keyword
https://read.qxmd.com/read/38634246/synergistic-regulation-of-targeted-organelles-in-tumor-cells-to-promote-photothermal-immunotherapy-using-intelligent-core-satellite-like-nanoparticles-for-effective-treatment-of-breast-cancer
#1
JOURNAL ARTICLE
Xiaowei Chang, Xiaoyu Tang, Wenjun Tang, Lin Weng, Tao Liu, Zeren Zhu, Jie Liu, Man Zhu, Yanmin Zhang, Xin Chen
The normal operation of organelles is critical for tumor growth and metastasis. Herein, an intelligent nanoplatform (BMAEF ) is fabricated to perform on-demand destruction of mitochondria and golgi apparatus, which also generates the enhanced photothermal-immunotherapy, resulting in the effective inhibition of primary and metastasis tumor. The BMAEF has a core of mesoporous silica nanoparticles loaded with brefeldin A (BM), which is connected to ethylenebis(oxyethylenenitrilo)tetraacetic acid (EGTA) and folic acid co-modified gold nanoparticles (AEF )...
April 18, 2024: Small
https://read.qxmd.com/read/38623467/valsartan-mitigates-the-progression-of-methotrexate-induced-acute-kidney-injury-in-rats-via-the-attenuation-of-renal-inflammation-and-oxidative-stress
#2
JOURNAL ARTICLE
Dina Kutbi, Riyadh S Almalki
BACKGROUND: Methotrexate (MTX) is a folic acid antagonist, commonly administered for the treatment of a variety of cancers. However, methotrexate toxicity including bone marrow suppression and hepatic and renal toxicity limits its use. Angiotensin AT1 receptor blockers including Valsartan (Val) possess the ability to ameliorate MTX-induced toxicity through various mechanisms. In this study, we explored the potential reno-protective effects of Val against MTX-induced acute kidney injury in rats...
2024: Journal of Inflammation Research
https://read.qxmd.com/read/38611843/redox-responsive-gold-nanoparticles-coated-with-hyaluronic-acid-and-folic-acid-for-application-in-targeting-anticancer-therapy
#3
JOURNAL ARTICLE
Raissa Munderere, Muhammad Gulfam, Israr Ali, Seon-Hwa Kim, Trung Thang Vu, Sang-Hyug Park, Kwon Taek Lim
Methotrexate (MTX) has poor water solubility and low bioavailability, and cancer cells can become resistant to it, which limits its safe delivery to tumor sites and reduces its clinical efficacy. Herein, we developed novel redox-responsive hybrid nanoparticles (NPs) from hyaluronic acid (HA) and 3-mercaptopropionic acid (MPA)-coated gold NPs (gold@MPA NPs), which were further conjugated with folic acid (FA). The design of FA-HA-ss-gold NPs aimed at enhancing cellular uptake specifically in cancer cells using an active FA/HA dual targeting strategy for enhanced tumor eradication...
March 31, 2024: Molecules: a Journal of Synthetic Chemistry and Natural Product Chemistry
https://read.qxmd.com/read/38600497/effects-of-solid-lipid-nanocarrier-containing-methyl-urolithin-a-by-coating-folate-bound-chitosan-and-evaluation-of-its-anti-cancer-activity
#4
JOURNAL ARTICLE
Ilham Naeem Abd Ali Al-Fatlawi, Vahid Pouresmaeil, Fatemeh Davoodi-Dehaghani, Aida Pouresmaeil, Ali Akhtari, Masoud Homayouni Tabrizi
BACKGROUND: Nanotechnology-based drug delivery systems have received much attention over the past decade. In the present study, we synthesized Methyl Urolithin A-loaded solid lipid nanoparticles decorated with the folic acid-linked chitosan layer called MuSCF-NPs and investigated their effects on cancer cells. METHODS: MuSCF-NPs were prepared using a high-pressure homogenization method and characterized using FTIR, FESEM, DLS, and zeta potential methods. Drug encapsulation was assessed by spectrophotometry and its cytotoxic effect on various cancer cells (MDA-MB231, MCF-7, PANC, AGS, and HepG2) by the MTT method...
April 10, 2024: BMC Biotechnology
https://read.qxmd.com/read/38576343/mirvetuximab-soravtansine-in-platinum-resistant-recurrent-ovarian-cancer-with-high-folate-receptor-alpha-expression-a-cost-effectiveness-analysis
#5
JOURNAL ARTICLE
Youwen Zhu, Yinxin Lin, Kun Liu, Hong Zhu
OBJECTIVE: Mirvetuximab soravtansine (MIRV), a new antibody-drug conjugate, versus the investigator's choice of chemotherapy (IC) was the first treatment to demonstrate benefits for progression-free and overall survival in platinum-resistant recurrent ovarian cancer (PROC) with high folate receptor-alpha (high-FRα) expression. Efficacy, safety, and economic effectiveness make MIRV the new standard of care for these patients. METHODS: Based on patients and clinical parameters from MIRASOL (GOG 3045/ENGOT-ov55) phase III randomized controlled trials, the Markov model with a 20-year time horizon was established to evaluate the cost and efficacy of MIRV and IC for PROC with high-FRα expression, considering the bevacizumab-pretreated situation from the American healthcare system...
March 21, 2024: Journal of Gynecologic Oncology
https://read.qxmd.com/read/38568336/development-of-chitosan-folate-modified-plga-nanoparticles-for-targeted-delivery-of-diosgenin-as-an-anticancer-agent
#6
JOURNAL ARTICLE
Fatemeh Teymouri, Ehsan Karimi
Diosgenin as a potential phytoconstituent and steroidal saponin manifested significant anticancer agents against various cancers. To enhance its solubility and bioavailability in cancer treatment, we loaded diosgenin (PubChem CID: 99474) in poly(lactic-co-glycolide) (PLGA) nanoparticle coated with folic acid-chitosan (Da-PFC-NPs). The diosgenin nano-formulation was characterized and its antioxidant and anticancer properties were surveyed respectively. The obtained results illustrated that the Da-PFC-NPs were spherical and stable with a size of 218 nm and a polydispersity index of 0...
April 3, 2024: Discover. Oncology
https://read.qxmd.com/read/38567330/uv-assisted-synthesis-of-ultra-small-go-austar-for-efficient-ptt-therapeutic-architectonic-construction
#7
JOURNAL ARTICLE
Ang Gao, Lijia Pei, Guan Liu, Yunsheng Chen, Amin Zhang, Daxiang Cui
Conventional Au nanomaterial synthesis typically necessitates the involvement of extensive surfactants and reducing agents, leading to a certain amount of chemical waste and biological toxicity. In this study, we innovatively employed ultra-small graphene oxide as a reducing agent and surfactant for the in situ generation of small Au nanoparticles under ultraviolet irradiation (UV) at ambient conditions. After ultra-small GO-Au seeds were successfully synthesized, we fabricated small star-like Au nanoparticles on the surface of GO, in which GO effectively prevented Austar from aggregation...
March 26, 2024: RSC Advances
https://read.qxmd.com/read/38556768/folic-acid-conjugated-brush-polymers-show-enhanced-blood-brain-barrier-crossing-in-static-and-dynamic-in-vitro-models-toward-brain-cancer-targeting-therapy
#8
JOURNAL ARTICLE
Zihnil A I Mazrad, Ahmed Refaat, Joshua P Morrow, Nicolas H Voelcker, Joseph A Nicolazzo, Meike N Leiske, Kristian Kempe
Over the past decades, evidence has consistently shown that treatment of central nervous system (CNS)-related disorders, including Alzheimer's disease, Parkinson's disease, stroke, multiple sclerosis, and brain cancer, is limited due to the presence of the blood-brain barrier (BBB). To assist with the development of new therapeutics, it is crucial to engineer a drug delivery system that can cross the BBB efficiently and reach target cells within the brain. In this study, we present a potentially efficient strategy for targeted brain delivery through utilization of folic acid (FA)-conjugated brush polymers, that specifically target the reduced folate carrier (RFC, SLC19A1) expressed on brain endothelial cells...
March 31, 2024: ACS Biomaterials Science & Engineering
https://read.qxmd.com/read/38556424/the-role-of-metabolism-in-cardiac-development
#9
REVIEW
Haruko Nakano, Atsushi Nakano
Metabolism is the fundamental process that sustains life. The heart, in particular, is an organ of high energy demand, and its energy substrates have been studied for more than a century. In recent years, there has been a growing interest in understanding the role of metabolism in the early differentiation of pluripotent stem cells and in cancer research. Studies have revealed that metabolic intermediates from glycolysis and the tricarboxylic acid cycle act as co-factors for intracellular signal transduction, playing crucial roles in regulating cell behaviors...
2024: Current Topics in Developmental Biology
https://read.qxmd.com/read/38554742/unlocking-the-power-of-immunotherapy-combinatorial-delivery-of-plasmid-il-15-and-gemcitabine-to-synergistically-remodeling-the-tumor-microenvironment
#10
JOURNAL ARTICLE
Jingwen Liu, Yanyan Han, Ming Zhao, Leyuan Wang, Haiyang Hu, Dawei Chen
Cancer immunotherapy has emerged as a promising clinical treatment strategy in recent years. Unfortunately, the satisfactory antitumor therapeutic efficacy of immunotherapy is limited by intricate immunosuppressive tumor microenvironment (ITM). To remodel the ITM and alleviate the immune evasion, we constructed FA-PEG-modified liposomes to deliver plasmid IL-15 (pIL-15) and gemcitabine (GEM) (FPCL@pIL-15 + FPGL), respectively. The FPCL@pIL-15 (150 nm) and FPGL (120 nm) exhibited symmetrically spherical structures as well as desirable penetration and accumulation on tumor tissue depending on folic acid (FA) specialized targeting function...
March 28, 2024: International Journal of Pharmaceutics
https://read.qxmd.com/read/38546461/the-synthesis-of-broccoli-sprout-extract-loaded-silk-fibroin-nanoparticles-as-efficient-drug-delivery-vehicles-development-and-characterization
#11
JOURNAL ARTICLE
Saeed Ghanbari Hassan Kiadeh, Somayeh Rahaiee, Hossein Azizi, Mostafa Govahi
Targeted drug delivery of biological molecules using the development of biocompatible, non-toxic, and biodegradable nanocarriers can be a promising method for cancer therapy. In this study, silk fibroin protein nanoparticles (SFPNPs) were synthesized as a targeted delivery system for sulforaphane-rich broccoli sprout extract (BSE). The BSE-loaded SFPNPs were conjugated with polyethylene glycol and folic acid, then their physicochemical properties were characterized via UV-Vis, XRD, FTIR, DLS, FE-SEM, and EDX analyses...
March 28, 2024: Pharmaceutical Development and Technology
https://read.qxmd.com/read/38543212/liposomes-coated-with-novel-synthetic-bifunctional-chitosan-derivatives-as-potential-carriers-of-anticancer-drugs
#12
JOURNAL ARTICLE
Elisabetta Mazzotta, Antonia Marazioti, Spyridon Mourtas, Rita Muzzalupo, Sophia G Antimisiaris
In this study, liposomes coated with novel multifunctional polymers were proposed as an innovative platform for tumor targeted drug delivery. Novel Folic acid-Cysteine-Thiolated chitosan (FTC) derivatives possessing active targeting ability and redox responsivity were synthesized, characterized, and employed to develop FTC-coated liposomes. Liposomes were characterized for size, surface charge and drug encapsulation efficiency before and after coating. The formation of a coating layer on liposomal surface was confirmed by the slight increase in particle size and by zeta-potential changes...
February 24, 2024: Pharmaceutics
https://read.qxmd.com/read/38536555/folate-induces-stemness-and-increases-oxygen-consumption-under-glucose-deprivation-by-notch-1-pathway-activation-in-colorectal-cancer-cell
#13
JOURNAL ARTICLE
Juan Rodríguez Silva, Matías Monsalves-Álvarez, Carlos Sepúlveda, Camila Donoso-Barraza, Rodrigo Troncoso, Sandra Hirsch
Evidence for folate's protective effects on neural tube defects led the USA and Chile to start mandatory folic acid (FA) fortification programs, decreasing up to 50%. However, ∼30% of the population consuming fortified foods reach supraphysiologic serum levels. Although controversial, several epidemiological and clinical observations suggest that folate increases cancer risk, giving concern about the risks of FA supplementation. The Cancer stem cells (CSCs) model has been used to explain survival to anticancer therapies...
March 27, 2024: Molecular and Cellular Biochemistry
https://read.qxmd.com/read/38535267/a-comprehensive-study-on-folate-targeted-mesoporous-silica-nanoparticles-loaded-with-5-fluorouracil-for-the-enhanced-treatment-of-gynecological-cancers
#14
JOURNAL ARTICLE
Aliyah Almomen, Adel Alhowyan
BACKGROUND: Gynecological cancers are a significant public health concern, accounting for 40% of all cancer incidence and 30% of deaths in women. 5-Fluorouracil (5-FU) can be used with chemotherapy to improve treatment in advanced-stage gynecological cancer. Mesoporous silica nanoparticles (MSNs) can improve drug effectiveness and reduce toxicity. Folic acid can target folate receptors in epithelial malignancies like ovarian and cervical cancer. METHODS: The mixture of MSN-NH2 was synthesized by dissolving N-lauroylsarcosine sodium in a water-ethanol mixture, adding APTES and TEOS, and heating at 80 °C for 18 h, before being fully characterized...
March 20, 2024: Journal of Functional Biomaterials
https://read.qxmd.com/read/38530292/folate-mediated-targeting-and-controlled-release-plga-encapsulated-mesoporous-silica-nanoparticles-delivering-capecitabine-to-pancreatic-tumor
#15
REVIEW
Abhay Dev Tripathi, Yamini Labh, Soumya Katiyar, Anurag Kumar Singh, Vivek K Chaturvedi, Abha Mishra
The discovery of specifically tailored therapeutic delivery systems has sparked the interest of pharmaceutical researchers considering improved therapeutic effectiveness and fewer adverse effects. The current study concentrates on the design and characterization of PLGA (polylactic-co-glycolic acid) capped mesoporous silica nanoparticles (MSN)-based systems for drug delivery for pH-sensitive controlled drug release in order to achieve a targeted drug release inside the acidic tumor microenvironment. The physicochemical properties of the nanoformulations were analyzed using TEM, zeta potential, AFM, TGA, FTIR, and BET analyses in addition to DLS size...
March 26, 2024: ACS Applied Bio Materials
https://read.qxmd.com/read/38520338/immunoantitumor-activity-and-oxygenation-effect-based-on-iron-copper-doped-folic-acid-carbon-dots
#16
JOURNAL ARTICLE
Siqi Li, Hui Zhang, Yujun Bao, Huanli Zhang, Jingchun Wang, Mingyang Liu, Rui Yan, Zhiqiang Wang, Xiaodan Wu, Yingxue Jin
Cancer metastasis and recurrence are closely associated with immunosuppression and a hypoxic tumor microenvironment. Chemodynamic therapy (CDT) and photothermodynamic therapy (PTT) have been shown to induce immunogenic cell death (ICD), effectively inhibiting cancer metastasis and recurrence when combined with immune adjuvants. However, the limited efficacy of Fenton's reaction and suboptimal photothermal effect present significant challenges for successfully inducing ICD through CDT and PTT. This paper described the synthesis and immunoantitumor activity of the novel iron-copper-doped folic acid carbon dots (CFCFB)...
March 23, 2024: ACS Applied Materials & Interfaces
https://read.qxmd.com/read/38492845/combined-photothermal-therapy-and-cancer-immunotherapy-by-immunogenic-hollow-mesoporous-silicon-shelled-gold-nanorods
#17
JOURNAL ARTICLE
Keyue Cao, Yao Zhou, Ying Shen, Yifei Wang, Haiqin Huang, Hongyan Zhu
Hyperthermia can be integrated with tumor-killing chemotherapy, radiotherapy and immunotherapy to give rise to an anti-tumor response. To this end, a nano-delivery system is built, which can connect hyperthermia and immunotherapy. On this basis, the impact of such a combination on the immune function of dendritic cells (DCs) is explored. The core of this system is the photothermal material gold nanorod (GNR), and its surface is covered with a silica shell. Additionally, it also forms a hollow mesoporous structure using the thermal etching approach, followed by modification of targeted molecule folic acid (FA) on its surface, and eventually forms a hollow mesoporous silica gold nanorod (GNR@void@mSiO2) modified by FA...
March 14, 2024: Journal of Pharmaceutical Sciences
https://read.qxmd.com/read/38479563/synthesis-of-folate-targeted-theranostic-cubosomal-platform-for-co-delivery-of-bismuth-oxide-and-doxorubicin-to-melanoma-in-vitro-and-in-vivo
#18
JOURNAL ARTICLE
Mahsa Zahiri, Hosein Kamali, Khalil Abnous, Seyed Mohammad Taghdisi, Sirous Nekooei, Negar Nekooei, Mohammad Ramezani, Mona Alibolandi
Liquid crystalline nanoparticles (LCNPs) have gained much attention in cancer nanomedicines due to their unique features such as high surface area, storage stability, and sustained-release profile. In the current study, a novel LCNP for co-encapsulation of Bi2 O3 and hydrophilic doxorubicin (DOX) was fabricated and functionalized with folic acid (FA) to achieve efficient tumor targeting toward CT-scan imaging and chemotherapy of melanoma in vitro and in vivo. LCNPs Bi2 O3 NPs were prepared using glycerol monooleate-pluronic F-127 (GMO/PF127/water)...
March 11, 2024: European Journal of Pharmaceutics and Biopharmaceutics
https://read.qxmd.com/read/38463259/formulation-of-folate-receptor-targeted-silibinin-loaded-inhalable-chitosan-nanoparticles-by-the-qbd-approach-for-lung-cancer-targeted-delivery
#19
JOURNAL ARTICLE
Priya Patel, Mihir Raval, Vishal Airao, Nemat Ali, Gamal A Shazly, Rehan Khan, Bhupendra Prajapati
Aim : Targeted delivery of chemotherapeutics by functionalized nanoparticles exhibits a wonderful prospect for cancer treatment. The main objective of this research was to develop folate receptor-targeted silibinin (SB)-loaded inhalable polymeric nanoparticles (FA-CS-SB-NPs) for the treatment of lung cancer. Method : The qbD approach was implemented to prepare SB-loaded nanoparticles. Folic acid was conjugated by electrostatic conjugation in an optimized batch. The therapeutic potentials of formulations were determined using a lung cancer cell-bearing rat model...
March 5, 2024: ACS Omega
https://read.qxmd.com/read/38461560/a-novel-lysosome-targeted-fluorescent-probe-for-precise-formaldehyde-detection-in-water-samples-living-cells-and-breast-cancer-tumors
#20
JOURNAL ARTICLE
Haiping Wang, Yibin Zhang, Xiaoqian Rong, Boling Wang, Li Wang, Chen Wang, Wanxia Gao, Xiansheng Ye, Xiaoying Hou, Wei Liu, Meihui Wu, Yueting Cheng, Xiji Shu, Jinting Shang
This study investigated the potential ability of the fluorescent probe Ly-CHO to detect formaldehyde (FA) in living cells and tumor-bearing mice. Ly-CHO exhibited great selectivity, excellent sensitivity, and rapid response to FA, making it a valuable tool for tracking FA concentration changes. The probe was also found to target lysosomes specifically. Furthermore, Ly-CHO showed an obvious fluorescence increase in endogenous CHO detection after adding tetrahydrogen folic acid (THFA). This study validated Ly-CHO's possibility for FA imaging in vivo, with potential applications in understanding formaldehyde-related diseases...
March 5, 2024: Spectrochimica Acta. Part A, Molecular and Biomolecular Spectroscopy
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