4.8 Review

Ultrasound-mediated nano drug delivery for treating cancer: Fundamental physics to future directions

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Review Nanoscience & Nanotechnology

Recent Trend of Ultrasound-Mediated Nanoparticle Delivery for Brain Imaging and Treatment

SeongHoon Jo et al.

Summary: The blood-brain barrier poses a challenge to the delivery of imaging probes and therapeutic agents to the brain. Methods like ultrasound-mediated nano-particle delivery and photoacoustic brain imaging have emerged as potential solutions. Focused ultrasound is a popular means of enhancing drug delivery through temporary opening of the blood-brain barrier, while photoacoustic brain imaging uses light-to-heat conversion and ultrasound detection to visualize brain morphologies or diseases. The versatility of nanoparticles allows for successful brain imaging and treatment through the combined action of ultrasound and nanoparticulate agents.

ACS APPLIED MATERIALS & INTERFACES (2023)

Article Mechanics

Targeted nano-sized drug delivery to heterogeneous solid tumor microvasculatures: Implications for immunoliposomes exhibiting bystander killing effect

Mohammad Amin Abazari et al.

Summary: This study developed a computational framework to evaluate the treatment efficacy of free Doxorubicin (Dox) and immunoliposome at different stages of vascular solid tumors. The results showed that immunoliposomes exhibited higher drug internalization and fusion effect during therapy, leading to more homogeneous drug distribution and a greater fraction of killed cancer cells.

PHYSICS OF FLUIDS (2023)

Article Oncology

Multiphysics Modeling of Low-Intensity Pulsed Ultrasound Induced Chemotherapeutic Drug Release from the Surface of Gold Nanoparticles

Tyler K. Hornsby et al.

Summary: Ultrasound can induce the release of anticancer drugs from nanoparticle drug carriers, as observed in previous studies. This study applies the DLVO theory to predict the release of doxorubicin from gold nanoparticle drug carriers under low-intensity pulsed ultrasound exposure. The findings contribute to understanding the mechanism of ultrasound-induced drug release from nanoparticles.

CANCERS (2023)

Article Acoustics

A Quantitative Study of Thermal and Non-thermal Mechanisms in Ultrasound-Induced Nano-drug Delivery

Tyler K. Hornsby et al.

Summary: The main aim of this study was to quantify the contributions of thermal and non-thermal mechanisms to drug release in ultrasound-induced release from gold nanoparticles (GNPs). Drug release from the surface of GNPs was induced using two different methods in an ex vivo tissue model: localized tissue heating with a water bath and low-intensity pulsed ultrasound (LIPUS) exposure. It was found that LIPUS exposure, which combines thermal and non-thermal mechanisms, resulted in a higher drug release compared to water bath heating, which only uses thermal mechanisms.

ULTRASOUND IN MEDICINE AND BIOLOGY (2023)

Review Chemistry, Multidisciplinary

Engineered strategies to enhance tumor penetration of drug-loaded nanoparticles

Mohammad Souri et al.

Summary: Nanocarriers have been widely studied for anticancer drug delivery, with their clinical translation facing challenges due to inefficient accumulation and penetration in tumor microenvironment. Despite various strategies proposed to overcome these challenges, their success has been limited so far. Novel strategies such as transformable nanocarriers and transcellular transport of peptide-modified nanocarriers have emerged as potential advanced drug delivery systems.

JOURNAL OF CONTROLLED RELEASE (2022)

Review Oncology

Latest Advances in the Use of Therapeutic Focused Ultrasound in the Treatment of Pancreatic Cancer

Petros X. E. Mouratidis et al.

Summary: Pancreatic cancer, with its low survival rates, presents a significant challenge in terms of treatment. Immunotherapy has shown promise in cancer treatment, but its effectiveness for pancreatic cancer patients is limited. Alternative treatment approaches to enhance the effectiveness of immunotherapy are needed. Therapeutic focused ultrasound, a non-invasive physical modality, can kill cancer cells and induce an anti-cancer immune response. Studies have shown that therapeutic focused ultrasound is a safe and effective technique for treating pancreatic cancer patients, improving survival rates.

CANCERS (2022)

Article Pharmacology & Pharmacy

Computational Modeling of Combination of Magnetic Hyperthermia and Temperature-Sensitive Liposome for Controlled Drug Release in Solid Tumor

Masoud H. H. Tehrani et al.

Summary: This study investigates the potential of combination therapy using thermo-sensitive liposomes loaded with doxorubicin (TSL-Dox) during magnetic hyperthermia (MHT) for cancer treatment. The results show that this combination therapy significantly increases the killing rate and fraction of killed cells (FKCs) inside the tumor compared to conventional chemotherapy, while reducing side effects. The study also explores the impact of various factors on treatment efficacy and suggests that the administration of MHT can improve the TSL delivery system.

PHARMACEUTICS (2022)

Article Engineering, Biomedical

Towards principled design of cancer nanomedicine to accelerate clinical translation

Mohammad Souri et al.

Summary: Nanotechnology has shown promising results in medical applications, particularly in oncology as drug delivery systems. However, the clinical translation of this technology is challenging. To optimize drug delivery systems for clinical translation, the physicochemical characteristics of nanoparticles can be specified. Researchers have focused on producing biocompatible materials, production technologies, or new formulations to improve efficiency and stability. The effects of design parameters can be studied using various methods. This review summarizes the advances and technologies in cancer nanomedicines for clinical translation and commercialization, as well as the existing challenges and opportunities in the field.

MATERIALS TODAY BIO (2022)

Review Neurosciences

Current State of Potential Mechanisms Supporting Low Intensity Focused Ultrasound for Neuromodulation

John Dell'Italia et al.

Summary: Low intensity focused ultrasound (LIFU) has been recognized as a non-invasive neuromodulation technology with superior spatial specificity. This review introduces the underlying mechanics of acoustic energy and neuronal membranes, as well as categorizes empirical studies to evaluate theoretical mechanisms supporting LIFU's effects.

FRONTIERS IN HUMAN NEUROSCIENCE (2022)

Review Oncology

Focused ultrasound for the treatment of glioblastoma

Jill W. Roberts et al.

Summary: This article reviews the key updates from the 2021 workshop on focused ultrasound in the treatment of glioblastoma, outlines next research steps, and provides relevant references.

JOURNAL OF NEURO-ONCOLOGY (2022)

Article Biotechnology & Applied Microbiology

Drug delivery through nanoparticles in solid tumors: a mechanistic understanding

Farshad Moradi Kashkooli et al.

Summary: The aim of this study was to apply a multi-scale computational model to evaluate the use of nano-sized drug-delivery systems in predicting treatment efficacy in solid tumors. The study found that smaller nanoparticles or low binding affinity and drug release rate can achieve higher treatment efficacy.

NANOMEDICINE (2022)

Article Chemistry, Multidisciplinary

Analysis of Magneto-Hyperthermia Duration in Nano-sized Drug Delivery System to Solid Tumors Using Intravascular-Triggered Thermosensitive-Liposome

Mohammad Souri et al.

Summary: A mathematical model was used to investigate the therapeutic response of drug-loaded thermosensitive liposome following intravascular release. The study found that continuous or pulsed hyperthermia can affect drug concentration levels, with a slightly higher concentration for pulsed mode. However, there was no significant difference in onset time of tumor growth.

PHARMACEUTICAL RESEARCH (2022)

Article Biotechnology & Applied Microbiology

Ultrasound-sensitive cRGD-modified liposomes as a novel drug delivery system

Nour M. AlSawaftah et al.

Summary: Targeted liposomes deliver chemotherapeutics to tumours and reduce systemic side effects. Low-frequency ultrasound can trigger drug release from liposomes, and targeted liposomes are more susceptible to ultrasound. Targeting also enhances cellular uptake of the drug and is further enhanced by ultrasound.

ARTIFICIAL CELLS NANOMEDICINE AND BIOTECHNOLOGY (2022)

Review Biotechnology & Applied Microbiology

Ultrasound and nanomaterial: an efficient pair to fight cancer

Edouard Alphandery

Summary: Ultrasound combined with nano-systems shows great potential in improving cancer treatment by enhancing ultrasound imaging, specific tumor targeting, and more moderate tumor heating. These combined treatments can potentially improve the benefit/risk ratio of current cancer treatments.

JOURNAL OF NANOBIOTECHNOLOGY (2022)

Review Pharmacology & Pharmacy

Thermosensitive liposomes: a promising step toward localised chemotherapy

Maryam Chaudhry et al.

Summary: This article evaluates the progress of thermolabile drug carrier systems in pre-clinical and clinical settings, as well as the modalities used to trigger drug release. The combined application of mild hyperthermia and heat-responsive liposomal drug carriers shows great potential utility, and ongoing clinical trials aim to refine this approach for optimal patient benefit.

EXPERT OPINION ON DRUG DELIVERY (2022)

Article Chemistry, Multidisciplinary

Steric Effects in the Deposition Mode and Drug-Delivering Efficiency of Nanocapsule-Based Multilayer Films

Li Xu et al.

Summary: In this study, block polymers with different quaternization degrees were successfully coated on the surface of silica nanocapsules using surface-initiated atom transfer radical polymerization (ATRP), and the antiviral drug Molnupiravir was encapsulated in the polymer-coated nanocapsules. The encapsulated drugs were further incorporated into well-defined films by layer-by-layer (LBL) self-assembly. The researchers investigated the effect of polymer quaternization degree and steric hindrance of functional groups on the growth mode, swelling/deswelling transition, and drug-delivering efficiency of the films.

ACS OMEGA (2022)

Review Pharmacology & Pharmacy

Strategies to enhance drug delivery to solid tumors by harnessing the EPR effects and alternative targeting mechanisms

Yixuan Zi et al.

Summary: The article provides an overview of approaches for evaluating the Enhanced Permeability and Retention (EPR) effect in human tumors and discusses strategies for utilizing the EPR effect in cancer treatment. The article also highlights recent developments in alternative tumor-targeted delivery mechanisms and introduces preclinical models that better reflect human tumors. Additionally, the article suggests more rational applications of the EPR effect in other diseases and fields.

ADVANCED DRUG DELIVERY REVIEWS (2022)

Article Biology

Drug transport kinetics of intravascular triggered drug delivery systems

Timo L. M. ten Hagen et al.

Summary: The study developed a computational model to simulate Intravascular Triggered Drug Delivery Systems (IV-DDS) for local drug delivery and validated the model through experiments. The model explained delivery kinetics, identified optimal delivery parameters, and highlighted key factors affecting drug delivery. It also demonstrated the importance of fast drug release and rapid tissue uptake for efficient delivery.

COMMUNICATIONS BIOLOGY (2021)

Review Clinical Neurology

Applications of focused ultrasound in the brain: from thermoablation to drug delivery

Ying Meng et al.

Summary: Focused ultrasound (FUS) is a disruptive medical technology that can precisely intervene in key circuits of brain disorders, with various forms of actions such as blood-brain barrier opening and neuromodulation. In recent years, there has been a significant expansion of FUS applications in humans, leading to increased academic and public interest in the technology.

NATURE REVIEWS NEUROLOGY (2021)

Article Chemistry, Multidisciplinary

Nanotechnology for a Sustainable Future: Addressing Global Challenges with the International Network4Sustainable Nanotechnology

Lisa Pokrajac et al.

Summary: In summary, nanotechnology can contribute to the achievement of Sustainable Development Goals through technological innovation and interdisciplinary approaches, accelerating progress both in individual countries and globally. Various nations are actively working towards these goals by targeting solutions, technology translation, and promoting a circular economy.

ACS NANO (2021)

Article Chemistry, Physical

pH and ultrasound dual-responsive drug delivery system based on PEG-folate-functionalized Iron-based metal-organic framework for targeted doxorubicin delivery

Ahmed Ahmed et al.

Summary: This study synthesized dual-responsive iron-based MOFs and successfully loaded the anticancer drug DOX into them, demonstrating good colloidal stability with PEG-FA functionalized MOFs. The research confirmed the sensitivity of the nanovehicles to low-frequency ultrasound and showed their release efficiency under different pH values.

COLLOIDS AND SURFACES A-PHYSICOCHEMICAL AND ENGINEERING ASPECTS (2021)

Review Nanoscience & Nanotechnology

Engineered Nanomaterials: The Challenges and Opportunities for Nanomedicines

Fahad Albalawi et al.

Summary: The emergence of nanotechnology as a key enabling technology has opened avenues for new and innovative applications in nanomedicine. Despite the potential of the nanomedicine market, challenges in evaluating the toxicity of engineered nanomaterials present significant obstacles in bringing them into clinical stages.

INTERNATIONAL JOURNAL OF NANOMEDICINE (2021)

Article Materials Science, Biomaterials

A theoretical and experimental study on L-tyrosine and citrate mediated sustainable production of near infrared absorbing twisted gold nanorods

Anshuman Jakhmola et al.

Summary: An efficient and sustainable one-pot protocol was developed to fabricate twisted gold nanorods, a unique anisotropic shape displaying a broad plasmon band extending into the near infrared-III range. The growth mechanism was directed by L-tyrosine and trisodium citrate, with a diffusion limited aggregation numerical scheme used to describe the process accurately. The resulting structure was thoroughly characterized in terms of morphology, with demonstrated SERS and cytotoxic activity.

MATERIALS SCIENCE & ENGINEERING C-MATERIALS FOR BIOLOGICAL APPLICATIONS (2021)

Article Chemistry, Multidisciplinary

Toward Precisely Controllable Acoustic Response of Shell-Stabilized Nanobubbles: High Yield and Narrow Dispersity

Amin Jafari Sojahrood et al.

Summary: Understanding the pressure dependence of the nonlinear behavior of ultrasonically excited phospholipid-stabilized nanobubbles (NBs) is crucial for optimizing ultrasound exposure parameters for contrast enhanced ultrasound. The viscoelastic properties of the shell, affected by membrane additives, influence the acoustic response of NBs. By controlling the size and shell structure, the interaction between shell components and the phospholipid membrane can be studied, offering insights for engineering ultrasound contrast agents.

ACS NANO (2021)

Review Pharmacology & Pharmacy

Opening doors with ultrasound and microbubbles: Beating biological barriers to promote drug delivery

J. Deprez et al.

Summary: Ultrasound, in addition to its clinical imaging application, has been extensively explored as a tool to enhance drug delivery. Therapeutic ultrasound can permeabilize biological barriers, enabling drugs to reach otherwise impermeable tissues and offering a new approach for drug delivery.

ADVANCED DRUG DELIVERY REVIEWS (2021)

Article Acoustics

Development of an ultrasonic nonlinear frequency compounding method with applications in tissue thermometry

Tyler Hornsby et al.

Summary: This study introduced a nonlinear frequency compounding (NLFC) method and investigated its application in noninvasive tissue thermometry. The research found that the NLFC method can produce temperature maps with superior image SNR compared to the previously used nonlinear single frequency (NLSF) method.

JOURNAL OF THE ACOUSTICAL SOCIETY OF AMERICA (2021)

Article Oncology

Selecting the optimal parameters for sonoporation of pancreatic cancer in a pre-clinical model

Christopher W. Schultz et al.

Summary: The study showed that high power ultrasound treatment combined with Sonazoid sonoporation significantly reduced tumor volume and increased vascularity characteristics in PDAC. Sonazoid was the most consistently effective ultrasound contrast agent, especially when treatment began early.

CANCER BIOLOGY & THERAPY (2021)

Article Acoustics

Effect of Acoustic Radiation Force on the Distribution of Nanoparticles in Solid Tumors

Mercy Afadzi et al.

Summary: Acoustic radiation force (ARF) induced by focused ultrasound (FUS) can enhance the interstitial transport of nanoparticles (NPs) in tumor tissues, improving their distribution within the tumor.

IEEE TRANSACTIONS ON ULTRASONICS FERROELECTRICS AND FREQUENCY CONTROL (2021)

Article Acoustics

Effect of Acoustic Radiation Force on Displacement of Nanoparticles in Collagen Gels

Mia Kvale Lovmo et al.

Summary: This study investigated the effects of acoustic radiation force (ARF) on the penetration of nanoparticles (NPs) and deformation of collagen gels used as a model for tumor extracellular matrix. The experimental results showed that ARF did not affect the penetration of NPs into the collagen gels, but caused substantial deformation. Both experimental and theoretical results were consistent in terms of NP penetration and gel deformation.

IEEE TRANSACTIONS ON ULTRASONICS FERROELECTRICS AND FREQUENCY CONTROL (2021)

Article Chemistry, Multidisciplinary

Transport of nanoparticles across the endothelial cell layer

Tore Skotland et al.

Summary: Despite more than three decades of research on how nanoparticles enter and are taken up by tumor cells, there is still much to learn about their interactions and transport mechanisms across the endothelial cell layer. More studies are needed before firm conclusions can be drawn regarding the passive or energy dependent mechanisms for nanoparticle transport to solid tumors.

NANO TODAY (2021)

Article Acoustics

SONOPERMEATION ENHANCES UPTAKE AND THERAPEUTIC EFFECT OF FREE AND ENCAPSULATED CABAZITAXEL

Sofie Snipstad et al.

Summary: Combining microbubbles with ultrasound improves drug delivery to tumors, reducing tumor growth and extending survival in experimental models. Enhanced nanoparticle uptake following ultrasound treatment underscores the need for further understanding of tumor biology and ultrasound-mediated treatment mechanisms.

ULTRASOUND IN MEDICINE AND BIOLOGY (2021)

Article Multidisciplinary Sciences

Evaluation of solid tumor response to sequential treatment cycles via a new computational hybrid approach

Farshad Moradi Kashkooli et al.

Summary: The development of an in silico approach for evaluating personalized treatment protocols in cancer patients shows promising results in reducing tumor cells and improving treatment efficacy. By considering tumor geometry, drug delivery, and chemotherapy efficacy, the study introduces a novel sequential treatment approach that can potentially enhance cancer patient lifespans.

SCIENTIFIC REPORTS (2021)

Article Multidisciplinary Sciences

Effects of hypoxia and nanocarrier size on pH-responsive nano-delivery system to solid tumors

M. Soltani et al.

Summary: A comprehensive mathematical model is proposed in this study to investigate the impact of pH-responsive nanocarriers on cancer cell death, where smaller nanocarriers are more effective and capable of deeper penetration into tumor tissues, although the presence of hypoxic regions in tumors reduces drug penetration depth.

SCIENTIFIC REPORTS (2021)

Article Multidisciplinary Sciences

Computational modeling of thermal combination therapies by magneto-ultrasonic heating to enhance drug delivery to solid tumors

Mohammad Souri et al.

Summary: This study investigates the performance of Doxorubicin and its encapsulation using magnetic resonance imaging-guided high intensity focused ultrasound technology. The combination of thermal ablation and medication therapy shows improved therapeutic outcomes by stimulating biological properties. It is recommended to use thermal ablation before thermo chemotherapy and ThermoDox therapy due to the low drug penetration in the tumor center.

SCIENTIFIC REPORTS (2021)

Article Biophysics

In vitro evaluation of polymeric nanoparticles with a fluorine core for drug delivery triggered by focused ultrasound

L. Somaglino et al.

Summary: Polymeric nanoparticles are being studied as potential drug carriers, and their drug release can be enhanced by triggering with ultrasound. However, the release is only significantly increased in the presence of detectable inertial cavitation.

COLLOIDS AND SURFACES B-BIOINTERFACES (2021)

Review Chemistry, Physical

Bursting microbubbles: How nanobubble contrast agents can enable the future of medical ultrasound molecular imaging and image-guided therapy

Agata A. Exner et al.

Summary: The field of medical ultrasound has seen significant developments with the use of microbubbles as contrast agents. However, the limitations in their clinical applications due to size have led to the exploration of nanobubbles. This review discusses the potential of nanobubbles as imaging agents and therapeutic vehicles, with the aim of shaping the future of medical ultrasound.

CURRENT OPINION IN COLLOID & INTERFACE SCIENCE (2021)

Article Nanoscience & Nanotechnology

Temperature-Responsive Multilayer Films Based on Block Copolymer-Coated Silica Nanoparticles for Long-Term Release of Favipiravir

Li Xu et al.

Summary: By utilizing surface-initiated atom-transfer radical polymerization, temperature-responsive block polymers were functionalized on the surface of silica nanocapsules, demonstrating swelling/deswelling behaviors under temperature stimulus. The impact of steric hindrance on the assembling behavior, swelling/deswelling transition, and drug release rate of multilayer films was investigated.

ACS APPLIED NANO MATERIALS (2021)

Article Multidisciplinary Sciences

Ultrasound-triggered herceptin liposomes for breast cancer therapy

Amal Elamir et al.

Summary: Functionalizing liposomes with monoclonal antibodies, particularly anti-HER2 antibodies, can enhance targeted drug delivery to HER2 positive breast cancer cells. Low frequency ultrasound (LFUS) triggered drug release from liposomes can be further enhanced by the conjugation of Trastuzumab, increasing drug uptake and cellular toxicity in HER2+ cell lines. Combining immunoliposomes with LFUS is a promising technique to improve drug delivery efficiency and reduce cytotoxicity of antineoplastic drugs.

SCIENTIFIC REPORTS (2021)

Article Instruments & Instrumentation

Ultrasound-responsive polymer-based drug delivery systems

Ping Wei et al.

Summary: Ultrasound-responsive polymeric materials have shown great potential for efficient drug delivery and targeted treatment in various biomedical applications, including tumor therapy and disruption of the blood-brain barrier. Future research directions for the development of these smart materials are also discussed to facilitate clinical translation.

DRUG DELIVERY AND TRANSLATIONAL RESEARCH (2021)

Review Oncology

Application of Animal Models in Cancer Research: Recent Progress and Future Prospects

Zhitao Li et al.

Summary: Animal models play a crucial role in cancer research, with various construction methods such as chemical induction, xenotransplantation, and gene programming. These models not only help to study the occurrence and development of cancer in depth but also aid in drug screening and gene therapy exploration.

CANCER MANAGEMENT AND RESEARCH (2021)

Article Mechanics

Experimental and numerical evidence of intensified non-linearity at the microscale: The lipid coated acoustic bubble

A. J. Sojahrood et al.

Summary: The lipid coated bubble (LCB) oscillator is a highly interesting non-smooth oscillator with a wide range of applications, but the dynamics of LCB are not well understood due to the complex behavior of the coating intermingled with the nonlinear behavior of the bubble. Experimental observations show that this unique oscillator can exhibit chaotic oscillations and higher order subharmonics at excitation amplitudes considerably below those predicted by the uncoated oscillator.

PHYSICS OF FLUIDS (2021)

Review Pharmacology & Pharmacy

Drug Delivery by Ultrasound-Responsive Nanocarriers for Cancer Treatment

Kristin Entzian et al.

Summary: The development of nanomedicines offers new possibilities to improve treatment outcomes, reduce toxicity, and enhance drug delivery efficiency. Ultrasound-triggered drug delivery by nanocarriers allows on-demand drug release at tumor tissue sites, providing high tissue specificity and penetration.

PHARMACEUTICS (2021)

Review Nanoscience & Nanotechnology

Nanoparticles for Cancer Therapy: Current Progress and Challenges

Shreelaxmi Gavas et al.

Summary: Nanotechnology has revolutionized cancer diagnosis and treatment by overcoming limitations of traditional therapies and multidrug resistance. Nanoparticles, with their unique advantages, offer new perspectives for cancer treatment. However, challenges still exist in research and clinical translation of nanotherapeutics.

NANOSCALE RESEARCH LETTERS (2021)

Article Cell Biology

Toxicology of Nanoparticles in Drug Delivery

Swati Sharma et al.

Summary: Nanoparticles have brought revolutionary advancements in biomedicine, especially in drug delivery, but their potential toxic effects necessitate thorough nanotoxicology studies before human use. Different types of nanoparticles exhibit various toxic effects, and detailed toxicity evaluations are crucial for understanding their potential harm. The increasing application of nanoparticles in drug delivery underscores the urgent need to address gaps in toxicity studies and focus on overcoming existing challenges.

CURRENT PATHOBIOLOGY REPORTS (2021)

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Consideration for the scale-up manufacture of nanotherapeutics-A critical step for technology transfer

Xiangsheng Liu et al.

Summary: Nano-enabled biotechnology holds great promise for disease management, but achieving reproducible production of safe and effective nanotherapeutics requires careful consideration of various factors. Emerging strategies, such as the use of microfluidics systems and iterative CMC optimization, contribute to improving reproducibility and advancing nanomedicine. Personalized and just-in-time nanomedicine may be facilitated by ongoing nano-CMC research efforts.
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Smart Ultrasound-Triggered Doxorubicin-Loaded Nanoliposomes With Improved Therapeutic Response: A Comparative Study

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Recent advances in ultrasound-triggered drug delivery through lipid-based nanomaterials

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An ultrasound responsive microbubble-liposome conjugate for targeted irinotecan-oxaliplatin treatment of pancreatic cancer

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Ultrasound Reversible Response Nanocarrier Based on Sodium Alginate Modified Mesoporous Silica Nanoparticles

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Spatially Specific Liposomal Cancer Therapy Triggered by Clinical External Sources of Energy

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