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Original Articles

Calcium alginate nanocarriers as possible vehicles for oral delivery of insulin

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Pages 337-356 | Received 18 Oct 2011, Accepted 24 Jan 2012, Published online: 18 May 2012

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Sandy N. Aziz, Alia A. Badawy, Demiana I. Nessem, Nevine S. Abd El Malak & Marianne J. Naguib. (2023) Chitosan-coated alginate (CCA) nanoparticles for augmentation of topical antihistaminic activity of diphenhydramine: in-vitro optimization, skin histopathology and pharmacodynamic studies with in vitro/in vivo correlation. Drug Development and Industrial Pharmacy 49:4, pages 316-327.
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Catherine C. Applegate, Hongping Deng, Brittany L. Kleszynski, Tzu-Wen L. Cross, Christian J. Konopka, L. Wawrzyniec Dobrucki, Erik R. Nelson, Matthew A. Wallig, Andrew M. Smith & Kelly S. Swanson. (2022) Impact of administration route on nanocarrier biodistribution in a murine colitis model. Journal of Experimental Nanoscience 17:1, pages 599-616.
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Lingli Long, Minghua Lai, Xuhong Mao, Jiahao Luo, Xin Yuan, Li-Ming Zhang, Zunfu Ke, Liqun Yang & David YB Deng. (2019) Investigation Of Vitamin B12-Modified Amphiphilic Sodium Alginate Derivatives For Enhancing The Oral Delivery Efficacy Of Peptide Drugs. International Journal of Nanomedicine 14, pages 7743-7758.
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Articles from other publishers (21)

Nayomi Deshani De Silva, Anoja Priyadarshani Attanayake, Desiree Nedra Karunaratne, Liyanage Dona Ashanti Menuka Arawwawala & Geethi Kaushalya Pamunuwa. (2023) Bael ( Aegle marmelos L. Correa) fruit extracts encapsulated alginate nanoparticles as a potential dietary supplement with improved bioactivities . Journal of Food Science.
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Parneet Kaur Deol, Amritpal Kaur, Jasleen Kaur Kooner, Amoljit Singh Gill, Mandeep Singh & Indu Pal Kaur. 2023. Alginate Biomaterial. Alginate Biomaterial 179 205 .
Jaya Lakkakula, Arpita Roy, Karan Krishnamoorthy, Saad Alghamdi, Mazen Almehmadi, Pratik Gujarathi, Prachi Pansare, Mamdouh Allahyani, Osama Abdulaziz, Kamini Velhal, Most. Chand Sultana Khatun & Md. Jamal Hossain. (2022) Alginate-Based Nanosystems for Therapeutic Applications. Journal of Nanomaterials 2022, pages 1-11.
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Aijun Qiu, Yunyun Wang, Genlin Zhang & Hebin Wang. (2022) Natural Polysaccharide-Based Nanodrug Delivery Systems for Treatment of Diabetes. Polymers 14:15, pages 3217.
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Mohammad A. I. Al-Hatamleh, Walhan Alshaer, Ma’mon M. Hatmal, Lidawani Lambuk, Naveed Ahmed, Mohd Zulkifli Mustafa, Siew Chun Low, Juhana Jaafar, Khalid Ferji, Jean-Luc Six, Vuk Uskoković & Rohimah Mohamud. (2022) Applications of Alginate-Based Nanomaterials in Enhancing the Therapeutic Effects of Bee Products. Frontiers in Molecular Biosciences 9.
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Prince Allawadhi, Vishakha Singh, Kannan Govindaraj, Isha Khurana, Lopmudra P. Sarode, Umashanker Navik, Anil Kumar Banothu, Ralf Weiskirchen, Kala Kumar Bharani & Amit Khurana. (2022) Biomedical applications of polysaccharide nanoparticles for chronic inflammatory disorders: Focus on rheumatoid arthritis, diabetes and organ fibrosis. Carbohydrate Polymers 281, pages 118923.
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Dyah Hesti Wardhani, Nita Aryanti, Abdul Aziz, Rinda Ameliya Firdhaus & Hana Nikma Ulya. (2021) Ultrasonic degradation of alginate: A matrix for iron encapsulation using gelation. Food Bioscience 41, pages 100803.
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Xiaohong Sun, Ogadimma D. Okagu & Chibuike C. Udenigwe. 2021. Biologically Active Peptides. Biologically Active Peptides 331 356 .
Xiaolin Yao, Xiaoxue Yao, Kai Xu, Kao Wu, Fatang Jiang, Katsuyoshi Nishinari & Glyn O. Phillips. (2020) Iron encapsulated microstructured gel beads using an emulsification–gelation technique for an alginate-caseinate matrix. Food & Function 11:5, pages 3811-3822.
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Sarah L. Perry & David Julian McClements. (2020) Recent Advances in Encapsulation, Protection, and Oral Delivery of Bioactive Proteins and Peptides using Colloidal Systems. Molecules 25:5, pages 1161.
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Ana Macedo, Patrícia Filipe, Natália G. Thomé, João Vieira, Carolina Oliveira, Catarina Teodósio, Raquel Ferreira, Luís Roque & Pedro Fonte. (2020) A Brief Overview of the Oral Delivery of Insulin as an Alternative to the Parenteral Delivery. Current Molecular Medicine 20:2, pages 134-143.
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Fernanda Maria Policarpo Tonelli, Flávia Cristina Policarpo Tonelli, Danilo Roberto Carvalho Ferreira, Karine Emanuelle da Silva, Helon Guimarães Cordeiro, Amanda Tomie Ouchida & Núbia Alexandre de Melo Nunes. 2020. Intelligent Nanomaterials for Drug Delivery Applications. Intelligent Nanomaterials for Drug Delivery Applications 85 103 .
Margaret O. Ilomuanya. 2020. Biopolymer-Based Formulations. Biopolymer-Based Formulations 561 585 .
Farhana Yasmin, Xiongbiao Chen & Brian Eames. (2019) Effect of Process Parameters on the Initial Burst Release of Protein-Loaded Alginate Nanospheres. Journal of Functional Biomaterials 10:3, pages 42.
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Shawn Tsai & Yuwen Ting. (2019) Synthesize of alginate/chitosan bilayer nanocarrier by CCD-RSM guided co-axial electrospray: A novel and versatile approach. Food Research International 116, pages 1163-1172.
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Awanish Kumar & Ashwini Kumar. 2019. Polysaccharide Carriers for Drug Delivery. Polysaccharide Carriers for Drug Delivery 105 126 .
Qiaobin Hu & Yangchao Luo. (2018) Recent advances of polysaccharide-based nanoparticles for oral insulin delivery. International Journal of Biological Macromolecules 120, pages 775-782.
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David Julian McClements. (2018) Encapsulation, protection, and delivery of bioactive proteins and peptides using nanoparticle and microparticle systems: A review. Advances in Colloid and Interface Science 253, pages 1-22.
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Sabrina Scheja, Sergii Domanskyi, Maria Gamella, Kelly L. Wormwood, Costel C. Darie, Arshak Poghossian, Michael J. Schöning, Artem Melman, Vladimir Privman & Evgeny Katz. (2017) Glucose‐Triggered Insulin Release from Fe 3+ ‐Cross‐linked Alginate Hydrogel: Experimental Study and Theoretical Modeling . ChemPhysChem 18:12, pages 1541-1551.
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Nuwanthi P. Katuwavila, A.D.L.C. Perera, Damayanthi Dahanayake, V. Karunaratne, Gehan A.J. Amaratunga & D. Nedra Karunaratne. (2016) Alginate nanoparticles protect ferrous from oxidation: Potential iron delivery system. International Journal of Pharmaceutics 513:1-2, pages 404-409.
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S. Maiti & L. Kumari. 2016. Nanoarchitectonics for Smart Delivery and Drug Targeting. Nanoarchitectonics for Smart Delivery and Drug Targeting 67 94 .

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