Hydrogels of Alginate Derivative‐Encased Nanodots Featuring Carbon‐Coated Manganese Ferrite Cores with Gold Shells to Offer Antiangiogenesis with Multimodal Imaging‐Based Theranostics

Author:

Gowtham Pemula1,Girigoswami Koyeli1,Prabhu Alex Daniel2,Pallavi Pragya1,Thirumalai Anbazhagan1,Harini Karthick1,Girigoswami Agnishwar1ORCID

Affiliation:

1. Medical Bionanotechnology, Faculty of Allied Health Sciences (FAHS), Chettinad Hospital & Research Institute (CHRI) Chettinad Academy of Research and Education (CARE) Kelambakkam Chennai TN 603103 India

2. Department of Radiology, Chettinad Hospital & Research Institute (CHRI) Chettinad Academy of Research and Education (CARE) Kelambakkam Chennai TN 603103 India

Abstract

AbstractThe investigation seeks to develop gold‐shelled carbon‐coated manganese ferrite nanodots enclosed within oxidized alginate polymeric hydrogels (MNF@C‐Au@OSA) to improve encapsulation efficiency, biocompatibility, and multimodal imaging capabilities. These engineered particles, MNF@C‐Au@OSA, are crafted through a hydrothermal synthesis, succeeded by the application of gold nanoparticle shelling and subsequent encapsulation within hydrogels derived from synthesized alginate derivatives, enhancing their overall appeal. Diverse characterization methodologies are employed in order to validate the multiple steps of the synthesis process. The resulting engineered nanoparticles exhibit dual‐mode (T1 and T2) magnetic resonance imaging (MRI) contrast capabilities and compatibility with computed tomography (CT) and fluorescence‐based imaging. To illustrate minimal toxicity, A375 cell lines are utilized for in vitro testing, whereas zebrafish embryos are employed for in vivo assessments. A Chorioallantoic Membrane Model (CAM) is used to establish the antiangiogenic characteristics of MNF@C‐Au@OSA, which is confirmed by histopathological observations. Taking these studies together, one can conclude that the engineered MNF@C‐Au@OSA possesses multimodal imaging capabilities and has demonstrated antiangiogenic properties, thereby establishing them as potential theranostic agents.

Publisher

Wiley

Cited by 1 articles. 订阅此论文施引文献 订阅此论文施引文献,注册后可以免费订阅5篇论文的施引文献,订阅后可以查看论文全部施引文献

1. Advancements in the synthesis of carbon dots and their application in biomedicine;Journal of Photochemistry and Photobiology B: Biology;2024-06

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