keyword
https://read.qxmd.com/read/38683228/comparative-evaluation-of-hesperetin-loaded-graphene-oxide-nanosheets-hsp-go-as-a-drug-delivery-system-for-colon-cancer-synthesis-and-anticancer-efficiency-assessment
#1
COMPARATIVE STUDY
Arezou Sabbagh Hadi, Mehdi Haghi, Abolfazl Barzegar, Mohammad Ali, Hosseinpour Feizi
BACKGROUND: Graphene oxide nanosheets (GONS) are recognized for their role in enhancing drug delivery and effectiveness in cancer treatment. With colon cancer being a prevalent global issue and the significant side effects associated with chemotherapy, the primary treatment for colon cancer alongside surgery, there is a critical need for novel therapeutic strategies to support patients in combating this disease. Hesperetin (HSP), a natural compound found in specific fruits, exhibits anti-cancer properties...
April 29, 2024: Molecular Biology Reports
https://read.qxmd.com/read/38681872/reprogramming-the-pancreatic-cancer-stroma-and-immune-landscape-by-a-silicasome-nanocarrier-delivering-nintedanib-a-protein-tyrosine-kinase-inhibitor
#2
JOURNAL ARTICLE
Lijia Luo, Xiang Wang, Yu-Pei Liao, Xiao Xu, Chong Hyun Chang, Andre E Nel
The prevailing desmoplastic stroma and immunosuppressive microenvironment within pancreatic ductal adenocarcinoma (PDAC) pose substantial challenges to therapeutic intervention. Despite the potential of protein tyrosine kinase (PTK) inhibitors in mitigating the desmoplastic stromal response and enhancing the immune milieu, their efficacy is curtailed by suboptimal pharmacokinetics (PK) and insufficient tumor penetration. To surmount these hurdles, we have pioneered a novel strategy, employing lipid bilayer-coated mesoporous silica nanoparticles (termed "silicasomes") as a carrier for the delivery of Nintedanib...
February 2024: Nano Today
https://read.qxmd.com/read/38675383/long-term-tumor-targeting-effect-of-e-coli-as-a-drug-delivery-system
#3
JOURNAL ARTICLE
Gun Gyun Kim, Hongje Lee, Dan Bi Jeong, Sang Wook Kim, Jae-Seon So
To overcome the limitations of current nano/micro-scale drug delivery systems, an Escherichia coli ( E. coli )-based drug delivery system could be a potential alternative, and an effective tumor-targeting delivery system can be developed by attempting to perform chemical binding to the primary amine group of a cell membrane protein. In addition, positron emission tomography (PET) is a representative non-invasive imaging technology and is actively used in the field of drug delivery along with radioisotopes capable of long-term tracking, such as zirconium-89 (89 Zr)...
March 26, 2024: Pharmaceuticals
https://read.qxmd.com/read/38675078/natural-and-synthetic-polymers-for-biomedical-and-environmental-applications
#4
REVIEW
Galina Satchanska, Slavena Davidova, Petar D Petrov
Natural and synthetic polymers are a versatile platform for developing biomaterials in the biomedical and environmental fields. Natural polymers are organic compounds that are found in nature. The most common natural polymers include polysaccharides, such as alginate, hyaluronic acid, and starch, proteins, e.g., collagen, silk, and fibrin, and bacterial polyesters. Natural polymers have already been applied in numerous sectors, such as carriers for drug delivery, tissue engineering, stem cell morphogenesis, wound healing, regenerative medicine, food packaging, etc...
April 20, 2024: Polymers
https://read.qxmd.com/read/38673961/molecular-mechanisms-responsible-for-the-therapeutic-potential-of-mesenchymal-stem-cell-derived-exosomes-in-the-treatment-of-lung-fibrosis
#5
REVIEW
Carl Randall Harrell, Valentin Djonov, Ana Volarevic, Aleksandar Arsenijevic, Vladislav Volarevic
Mesenchymal stem cell-derived exosomes (MSC-Exos) are nano-sized extracellular vesicles which contain various MSC-sourced anti-fibrotic, immunoregulatory and angio-modulatory proteins (growth factors, immunoregulatory cytokines, chemokines), lipids, and nucleic acids (messenger RNA and microRNAs). Due to their lipid envelope, MSC-Exos easily by-pass all barriers in the body and deliver their cargo directly in target cells, modulating their viability, proliferation, phenotype and function. The results obtained in recently published experimental studies demonstrated beneficial effects of MSC-Exos in the treatment of lung fibrosis...
April 16, 2024: International Journal of Molecular Sciences
https://read.qxmd.com/read/38657549/plant-nano-interactions-a-new-insight-of-nano-phytotoxicity
#6
REVIEW
Ankita Biswas, Suparna Pal
Whether nanoparticles (NPs) are boon or bane for society has been a centre of in-depth debate and key consideration in recent times. Exclusive physicochemical properties like small size, large surface area-to-volume ratio, robust catalytic activity, immense surface energy, magnetism and superior biocompatibility make NPs obligatory in many scientific, biomedical and industrial ventures. Nano-enabled products are newer entrants in the present era. To attenuate environmental stress and maximize crop yields, scientists are tempted to introduce NPs as augmented supplements in agriculture...
April 18, 2024: Plant Physiology and Biochemistry: PPB
https://read.qxmd.com/read/38649957/targeted-delivery-of-hsp90-inhibitors-for-efficient-therapy-of-cd44-positive-acute-myeloid-leukemia-and-solid-tumor-colon-cancer
#7
JOURNAL ARTICLE
Lejiao Jia, Huatian Yang, Yue Liu, Ying Zhou, Guosheng Li, Qian Zhou, Yan Xu, Zhiping Huang, Feng Ye, Jingjing Ye, Anchang Liu, Chunyan Ji
Heat shock protein 90 (HSP90) is overexpressed in numerous cancers, promotes the maturation of numerous oncoproteins and facilitates cancer cell growth. Certain HSP90 inhibitors have entered clinical trials. Although less than satisfactory clinical effects or insurmountable toxicity have compelled these trials to be terminated or postponed, these results of preclinical and clinical studies demonstrated that the prospects of targeting therapeutic strategies involving HSP90 inhibitors deserve enough attention...
April 22, 2024: Journal of Nanobiotechnology
https://read.qxmd.com/read/38649866/biomimetic-nanovesicles-as-a-dual-gene-delivery-system-for-the-synergistic-gene-therapy-of-alzheimer-s-disease
#8
JOURNAL ARTICLE
Sujun Jiang, Guoen Cai, Zhimin Yang, Haoyuan Shi, Huajie Zeng, Qinyong Ye, Zhiyuan Hu, Zihua Wang
The association between dysfunctional microglia and amyloid-β (Aβ) is a fundamental pathological event and increases the speed of Alzheimer's disease (AD). Additionally, the pathogenesis of AD is intricate and a single drug may not be enough to achieve a satisfactory therapeutic outcome. Herein, we reported a facile and effective gene therapy strategy for the modulation of microglia function and intervention of Aβ anabolism by ROS-responsive biomimetic exosome-liposome hybrid nanovesicles (designated as TSEL)...
April 22, 2024: ACS Nano
https://read.qxmd.com/read/38644713/smart-nanobiomaterials-for-gene-delivery-in-localized-cancer-therapy-an-overview-from-emerging-materials-and-devices-to-clinical-applications
#9
JOURNAL ARTICLE
Armin Shamaeizadeh, Anahita Beigi, Seyed Morteza Naghib, Maryam Tajabadi, Mehdi Rahmanian, M R Mozafari
Researchers in various fields continue to discover improved ways of local delivery of drugs to specific locations and try to increase the efficiency of these methods. Extensive research has been done on smart nano-biomaterials for drug delivery systems (DDS) in different dimensions. With the advancement of biomedical nanotechnology, conventional smart DDS with stimuli- responsive capability has been developed. Smart nano-biomaterials can respond to environmental changes caused by endogenous or exogenous elements: endogenous factors such as environmental pH, temperature gradient, enzymes, oxidation, and reduction potential...
April 19, 2024: Current Cancer Drug Targets
https://read.qxmd.com/read/38640729/preparation-and-brain-targeting-effects-study-of-recombinant-human-ferritin-nanoparticles
#10
JOURNAL ARTICLE
Zhixian Wang, Xiaoling Xu, Yunhuan Zhu, Yuncheng Qian, Yilu Feng, Hongyu Li, Guoheng Hu
Human heavy-chain ferritin is a naturally occurring protein with high stability and multifunctionality in biological systems. This study aims to utilize a prokaryotic expression system to produce recombinant human heavy-chain ferritin nanoparticles and investigate their targeting ability in brain tissue. The human heavy-chain ferritin gene was cloned into the prokaryotic expression vector pET28a and transformed into Escherichia coli BL21 (DE3) competent cells to explore optimal expression conditions. The recombinant protein was then purified to evaluate its immunoreactivity and characteristics...
April 15, 2024: Biochemical and Biophysical Research Communications
https://read.qxmd.com/read/38636395/intratumoural-delivery-of-trail-mrna-induces-colon-cancer-cell-apoptosis
#11
JOURNAL ARTICLE
Tingxuan Gu, Mengqiao Wang, Xiaorong Fu, Xueli Tian, Juanjuan Bi, Ning Lu, Chen Chen, Shijia Yan, Ang Li, Luyun Wang, Xiang Li, Kangdong Liu, Zigang Dong
Novel strategies in intratumoral injection and emerging immunotherapies have heralded a new era of precise cancer treatments. The affinity of SARS-CoV-2 to ACE2 receptors, a feature which facilitates virulent human infection, is leveraged in this research. Colon cancer cells, with their high ACE2 expression, provide a potentially strategic target for using this SARS-CoV-2 feature. While the highly expression of ACE2 is observed in several cancer types, the idea of using the viral spike protein for targeting colon cancer cells offers a novel approach in cancer treatment...
April 17, 2024: Biomedicine & Pharmacotherapy
https://read.qxmd.com/read/38635910/nanomedomics
#12
REVIEW
Ganghao Liang, Wanqing Cao, Dongsheng Tang, Hanchen Zhang, Yingjie Yu, Jianxun Ding, Johannes Karges, Haihua Xiao
Nanomaterials have attractive physicochemical properties. A variety of nanomaterials such as inorganic, lipid, polymers, and protein nanoparticles have been widely developed for nanomedicine via chemical conjugation or physical encapsulation of bioactive molecules. Superior to traditional drugs, nanomedicines offer high biocompatibility, good water solubility, long blood circulation times, and tumor-targeting properties. Capitalizing on this, several nanoformulations have already been clinically approved and many others are currently being studied in clinical trials...
April 18, 2024: ACS Nano
https://read.qxmd.com/read/38628180/exploring-the-multimodal-health-promoting-properties-of-resveratrol-a-comprehensive-review
#13
REVIEW
Zargham Faisal, Aimen Mazhar, Syeda Ayesha Batool, Noor Akram, Maleeha Hassan, Muhammad Usman Khan, Muhammad Afzaal, Usman Ul Hassan, Yasir Abbas Shah, Derese Tamiru Desta
Resveratrol, a natural polyphenol in various plants, has gained significant attention for its potential health-promoting properties. It has been demonstrated, after reviewing various clinical and in vitro studies, that resveratrol possesses potent antioxidant potential. Resveratrol demonstrates cellular component protection by directly neutralizing free radicals (FRs) and enhancing the expression of natural antioxidant enzymes, thereby mitigating oxidative damage to proteins, lipids, and nucleic acids...
April 2024: Food Science & Nutrition
https://read.qxmd.com/read/38622996/polyester-nanoparticles-with-controlled-topography-for-peroral-drug-delivery-using-insulin-as-a-model-protein
#14
JOURNAL ARTICLE
Ingrid Marie Heyns, Meenakshi Arora, Raghu Ganugula, Swetha Reddy Allamreddy, Shrusti Tiwari, Dhaval K Shah, Rita Basu, M N V Ravi Kumar
Receptor-mediated polyester drug delivery systems have tremendous potential for improving the clinical performance of existing pharmaceutical drugs. Despite significant progress made in this area, it remains unclear how and to what extent the polyester nanoparticle surface topography would affect the in vitro , ex vivo and in vivo performance of a drug, and if there exists a correlation between in vitro and in vivo , as well as healthy versus pathophysiological states. Herein, we report a systematic investigation of the interactions between ligands and receptors as a function of the linker length, two-carbon (2C) versus four-carbon (4C)...
April 15, 2024: ACS Nano
https://read.qxmd.com/read/38619365/reversible-assembly-of-proteins-and-phenolic-polymers-for-intracellular-protein-delivery-with-serum-stability
#15
JOURNAL ARTICLE
Guangyu Rong, Xujiao Zhou, Jiaxu Hong, Yiyun Cheng
The design of intracellular delivery systems for protein drugs remains a challenge due to limited delivery efficacy and serum stability. Herein, we propose a reversible assembly strategy to assemble cargo proteins and phenolic polymers into stable nanoparticles for this purpose using a heterobifunctional adaptor (2-formylbenzeneboronic acid). The adaptor is easily decorated on cargo proteins via iminoboronate chemistry and further conjugates with catechol-bearing polymers to form nanoparticles via boronate diester linkages...
April 15, 2024: Nano Letters
https://read.qxmd.com/read/38612777/transmembrane-protein-tmem230-regulator-of-glial-cell-vascular-mimicry-and-endothelial-cell-angiogenesis-in-high-grade-heterogeneous-infiltrating-gliomas-and-glioblastoma
#16
JOURNAL ARTICLE
Cinzia Cocola, Edoardo Abeni, Valentina Martino, Eleonora Piscitelli, Paride Pelucchi, Ettore Mosca, Alice Chiodi, Tasnim Mohamed, Mira Palizban, Giovanni Porta, Helga Palizban, Giovanni Nano, Francesco Acquati, Antonino Bruno, Burkhard Greve, Daniela Gerovska, Valerio Magnaghi, Daniela Mazzaccaro, Giovanni Bertalot, James Kehler, Cristiana Balbino, Marcos J Arauzo-Bravo, Martin Götte, Ileana Zucchi, Rolland A Reinbold
High-grade gliomas (HGGs) and glioblastoma multiforme (GBM) are characterized by a heterogeneous and aggressive population of tissue-infiltrating cells that promote both destructive tissue remodeling and aberrant vascularization of the brain. The formation of defective and permeable blood vessels and microchannels and destructive tissue remodeling prevent efficient vascular delivery of pharmacological agents to tumor cells and are the significant reason why therapeutic chemotherapy and immunotherapy intervention are primarily ineffective...
April 3, 2024: International Journal of Molecular Sciences
https://read.qxmd.com/read/38609391/dual-ph-redox-responsive-hyperbranched-polymeric-nanocarriers-with-tme-trigger-size-shrinkage-and-charge-reversible-ability-for-amplified-chemotherapy-of-breast-cancer
#17
JOURNAL ARTICLE
Fahimeh Badparvar, Ahmad Poursattar Marjani, Roya Salehi, Fatemeh Ramezani
A novel pH/redox-responsive hyperbranched MeO-PEG-b-(NIPAAm-co-PBAE) nanoparticles (NPs) were designed with size shrinkage and charge-reversible potential for targeted delivery of docetaxel (DTX) to MDA-MB-231 cell lines. In the tumor microenvironment (TME), amine protonation induces charge reversal and disulfide bond cleavage under high TME GSH concentration causing size shrinkage, improved deep tumor penetration, and active targeting of the therapeutic agents. These nano drug delivery systems (NDDSs) significantly promoted cancer cell uptake (~ 100% at 0...
April 12, 2024: Scientific Reports
https://read.qxmd.com/read/38605600/sulfonium-stapled-peptides-based-neoantigen-delivery-system-for-personalized-tumor-immunotherapy-and-prevention
#18
JOURNAL ARTICLE
Yaping Zhang, Leying Jiang, Siyong Huang, Chenshan Lian, Huiting Liang, Yun Xing, Jianbo Liu, Xiaojing Tian, Zhihong Liu, Rui Wang, Yuhao An, Fei Lu, Youdong Pan, Wei Han, Zigang Li, Feng Yin
Neoantigen peptides hold great potential as vaccine candidates for tumor immunotherapy. However, due to the limitation of antigen cellular uptake and cross-presentation, the progress with neoantigen peptide-based vaccines has obviously lagged in clinical trials. Here, a stapling peptide-based nano-vaccine is developed, comprising a self-assembly nanoparticle driven by the nucleic acid adjuvant-antigen conjugate. This nano-vaccine stimulates a strong tumor-specific T cell response by activating antigen presentation and toll-like receptor signaling pathways...
April 11, 2024: Advanced Science (Weinheim, Baden-Wurttemberg, Germany)
https://read.qxmd.com/read/38598955/design-of-coiled-coil-protein-nanostructures-for-therapeutics-and-drug-delivery
#19
REVIEW
Dustin Britton, Jonathan W Sun, P Douglas Renfrew, Jin Kim Montclare
Coiled-coil protein motifs have become widely employed in the design of biomaterials. Some of these designs have been studied for use in drug delivery due to the unique ability of coiled-coils to impart stability, oligomerization, and supramolecular assembly. To leverage these properties and improve drug delivery, release, and targeting, a variety of nano- to mesoscale architectures have been adopted. Coiled-coil drug delivery and therapeutics have been developed by using the coiled-coil alone, designing for higher-order assemblies such as fibers and hydrogels, and combining coiled-coil proteins with other biocompatible structures such as lipids and polymers...
April 10, 2024: Annual Review of Chemical and Biomolecular Engineering
https://read.qxmd.com/read/38596902/ptsa-induced-synthesis-in-silico-and-nano-study-of-novel-ethylquinolin-thiazolo-triazole-in-cervical-cancer
#20
JOURNAL ARTICLE
Priyanka Sonker, Rupen Tamang, Abhishesh K Mehata, Manisha Nidhar, Vishal P Sharma, Vipin Kumar, Madaswamy S Muthu, Biplob Koch, Ashish K Tewari
Aim: p-Toluenesulfonic acid-(PTSA) and grinding-induced novel synthesis of ethylquinolin-thiazolo-triazole derivatives was performed using green chemistry. Materials & methods: Development of a nanoconjugate drug-delivery system of ethylquinolin-thiazolo-triazole was carried out with D-α-tocopheryl polyethylene glycol succinate (TPGS) and the formulation was further characterized by transmission electron microscopy, atomic force microscopy, dynamic light scattering and in vitro drug release assay...
April 10, 2024: Future Medicinal Chemistry
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