uncertainty in the selection of the precise radiotherapy mode. In recent years, the combination of immune checkpoint inhibitors (ICIs) with the PD-1/PD-L1 inhibitors as the core and the TNT regimen has shown a trend of further enhancing tumor regression, providing a possibility for the organ function preservation of rectal cancer. However, existing clinical studies exhibit a high degree of heterogeneity in treatment strategies. In particular, there is a lack of high-quality evidence-based medical evidence in core aspects such as the timing of ICIs intervention and the combination of treatment regimens. This study is designed as a prospective, multicenter, randomized controlled phase II study. The "pick the winner" strategy for screening the optimal regimen is adopted to evaluate the efficacy of four neoadjuvant regimens (Group SCRT-4: short-course radiotherapy → 4 cycles of chemotherapy + ICIs; Group SCRT-6: short-course radiotherapy → 6 cycles of chemotherapy + ICIs; Group LCRT-4: concurrent chemoradiotherapy → 4 cycles of chemotherapy + ICIs; Group LCRT-6: concurrent chemoradiotherapy → 6 cycles of chemotherapy + ICIs). By evaluating indicators such as the complete response rate, organ preservation rate, safety, long-term survival, as well as the anal function and quality of life of patients, treatment strategies with clinical advantages will be screened out, providing an evidence-based basis for subsequent phase III confirmatory trials.
Study Type
INTERVENTIONAL
Allocation
RANDOMIZED
Purpose
TREATMENT
Masking
NONE
Enrollment
228
PD-1 inhibitor
Pelvic radiation, SCRT, 5 Gy x 5 alone
Pelvic radiation, 50 Gy in 25 fractions over 5 weeks, concurrently with capecitabine (825 mg/m2, twice a day).
chemotherapy regimen, Oxaliplatin 130 mg/m2 IV day 1,Capecitabine 1000 mg/m2 twice daily PO for 14 days(3 weeks per cycle)
Cancer Hospital, Chinese Academy of Medical Sciences, Peking Union Medical College
Beijing, China
RECRUITINGNational Cancer Center/National Clinical Research Center for Cancer/Cancer Hospital & Shenzhen Hospital, Chinese Academy of Medical Sciences and Peking Union Medical College, Shenzhen
Shenzhen, China
RECRUITINGRate of complete response
The rate of pathological complete response plus clinical complete response
Time frame: 2 months after completion of neoadjuvant therapy or 10 days after surgery
Rate of TRG grade
Dowrak TRG grade
Time frame: 10 days after surgery
Tumor downstaging rate
rate of ypT0-2N0
Time frame: 10 days after surgery
Rate of acute toxicities during radiation, chemotherapy ± immunotherapy
Incidence of acute toxicities during radiation, chemotherapy ± immunotherapy
Time frame: 1 week after completion of neoadjuvant therapy
Rate of surgical complications
Clavien-Dindo Grade
Time frame: 3 months after completion of surgery
Rate of OS
overall survival
Time frame: 3 years after randomization
Rate of DFS
Disease-Free Survival
Time frame: 3 years after randomization
Rate of LRR
Locoregional Recurrence
Time frame: 3 years after randomization
Rate of DM
Distant Metastasis
Time frame: 3 years after randomization
Organ Preservation Rate
The organ preservation rate is defined as the proportion of patients who successfully retain the rectal organ and its function through effective local treatment of the primary lesion, achieved by approaches such as a watch-and-wait (W\&W) strategy or local excision. Successful organ preservation is determined if the following criteria are met: 1. Undergoing the W\&W approach without local regrowth; 2. Undergoing local excision with negative resection margins and no local recurrence; 3. Avoidance of total mesorectal excision (TME) surgery with preservation of functional rectal reflex pathways; 4. No definitive evidence of residual local tumor; 5. Absence of a permanent stoma or unclosed temporary stoma.
Time frame: 3 years after randomization
Quality of life (QoL) in cancer patients
Quality of life in cancer patients will be evaluated using the European Organisation for Treatment and Research of Cancer (EORTC) Quality of Life Questionnaires QLQ-C30 . The scoring and interpretation of the QLQ-C30 scales were performed according to the EORTC guidelines. Each item is scored from 0 to 100, with higher scores indicating better functioning on the functional scales/items and more severe symptoms on the symptom scales/items.
Time frame: baseline, 10 days after completion of neoadjuvant therapy, 10 days after surgery, 3 months after randomization, 6 months after randomization, 1 year after randomization, 2 years after randomization, 3 years after randomization
Quality of life (QoL) in rectal cancer patients
Quality of life in rectal cancer patients will be evaluated using the European Organisation for Treatment and Research of Cancer (EORTC) Quality of Life Questionnaires QLQ-CR29 . The scoring and interpretation of the QLQ-CR29 scales were performed according to the EORTC guidelines. Each item is scored from 0 to 100, with higher scores indicating better functioning on the functional scales/items and more severe symptoms on the symptom scales/items.
Time frame: baseline, 10 days after completion of neoadjuvant therapy, 10 days after surgery, 3 months after randomization, 6 months after randomization, 1 year after randomization, 2 years after randomization, 3 years after randomization
Anal function
Anal function will be evaluated using the Wexner incontinence score. This scoring system consists of 5 items evaluating the frequency of gas incontinence, frequency of liquid incontinence, frequency of solid incontinence, frequency of wearing pads, and lifestyle alterations, with a score ranging from 0-4 for each question. The total score is calculated, with higher scores indicating poorer anal function.
Time frame: baseline, 10 days after completion of neoadjuvant therapy, 10 days after surgery, 3 months after randomization, 6 months after randomization, 1 year after randomization, 2 years after randomization, 3 years after randomization
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