keyword
https://read.qxmd.com/read/38640253/tim-3-cd8-t-cells-with-a-terminally-exhausted-phenotype-retain-functional-capacity-in-hematological-malignancies
#21
JOURNAL ARTICLE
Simone A Minnie, Olivia G Waltner, Ping Zhang, Shuichiro Takahashi, Nicole S Nemychenkov, Kathleen S Ensbey, Christine R Schmidt, Samuel R W Legg, Melissa Comstock, Julie R Boiko, Ethan Nelson, Shruti S Bhise, Alec B Wilkens, Motoko Koyama, Madhav V Dhodapkar, Marta Chesi, Stanley R Riddell, Damian J Green, Andrew Spencer, Scott N Furlan, Geoffrey R Hill
Chronic antigen stimulation is thought to generate dysfunctional CD8 T cells. Here, we identify a CD8 T cell subset in the bone marrow tumor microenvironment that, despite an apparent terminally exhausted phenotype (TPHEX ), expressed granzymes, perforin, and IFN-γ. Concurrent gene expression and DNA accessibility revealed that genes encoding these functional proteins correlated with BATF expression and motif accessibility. IFN-γ+ TPHEX effectively killed myeloma with comparable efficacy to transitory effectors, and disease progression correlated with numerical deficits in IFN-γ+ TPHEX ...
April 19, 2024: Science Immunology
https://read.qxmd.com/read/38640116/tumor-microenvironment-restricts-il-10-induced-multipotent-progenitors-to-myeloid-lymphatic-phenotype
#22
JOURNAL ARTICLE
Lisa Volk-Draper, Shaswati Athaiya, Maria Espinosa Gonzalez, Nihit Bhattarai, Andrew Wilber, Sophia Ran
Lymphangiogenesis is induced by local pro-lymphatic growth factors and bone marrow (BM)-derived myeloid-lymphatic endothelial cell progenitors (M-LECP). We previously showed that M-LECP play a significant role in lymphangiogenesis and lymph node metastasis in clinical breast cancer (BC) and experimental BC models. We also showed that differentiation of mouse and human M-LECP can be induced through sequential activation of colony stimulating factor-1 (CSF-1) and Toll-like receptor-4 (TLR4) pathways. This treatment activates the autocrine interleukin-10 (IL-10) pathway that, in turn, induces myeloid immunosuppressive M2 phenotype along with lymphatic-specific proteins...
2024: PloS One
https://read.qxmd.com/read/38639047/advances-in-magnetoelectric-composites-for-promoting-bone-regeneration-a-review
#23
REVIEW
Chengyu Li, Andi Zhu, Liqing Yang, Xinyi Wang, Zehong Guo
Repair of large bone defects is one of the clinical problems that have not yet been fully solved. The dynamic balance of bone tissue is regulated by many biological, chemical and physical environmental factors. Simulating the microenvironment of bone tissue in the physiological state through biomimetic materials is an important development direction of tissue engineering in recent years. With the deepening of research, it has been found that when bone tissue is damaged, its surrounding magnetoelectric microenvironment is subsequently destroyed, and providing a magnetoelectric microenvironment in the biomimetic state will be beneficial to promote bone repair...
April 19, 2024: Journal of Materials Chemistry. B, Materials for Biology and Medicine
https://read.qxmd.com/read/38638424/aging-brain-exploring-the-interplay-between-bone-marrow-aging-immunosenescence-and-neuroinflammation
#24
REVIEW
Ludmila Müller, Svetlana Di Benedetto
Aging is a complex process characterized by a myriad of physiological changes, including alterations in the immune system termed immunosenescence. It exerts profound effects on both the bone marrow and the central nervous system, with significant implications for immunosenescence in neurological contexts. Our mini-review explores the complex relationship between bone marrow aging and its impact on immunosenescence, specifically within the context of neurological diseases. The bone marrow serves as a crucial hub for hematopoiesis and immune cell production, yet with age, it undergoes significant alterations, including alterations in hematopoietic stem cell function, niche composition, and inflammatory signaling...
2024: Frontiers in Immunology
https://read.qxmd.com/read/38637559/caspase-8-deletion-causes-infection-inflammation-induced-bone-marrow-failure-and-mds-like-disease-in-mice
#25
JOURNAL ARTICLE
Shanhui Liu, Kanak Joshi, Lei Zhang, Wenyan Li, Ryan Mack, Austin Runde, Patrick A Hagen, Kevin Barton, Peter Breslin, Hong-Long Ji, Ameet R Kini, Zhiping Wang, Jiwang Zhang
Myelodysplastic syndromes (MDS) are a heterogeneous group of pre-leukemic hematopoietic disorders characterized by cytopenia in peripheral blood due to ineffective hematopoiesis and normo- or hypercellularity and morphologic dysplasia in bone marrow (BM). An inflammatory BM microenvironment and programmed cell death of hematopoietic stem/progenitor cells (HSPCs) are thought to be the major causes of ineffective hematopoiesis in MDS. Pyroptosis, apoptosis and necroptosis (collectively, PANoptosis) are observed in BM tissues of MDS patients, suggesting an important role of PANoptosis in MDS pathogenesis...
April 18, 2024: Cell Death & Disease
https://read.qxmd.com/read/38637224/piezocatalytically-induced-controllable-mineralization-scaffold-with-bone-like-microenvironment-to-achieve-endogenous-bone-regeneration
#26
JOURNAL ARTICLE
Xi Cui, Lingling Xu, Yizhu Shan, Jiaxuan Li, Jianying Ji, Engui Wang, Baokun Zhang, Xiaozhou Wen, Yuan Bai, Dan Luo, Chunying Chen, Zhou Li
Orderly hierarchical structure with balanced mechanical, chemical, and electrical properties is the basis of the natural bone microenvironment. Inspired by nature, we developed a piezocatalytically-induced controlled mineralization strategy using piezoelectric polymer poly-L-lactic acid (PLLA) fibers with ordered micro-nano structures to prepare biomimetic tissue engineering scaffolds with a bone-like microenvironment (pcm-PLLA), in which PLLA-mediated piezoelectric catalysis promoted the in-situ polymerization of dopamine and subsequently regulated the controllable growth of hydroxyapatite crystals on the fiber surface...
April 2, 2024: Science Bulletin
https://read.qxmd.com/read/38633867/trilayered-biomimetic-hydrogel-scaffolds-with-dual-differential-microenvironment-for-articular-osteochondral-defect-repair
#27
JOURNAL ARTICLE
Hongying Chen, Jinyi Huang, Xiaomeng Li, Weiwei Zhao, Yujie Hua, Zhenfeng Song, Xianwei Wang, Zhikun Guo, Guangdong Zhou, Wenjie Ren, Yongkun Sun
Commonly, articular osteochondral tissue exists significant differences in physiological architecture, mechanical function, and biological microenvironment. However, the development of biomimetic scaffolds incorporating upper cartilage, middle tidemark-like, and lower subchondral bone layers for precise articular osteochondral repair remains elusive. This study proposed here a novel strategy to construct the trilayered biomimetic hydrogel scaffolds with dual-differential microenvironment of both mechanical and biological factors...
June 2024: Materials today. Bio
https://read.qxmd.com/read/38633414/absorbable-calcium-and-phosphorus-bioactive-membranes-promote-bone-marrow-mesenchymal-stem-cells-osteogenic-differentiation-for-bone-regeneration
#28
JOURNAL ARTICLE
Lei Huang, Zhuorun Song, Jiayi Wang, Mengxuan Bian, Jiapeng Zou, Yanpei Zou, Jun Ge, Shunyi Lu
Large segmental bone defects are commonly operated with autologous bone grafting, which has limited bone sources and poses additional surgical risks. In this study, we fabricated poly(lactide- co -glycolic acid) (PLGA)/β-tricalcium phosphate (β-TCP) composite membranes by electrostatic spinning and further promoted osteogenesis by regulating the release of β-TCP in the hope of replacing autologous bone grafts in the clinical practice. The addition of β-TCP improved the mechanical strength of PLGA by 2...
2024: Open Life Sciences
https://read.qxmd.com/read/38632657/synovium-microenvironment-responsive-injectable-hydrogel-inducing-modulation-of-macrophages-and-elimination-of-synovial-fibroblasts-for-enhanced-treatment-of-rheumatoid-arthritis
#29
JOURNAL ARTICLE
Yiqun Wu, Yu Ge, Zhongshi Wang, Ying Zhu, Tianli Tian, Jun Wei, Yu Jin, Yi Zhao, Qiang Jia, Jun Wu, Liang Ge
Rheumatoid arthritis (RA) is a progressive autoimmune disease accompanied by joint swelling, cartilage erosion and bone damage. Drug therapy for RA has been restricted due to poor therapeutic effect, recurrence and adverse effects. Macrophages and synovial fibroblasts both play important roles in the pathology of RA. Macrophages secrete large amount of pro-inflammatory cytokines, while synovial fibroblasts are tightly correlated with hypoxia synovium microenvironment, cytokine release, recruitment of pro-inflammatory cells, bone and cartilage erosion...
April 17, 2024: Journal of Nanobiotechnology
https://read.qxmd.com/read/38630129/monocyte-to-platelets-ratio-mpr-at-diagnosis-is-associated-with-inferior-progression-free-survival-in-patients-with-mantle-cell-lymphoma-a-multi-center-real-life-survey
#30
JOURNAL ARTICLE
Andrea Duminuco, Alessandra Romano, Isacco Ferrarini, Gabriella Santuccio, Annalisa Chiarenza, Amalia Figuera, Laura Anastasia Caruso, Giovanna Motta, Giuseppe Alberto Palumbo, Carlo Mogno, Alessia Moioli, Francesco Di Raimondo, Carlo Visco
Mantle cell lymphoma (MCL) pathogenesis is strongly related to the role of the tumor immune microenvironment (TIME) in which MCL cells proliferate. TIME cells can produce growth signals influencing MCL cells' survival and exert an antitumoral immune response suppression. The activity of TIME cells might be mirrored by some ratios of peripheral blood cell subpopulations, such as the monocyte-to-platelet ratio (MPR). We reviewed the clinical features of 165 consecutive MCL patients newly diagnosed and not eligible for autologous stem cell transplantation (both for age or comorbidities) who accessed two Italian Centers between 2006 and 2020...
April 17, 2024: Annals of Hematology
https://read.qxmd.com/read/38627864/relationship-of-fdg-pet-ct-imaging-features-with-tumor-immune-microenvironment-and-prognosis-in-colorectal-cancer-a-retrospective-study
#31
JOURNAL ARTICLE
Jeong Won Lee, Hyein Ahn, Ik Dong Yoo, Sun-Pyo Hong, Moo-Jun Baek, Dong Hyun Kang, Sang Mi Lee
BACKGROUND: Imaging features of colorectal cancers on 2-deoxy-2-[18 F]fluoro-d-glucose (FDG) positron emission tomography/computed tomography (PET/CT) have been considered to be affected by tumor characteristics and tumor immune microenvironment. However, the relationship between PET/CT imaging features and immune reactions in tumor tissue has not yet been fully evaluated. This study investigated the association of FDG PET/CT imaging features in the tumor, bone marrow, and spleen with immunohistochemical results of cancer tissue and recurrence-free survival (RFS) in patients with colorectal cancer...
April 16, 2024: Cancer Imaging: the Official Publication of the International Cancer Imaging Society
https://read.qxmd.com/read/38627717/systematic-review-of-the-osteogenic-effect-of-rare-earth-nanomaterials-and-the-underlying-mechanisms
#32
REVIEW
Ziwei Chen, Xiaohe Zhou, Minhua Mo, Xiaowen Hu, Jia Liu, Liangjiao Chen
Rare earth nanomaterials (RE NMs), which are based on rare earth elements, have emerged as remarkable biomaterials for use in bone regeneration. The effects of RE NMs on osteogenesis, such as promoting the osteogenic differentiation of mesenchymal stem cells, have been investigated. However, the contributions of the properties of RE NMs to bone regeneration and their interactions with various cell types during osteogenesis have not been reviewed. Here, we review the crucial roles of the physicochemical and biological properties of RE NMs and focus on their osteogenic mechanisms...
April 16, 2024: Journal of Nanobiotechnology
https://read.qxmd.com/read/38626873/irisin-alleviates-obesity-induced-bone-loss-by-inhibiting-interleukin-6-expression-via-tlr4-myd88-nf-%C3%AE%C2%BAb-axis-in-adipocytes
#33
JOURNAL ARTICLE
Yuanshu Zhang, Xu He, Kai Wang, Yuan Xue, Sihan Hu, Yesheng Jin, Guoqing Zhu, Yongjun Rui, Qin Shi
INTRODUCTION: Obesity-induced bone loss affects the life quality of patients all over the world. Irisin, one of the myokines, plays an essential role in bone and fat metabolism. OBJECTIVE: Investigate the effects of irisin on bone metabolism via adipocytes in the bone marrow microenvironment. METHODS: In this study, we fed fibronectin type III domain-containing protein 5 (FNDC5, the precursor protein of irisin) knockout mice (FNDC5-/- ) with a high-fat diet (HFD) for 10 weeks...
April 14, 2024: Journal of Advanced Research
https://read.qxmd.com/read/38622691/macrophages-as-carriers-of-boron-carbide-nanoparticles-dedicated-to-boron-neutron-capture-therapy
#34
JOURNAL ARTICLE
Anna Wróblewska, Bożena Szermer-Olearnik, Agnieszka Szczygieł, Katarzyna Węgierek-Ciura, Jagoda Mierzejewska, Dawid Kozień, Paulina Żeliszewska, Roksana Kruszakin, Paweł Migdał, Zbigniew Pędzich, Elżbieta Pajtasz-Piasecka
BACKGROUND: The use of cells as carriers for the delivery of nanoparticles is a promising approach in anticancer therapy, mainly due to their natural properties, such as biocompatibility and non-immunogenicity. Cellular carriers prevent the rapid degradation of nanoparticles, improve their distribution, reduce cytotoxicity and ensure selective delivery to the tumor microenvironment. Therefore, we propose the use of phagocytic cells as boron carbide nanoparticle carriers for boron delivery to the tumor microenvironment in boron neutron capture therapy...
April 15, 2024: Journal of Nanobiotechnology
https://read.qxmd.com/read/38621599/injectable-anti-collapse-adhesive-plastic-and-bioactive-bone-graft-substitute-promotes-bone-regeneration-by-moderating-oxidative-stress-in-osteoporotic-bone-defect
#35
JOURNAL ARTICLE
Lei Huang, Shihao Zhang, Mengxuan Bian, Xingdong Xiang, Lan Xiao, Jiayi Wang, Shunyi Lu, Weisin Chen, Cheng Zhang, Guokang Mo, Libo Jiang, Yulin Li, Jian Zhang
The treatment of osteoporotic bone defect remains a big clinical challenge because osteoporosis (OP) is associated with oxidative stress and high levels of reactive oxygen species (ROS), a condition detrimental for bone formation. Anti-oxidative nanomaterials such as selenium nanoparticles (SeNPs) have positive effect on osteogenesis owing to their pleiotropic pharmacological activity which can exert anti-oxidative stress functions to prevent bone loss and facilitate bone regeneration in OP. In the current study a strategy of one-pot method by introducing Poly (lactic acid-carbonate) (PDT) and β-Tricalcium Phosphate (β-TCP) with SeNPs, is developed to prepare an injectable, anti-collapse, shape-adaptive and adhesive bone graft substitute material (PDT-TCP-SE)...
April 13, 2024: Acta Biomaterialia
https://read.qxmd.com/read/38621173/scaffold-based-poly-vinylidene-fluoride-and-its-copolymers-materials-fabrication-methods-applications-and-perspectives
#36
REVIEW
Wenbin Sun, Chuang Gao, Huazhen Liu, Yi Zhang, Zilong Guo, Chunxiang Lu, Hao Qiao, Zhiqiang Yang, Aoxiang Jin, Jianan Chen, Qiqi Dai, Yuanyuan Liu
Tissue engineering involves implanting grafts into damaged tissue sites to guide and stimulate the formation of new tissue, which is an important strategy in the field of tissue defect treatment. Scaffolds prepared in vitro meet this requirement and are able to provide a biochemical microenvironment for cell growth, adhesion, and tissue formation. Scaffolds made of piezoelectric materials can apply electrical stimulation to the tissue without an external power source, speeding up the tissue repair process. Among piezoelectric polymers, poly(vinylidene fluoride) (PVDF) and its copolymers have the largest piezoelectric coefficients and are widely used in biomedical fields, including implanted sensors, drug delivery, and tissue repair...
April 15, 2024: ACS Biomaterials Science & Engineering
https://read.qxmd.com/read/38618008/orthobiologics-in-delayed-union-and-non-union-of-adult-long-bones-fractures-a-systematic-review
#37
REVIEW
Lorenzo Impieri, Andrea Pezzi, Henrique Hadad, Giuseppe M Peretti, Laura Mangiavini, Nicolò Rossi
BACKGROUND: Fracture healing poses a significant challenge in orthopedics. Successful regeneration of bone is provided by mechanical stability and a favorable biological microenvironment. This systematic review aims to explore the clinical application of orthobiologics in treating aseptic delayed union and non-union of long bones in adults. METHODS: A systematic review was conducted following the Preferred Reporting Items for Systematic Review and Meta-Analyses (PRISMA) guidelines...
June 2024: Bone Reports
https://read.qxmd.com/read/38616733/caspase-resistant-rock1-expression-prolongs-survival-of-e%C3%A2%C2%B5-myc-b-cell-lymphoma-mice
#38
JOURNAL ARTICLE
Katerina Mardilovich, Gregory Naylor, Linda Julian, Narisa Phinichkusolchit, Karen Keeshan, Karen Blyth, Michael F Olson
Apoptosis is characterized by membrane blebbing and apoptotic body formation. Caspase cleavage of ROCK1 generates an active fragment that promotes actin-myosin mediated contraction and membrane blebbing during apoptosis. Expression of caspase-resistant non-cleavable ROCK1 (Rock1 NC) prolonged survival of mice that rapidly develop B cell lymphomas due to Eµ-Myc transgene expression. Eµ-Myc; Rock1 NC mice had significantly fewer bone marrow cells relative to Eµ-Myc mice expressing wild-type ROCK1 (Rock1 WT), which was associated with altered cell cycle profiles...
April 15, 2024: Disease Models & Mechanisms
https://read.qxmd.com/read/38616679/strategies-for-improving-impaired-osseointegration-in-compromised-animal-models
#39
JOURNAL ARTICLE
J Deng, C Van Duyn, D J Cohen, Z Schwartz, B D Boyan
Implant osseointegration is reduced in patients with systemic conditions that compromise bone quality, such as osteoporosis, disuse syndrome, and type 2 diabetes. Studies using rodent models designed to mimic these compromised conditions demonstrated reduced bone-to-implant contact (BIC) or a decline in bone mineral density. These adverse effects are a consequence of disrupted intercellular communication. A variety of approaches have been developed to compensate for the altered microenvironment inherent in compromised conditions, including the use of biologics and implant surface modification...
April 15, 2024: Journal of Dental Research
https://read.qxmd.com/read/38614042/research-progress-of-the-mechanisms-and-applications-of-ginsenosides-in-promoting-bone-formation
#40
REVIEW
Ze Li, Yanan Li, Chaoran Liu, Yuqing Gu, Guanghong Han
BACKGROUND: Bone deficiency-related diseases caused by various factors have disrupted the normal function of the skeleton and imposed a heavy burden globally, urgently requiring potential new treatments. The multi-faceted role of compounds like ginsenosides and their interaction with the bone microenvironment, particularly osteoblasts can promote bone formation and exhibit anti-inflammatory, vascular remodeling, and antibacterial properties, holding potential value in the treatment of bone deficiency-related diseases and bone tissue engineering...
April 8, 2024: Phytomedicine
keyword
keyword
65434
2
3
Fetch more papers »
Fetching more papers... Fetching...
Remove bar
Read by QxMD icon Read
×

Save your favorite articles in one place with a free QxMD account.

×

Search Tips

Use Boolean operators: AND/OR

diabetic AND foot
diabetes OR diabetic

Exclude a word using the 'minus' sign

Virchow -triad

Use Parentheses

water AND (cup OR glass)

Add an asterisk (*) at end of a word to include word stems

Neuro* will search for Neurology, Neuroscientist, Neurological, and so on

Use quotes to search for an exact phrase

"primary prevention of cancer"
(heart or cardiac or cardio*) AND arrest -"American Heart Association"

We want to hear from doctors like you!

Take a second to answer a survey question.