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      β-Cyclodextrin metal-organic framework as a green carrier to improve the dissolution, bioavailability, and liver protective effect of luteolin

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          Abstract

          The incidence of acetaminophen-induced liver injury has increased, but effective prevention methods are limited. Although luteolin has hepatoprotective activity, its low solubility and bioavailability limit its applications. Cyclodextrin metal-organic frameworks (CD-MOFs) possess 3D-network structures and large inner cavities, which make them excellent carriers of poorly soluble drugs. In this study, we used CD-MOFs as carriers to improve the dissolution of luteolin and assessed their antioxidant activity, bioavailability, and hepatoprotective effects. Luteolin was loaded into β-CD-MOF, γ-CD-MOF, β-CD, and γ-CD, and characterized by powder X-ray diffractometry (PXRD) and thermogravimetric analysis (TGA). Our results showed that luteolin-β-CD-MOF was the most stable. The main driving forces were hydrogen bonds and van der Waals forces, as determined by molecular simulation. The loading capacity of luteolin-β-CD-MOF was 14.67 wt%. Compared to raw luteolin, luteolin-β-CD-MOF exhibited a 4.50-fold increase in dissolution and increased antioxidant activity in vitro. Luteolin-β-CD-MOF increased the bioavailability of luteolin by approximately 4.04- and 11.07-fold in healthy rats and liver injured rats induced by acetaminophen in vivo, respectively. As determined by biochemical analysis, luteolin-β-CD-MOF exhibited a better hepatoprotective effect than raw luteolin in rats with acetaminophen-induced liver injury. This study provides a new approach for preventing acetaminophen-mediated liver damage.

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          Highlights

          • The loading mechanism of luteolin-β-CD-MOF has been elucidated.

          • Luteolin-β-CD-MOF achieved a better anti liver injury effect than luteolin.

          • β-CD-MOF is a potential excellent drug carrier for oral drug delivery.

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          Most cited references61

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          Cyclodextrins and their uses: a review

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            Incidence and Etiology of Drug-Induced Liver Injury in Mainland China

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              Mechanisms of acetaminophen-induced liver necrosis.

              Although considered safe at therapeutic doses, at higher doses, acetaminophen produces a centrilobular hepatic necrosis that can be fatal. Acetaminophen poisoning accounts for approximately one-half of all cases of acute liver failure in the United States and Great Britain today. The mechanism occurs by a complex sequence of events. These events include: (1) CYP metabolism to a reactive metabolite which depletes glutathione and covalently binds to proteins; (2) loss of glutathione with an increased formation of reactive oxygen and nitrogen species in hepatocytes undergoing necrotic changes; (3) increased oxidative stress, associated with alterations in calcium homeostasis and initiation of signal transduction responses, causing mitochondrial permeability transition; (4) mitochondrial permeability transition occurring with additional oxidative stress, loss of mitochondrial membrane potential, and loss of the ability of the mitochondria to synthesize ATP; and (5) loss of ATP which leads to necrosis. Associated with these essential events there appear to be a number of inflammatory mediators such as certain cytokines and chemokines that can modify the toxicity. Some have been shown to alter oxidative stress, but the relationship of these modulators to other critical mechanistic events has not been well delineated. In addition, existing data support the involvement of cytokines, chemokines, and growth factors in the initiation of regenerative processes leading to the reestablishment of hepatic structure and function.
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                Author and article information

                Contributors
                Journal
                Int J Pharm X
                Int J Pharm X
                International Journal of Pharmaceutics: X
                Elsevier
                2590-1567
                26 April 2024
                June 2024
                26 April 2024
                : 7
                : 100250
                Affiliations
                [a ]School of Pharmacy, Shenyang Pharmaceutical University, Wenhua Road 103, Shenyang, Liaoning Province, China
                [b ]Pharmaceutical Department, Liaoning Provincial People's Hospital, Wenyi Road 33, Shenyang, Liaoning Province, China
                [c ]School of Public Health, Shenyang Medical College, Shenyang, Liaoning Province, China
                [d ]School of Life Science and Biopharmaceutics, Shenyang Pharmaceutical University, Wenhua Road 103, Shenyang, Liaoning Province, China
                Author notes
                [* ]Correspondence to: C. Zhao, School of Pharmacy, Shenyang Pharmaceutical University, No. 103 Wenhua Road, Shenyang 110016, Liaoning, China. lab433@ 123456163.com
                [** ]Correspondence to: M. Wang, School of Life Science and Biopharmaceutics, Shenyang Pharmaceutical University, No. 103 Wenhua Road, Shenyang 110016, Liaoning, China. wangmiao_77111@ 123456hotmail.com
                [1]

                Dan Yang and Min Zhao contributed equally to this work.

                Article
                S2590-1567(24)00022-7 100250
                10.1016/j.ijpx.2024.100250
                11070924
                38711828
                30f781dd-4334-4c27-8dee-aee2f90cf6b6
                © 2024 The Authors. Published by Elsevier B.V.

                This is an open access article under the CC BY license (http://creativecommons.org/licenses/by/4.0/).

                History
                : 13 December 2023
                : 24 April 2024
                : 25 April 2024
                Categories
                Research Paper

                luteolin,cyclodextrin metal-organic frameworks,bioavailability,liver injury

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