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Understanding the diverse chemokine signals in tumor microenvironment for advanced immunotherapy

Chemokines regulate immune cell infiltration and local immunity in tumors, and targeting their receptor axis has emerged as a promising therapeutic target in cancer immunotherapy. Chemokine-modulating strategies combining with other immunotherapies have demonstrated considerable synergistic potential.

SourceChinese Medical Journals Publishing House Co., Ltd.·JournalChinese Medical Journal·TypeLiterature review·DateApr 20, 2026

Improved chemokine homing enhances CAR T–cell therapy for osteosarcoma

Scientists at St. Jude Children's Research Hospital identified two chemokines, CXCL8 and CXCL16, expressed by osteosarcoma that improved CAR T-cell homing. Modified cells expressing these chemokine receptors showed enhanced infiltration into tumors, leading to prolonged survival in a model of metastatic disease.

SourceSt. Jude Children's Research Hospital·JournalClinical Cancer Research·TypeExperimental study·DateAug 5, 2024

How immune cells communicate to fight viruses

Researchers at Universitatsklinikum Bonn have developed a novel technology to identify chemokine-producing cells and sensors, revealing that natural killer cells are the primary producers of Ccl3 during CMV infection. This discovery sheds light on the complex choreography of immune cells in defending against viruses.

SourceUniversitatsklinikum Bonn·JournalJournal of Experimental Medicine·DateApr 25, 2024

Immune cells shape their own path

Researchers at ISTA discovered that immune cells actively shape their environment by consuming chemokine signals, allowing them to generate their own guidance cues. This dynamic regulation enables collective migration of immune cells and has significant implications for enhancing immune response coordination.

SourceInstitute of Science and Technology Austria·JournalScience Immunology·TypeExperimental study·DateSep 1, 2023

New research shines light on how COVID-19 vaccination reduces severity and mortality after breakthrough infections

A large study found that fully vaccinated individuals have lower concentrations of inflammatory markers than unvaccinated participants after symptomatic COVID-19 infection. This suggests that vaccination significantly reduces morbidity and mortality by reducing elevated levels of cytokines and chemokines.

SourceUniversity of Colorado Anschutz Medical Campus·JournalThe Lancet Microbe·DateAug 7, 2023

Could blood marker predict the risk of osteoporotic hip fracture in men?

A study found that elevated blood levels of chemokine CXCL9 predict the risk of osteoporotic hip fracture in men. Researchers discovered a significant association between CXCL9 and hip fractures in a cohort of Chinese men, highlighting the potential for early interventions targeting CXCL9 to prevent hip fractures.

SourceWiley·JournalJournal of Bone and Mineral Research·DateAug 17, 2022

Predicting the risk of osteoporotic hip fracture in men using blood markers

Researchers found that CXCL9 levels were higher in pre-fracture blood samples of Chinese men with subsequent hip fractures, improving the prediction of osteoporotic hip fracture risk in men. In contrast, no association was found between CXCL10 and hip fracture risk in either gender.

SourceNational University of Singapore, Yong Loo Lin School of Medicine·JournalJournal of Bone and Mineral Research·TypeRandomized controlled/clinical trial·DateJul 12, 2022

Chinese Medical Journal review explores the role of macrophages in the progression of acute kidney injury to chronic kidney disease

A recent review article highlights the crucial role of macrophages in the progression from acute kidney injury (AKI) to chronic kidney disease (CKD). The study suggests that targeting specific signaling pathways and altering macrophage activation can prevent renal fibrosis and CKD. Therapeutic strategies such as clodronate liposomes an...

SourceCactus Communications·JournalChinese Medical Journal·TypeLiterature review·DateJun 20, 2022

Biological clocks set for skin immunity

Researchers at Kyoto University have discovered the skin's natural protection from nighttime bacterial invasion in mice, which may provide a basis for developing a drug treatment. The team found that epidermal CXCL14 is produced in a circadian rhythm-dependent manner, providing antimicrobial function against Staphylococcus aureus.

SourceKyoto University·JournalProceedings of the National Academy of Sciences·TypeExperimental study·DateJun 20, 2022

A unique study finds that tick saliva may offer a path to new therapies for inflammatory diseases

A recent study by Monash University found that tick saliva proteins, called evasins, can be modified to block the activity of important proteins in human inflammatory diseases. The study identified the structural basis of chemokine recognition and establishes a foundation for engineering evasins.

SourceMonash University·JournalProceedings of the National Academy of Sciences·TypeExperimental study·DateFeb 21, 2022

Scientists demonstrate utility of Bilateral Tumor Model for evaluating anti-cancer T-cell responses

A new bilateral tumor model was demonstrated to be useful for investigating the relationship between T-cell repertoire and cancer immunotherapy's therapeutic effects. The study found that T-cell profiles of both tumors were almost identical, indicating a similar anti-tumor response in a single mouse.

SourceTokyo University of Science·JournalFrontiers in Immunology·TypeExperimental study·DateJan 19, 2022

How do immune cells get activated?

Researchers at Université de Genève and University of Basel study the structure of cellular receptors and molecules that activate immune cells. They discovered a 'lock and key' mechanism involving specific amino acids in chemokine structures, allowing for fine-tuning of immune system activation.

SourceUniversité de Genève·JournalScience Advances·DateJun 16, 2021

The irresistible CCL17

Researchers at the University of Bonn have found that CCL17 influences signal transmission in the brain and may be linked to autism. The chemokine is mainly produced by neurons in the hippocampus, a structure involved in tasks such as orientation and memory formation.

SourceUniversity of Bonn·JournalGlia·DateSep 13, 2018

UTMB study uncovers mechanism responsible for pollen-induced allergies

Researchers at UTMB discovered a key mechanism behind developing allergic asthma and seasonal nasal allergies after exposure to airborne pollens like ragweed. The study found that neutrophils, white blood cells, attract in response to allergens, trigger inflammation and oxidative stress in the airways.

SourceUniversity of Texas Medical Branch at Galveston·JournalAmerican Journal of Respiratory Cell and Molecular Biology·DateJul 22, 2015

Without a trace

Scientists at EMBL found that cells in a zebrafish embryo determine their direction by erasing the path behind them and creating a self-generated chemokine gradient. This finding could have implications for development, cancer, and metastasis.

Hide and seek signals

New research at the Weizmann Institute shows how blood vessel cells 'hide' signals from immune cells, only allowing those with special training to cross. This selective barrier prevents certain immune cells from reaching tumors near blood vessels.

SourceWeizmann Institute of Science·JournalNature Immunology·DateDec 15, 2011

JCI online early table of contents: Feb. 8, 2010

Researchers have identified CD99 as a potential new drug target for Ewing sarcoma. A novel type of cellular senescence has also been found to suppress prostate tumorigenesis. Additionally, the protein USAG-1 has been linked to the development of Alport syndrome, suggesting a promising therapeutic approach.

SourceJCI Journals·JournalJournal of Clinical Investigation·DateFeb 8, 2010