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PubMed · 10367552

Branched chain amino acids decrease tardive dyskinesia symptoms.

Abstract

RATIONALE: Prior studies had suggested (a) that a lessened ability to clear ingested forms of the large neutral amino acid (LNAA), phenylalanine (Phe), was associated with having tardive dyskinesia (TD), and (b) that greater availability of a group of LNAA, the branched chain amino acids (BCAA), concomitant with the lower availability of Phe to the brain are associated with a decrease in TD symptoms. The present study was then conducted to test whether increasing the daily intake of the BCAA would decrease the symptoms of TD. METHODS: A 2-week trial of a BCAA medical food administered three times a day was conducted in nine men with long neuroleptic treatment histories. Frequency counts of TD movements were collected by videotape throughout the trial and these tapes were analyzed in blind random sequence for both patient and time for TD symptom level changes subsequent to completion of the trial. Plasma levels of the LNAA were also collected throughout the trial. RESULTS: A statistically significant decrease in the level of TD symptoms was observed for the sample. The symptom changes were also clinically significant in that six of the nine subjects had symptom decreases of at least 58%, with all subjects having a decrease of at least 38%. BCAA administration increased plasma BCAA concentrations and BCAA/LNAA ratios and decreased plasma Phe concentrations and the Phe/LNAA ratio. Analyses indicated a strong significant correlation between the percent increase in the plasma BCAA values at the first administration and the percent improvement in TD over the trial in eight of the nine subjects. CONCLUSIONS: The BCAA show promise as a treatment for TD. The decrease in TD symptoms seen in the trial may have been modulated by the BCAA treatment-induced increased availability of the BCAA and decreased availability of Phe to the brain.

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BibTeXRIS

M A Richardson, M L Bevans, J B Weber, J J Gonzalez, C J Flynn, L Amira, L L Read, R F Suckow, T J Maher. 1999. Branched chain amino acids decrease tardive dyskinesia symptoms.. https://doi.org/10.1007/s002130050959

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Biological Mechanisms Underlying the Cardiovascular Effects of Branched-Chain Amino Acids: A Proteome-Wide Mendelian Randomization Study.

BACKGROUND: Ischemic heart disease (IHD) is the leading cause of morbidity and mortality. Branched-chain amino acids (BCAAs) are associated with higher IHD risk, but the underlying biological pathways remain unclear. OBJECTIVES: This study aims to explore these pathways using 2-step proteome-wide Mendelian randomization. METHODS: We examined the associations between genetic proxies for BCAAs and 2922 proteins in the United Kingdom Biobank Pharma Proteomics Project, supplemented by a meta-analysis with data from deCODE to identify proteins associated with BCAAs. Next, we tested their effects on IHD risk using Coronary Artery Disease Genome-wide Replication and Meta-analysis plus Coronary Artery Disease Genetics Consortium (122,733 cases and 424,528 controls) and replicated in FinnGen (31,640 cases and 187,152 controls). We conducted sensitivity analyses using genetic instruments from deCODE. Proteins associated with IHD risk and, in a consistent direction, with genetically predicted BCAAs were considered potential mediators. RESULTS: Genetic proxies for BCAAs were associated with 40 proteins. Among these, 6 proteins showed consistent evidence of mediation, including complement C1s subcomponent, coagulation factor II, granulin, proprotein convertase subtilisin/kexin type 9, sex hormone-binding globulin, and V-set and transmembrane domain-containing protein 2-like. These proteins are involved in inflammation, coagulation, lipid metabolism, and cellular stress response. All associations were robust across different analytical methods and replicated in independent datasets. Mediation analysis showed that these proteins accounted for 6.5% to 32.1% of the association between BCAAs and IHD risk. CONCLUSIONS: This study identified 6 proteins that potentially link BCAAs to IHD, implicating pathways related to inflammation, coagulation, lipid metabolism, and cellular stress responses. To our knowledge, these findings provide novel mechanistic insights into the BCAA-IHD relationship and highlight potential protein targets for future prevention and intervention strategies.

Amino Acids, Branched-Chain↗