Journal articles on the topic 'Including nanoparticle-based systems'
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Vines, Jeremy, Dong-Jin Lim, and Hansoo Park. "Contemporary Polymer-Based Nanoparticle Systems for Photothermal Therapy." Polymers 10, no. 12 (2018): 1357. http://dx.doi.org/10.3390/polym10121357.
Full textMaurya, Aarati, and Shivam Tyagi. "Recent Advances in Nanoparticle-Based Drug Delivery Systems." Journal of Drug Discovery and Health Sciences 1, no. 04 (2024): 201–11. https://doi.org/10.21590/jddhs.01.04.03.
Full textGupta, Purnima, Evelyn Garcia, Amrita Sarkar, et al. "Nanoparticle Based Treatment for Cardiovascular Diseases." Cardiovascular & Hematological Disorders-Drug Targets 19, no. 1 (2019): 33–44. http://dx.doi.org/10.2174/1871529x18666180508113253.
Full textIslam, Mohammad Ariful, Emma K. G. Reesor, Yingjie Xu, Harshal R. Zope, Bruce R. Zetter, and Jinjun Shi. "Biomaterials for mRNA delivery." Biomaterials Science 3, no. 12 (2015): 1519–33. http://dx.doi.org/10.1039/c5bm00198f.
Full textFilipić, Brankica, Ivana Pantelić, Ines Nikolić, et al. "Nanoparticle-Based Adjuvants and Delivery Systems for Modern Vaccines." Vaccines 11, no. 7 (2023): 1172. http://dx.doi.org/10.3390/vaccines11071172.
Full textDukare, Sagar* Kale Gaurav Datkhile Sachin Lokhande Rahul Chavan Rutuja. "Role of Herbal Drug Delivery Systems in Chronic Disease Management." International Journal of Pharmaceutical Sciences 3, no. 4 (2025): 2242–53. https://doi.org/10.5281/zenodo.15239206.
Full textPandey, Ramendra Pati, Jasmina Vidic, Riya Mukherjee, and Chung-Ming Chang. "Experimental Methods for the Biological Evaluation of Nanoparticle-Based Drug Delivery Risks." Pharmaceutics 15, no. 2 (2023): 612. http://dx.doi.org/10.3390/pharmaceutics15020612.
Full textMainini, Francesco, and Michael R. Eccles. "Lipid and Polymer-Based Nanoparticle siRNA Delivery Systems for Cancer Therapy." Molecules 25, no. 11 (2020): 2692. http://dx.doi.org/10.3390/molecules25112692.
Full textTasawar Abbas, Fatima Kanwar, Hazima Tariq, and Muhammad Raza Malik. "Nanoparticles in Drug Delivery Systems: Challenges, Innovations, And Surface Modification for Targeted Therapeutics." Indus Journal of Bioscience Research 3, no. 1 (2025): 325–36. https://doi.org/10.70749/ijbr.v3i1.507.
Full textPage, Katharine, Taylor C. Hood, Thomas Proffen, and Reinhard B. Neder. "Building and refining complete nanoparticle structures with total scattering data." Journal of Applied Crystallography 44, no. 2 (2011): 327–36. http://dx.doi.org/10.1107/s0021889811001968.
Full textMunyayi, Tozivepi Aaron, and Anine Crous. "Advancing Cancer Drug Delivery with Nanoparticles: Challenges and Prospects in Mathematical Modeling for In Vivo and In Vitro Systems." Cancers 17, no. 2 (2025): 198. https://doi.org/10.3390/cancers17020198.
Full textThongpon, Phonpilas, Menghuan Tang, and Zhaoqing Cong. "Peptide-Based Nanoparticle for Tumor Therapy." Biomedicines 13, no. 6 (2025): 1415. https://doi.org/10.3390/biomedicines13061415.
Full textLi, Fei, Yahong Wang, Dandan Chen, and Yunjie Du. "Nanoparticle-Based Immunotherapy for Reversing T-Cell Exhaustion." International Journal of Molecular Sciences 25, no. 3 (2024): 1396. http://dx.doi.org/10.3390/ijms25031396.
Full textThomas, Nurain, Lisa Efriani Puluhulawa, Faradila Ratu Cindana Mo’o, Agus Rusdin, Amirah Mohd Gazzali, and Arif Budiman. "Potential of Pullulan-Based Polymeric Nanoparticles for Improving Drug Physicochemical Properties and Effectiveness." Polymers 16, no. 15 (2024): 2151. http://dx.doi.org/10.3390/polym16152151.
Full textBabu, Anish, Amanda K. Templeton, Anupama Munshi, and Rajagopal Ramesh. "Nanoparticle-Based Drug Delivery for Therapy of Lung Cancer: Progress and Challenges." Journal of Nanomaterials 2013 (2013): 1–11. http://dx.doi.org/10.1155/2013/863951.
Full textÇolak, Ceren. "Nanoparticle-Based Drug Delivery Systems and Targeting Strategies in Breast Cancer Therapy." Haliç Üniversitesi Fen Bilimleri Dergisi 8, no. 1 (2025): 81–101. https://doi.org/10.46373/hafebid.1652048.
Full textTanu, Shri Biswas*. "Impact of Nanoparticle Size and Concentration on the Release Profile and Pharmacokinetics of Proton Pump Inhibitors (PPIS): A Comprehensive Review." International Journal of Pharmaceutical Sciences 3, no. 5 (2025): 2809–15. https://doi.org/10.5281/zenodo.15448392.
Full textNie, Yuhan, Guo Fu, and Yuxin Leng. "Nuclear Delivery of Nanoparticle-Based Drug Delivery Systems by Nuclear Localization Signals." Cells 12, no. 12 (2023): 1637. http://dx.doi.org/10.3390/cells12121637.
Full textGangisetty, Gopalakrishna, and Ron Zevenhoven. "A Review of Nanoparticle Material Coatings in Passive Radiative Cooling Systems Including Skylights." Energies 16, no. 4 (2023): 1975. http://dx.doi.org/10.3390/en16041975.
Full textAnil Kishore, Banubadi, Amrutha Desai, Swastika Tiwari, and Vettrivel Arul. "Advances in Nanoparticle-Based Drug Delivery Systems: Enhancing Targeted Therapeutic Efficacy in Pharmaceutical Science and Technologycrete Technology." Journal of Neonatal Surgery 14, no. 2 (2025): 59–68. https://doi.org/10.52783/jns.v14.1717.
Full textSung, Hyo-Dong, Nayeon Kim, Yeram Lee, and Eun Jung Lee. "Protein-Based Nanoparticle Vaccines for SARS-CoV-2." International Journal of Molecular Sciences 22, no. 24 (2021): 13445. http://dx.doi.org/10.3390/ijms222413445.
Full textRakhi, Rani, Kumar Sudhir, and Kumar Sinha Keshav. "The Development of Novel Drug Delivery Systems for Improved Therapeutic Efficacy: A Retrospective Study." International Journal of Pharmaceutical and Clinical Research 15, no. 12 (2023): 643–48. https://doi.org/10.5281/zenodo.11192437.
Full textTorres, Judith, Tatiana Lara, and Marcelo Grijalva. "Nanoparticle applications in intracellular infections." Journal of Drug Delivery and Therapeutics 12, no. 5-S (2022): 217–19. http://dx.doi.org/10.22270/jddt.v12i5-s.5738.
Full textOgba, Chukwuemeka Emmanuel, Akpabio Elijah Akwaowoh, Ifeoluwa Adetomiwa Taiwo, Precious Joshua Edem, and Sunday Olajide Awofisayo. "Optimizing levofloxacin delivery using nanoparticles: a strategy for improved bioavailability and targeted release." Journal of Drug Delivery and Therapeutics 15, no. 5 (2025): 42–49. https://doi.org/10.22270/jddt.v15i5.7119.
Full textKoo, Sangmo. "Flexible Heater Fabrication Using Amino Acid-Based Ink and Laser-Direct Writing." Micromachines 13, no. 12 (2022): 2209. http://dx.doi.org/10.3390/mi13122209.
Full textZade, Alka, and Dr Aarti Shastri. "Nanoparticle-Based Drug Delivery: Enhancing Bioavailability and Therapeutic Efficacy in Pharmaceutical Applications." Journal of Internal Medicine and Pharmacology (JIMP) 1, no. 03 (2024): 26–38. https://doi.org/10.61920/jimp.v1i03.32.
Full textAwais Ibrahim, Sehar ul Islam, Rabeea Razaq, et al. "Use of Nanoparticles in Pharmaceutical and Drug Delivery Systems: Advances and Challenges." Indus Journal of Bioscience Research 3, no. 1 (2024): 815–26. https://doi.org/10.70749/ijbr.v3i1.611.
Full textPoudel, Prashant, and Soyeun Park. "Recent Advances in the Treatment of Alzheimer’s Disease Using Nanoparticle-Based Drug Delivery Systems." Pharmaceutics 14, no. 4 (2022): 835. http://dx.doi.org/10.3390/pharmaceutics14040835.
Full textKherde, Gauravi Sunilrao, Rahul Dnyaneshwar Khaire, Vikas Dhamu Kunde, Pooja Gajanan Akoshkar, Pratiksha Suresh katkade, and Komal Sunil Taru. "Recent Advances in Mesoporous Silica Nanoparticle-Based Topical Delivery Systems: A Systematic Review." Biosciences Biotechnology Research Asia 22, no. 2 (2025): 521–34. https://doi.org/10.13005/bbra/3380.
Full textAnant, Prakash Pandey, and Kumar Shukla Santosh. "Polyphenol based novel drug delivery carriers for the treatment of ageing related neurodegenerative disorder: a modern approach." International Journal of Advances in Pharmacy Medicine and Bioallied Sciences 10, no. 2 (2022): 76–81. https://doi.org/10.5281/zenodo.7046004.
Full textDhanabalan, Dharanidharan, and Narkunaraja Shanmugam. "Nanomedicine in cancer treatment - an overview." Advances in Natural Sciences: Nanoscience and Nanotechnology 16, no. 1 (2024): 013001. https://doi.org/10.1088/2043-6262/ad9f49.
Full textKim, Minse, Youngwoo Hwang, Seongyu Lim, Hyeon-Ki Jang, and Hyun-Ouk Kim. "Advances in Nanoparticles as Non-Viral Vectors for Efficient Delivery of CRISPR/Cas9." Pharmaceutics 16, no. 9 (2024): 1197. http://dx.doi.org/10.3390/pharmaceutics16091197.
Full textMushtaq, Sadia. "Nanoparticle-Mediated Delivery of Viperin: Advancing Therapy Across Diverse Viral Infections." TSF Journal of Biology 2, no. 1 (2024): 1–16. http://dx.doi.org/10.69547/tsfjb.020101.
Full textRajashree, G. Jagtap Mrunal S. Pagare. "Novel Functionalised Polymer Based Nanoparticle Formulation With Anti Cancer Drug." International Journal of Pharmaceutical Sciences 2, no. 8 (2024): 2452–69. https://doi.org/10.5281/zenodo.13173238.
Full textShukurat Opeyemi Rahmon, Mariam Allison, and Emmanuel Ayodeji Osoko. "Bayesian fractional stochastic models for controlled release mechanisms in nanoparticle drug delivery." World Journal of Advanced Engineering Technology and Sciences 8, no. 1 (2023): 459–68. https://doi.org/10.30574/wjaets.2023.8.1.0058.
Full textKim, Dong-Kee. "Recent Advances in Functionalized Nanoparticles for Targeted and Controlled Inner Ear Therapy via Localized Cochlear Delivery." Journal of Audiology and Otology 29, no. 3 (2025): 159–65. https://doi.org/10.7874/jao.2025.00311.
Full textDomingues, Joana M., Catarina S. Miranda, Natália C. Homem, Helena P. Felgueiras, and Joana C. Antunes. "Nanoparticle Synthesis and Their Integration into Polymer-Based Fibers for Biomedical Applications." Biomedicines 11, no. 7 (2023): 1862. http://dx.doi.org/10.3390/biomedicines11071862.
Full textKim, Jin, Myeong Moon, Dong Kim, Suk Heo, and Yong Jeong. "Hyaluronic Acid-Based Nanomaterials for Cancer Therapy." Polymers 10, no. 10 (2018): 1133. http://dx.doi.org/10.3390/polym10101133.
Full textWu, Peijie, Jun Han, Yanju Gong, Chao Liu, Han Yu, and Na Xie. "Nanoparticle-Based Drug Delivery Systems Targeting Tumor Microenvironment for Cancer Immunotherapy Resistance: Current Advances and Applications." Pharmaceutics 14, no. 10 (2022): 1990. http://dx.doi.org/10.3390/pharmaceutics14101990.
Full textGorohovs, Marks, and Yuri Dekhtyar. "Surface Functionalization of Nanoparticles for Enhanced Electrostatic Adsorption of Biomolecules." Molecules 30, no. 15 (2025): 3206. https://doi.org/10.3390/molecules30153206.
Full textA., Awasare, and Mulani S. "A Study on Nanoparticles as Additives in Engineering Applications." Research and Reviews: Journal of Mechanical Engineering 1, no. 1 (2025): 18–22. https://doi.org/10.5281/zenodo.15229625.
Full textVong, Long Binh, and Yukio Nagasaki. "Nitric Oxide Nano-Delivery Systems for Cancer Therapeutics: Advances and Challenges." Antioxidants 9, no. 9 (2020): 791. http://dx.doi.org/10.3390/antiox9090791.
Full textSarrafzadeh Javadi, Farhood, and Rahman Saidur. "Thermodynamic and Energy Efficiency Analysis of a Domestic Refrigerator Using Al2O3 Nano-Refrigerant." Sustainability 13, no. 10 (2021): 5659. http://dx.doi.org/10.3390/su13105659.
Full textAli, Muhammad, Viviana Benfante, Domenico Di Raimondo, Giuseppe Salvaggio, Antonino Tuttolomondo, and Albert Comelli. "Recent Developments in Nanoparticle Formulations for Resveratrol Encapsulation as an Anticancer Agent." Pharmaceuticals 17, no. 1 (2024): 126. http://dx.doi.org/10.3390/ph17010126.
Full textNasir, Fazli. "The Promise of Exosomes as Drug Delivery Systems." Pharmaceutical Communications 2, no. 1 (2023): 01–02. http://dx.doi.org/10.55627/pharma.002.01.0332.
Full textCzaplicka, Natalia, Anna Grzegórska, Jan Wajs, Joanna Sobczak, and Andrzej Rogala. "Promising Nanoparticle-Based Heat Transfer Fluids—Environmental and Techno-Economic Analysis Compared to Conventional Fluids." International Journal of Molecular Sciences 22, no. 17 (2021): 9201. http://dx.doi.org/10.3390/ijms22179201.
Full textGaikwad, Vaishnavi *. Palghadmal Varsharani Thorat Suvarna. "Nanotechnology Meets Targeted Therapy: Engineering Nanoparticles for Enhanced Drug Delivery." International Journal of Pharmaceutical Sciences 2, no. 12 (2024): 533–42. https://doi.org/10.5281/zenodo.14281647.
Full textSingh, Chiranjeev, and Prachi Gurudiwan. "Nanoparticle-Based Drug Delivery Systems for Tumor Treatment: Advancing Solutions to Overcome Drug Resistance." Journal of Cancer Research Updates 14 (June 19, 2025): 105–13. https://doi.org/10.30683/1929-2279.2025.14.12.
Full textPuspadewi, Ririn, Tiana Milanda, Muhaimin Muhaimin, and Anis Yohana Chaerunisaa. "Nanoparticle-Encapsulated Plant Polyphenols and Flavonoids as an Enhanced Delivery System for Anti-Acne Therapy." Pharmaceuticals 18, no. 2 (2025): 209. https://doi.org/10.3390/ph18020209.
Full textAfshar, Mohammadreza, and Alireza Afshar. "Nanomedicine Approaches in Male Infertility Treatment: Targeted Drug Delivery and Sperm Function Enhancement." Journal of Infertility and Reproductive Biology 12, no. 4 (2024): 31–44. https://doi.org/10.18502/jirb.v12i4.17976.
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