PubMed دسترسی آزاد

Extracellular vesicles in targeted drug delivery: from biological functions to surface engineering.

استودیوی صوتی مقاله

پخش حرفه‌ای فارسی و انگلیسی

در حال بررسی نسخه‌های صوتی ذخیره‌شده…

صوت تولیدشده با هوش مصنوعی است. برای کاربرد علمی یا درمانی، متن و منبع اصلی را بررسی کنید.
خواندن هوشمند فارسی و انگلیسی در حال آماده‌سازی صداهای مرورگر…
تنظیم صدای طبیعی و سرعت

صداهایی که در نامشان «Natural»، «Neural» یا «Online» دیده می‌شود معمولاً طبیعی‌ترند. انتخاب صدا به صداهای نصب‌شده در ویندوز و مرورگر شما بستگی دارد.

چکیده اصلی

Achieving precise and efficient targeting represents a major challenge in drug delivery to overcome the limitations of conventional therapies. Surface functionalization of extracellular vesicles (EVs)-nanosized membranous particles released by all cell types- has emerged as a promising strategy to enhance targeted drug delivery. EVs are naturally involved in intercellular communication by transferring bioactive molecules from donor to recipient cells, and their biologically active interface confers inherent targeting properties and a favorable safety profile, making them attractive vehicles compared to synthetic nanoparticles. However, the naїve use of EVs is often limited by nonspecific biodistribution and off-target accumulation, reducing their therapeutic efficacy. To overcome these limitations, increasing efforts have focused on engineering EVs through cargo loading and surface functionalization strategies, enabling enhanced targeting and improved delivery of therapeutic molecules. In this review, we first describe the biological features of EVs, including their biogenesis, heterogeneity, and molecular composition, which underlie their potential as drug delivery systems. We then discuss the main determinants of EV-mediated drug delivery and present current engineering strategies, including cargo loading and surface functionalization approaches, highlighting their advantages and limitations. Finally, we summarize the application of engineered EVs in the treatment of several pathological conditions, including cardiovascular, neurological, autoimmune, and cancer diseases, and discuss the major challenges in clinical translation and future perspectives for EV-based targeted therapies.

متن کامل اصلی

نسخه دارای مجوز در منبع علمی در دسترس است.

لینک مستقیم از metadata منبع گرفته شده و در تب جدید باز می‌شود.

باز کردن متن کامل

کلیدواژه‌ها

Extracellular vesiclesLoading approachesNanoparticlesPathological conditionsSurface functionalizationTargeted drug delivery
در همین زیرشاخه

مقاله‌های مرتبط

PubMed2027

Decoding Nano-Bio Interactions: Gene Regulatory Networks in Advanced Drug Loading.

Conventional treatments often face challenges such as the limited ability to penetrate the blood-brain barrier (BBB). The Doxorubicin-loaded graphene oxide/magnetite (DOX/GO/Fe3O4) nanocomplex offers a promising platform due to GO's high surface area and pH-sensitive release, and Fe3O4's magnetic properties. This protocol describes the methodology for evaluating the cytotoxicity of free DOX versus the DOX/GO/Fe3O4 nanocomplex in the A-…

PubMed2026

Formulation, evaluation and characterization of fexofenadine IR and paracetamol SR multiparticulate drug delivery system.

BACKGROUND: Multiparticulate Drug Delivery (MDD) system are particularly considered as well suited systems for controlling oral preparations that have low risk of dose-dumping. OBJECTIVES: The current research work was aimed to prepare Fexofenadine HCl immediate release (IR) and Paracetamol sustained release (SR) pellets in a single dosage unit for the treatment of Allergic Rhinitis. Extrusion-spheronization was used to fabricate pelle…

PubMed2026

Improved transcutaneous delivery of cetirizine hydrochloride for the treatment of post-chemotherapy alopecia: Poke and emulgel approach.

BACKGROUND: Chemotherapy-induced alopecia negatively impacts the mental health of cancer patients. Topical minoxidil, a widely recommended drug for hair regrowth, causes scalp irritation and contact dermatitis. Oral minoxidil causes multiple cardiovascular and neurological side effects. Cetirizine hydrochloride, an antihistamine with a better safety profile than minoxidil, may stimulate hair follicle activity by modulating prostaglandi…