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      The Long-Term Impact of Levodopa/Carbidopa Intestinal Gel on ‘Off’-time in Patients with Advanced Parkinson’s Disease: A Systematic Review

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          Abstract

          Introduction

          Levodopa/carbidopa intestinal gel (LCIG; carbidopa/levodopa enteral suspension) has been widely used and studied for the treatment of motor fluctuations in levodopa-responsive patients with advanced Parkinson’s disease (PD) when other treatments have not given satisfactory results. Reduction in ‘off’-time is a common primary endpoint in studies of LCIG, and it is important to assess the durability of this response. This systematic literature review was conducted to qualitatively summarise the data on the long-term effects of LCIG therapy on ‘off’-time.

          Methods

          Studies were identified by searching PubMed, EMBASE and Ovid on 30 September 2019. Studies were included if they reported on patients with PD, had a sample size of ≥ 10, LCIG was an active intervention and ‘off’-time was reported for ≥ 12 months after initiation of LCIG treatment. Randomised clinical trials, retrospective and prospective observational studies, and other interventional studies were included for selection. Data were collected on: ‘off’-time (at pre-specified time periods and the end of follow-up), study characteristics, Unified Parkinson’s Disease Rating Scale (UPDRS) II, III and IV total scores, dyskinesia duration, quality of life scores, non-motor symptoms and safety outcomes.

          Results

          Twenty-seven studies were included in this review. The improvement in ‘off’-time observed shortly after initiating LCIG was maintained and was statistically significant at the end of follow-up in 24 of 27 studies. ‘Off’-time was reduced from baseline to end of follow-up by 38–84% and was accompanied by a clinically meaningful improvement in quality of life. Stratified analysis of ‘off’-time demonstrated mean relative reductions of 47–82% at 3–6 months and up to 83% reduction at 3–5 years of follow-up. Most studies reported significant improvements in activities of daily living and motor complications. Most frequent adverse events were related to the procedure or the device.

          Conclusion

          In one of the largest qualitative syntheses of published LCIG studies, LCIG treatment was observed to provide a durable effect in reducing ‘off’-time.

          Infographic

          Supplementary Information

          The online version contains supplementary material available at 10.1007/s12325-021-01747-1.

          Plain Language Summary

          By synthesising publications from scientific journals, this article shows that levodopa/carbidopa intestinal gel (LCIG; also known as carbidopa/levodopa enteral suspension or the tradenames Duodopa® and Duopa®) may have benefits for patients with advanced Parkinson’s disease that last for 12 months or more. Pills taken by mouth for Parkinson’s disease often do not work as well after a few years. This means the symptoms of Parkinson’s disease, such as shaking or slow movements, etc., re-emerge despite medication (known as ‘off’-time). To reduce the amount of ‘off’-time, people with advancing Parkinson’s disease may switch from pills to other types of treatments, for example, those that use devices to deliver the drug into the body, such as LCIG. LCIG has been available for many years and is known to help patients by reducing ‘off’-time. Despite this, less is known about how long the benefits of LCIG last. By summarising all information available on the long-term use of LCIG, this report shows that when patients have been taking LCIG for at least 12 months, they have 2–4 h less ‘off’-time each day than they did before starting the LCIG treatment. This effect is maintained for 3–5 years after starting LCIG treatment. There were no unexpected side effects with long-term use of LCIG. The time not spent in ‘off’ may allow people with advanced Parkinson’s to increase their independence in daily activities.

          Supplementary Information

          The online version contains supplementary material available at 10.1007/s12325-021-01747-1.

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          Most cited references65

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          Preferred reporting items for systematic reviews and meta-analyses: the PRISMA statement

          David Moher and colleagues introduce PRISMA, an update of the QUOROM guidelines for reporting systematic reviews and meta-analyses
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            Parkinson disease

            Parkinson disease is the second-most common neurodegenerative disorder that affects 2-3% of the population ≥65 years of age. Neuronal loss in the substantia nigra, which causes striatal dopamine deficiency, and intracellular inclusions containing aggregates of α-synuclein are the neuropathological hallmarks of Parkinson disease. Multiple other cell types throughout the central and peripheral autonomic nervous system are also involved, probably from early disease onwards. Although clinical diagnosis relies on the presence of bradykinesia and other cardinal motor features, Parkinson disease is associated with many non-motor symptoms that add to overall disability. The underlying molecular pathogenesis involves multiple pathways and mechanisms: α-synuclein proteostasis, mitochondrial function, oxidative stress, calcium homeostasis, axonal transport and neuroinflammation. Recent research into diagnostic biomarkers has taken advantage of neuroimaging in which several modalities, including PET, single-photon emission CT (SPECT) and novel MRI techniques, have been shown to aid early and differential diagnosis. Treatment of Parkinson disease is anchored on pharmacological substitution of striatal dopamine, in addition to non-dopaminergic approaches to address both motor and non-motor symptoms and deep brain stimulation for those developing intractable L-DOPA-related motor complications. Experimental therapies have tried to restore striatal dopamine by gene-based and cell-based approaches, and most recently, aggregation and cellular transport of α-synuclein have become therapeutic targets. One of the greatest current challenges is to identify markers for prodromal disease stages, which would allow novel disease-modifying therapies to be started earlier.
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              Continuous intrajejunal infusion of levodopa-carbidopa intestinal gel for patients with advanced Parkinson's disease: a randomised, controlled, double-blind, double-dummy study.

              Levodopa is the most effective therapy for Parkinson's disease, but chronic treatment is associated with the development of potentially disabling motor complications. Experimental studies suggest that motor complications are due to non-physiological, intermittent administration of the drug, and can be reduced with continuous delivery. We aimed to assess efficacy and safety of levodopa-carbidopa intestinal gel delivered continuously through an intrajejunal percutaneous tube. In our 12-week, randomised, double-blind, double-dummy, double-titration trial, we enrolled adults (aged ≥ 30 years) with advanced Parkinson's disease and motor complications at 26 centres in Germany, New Zealand, and the USA. Eligible participants had jejunal placement of a percutaneous gastrojejunostomy tube, and were then randomly allocated (1:1) to treatment with immediate-release oral levodopa-carbidopa plus placebo intestinal gel infusion or levodopa-carbidopa intestinal gel infusion plus oral placebo. Randomisation was stratified by site, with a mixed block size of 2 or 4. The primary endpoint was change from baseline to final visit in motor off-time. We assessed change in motor on-time without troublesome dyskinesia as a prespecified key secondary outcome. We assessed efficacy in a full-analysis set of participants with data for baseline and at least one post-baseline assessment, and imputed missing data with the last observation carried forward approach. We assessed safety in randomly allocated patients who underwent the percutaneous gastrojejunostomy procedure. This study is registered with ClinicalTrials.gov, numbers NCT00660387 and NCT0357994. From baseline to 12 weeks in the full-analysis set, mean off-time decreased by 4.04 h (SE 0.65) for 35 patients allocated to the levodopa-carbidopa intestinal gel group compared with a decrease of 2.14 h (0.66) for 31 patients allocated to immediate-release oral levodopa-carbidopa (difference -1.91 h [95% CI -3.05 to -0.76]; p=0.0015). Mean on-time without troublesome dyskinesia increased by 4.11 h (SE 0.75) in the intestinal gel group and 2.24 h (0.76) in the immediate-release oral group (difference 1.86 [95% CI 0.56 to 3.17]; p=0.0059). In the safety analyses 35 (95%) of 37 patients allocated to the levodopa-carbidopa intestinal gel group had adverse events (five [14%] serious), as did 34 (100%) of 34 patients allocated to the immediate-release oral levodopa-carbidopa group (seven [21%] serious), mainly associated with the percutaneous gastrojejunostomy tube. Continuous delivery of levodopa-carbidopa with an intestinal gel offers a promising option for control of advanced Parkinson's disease with motor complications. Benefits noted with intestinal gel delivery were of a greater magnitude than were those obtained with medical therapies to date, and our study is, to our knowledge, the first demonstration of the benefit of continuous levodopa delivery in a double-blind controlled study. AbbVie. Copyright © 2014 Elsevier Ltd. All rights reserved.
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                Author and article information

                Contributors
                Angelo.antonini@unipd.it , https://www.linkedin.com/company/69748403/admin/
                Journal
                Adv Ther
                Adv Ther
                Advances in Therapy
                Springer Healthcare (Cheshire )
                0741-238X
                1865-8652
                20 May 2021
                20 May 2021
                2021
                : 38
                : 6
                : 2854-2890
                Affiliations
                [1 ]GRID grid.5608.b, ISNI 0000 0004 1757 3470, Parkinson and Movement Disorders Unit, Center for Rare Neurological Diseases (ERN-RND), Department of Neurosciences, , University of Padova, ; Padua, Italy
                [2 ]GRID grid.4514.4, ISNI 0000 0001 0930 2361, Division of Neurology, Department of Clinical Sciences, Skåne University Hospital, , Lund University, ; Lund, Sweden
                [3 ]GRID grid.412016.0, ISNI 0000 0001 2177 6375, Department of Neurology, , University of Kansas Medical Center, ; Kansas City, USA
                [4 ]Selkirk Neurology and Inland Northwest Neurological, Spokane, WA USA
                [5 ]GRID grid.431072.3, ISNI 0000 0004 0572 4227, AbbVie Inc., ; North Chicago, USA
                [6 ]GRID grid.185648.6, ISNI 0000 0001 2175 0319, University of Illinois at Chicago, ; Chicago, USA
                [7 ]GRID grid.251313.7, ISNI 0000 0001 2169 2489, Center for Pharmaceutical Marketing and Management, , University of Mississippi, ; University, Oxford, USA
                [8 ]GRID grid.46699.34, ISNI 0000 0004 0391 9020, King’s College London, and Parkinson’s Foundation International Centre of Excellence, , King’s College Hospital, ; London, UK
                Article
                1747
                10.1007/s12325-021-01747-1
                8189983
                34018146
                ad056e8b-5d09-4813-9cd1-9fb4199c2479
                © The Author(s) 2021

                Open AccessThis article is licensed under a Creative Commons Attribution-NonCommercial 4.0 International License, which permits any non-commercial use, sharing, adaptation, distribution and reproduction in any medium or format, as long as you give appropriate credit to the original author(s) and the source, provide a link to the Creative Commons licence, and indicate if changes were made. The images or other third party material in this article are included in the article's Creative Commons licence, unless indicated otherwise in a credit line to the material. If material is not included in the article's Creative Commons licence and your intended use is not permitted by statutory regulation or exceeds the permitted use, you will need to obtain permission directly from the copyright holder. To view a copy of this licence, visit http://creativecommons.org/licenses/by-nc/4.0/.

                History
                : 10 September 2020
                : 8 October 2020
                Categories
                Review
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                © Springer Healthcare Ltd., part of Springer Nature 2021

                advanced parkinson’s disease,lcig,long-term,‘off’-time

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