The outbreak of COVID-19 has caused a global pandemic, and it has been reported that patients with cancer are at high risk of developing complications from the disease. However, we believe that prolonged interruption of chemotherapy due to extended COVID-19 treatment is not desirable, given the intensity of cancer treatment. We report a case of COVID-19 infection during postoperative chemotherapy for breast cancer, in which antibody cocktail therapy prevented disease aggravation and delayed breast cancer treatment. The patient is a 45-year-old woman who came to our hospital with a complaint of a right mammary mass. The mass was diagnosed as invasive ductal carcinoma with an ER and PR of 0%, a HER2 score of 1+, and a Ki-67 of 90%. After preoperative chemotherapy, she underwent a right mastectomy and axillary dissection. The pathology result showed non-pCR. The administration of capecitabine was started as adjuvant therapy. On day 8 of cycle 3, she developed a fever in the 39℃ range, and on the next day, a COVID-19 POC gene test confirmed that the patient was positive for infection. On the same day, neutralizing antibody drugs(casirivimab and imdevimab)were administered as antibody cocktail therapy. Two days after treatment(day 11), a blood test showed Grade 3 neutropenia, but there was no recurrence of fever or evidence of pneumonia. After 2 weeks, capecitabine was resumed, and the patient was able to complete 8 cycles of capecitabine therapy without any major complications.
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Cancer Causes Control
December 2024
Department of Clinical Nutrition, the First Affiliated Hospital of Anhui Medical University, 218 Jixi Road, Hefei, 230022, Anhui, China.
Breast cancer is the leading cause of cancer-related death and the most common cancer among women worldwide. It is crucial to identify potentially modifiable risk factors to intervene and prevent breast cancer effectively. Sleep factors have emerged as a potentially novel risk factor for female breast cancer.
View Article and Find Full Text PDFDaru
December 2024
Department of Biochemistry, School of Medicine, Iran University of Medical Sciences, Tehran, Iran.
Objective(s): Some forms of breast cancer such as triple-negative phenotype, are serious challenge because of high metastatic cases, high mortality and resistance to conventional therapy motivated the search for alternative treatment approaches. Nanomaterials are promising candidates and suitable alternatives for improving tumor and cancer cell treatments.
Materials And Methods: Biosynthesis of ZnO NPs by help of Berberis integerrima fruit extract, has been done.
J Med Chem
December 2024
Department of Medicinal Chemistry, Shanghai Institute of Materia Medica, Chinese Academy of Sciences, Shanghai 201203, China.
Rearranged during transfection (RET) kinase is a validated therapeutic target for various cancers characterized by RET alterations. Although two selective RET inhibitors, selpercatinib and pralsetinib, have been approved by the FDA, acquired resistance through solvent-front mutations has been identified rapidly. Developing proteolysis targeting chimera (PROTAC) targeting RET mutations offers a promising strategy to combat drug resistance.
View Article and Find Full Text PDFACS Biomater Sci Eng
December 2024
Future Industries Institute, University of South Australia, Mawson Lakes, South Australia 5095, Australia.
Polymer based nanoformulations offer substantial prospects for efficacious chemotherapy delivery. Here, we developed a pH-responsive polymeric nanoparticle based on acidosis-triggered breakdown of boronic ester linkers. A biocompatible hyaluronic acid (HA) matrix served as a substrate for carrying a doxorubicin (DOX) prodrug which also possesses natural affinity for CD44 cells.
View Article and Find Full Text PDFACS Nano
December 2024
The Fifth Affiliated Hospital, Guangdong Provincial Key Laboratory of Molecular Target & Clinical Pharmacology, the NMPA and State Key Laboratory of Respiratory Disease, the School of Pharmaceutical Sciences, Guangzhou Medical University, Guangzhou 511436, China.
Tumor-specific cytotoxic T cell immunity is critically dependent on effective antigen presentation and sustained signal transduction. However, this immune response is frequently compromised by the inherently low immunogenicity of breast cancer and the deficiency in major histocompatibility complex class I (MHC-I) expression. Herein, a chimeric peptide-engineered stoichiometric polyprodrug (PDPP) is fabricated to potentiate the cytotoxic T cell response, characterized by a high drug loading capacity and precise stoichiometric drug ratio, of which the immunogenic cell death (ICD) inducer of protoporphyrin IX (PpIX) and the epigenetic drug of decitabine (DAC) are condensed into a polyprodrug called PpIX-DAC.
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