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Preventing the tissue's response to stiffness may be key to slowing the progression of breast tumors

A recent study led by IBEC demonstrates that laminin, a protein present in healthy breast tissues, prevents the effects of stiffening, protecting cells against tumor growth. The researchers observed that cells seeded on laminin-rich gel exhibited a significantly less pronounced mechanical response to substrate stiffness.

SourceInstitute for Bioengineering of Catalonia (IBEC)·JournalNature Materials·TypeExperimental study·DateSep 14, 2023

NYU Abu Dhabi researchers develop novel tumor-targeting nanospheres with the potential to dramatically improve light-based cancer diagnosis and treatment

Researchers at NYU Abu Dhabi have developed acidity-triggered rational membrane peptide-functionalized nanospheres that combine tumor detection and monitoring with potent, light-triggered cancer therapy. These nanospheres enable improved efficacy of phototherapies with minimal systemic toxicity.

SourceNew York University·JournalACS Nano·DateSep 13, 2023

CityU researchers develop ultra-sensitive photoacoustic microscopy for wide biomedical application potential

The research team created a multi-spectral, super-low-dose photoacoustic microscopy system with improved sensitivity, enabling new applications and clinical translation. The system achieved up to capillary-level or sub-cellular resolution at greater depths than traditional optical microscopy methods.

SourceCity University of Hong Kong·JournalAdvanced Science·TypeExperimental study·DateAug 31, 2023

Editorial: Epigenetic aging in oocytes

The editorial discusses epigenetic mechanisms leading to oocyte quality loss, a significant factor in age-related fertility decline. Researchers highlight the importance of understanding this process to address the growing issue of advanced maternal age and its impact on reproduction.

SourceImpact Journals LLC·JournalAging-US·TypeCommentary/editorial·DateAug 30, 2023

The best thing since sliced tissue

Researchers at Gladstone Institutes create Gaussian Process Spatial Alignment (GPSA) to analyze 2D data from tissue slices and generate a 3D 'atlas' of the tissue. This allows for deeper understanding of biological tissue samples, enabling more precise predictions of gene expression and treatment outcomes.

SourceGladstone Institutes·JournalNature Methods·DateAug 17, 2023

Study: fluidity predicts aggressiveness of cancerous tumors

Researchers developed tomoelastography, an imaging technique that maps tumor mechanical properties using MRI. Studies found consistent patterns between changes in tumor stiffness and increasing aggressiveness. The technique allows for precise measurement of tumor fluidity, enabling more accurate diagnoses and tailored treatment options.

SourceUniversität Leipzig·JournalAdvanced Science·TypeExperimental study·DateAug 10, 2023

Immune cells in single file

Dendritic cells form three-dimensional networks that regulate their migration and development. The new concept reveals how cytokines keep the cells together and close gaps in their network. This discovery has prognostic value for tumour diseases, particularly after immunotherapy.

SourceUniversity of Würzburg·JournalImmunity·TypeExperimental study·DateJul 17, 2023

Innovative stem cell research takes aim at origins of human cancers

A collaborative study by researchers at the University of Ottawa and McMaster University has made a groundbreaking discovery linking different types of cancers to their embryonic origins. The team found that drugs targeting specific embryonic pathways can effectively treat various tumors, including brain, colon, and leukemia cancers.

SourceUniversity of Ottawa·JournalCell Chemical Biology·TypeData/statistical analysis·DateJun 28, 2023

Tuning T cell traits and functions with biomechanical materials

A research team at the Wyss Institute engineered a 3D model of extracellular matrix to study the impact of tissue mechanics on T cells. They found that viscoelasticity played a crucial role in shaping T cell traits and functions, enabling the creation of functionally distinct T cell populations for adoptive therapies.

SourceWyss Institute for Biologically Inspired Engineering at Harvard·JournalNature Biomedical Engineering·TypeExperimental study·DateJun 26, 2023

3D 'bio-printing' inside hydrogels

Researchers achieve 3D printing within mini-organs growing in hydrogels, allowing for precise control over shape, activity, and tissue growth. This breakthrough enables the creation of realistic models of organs and disease, with potential applications in cancer research and treatment.

SourceUniversity College London·JournalNature Communications·DateJun 9, 2023

Scientists identify how some angiogenic drugs used to treat cancer and heart disease cause vascular disease

Researchers discovered that vascular toxicity linked to these drugs is unrelated to angiogenesis-related genes, but rather due to changes in vascular architecture. This new understanding will help select the most effective and safe way to modulate angiogenesis in ischemic tissues or cancer.

SourceCentro Nacional de Investigaciones Cardiovasculares Carlos III (F.S.P.)·JournalNature Cardiovascular Research·TypeExperimental study·DateMay 29, 2023

The aging mouse prostate: kinetics of lymphocyte infiltration

Researchers tracked immune cell clusters in the aging mouse prostate using highly multiplexed immune profiling. Early adulthood sees myeloid cells, while between 6-12 months old, there's a profound shift to T and B lymphocyte-dominance. The study reveals new insight into prostatic inflammaging and the window for interventions.

SourceImpact Journals LLC·JournalAging-US·TypeComputational simulation/modeling·DateMay 23, 2023

You’ve got some nerve

Researchers developed a new metric to analyze the relationship between nerve density and oral cancer progression. Normalized nerve density was found to be associated with poor survival rates for patients with tongue cancer, highlighting its potential as a tool for identifying aggressive tumors.

SourceMichigan Medicine - University of Michigan·JournalClinical Cancer Research·TypeExperimental study·DateMay 16, 2023

Study finds fluorescent guide can help detect tumor left behind after breast cancer surgery

A clinical trial of 406 patients found that a fluorescent agent allowed surgeons to identify and remove residual tumor tissue with favorable results. The technique showed promising results in detecting tumor tissue missed by standard lumpectomy procedures, potentially avoiding second surgeries for positive margins.

SourceMass General Brigham·JournalNEJM Evidence·TypeRandomized controlled/clinical trial·DateMay 3, 2023

Researchers develop capsule X-ray dosimeter for real-time radiotherapy monitoring

A team of researchers has developed a swallowable X-ray dosimeter that can estimate radiation dose in real-time, offering improved accuracy and minimization of damage to healthy tissue during radiotherapy. The capsule-shaped device uses a neural network-based regression model to analyze radioluminescence and temperature.

SourceChinese Academy of Sciences Headquarters·JournalNature Biomedical Engineering·DateApr 14, 2023

Creating an artificial pathologist

A team of scientists at Max Planck Institute for the Science of Light developed a method to quickly and accurately diagnose cancer using artificial intelligence and real-time deformability cytometry. The method reduces analysis time from hours to under 30 minutes, enabling faster decision-making during surgery.

SourceMax Planck Institute for the Science of Light·JournalNature Biomedical Engineering·TypeExperimental study·DateApr 13, 2023

Creating an artificial pathologist

A team of scientists created a new, fast, and precise method for analyzing cells in tissue samples from cancer patients without the need for a trained pathologist. The method uses artificial intelligence to evaluate data produced by a technique called real-time deformability cytometry.

SourceMax-Planck-Gesellschaft·JournalNature Biomedical Engineering·TypeExperimental study·DateApr 8, 2023

Ultrasound activates anticancer agent

Researchers developed a complex that accumulates in tumour tissue and is activated by ultrasound waves, triggering the release of a toxic compound and eradicating tumours. This method could make cancer treatment less invasive and more effective for large and deep-seated tumours.

SourceRuhr-University Bochum·JournalAngewandte Chemie International Edition·TypeExperimental study·DateApr 5, 2023

Machine learning combines with multispectral infrared imaging to guide cancer surgery

A new technique combines machine learning with short-wave infrared fluorescence imaging to detect precise tumor boundaries with higher accuracy than traditional methods. The approach achieved a remarkable per-pixel classification accuracy of 97.5 percent and demonstrated robustness against changes in imaging conditions.

SourceSPIE--International Society for Optics and Photonics·JournalJournal of Biomedical Optics·TypeExperimental study·DateMar 27, 2023

Strata Oncology announces publication of study validating clinical utility of pan-tumor predictive biomarker for checkpoint inhibitor immunotherapy benefit

The study validated the clinical utility of Strata Oncology's proprietary pan-solid tumor predictive biomarker, Immunotherapy Response Score (IRS), which predicts response to checkpoint inhibitor therapy. IRS captures tumor biology and microenvironment by combining tumor mutation burden with quantitative expression of PD-L1, PD-1, ADAM...

SourceStrata Oncology·JournalCommunications Medicine·TypeData/statistical analysis·DateFeb 7, 2023