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1.
Theranostics ; 14(8): 3246-3266, 2024.
Artículo en Inglés | MEDLINE | ID: mdl-38855184

RESUMEN

The rapid advancement of mRNA as vaccines and therapeutic agents in the biomedical field has sparked hope in the fight against untreatable diseases. Successful clinical application of mRNA therapeutics largely depends on the carriers. Recently, a new and exciting focus has emerged on natural cell-derived vesicles. These nanovesicles offer many functions, including enhanced drug delivery capabilities and immune evasion, thereby presenting a unique and promising platform for the effective and safe delivery of mRNA therapeutics. In this study, we summarize the characteristics and properties of biomimetic delivery systems for mRNA therapeutics. In particular, we discuss the unique features of cellular membrane-derived vesicles (CDVs) and the combination of synthetic nanovesicles with CDVs.


Asunto(s)
Sistemas de Liberación de Medicamentos , ARN Mensajero , ARN Mensajero/administración & dosificación , ARN Mensajero/genética , Humanos , Sistemas de Liberación de Medicamentos/métodos , Animales , Membrana Celular/metabolismo , Biomimética/métodos , Portadores de Fármacos/química
2.
Int J Nanomedicine ; 19: 1363-1383, 2024.
Artículo en Inglés | MEDLINE | ID: mdl-38371454

RESUMEN

Osteoporosis (OP) affects millions of people worldwide, especially postmenopausal women and the elderly. Although current available anti-OP agents can show promise in slowing down bone resorption, most are not specifically delivered to the hard tissue, causing significant toxicity. A bone-targeted nanodrug delivery system can reduce side effects and precisely deliver drug candidates to the bone. This review focuses on the progress of bone-targeted nanoparticles in OP therapy. We enumerate the existing OP medications, types of bone-targeted nanoparticles and categorize pairs of the most common bone-targeting functional groups. Finally, we summarize the potential use of bone-targeted nanoparticles in OP treatment. Ongoing research into the development of targeted ligands and nanocarriers will continue to expand the possibilities of OP-targeted therapies into clinical application.


Asunto(s)
Resorción Ósea , Nanopartículas , Osteoporosis , Humanos , Femenino , Anciano , Densidad Ósea , Huesos
3.
Cell Death Discov ; 10(1): 55, 2024 Jan 27.
Artículo en Inglés | MEDLINE | ID: mdl-38280847

RESUMEN

Multiple myeloma (MM) remains an incurable hematological malignancy disease characterized by the progressive dysfunction of the patient's immune system. In this context, immunotherapy for MM has emerged as a prominent area of research in recent years. Various targeted immunotherapy strategies, such as monoclonal antibodies, antibody-drug conjugates, bispecific antibodies, chimeric antigen receptor T cells/natural killer (NK) cells, and checkpoint inhibitors have been developed for MM. This review aims to discuss promising experimental and clinical evidence as well as the mechanisms of action underlying these immunotherapies. Specifically, we will explore the design of exosome-based bispecific monoclonal antibodies that offer cell-free immunotherapy options. The treatment landscape for myeloma continues to evolve with the development of numerous emerging immunotherapies. Given their significant advantages in modulating the MM immune environment through immune-targeted therapy, these approaches provide novel perspectives in selecting cutting-edge treatments for MM.

7.
Psychiatry Clin Neurosci ; 78(2): 83-96, 2024 Feb.
Artículo en Inglés | MEDLINE | ID: mdl-37877617

RESUMEN

Extracellular vesicles (EVs) are membrane-enclosed nanovesicles secreted by cells into the extracellular space and contain functional biomolecules, e.g. signaling receptors, bioactive lipids, nucleic acids, and proteins, which can serve as biomarkers. Neurons and glial cells secrete EVs, contributing to various physiological and pathological aspects of brain diseases. EVs confer their role in the bidirectional crosstalk between the central nervous system (CNS) and the periphery owing to their distinctive ability to cross the unique blood-brain barrier (BBB). Thus, EVs in the blood, cerebrospinal fluid (CSF), and urine can be intriguing biomarkers, enabling the minimally invasive diagnosis of CNS diseases. Although there has been an enormous interest in evaluating EVs as promising biomarkers, the lack of ultra-sensitive approaches for isolating and detecting brain-derived EVs (BDEVs) has hindered the development of efficient biomarkers. This review presents the recent salient findings of exosomal biomarkers, focusing on brain disorders. We summarize highly sensitive sensors for EV detection and state-of-the-art methods for single EV detection. Finally, the prospect of developing advanced EV analysis approaches for the non-invasive diagnosis of brain diseases is presented.


Asunto(s)
Encefalopatías , Enfermedades del Sistema Nervioso Central , Vesículas Extracelulares , Humanos , Encéfalo/metabolismo , Vesículas Extracelulares/metabolismo , Enfermedades del Sistema Nervioso Central/diagnóstico , Enfermedades del Sistema Nervioso Central/metabolismo , Encefalopatías/diagnóstico , Biomarcadores
18.
Cell Mol Biol Lett ; 28(1): 75, 2023 Sep 28.
Artículo en Inglés | MEDLINE | ID: mdl-37770821

RESUMEN

Osteoarthritis (OA), a common joint disorder with articular cartilage degradation as the main pathological change, is the major source of pain and disability worldwide. Despite current treatments, the overall treatment outcome is unsatisfactory. Thus, patients with severe OA often require joint replacement surgery. In recent years, mesenchymal stem cells (MSCs) have emerged as a promising therapeutic option for preclinical and clinical palliation of OA. MSC-derived exosomes (MSC-Exos) carrying bioactive molecules of the parental cells, including non-coding RNAs (ncRNAs) and proteins, have demonstrated a significant impact on the modulation of various physiological behaviors of cells in the joint cavity, making them promising candidates for cell-free therapy for OA. This review provides a comprehensive overview of the biosynthesis and composition of MSC-Exos and their mechanisms of action in OA. We also discussed the potential of MSC-Exos as a therapeutic tool for modulating intercellular communication in OA. Additionally, we explored bioengineering approaches to enhance MSC-Exos' therapeutic potential, which may help to overcome challenges and achieve clinically meaningful OA therapies.


Asunto(s)
Cartílago Articular , Exosomas , Células Madre Mesenquimatosas , Osteoartritis , Humanos , Exosomas/metabolismo , Condrocitos/metabolismo , Osteoartritis/terapia , Osteoartritis/metabolismo , Cartílago Articular/metabolismo , Células Madre Mesenquimatosas/metabolismo
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