Results 131 to 140 of about 206,217 (225)
Atomically precise metal cluster enzymes for pathological tissue regeneration
Schematic illustration of atomically precise metal cluster enzymes (MCEs) for pathological tissue regeneration. Atomically precise MCEs can modulate biological processes, such as attenuation of inflammatory responses, eradication of bacterial pathogens, regulation of angiogenesis, and promotion of cell development.
Ziqiang Xiong +11 more
wiley +1 more source
The detection and complete eradication of early‐stage small tumors during hysteroscopy remains a significant clinical challenge in preserving fertility for young women with endometrial cancer (EC).
Jing Lei +10 more
doaj +1 more source
Integrating chemo‐mechanical cues in nano‐microscale environments for stem cell regulation
Nano/microscale control strategies, including nano/microscale materials, ligand spacings, and cell encapsulating gels, cell mechanics, integrin signaling, and biochemical cues to direct stem cell fate, tissue regeneration, and organoid engineering, enabling advanced biomedical applications through mechanoregulation at cell‐material interfaces ...
Rajendra K. Singh +5 more
wiley +1 more source
Traditional oncological therapies have contributed to reducing the global cancer burden; however, they have not achieved complete eradication, nor have they effectively prevented relapses, minimized toxicity, or preserved immune function. Recent advances,
Laura Marinela Ailioaie +2 more
doaj +1 more source
Targeted Photo-Induced Elimination of Tumor-Associated Macrophages Suppresses Cancer Progression in a Murine Model. [PDF]
This study demonstrates the selective depletion of tumor‐associated macrophages (TAMs) by targeting CSF1R through near‐infrared photoimmunotherapy (NIR‐PIT). Using a combination of anti‐CSF1R Fab‐IR700 conjugates and localized light irradiation, we achieved tumor suppression and durable antitumor immunity without systemic toxicity.
Nakajima K +6 more
europepmc +2 more sources
Nanomedicine‐Driven Strategies for Suppressing Postoperative Tumor Recurrence. This schematic illustrates three pivotal nanomedical strategies that synergistically counteract recurrence by targeting residual disease and the immunosuppressive tumor microenvironment within the surgical cavity.
Lisong Pang +8 more
wiley +1 more source
Fluorescence Imaging of Tumor-Accumulating Antibody-IR700 Conjugates Prior to Near-Infrared Photoimmunotherapy (NIR-PIT) Using a Commercially Available Camera Designed for Indocyanine Green. [PDF]
Inagaki FF +7 more
europepmc +1 more source
Engineered bacteria serve as smart, living therapeutics that target tumors, deliver drugs, and remodel immunosuppressive microenvironments. This review highlights their potential to potentiate immunotherapy, radiotherapy, and chemotherapy, offering a promising paradigm for precise and synergistic cancer treatment. Abstract The dynamic interplay between
Haonan Shen +9 more
wiley +1 more source
Bridging the translational gap in clinical nanomedicine: From rational design to clinical reality
Nanotechnology offers a multi‐faceted approach to modern healthcare, encompassing high‐sensitivity diagnostic imaging, innovative vaccine delivery, and targeted therapeutics. This review explores how these nanomedicine applications address critical challenges in cancer recurrence and the treatment of neurologic and respiratory diseases to combat rising
Ahmed H. Ghonaim +9 more
wiley +1 more source
Junxin Huang,1,* Xiaoqian Liu,2,* Terry Hao Yu Qin,2,* Xiaoping Duan,3 Penghui Wang,4 Kaikai Guo,5 Wan Mokhzani Wan Mokhter,3 Zaidi Zakaria1 1Department of Surgery, School of Medical Sciences, Universiti Sains Malaysia, Health ...
Huang J +7 more
doaj

