View clinical trials related to Chemotherapy.
Filter by:Innate immune cells are an important part of the body's innate immune system, the first line of defense against infection and cancer. Tumor killer cells (TKC) are mixed cultures of two kinds of innate immune cells, namely natural killer cells (NK cells) and gamma delta T cells (γδT cells), which are co-activated and co-cultured ex-vivo in a certain proportion by the unique TKC technology. Adoptive TKC transfer is expected to exert a strong anti-tumor effect through synergistic action between NK cells and γδT cells. In this study, the safety, tolerance, and preliminary efficacy of adoptive TKC transfer combined with chemotherapy will be examined in patients with advanced NSCLC.
The study is to evaluate the efficacy and safety of duloxetine in Chinese solid tumor patients with taxanes-induced painful peripheral neuropathy. Duloxetine will be given to patients who have grade 1 or higher sensory neuropathy according to the NCI Common Terminology Criteria for Adverse Events (CTCAE) version 5.0 and at least 4 on a scale of 0 to 10 points, representing average chemotherapy-induced pain, after taxanes treatment. Patient-reported pain severity, functional interference, emotion condition and quality of Life will be assessed weekly using corresponding scales. Blood samples will be collected from each enrolled subjects before the start of treatment, and the potential biomarkers in predicting duloxetine efficacy or safety will be explored by genomic profiling.
This study will perform an early Phase I feasibility study with single-arm, double-baseline repeated measured design. The investigators will test the feasibility of using focal vibration to improve symptoms of persistent CIPN.
This is an observational study to discover risk factors of chemotherapy-induced peripheral neuropathy (CIPN) in 350 patients with early stage breast cancer undergoing taxane-based chemotherapy at two main sites (University of North Carolina at Chapel Hill (UNC) Hospital, including Rex Hospital, and the University of Alabama at Birmingham (UAB) Hospital). The primary purpose of this study to explore patient- and procedure-based variables that identify patients at risk for developing CIPN during chemotherapy.
Chemotherapy-induced nausea and vomiting (CINV) is one of the few most severe adverse effects of chemotherapy, which often panic patients undergoing cancer treatment. Though acute episodes of CINV are well controlled with pharmacologic agents, delayed CINV continues to present a treatment challenge. Significant progress has been made over the past many years in discovering the pathophysiology of CINV. Primarily, three areas in the brain including central pattern generator (CPG), nucleus tractus solitarius (NTS) and area postrema (AP) are implicated in generating emetic reflex in all types of CINV (anticipatory, acute and delayed). The latter two areas NTS and AP are located at the caudal end of the fourth ventricle of brain which lies outside of the blood brain barrier and hence are stimulated by agents present in either blood and/or cerebrospinal fluid (CSF). Furthermore, NTS and AP are rich in muscarinic, dopamine, serotonin, neurokinin (NK1) and histamine receptors which are particularly important in delayed CINV. Clinical trials of antimuscarinic, antidopaminergic, antihistaminic drugs to prevent CINV have yielded inconclusive results except for olanzapine which is known to act on multiple receptors in NTS/AP. Only NK1 antagonists (e.g. aprepitant) which prevent substance P (SP) from binding to NK1 receptors have shown promising results and are clinically used to prevent delayed CINV. SP is a tachykinin peptide encoded by TAC1 (tachykinin precursor 1) gene and is found abundant in both peripheral and CNS. NK1 receptors in NTS/AP upon binding with SP will generate emetic reflex which will trigger delayed CINV. Though the topical analgesic drug capsaicin is reported to interfere with endogenous SP, its antiemetic potential in CINV has not been studied. This study intend to explore the antiemetic potential of capsaicin which is known to interfere with SP release in the GIT and CNS.
Electroacupuncture (referred to as EA) may be an effective treatment for Chemotherapy-Induced Peripheral Neuropathy/CIPN pain. Acupuncture is a medical technique that involves insertion of very thin needles into specific areas on the body with the goal of promoting health and well-being. EA involves adding a very small amount of electricity through the acupuncture needles (electrical stimulation). Researchers have found that EA can increase the effects of regular acupuncture, and it is particularly helpful for treating different kinds of pain. The purpose of this study is to learn if EA can improve CIPN pain in cancer survivors, and if it is effective against other CIPN-related symptoms.
Effectiveness of hilotherapy for the prevention of oxaliplatin-induced peripheral neuropathy and pain in the treatment of gastrointestinal tumors: A randomized controlled trial.
Transdermal granisetron has been shown to as effective as oral/ intravenous granisetron when administered with or without dexamethasone. However, it has not been evaluated specifically against the delayed response of chemotherapy-induced nausea and vomiting (CINV) in comparison with palonosetron, as the complete response for the delayed phase was not reported in the comparative study by Seol et al (Support Care Cancer 2016;24:945-952). Thus, transdermal granisetron needs to be compared with palonosetron as part of dual and triple therapy in the delayed phase of CINV. This investigator-initiated study aims to compare the efficacy of granisetron transdermal patch and palonosetron combined with NK-1 receptor antagonist and dexamethasone in the prevention of delayed CINV in Chinese breast cancer patients who received high emetic or moderate emetic chemotherapy.
Neoadjuvant chemoimmunotherapy for locally advanced gastric and gastroesophageal junction (G/GEJ) cancer is currently under investigation. Most clinical studies have simply combined chemotherapy with anti-PD-1 therapy without considering the impact of chemotherapy drugs on activated immune cells. We designed this study to explore two different treatment regimens for neoadjuvant chemotherapy in patients with locally advanced G/GEJ cancer. One group received FLOT plus toripalimab on Day 1 of each cycle, every 2 weeks for 4 cycles, followed by surgery; the other group received FLOT plus toripalimab on Day 3 of each cycle, every 3 weeks for 3 cycles, followed by surgery. A total of 69 subjects were enrolled. Preliminary statistical analysis conducted one year after the last subject was enrolled revealed no statistically significant differences in pCR and MPR between the two regimens. The median DFS for both groups has not been reached, and there is no statistically significant difference in DFS between the two groups at present. Further subgroup analysis indicated that among subjects with PD-L1 CPS ≥1, the triweekly group achieved a rate of 42.1%, compared to 29.4% in the biweekly group, with no statistically significant difference between the two groups. However, the incidence of bone marrow suppression was lower in the triweekly group than in the biweekly group. Based on the preliminary findings, we plan to conduct an expanded study and transition to a multicenter clinical trial. This study aims to further validate the efficacy of the triweekly chemoimmunotherapy in patients with PD-L1 CPS ≥1 locally advanced G/GEJ cancer.
The treatment of distant metastasis is a key challenge for nasopharyngeal carcinoma because of poor outcomes, among which, chemotherapy is the cornerstone. However, many studies reported the use of different chemotherapy regimens to prolong the survival of metastatic nasopharyngeal carcinoma, while few of them focused on how to reduce the side effects of chemotherapy or improve the life quality of patients. Blocking the immune checkpoint is one of the effective strategies of tumor immunotherapy. Thus, we sought to find a proper chemotherapy regimen combined with PD-1 antibody JS001.