Gotowa bibliografia na temat „Conventional superporous hydrogel”

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Artykuły w czasopismach na temat "Conventional superporous hydrogel"

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Pawar, Darshana, Darshan Jamindar, Nadeem A. Farooqui, and Nimita Manocha. "Superporous Hydrogel: A Novel Approach for Safe Gastroretentive Drug Delivery System." Journal of Drug Delivery and Therapeutics 14, no. 4 (2024): 123–29. http://dx.doi.org/10.22270/jddt.v14i4.6458.

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Superporous hydrogel are developed initially as novel drug delivery system to retain dosage form in upper gastrointestinal tract, and absorbs drug in gastric medium. The generation-based classification of superporous hydrogel is covered in this review. The hydrophilic polymer networks formed by the molecular entanglements which absorb water up to thousands of times to their dry weight. These systems swells quickly and resist in an extremely acidic condition in stomach. This hydrogel is instantly swell through capillary force which is driven by absorption of water through an open porous structu
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Kumari, Khushi* Bhattachrya Vijeta. "Development Of Superporous Hydrogel in Drug Delivery System." International Journal of Pharmaceutical Sciences 3, no. 5 (2025): 2299–309. https://doi.org/10.5281/zenodo.15410891.

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Recently superporous hydrogel (SPHs)have been developed as a new kind of novel drug delivery system because of their unique structure and improved properties. suoerporous hydro-gel consist of highly interlinked, macropores network, facilitating the fast swelling and uptake of significant quantities of of water to create suitable for application product.due to rapid swelling behaviour along with high drug loading capacity and controlled release nature, SPHs are a potential candidate for oral, transdermal and local drug delivery system. Superporous hydrogels (SPHs) are a class of hydrophilic sub
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Jhawat, Vikas, Monika Gulia, Balaji Maddiboyina, Rohit Dutt, and Sumeet Gupta. "Fate and Applications of Superporous Hydrogel Systems: A Review." Current Nanomedicine 10, no. 4 (2020): 326–41. http://dx.doi.org/10.2174/2468187310999200819201555.

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Hydrogels are a class of biomaterial that can “take in” large quantities of aqueous media and swells many times larger than its original size without dissolving in the media. SPHs are a new generation of hydrogels containing a 3D network of cross-linked polymers having pore size more than 100 μm as compared to 10 nm to 10 μm pores of conventional gels. These are more complex in nature than conventional hydrogels and prepared by using a suitable blend of monomers and different additives. SPHs have been extensively employed in sustained and control drug delivery systems along with many recent bi
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Smith, Shane Ida. "Superporous Intelligent Hydrogels for Environmentally Adaptive Building Skins." MRS Advances 2, no. 46 (2017): 2481–88. http://dx.doi.org/10.1557/adv.2017.429.

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ABSTRACTThis work explores responsive hydrophilic polymers for convergent functions of climate control with architectural material systems. In buildings, the transition across exterior and interior space occurs through the envelope, which is an enclosure system that mediates heat, light, air and moisture transfer functions. Conventional building envelopes are typically constructed to form a barrier that insulates and hermetically separates outdoor and indoor conditions. The dynamic environmental responses of superporous intelligent hydrogels are shown to be beneficial at the interior layer of
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Syeda Sadia, Dr. Rakesh K. Jat, and Dr. Padmalatha Malthar. "Superporous Hydrogel: An Innovative Method for Secure Gastroretentive Drug Delivery Systems." International Journal of Advanced Research in Science, Communication and Technology, August 21, 2024, 730–42. http://dx.doi.org/10.48175/ijarsct-19482.

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Research and development of oral medication delivery systems have made great strides in the last several years. A problem with the physicochemical properties of medicinal molecules and their formulations prompted the idea of a new drug delivery technology. This work aims to update the pharmacological strategies applied in enhancing stomach residence time by synthesizing fresh research on gastro retentive drug delivery systems. Various devices that delay stomach emptying are now in use, including systems that enlarge and contract, systems that use polymeric bio adhesives, systems with changed f
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J BHANDWALKAR, MANDAR, PRASAD S DUBAL, AKASH K.TUPE, and SUPRIYA N MANDRUPKAR. "REVIEW ON GASTRORETENTIVE DRUG DELIVERY SYSTEM." Asian Journal of Pharmaceutical and Clinical Research, December 7, 2020, 38–45. http://dx.doi.org/10.22159/ajpcr.2020.v13i12.37264.

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In recent years, gastroretentive drug delivery system (GRDDS) has gained researcher’s interest in the field of oral drug delivery. Various GRDDS approaches can be utilized to retain the dosage forms in the stomach and to release the drug slowly for an extended period of time. GRDDS can be used to prolong the residence time of delivery system in the stomach. This results in targeting of drug release at a specific site for the systemic or local effects. GRDDS can be used to overcome challenges associated with conventional oral dosage forms and to release the drug at a specific absorption site to
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