Synthesis, characterization, and toxicity assessments of Silymarin-loaded Ni-Fe Metal-organic frameworks: Evidence from in vitro and in vivo evaluations
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R. Saravani | M. Hajinezhad | Mahmood Barani | Sheida Shahraki | Shekoufeh Mirinejad | Saman Sargazi | Sonia Fathi-Karkan | Fatemeh Rahimi
[1] Wenhao Shen,et al. A Polymeric Hydrogel to Eliminate Programmed Death-Ligand 1 for Enhanced Tumor Radio-Immunotherapy. , 2023, ACS nano.
[2] A. Kabra,et al. Recent Advancements in Photodynamic Therapy and Cancer Biosensor using Natural Products , 2023, Talanta Open.
[3] D. Dorranian,et al. Synthesis and evaluation of copper–imidazole MOF nanostructures and its graphene nanocomposites by pulsed laser ablation method in liquid , 2023, Optical and Quantum Electronics.
[4] Wangxiao He,et al. Biomimetic peptide dynamic hydrogel inspired by humanized defensin nanonets as the wound-healing gel coating , 2023, Chemical Engineering Journal.
[5] Yan Peng,et al. Review on near-field detection technology in the biomedical field , 2023, Advanced Photonics Nexus.
[6] Tong Li,et al. Metal-organic framework-encapsulated dihydroartemisinin nanoparticles induces apoptotic cell death in ovarian cancer by blocking ROMO1-mediated ROS production , 2023, Journal of Nanobiotechnology.
[7] P. Garg,et al. The innate effects of plant secondary metabolites in preclusion of gynecologic cancers: Inflammatory response and therapeutic action. , 2023, Biochimica et biophysica acta. Reviews on cancer.
[8] Wenhao Zhou,et al. Targeting nano-regulator based on metal–organic frameworks for enhanced immunotherapy of bone metastatic prostate cancer , 2023, Cancer Nanotechnology.
[9] Jun Yu Li,et al. Tumor cell membrane-coated continuous electrochemical sensor for GLUT1 inhibitor screening , 2023, Journal of pharmaceutical analysis.
[10] K. Min,et al. Mesoporous Silica Nanoparticles as a Potential Nanoplatform: Therapeutic Applications and Considerations , 2023, International journal of molecular sciences.
[11] Hossein Ghahramani Almanghadim,et al. Biomedical applications of aptamer-modified chitosan nanomaterials: An updated review. , 2023, International journal of biological macromolecules.
[12] Yafeng Yang,et al. Biodegradable and Cytocompatible Hydrogel Coating with Antibacterial Activity for the Prevention of Implant-Associated Infection. , 2023, ACS applied materials & interfaces.
[13] Wenhao Zhou,et al. Mn-based cGAS-STING activation for tumor therapy. , 2023, Chinese journal of cancer research = Chung-kuo yen cheng yen chiu.
[14] Brianna,et al. Chemotherapy: how to reduce its adverse effects while maintaining the potency? , 2023, Medical Oncology.
[15] A. Díez-Pascual,et al. Preparation, characterization, and toxicity assessment of carfilzomib-loaded nickel-based metal-organic framework: Evidence from in-vivo and in-vitro experiments , 2023, Journal of Drug Delivery Science and Technology.
[16] N. Malek,et al. Review on Metal–Organic Framework Classification, Synthetic Approaches, and Influencing Factors: Applications in Energy, Drug Delivery, and Wastewater Treatment , 2022, ACS omega.
[17] Hedyieh Karbasforooshan,et al. Silymarin as a preventive or therapeutic measure for chemotherapy and radiotherapy-induced adverse reactions: a comprehensive review of preclinical and clinical data , 2022, European Journal of Clinical Pharmacology.
[18] R. Hayeshi,et al. A review of the pharmacodynamic effect of chemo-herbal drug combinations therapy for cancer treatment , 2022, Medicine in Drug Discovery.
[19] S. Chi,et al. Covalent organic framework nanomedicines: Biocompatibility for advanced nanocarriers and cancer theranostics applications , 2022, Bioactive materials.
[20] M. Caraglia,et al. p53: From Fundamental Biology to Clinical Applications in Cancer , 2022, Biology.
[21] S. Babashah,et al. Evaluating the Effects of Silymarin on Expressing SBDSP1 and CASC11 Genes in HCT116 Colon Cancer Cells , 2022, Journal of Kermanshah University of Medical Sciences.
[22] Shobhit Kumar,et al. Mechanistic Insights into the Pharmacological Significance of Silymarin , 2022, Molecules.
[23] Jun Yu Li,et al. An enzyme-particle hybrid ink for one step screen-printing and long-term metabolism monitoring. , 2022, Analytica chimica acta.
[24] Ebru Temiz,et al. Antioxidant Actions of Thymoquinone, Silymarin, and Curcumin on Experimental Aortic Ischemia-Reperfusion Model in Wistar Albino Rats , 2022, Brazilian journal of cardiovascular surgery.
[25] Mahboubeh Adeli-sardou,et al. Study of in vitro cytotoxic performance of biosynthesized α-Bi2O3 NPs, Mn-doped and Zn-doped Bi2O3 NPs against MCF-7 and HUVEC cell lines , 2022, Journal of Materials Research and Technology.
[26] Q. Zou,et al. Distance-based support vector machine to predict DNA N6-methyladenine modification , 2022, Current Bioinformatics.
[27] C. Fu,et al. Curcumae rhizoma and its major constituents against hepatobiliary disease: Pharmacotherapeutic properties and potential clinical applications. , 2022, Phytomedicine : international journal of phytotherapy and phytopharmacology.
[28] S. R. Balusamy,et al. Biosynthesis and cytotoxic effect of silymarin-functionalized selenium nanoparticles induced autophagy mediated cellular apoptosis via downregulation of PI3K/Akt/mTOR pathway in gastric cancer. , 2022, Phytomedicine : international journal of phytotherapy and phytopharmacology.
[29] S. Mallakpour,et al. Application of MOF materials as drug delivery systems for cancer therapy and dermal treatment , 2022, Coordination Chemistry Reviews.
[30] L. Fliegel,et al. Role of Silymarin in Cancer Treatment: Facts, Hypotheses, and Questions , 2022, Journal of evidence-based integrative medicine.
[31] A. Giordano,et al. p53 signaling in cancer progression and therapy , 2021, Cancer cell international.
[32] S. Rezaei,et al. Opportunities and Challenges in Biomedical Applications of Metal–Organic Frameworks , 2021, Journal of Inorganic and Organometallic Polymers and Materials.
[33] Hossein Kazemian,et al. A new nickel metal organic framework (Ni-MOF) porous nanostructure as a potential novel electrochemical sensor for detecting glucose , 2021, Journal of Porous Materials.
[34] A. Varzi,et al. Effects of synthetic silymarin-PLGA nanoparticles on M2 polarization and inflammatory cytokines in LPS-treated murine peritoneal macrophages , 2021, Iranian journal of basic medical sciences.
[35] E. Ramírez‐Moreno,et al. Phytochemicals and Their Possible Mechanisms in Managing COVID-19 and Diabetes , 2021, Applied Sciences.
[36] Jun Wu. The Enhanced Permeability and Retention (EPR) Effect: The Significance of the Concept and Methods to Enhance Its Application , 2021, Journal of personalized medicine.
[37] Shing-Jyh Chang,et al. Advances in Functional Metal‐Organic Frameworks Based On‐Demand Drug Delivery Systems for Tumor Therapeutics , 2021, Advanced NanoBiomed Research.
[38] F. Demir Duman,et al. Applications of nanoscale metal-organic frameworks as imaging agents in biology and medicine. , 2021, Journal of materials chemistry. B.
[39] Rui Qiao,et al. Construction of the targeted and pH-sensitive paclitaxel drug delivery system RGD/PTX@ZIF-90 and anti-tumor activity research , 2021, Materials Research Express.
[40] S. T. Dabbagh,et al. Synthesis and Characterization of Bismuth Oxide Nanoparticle by Thermal Decomposition of Bismuth-Based MOF and Evaluation of Its Nanocomposite , 2021 .
[41] L. Attardi,et al. p53 and Tumor Suppression: It Takes a Network. , 2021, Trends in cell biology.
[42] D. Dorranian,et al. Synthesis of MOF-5 nanostructures by laser ablation method in liquid and evaluation of its properties , 2021, Journal of Materials Science: Materials in Electronics.
[43] C. Fang,et al. Variability and improvement of optical and antimicrobial performances for CQDs/mesoporous SiO2/Ag NPs composites via in situ synthesis , 2021, Green Processing and Synthesis.
[44] Q. Ke,et al. Hierarchical micro/nanofibrous scaffolds incorporated with curcumin and zinc ion eutectic metal organic frameworks for enhanced diabetic wound healing via anti-oxidant and anti-inflammatory activities , 2020 .
[45] P. Taboada,et al. Newly crocin-coated magnetite nanoparticles induce apoptosis and decrease VEGF expression in breast carcinoma cells , 2020 .
[46] O. Mohammed,et al. Hepatoprotective activity of silymarin encapsulation against hepatic damage in albino rats , 2020, Saudi journal of biological sciences.
[47] A. Fazlali,et al. Folate-targeted nanomicelles containing silibinin as an active drug delivery system for liver cancer therapy , 2020 .
[48] L. Sarkisov,et al. MOF materials as therapeutic agents, drug carriers, imaging agents and biosensors in cancer biomedicine: Recent advances and perspectives , 2020 .
[49] Geng Tian,et al. A machine learning framework to trace tumor tissue-of-origin of 13 types of cancer based on DNA somatic mutation. , 2020, Biochimica et biophysica acta. Molecular basis of disease.
[50] W. Tan,et al. Metal–Organic Framework Nanocarriers for Drug Delivery in Biomedical Applications , 2020, Nano-micro letters.
[51] Z. Wang,et al. Zeolitic imidazolate framework-8 (ZIF-8) for drug delivery: A critical review , 2020, Frontiers of Chemical Science and Engineering.
[52] Lilia S. Xie,et al. Electrically Conductive Metal–Organic Frameworks , 2020, Chemical reviews.
[53] Lingmin Zhang,et al. Homotypic Targeting Delivery of siRNA with Artificial Cancer Cells , 2020, Advanced healthcare materials.
[54] T. Dansen,et al. ROS induced p53 activation: DNA damage, redox signaling or both? , 2020, Antioxidants & redox signaling.
[55] Dongxue Wang,et al. Nickel/iron-based bimetallic MOF-derived nickel ferrite materials for triethylamine sensing , 2020 .
[56] Quanyan Liu,et al. Cancer cell membrane-camouflaged MOF nanoparticles for a potent dihydroartemisinin-based hepatocellular carcinoma therapy , 2020, RSC advances.
[57] Jie Yang,et al. Metal-Organic Frameworks for Biomedical Applications. , 2020, Small.
[58] T. Deng,et al. A natural polysaccharide mediated MOF-based Ce6 delivery system with improved biological properties for photodynamic therapy. , 2020, Journal of materials chemistry. B.
[59] A. Akbarzadeh,et al. Cisplatin-loaded superparamagnetic nanoparticles modified with PCL-PEG copolymers as a treatment of A549 lung cancer cells , 2019 .
[60] Shundong Cai,et al. Metal-organic frameworks for stimuli-responsive drug delivery. , 2019, Biomaterials.
[61] B. Salehi,et al. Silymarin antiproliferative and apoptotic effects: Insights into its clinical impact in various types of cancer , 2019, Phytotherapy research : PTR.
[62] Jianglin Wang,et al. Lineage reprogramming of fibroblasts into induced cardiac progenitor cells by CRISPR/Cas9-based transcriptional activators , 2019, Acta pharmaceutica Sinica. B.
[63] S. Jahani,et al. A review on metal-organic frameworks: Synthesis and applications , 2019, TrAC Trends in Analytical Chemistry.
[64] X. Wan,et al. Synergistic antioxidant activity and anticancer effect of green tea catechin stabilized on nanoscale cyclodextrin-based metal–organic frameworks , 2019, Journal of Materials Science.
[65] P. Horcajada,et al. Metal-organic frameworks: A novel platform for combined advanced therapies , 2019, Coordination Chemistry Reviews.
[66] B. Satpati,et al. Facile Synthesis and Phase-Dependent Catalytic Activity of Cabbage-Type Copper Oxide Nanostructures for Highly Efficient Reduction of 4-Nitrophenol , 2019, Catalysis Letters.
[67] P. Sil,et al. Role of nanostructures in improvising oral medicine , 2019, Toxicology reports.
[68] Fuan Wang,et al. Stimuli-responsive multifunctional metal-organic framework nanoparticles for enhanced chemo-photothermal therapy. , 2019, Journal of materials chemistry. B.
[69] Ning Wang,et al. Multi-Component Herbal Products in the Prevention and Treatment of Chemotherapy-Associated Toxicity and Side Effects: A Review on Experimental and Clinical Evidences , 2018, Front. Pharmacol..
[70] Wei Chen,et al. Metal–Organic Framework‐Based Stimuli‐Responsive Systems for Drug Delivery , 2018, Advanced science.
[71] Jie Du,et al. Xanthohumol, a prenylated flavonoid from Hops, exerts anticancer effects against gastric cancer in vitro , 2018, Oncology reports.
[72] L. Kumar,et al. Porous Oral Drug Delivery System: Tablets , 2018, Pharmaceutical Chemistry Journal.
[73] N. Davies,et al. DOX-Vit D, a Novel Doxorubicin Delivery Approach, Inhibits Human Osteosarcoma Cell Proliferation by Inducing Apoptosis While Inhibiting Akt and mTOR Signaling Pathways , 2018, Pharmaceutics.
[74] Zhengyu Jin,et al. Novel Approach with Controlled Nucleation and Growth for Green Synthesis of Size-Controlled Cyclodextrin-Based Metal-Organic Frameworks Based on Short-Chain Starch Nanoparticles. , 2018, Journal of agricultural and food chemistry.
[75] N. Bavarsad,et al. Silymarin induces a multi-targeted cell death process in the human colon cancer cell line HT-29. , 2017, Biomedicine & pharmacotherapy = Biomedecine & pharmacotherapie.
[76] Wenjie Guo,et al. Silymarin suppressed lung cancer growth in mice via inhibiting myeloid-derived suppressor cells. , 2016, Biomedicine & pharmacotherapy = Biomedecine & pharmacotherapie.
[77] D. Choi,et al. Recent trends in the development of nanophytobioactive compounds and delivery systems for their possible role in reducing oxidative stress in Parkinson’s disease models , 2015, International journal of nanomedicine.
[78] Yanyan Zhou,et al. MiR-26a Enhances the Sensitivity of Gastric Cancer Cells to Cisplatin by Targeting NRAS and E2F2 , 2015, Saudi journal of gastroenterology : official journal of the Saudi Gastroenterology Association.
[79] G. Dong,et al. Controllable synthesis of Zn2GeO4:Eu nanocrystals with multi-color emission for white light-emitting diodes , 2015 .
[80] Amany A. Abdin,et al. Neurotrophic and antioxidant effects of silymarin comparable to 4-methylcatechol in protection against gentamicin-induced ototoxicity in guinea pigs , 2015, Pharmacological reports : PR.
[81] F. Greco,et al. Impact of the Enhanced Permeability and Retention (EPR) Effect and Cathepsins Levels on the Activity of Polymer-Drug Conjugates , 2014 .
[82] M. Kurmoo. Magnetic metal-organic frameworks. , 2009, Chemical Society reviews.
[83] K. Pradeep,et al. Silymarin modulates the oxidant-antioxidant imbalance during diethylnitrosamine induced oxidative stress in rats. , 2007, European journal of pharmacology.
[84] S. Luper,et al. A review of plants used in the treatment of liver disease: part 1. , 1998, Alternative medicine review : a journal of clinical therapeutic.
[85] D. Peterson,et al. Mechanism of Cellular 3‐(4,5‐Dimethylthiazol‐2‐yl)‐2,5‐Diphenyltetrazolium Bromide (MTT) Reduction , 1997, Journal of neurochemistry.
[86] K. Yagi,et al. Assay for lipid peroxides in animal tissues by thiobarbituric acid reaction. , 1979, Analytical biochemistry.
[87] A. Guddati,et al. Management of hepatotoxicity of chemotherapy and targeted agents. , 2021, American journal of cancer research.
[88] C. Sezer. An In Vitro Assessment of the Cytotoxic and Apoptotic Potency of Silymarin and Silymarin Loaded Solid Lipid Nanoparticles on Lung and Breast Cancer Cells , 2021, Pakistan Journal of Zoology.
[89] Xian-min Feng,et al. MOF nanoparticles with encapsulated dihydroartemisinin as a controlled drug delivery system for enhanced cancer therapy and mechanism analysis. , 2020, Journal of materials chemistry. B.
[90] M. R. S. Campos,et al. Medicinal Plants and Their Bioactive Metabolites in Cancer Prevention and Treatment , 2019 .
[91] P. Kumarathasan,et al. Synthesis and physicochemical characterization of mesoporous SiO 2 nanoparticles , 2014 .
[92] Sana Maryam,et al. Protective Effects of Silymarin in Isoniazid Induced Hepatotoxicity in Rabbits , 2010 .
[93] O. Katare,et al. Comparative study of different silymarin formulations: formulation, characterisation and in vitro/in vivo evaluation. , 2005, Current drug delivery.
[94] Raghubir P. Sharma,et al. Physiological responses of a natural antioxidant flavonoid mixture, silymarin, in BALB/c mice: III. Silymarin inhibits T-lymphocyte function at low doses but stimulates inflammatory processes at high doses. , 2003, Planta medica.
[95] F. Fraschini,et al. Pharmacology of Silymarin , 2002 .