This is an open, prospective and interventional clinical study. Patients with advanced Human Epidermal Growth Factor Receptor 2 (HER2) positive breast cancer resistant to trastuzumab will be enrolled in the study. Histological specimens obtained from different metastatic foci of patients, are used to conduct genome-wide sequencing together with Circulating tumor DNA (ctDNA) of blood samples. Meanwhile, investigator will construct PDO model based on biopsy tissue. Patients as well as their paired Patient-derived organoids (PDO) models are divided into six groups according to genomic signatures. Each group of patients will receive the best targeted treatment scheme from the current clinical perspective, while the matched PDO model will accept a variety of potential effective schemes intervention. The future treatment plan of patients will be timely adjusted based on the tumor inhibition rate of PDO models. This study is the first time to explore the best individualized application sequence of targeted therapy for refractory HER2 positive breast cancer by combining genome sequencing with drug sensitivity test of PDO model. The results are expected to improve the prognosis of patients with advanced HER2 positive breast cancer.
In previous studies, investigator found that dynamic genomics detection of metastatic foci can fully reveal the mechanism of trastuzumab resistance. Different anti-HER2 treatment strategies for different mechanisms can improve the efficacy of HER2 positive advanced breast cancer, and the PDO drug sensitivity test model of breast cancer can be prior to patients' response to the exact efficacy of specific regimens.This study aimed to explore the optimal individualized drug combination and order for patients with advanced HER2 positive breast cancer resistant to trastuzumab based on a variety of existing diagnosis and treatment methods. This is an open, prospective and interventional clinical study. Patients with advanced HER2 positive breast cancer resistant to trastuzumab will be enrolled in the study. Histological specimens obtained from different metastatic foci of patients, are used to conduct genome-wide sequencing together with ctDNA of blood samples. Meanwhile, investigator will construct PDO model based on biopsy tissue. Patients as well as their paired PDO models are divided into six groups according to genomic signatures. Each group of patients will receive the best targeted treatment scheme from the current clinical perspective, while the matched PDO model will accept a variety of potential effective schemes intervention. The future treatment plan of patients will be timely adjusted based on the tumor inhibition rate of PDO models. This study is the first time to explore the best individualized application sequence of targeted therapy for refractory HER2 positive breast cancer by combining genome sequencing with drug sensitivity test of PDO model. The results are expected to improve the prognosis of patients with advanced HER2 positive breast cancer.
Study Type
INTERVENTIONAL
Allocation
NON_RANDOMIZED
Purpose
TREATMENT
Masking
NONE
Enrollment
120
Trastuzumab (6mg/Kg, iv.drip, d1, q3w)
Patuzumab (420mg iv.drip, d1,q3w)
nab-paclitaxel (200mg iv.drip, d1,d8, q3w)
Pyroltinib (400mg po qd)
Capecitabine (1250mg/m2, po, bid, d1-d14, q3w).
T-DM1(3.6mg/Kg, iv.drip, d1, q3w)
Everolimus (4mg, po, qd)
Palbociclib (125mg, po, qd)
Letrozole (2.5mg, qd).
Cindilimab (200mg, iv.drip, d1, q3w)
The First Affiliated Hospital of Xi'an Jiaotong University
Xi'an, Shaanxi, China
RECRUITINGJin Yang
Xi'an, Shaanxi, China
RECRUITINGORR
objective response rate (ORR) according to RECIST (version 1.1) of each group
Time frame: Up to six weeks, first evaluation
PDO model inhibition rate
Tumor regression rate based on the calculation of the long diameter in each group
Time frame: during the procedure
PFS1
Progress free survival (PFS) according to RECIST (version 1.1) of each group
Time frame: during the procedure
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