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TCA

Aliphatic-Garboxylics. There are only two herbicides present in this class, trichloroacetate [76-03-9] (TCA) and dalapon [75-99-0]. These are used primarily for the selective control of annual and perennial grass weeds in cropland and noncropland (2,299). Dalapon is also used as a selective aquatic herbicide (427). Dalapon and TCA are acidic in nature and are not strongly sorbed by sods. They are reported to be rapidly degraded in both sod and water by microbial processes (2,427). However, the breakdown of TCA occurs very slowly when incubated at 14—15°C in acidic sods (428). Timing not only accelerates this degradation but also increases the numbers of TCA-degrading bacteria. An HA has been issued for dalapon, but not TCA (269). [Pg.54]

Treatment of Major Depression. Dmgs commonly used for the treatment of depressive disorders can be classified heuristicaHy iato two main categories first-generation antidepressants with the tricycHc antidepressants (TCAs) and the irreversible, nonselective monoamine—oxidase (MAO) inhibitors, and second-generation antidepressants with the atypical antidepressants, the reversible inhibitors of monoamine—oxidase A (RIMAs), and the selective serotonin reuptake inhibitors (SSRIs). Table 4 fists the available antidepressants. [Pg.229]

SSRIs are widely used for treatment of depression, as well as, for example, panic disorders and obsessive—compulsive disorder. These dmgs are well recognized as clinically effective antidepressants having an improved side-effect profile as compared to the TCAs and irreversible MAO inhibitors. Indeed, these dmgs lack the anticholinergic, cardiovascular, and sedative effects characteristic of TCAs. Their main adverse effects include nervousness /anxiety, nausea, diarrhea or constipation, insomnia, tremor, dizziness, headache, and sexual dysfunction. The most commonly prescribed SSRIs for depression are fluoxetine (31), fluvoxamine (32), sertraline (52), citalopram (53), and paroxetine (54). SSRIs together represent about one-fifth of total worldwide antidepressant unit sales. [Pg.232]

The second-generation antidepressants, particularly RIMAs and SSRJs, are much less toxic ia overdose than the older TCAs and irreversible MAO inhibitors. However, similar to first-generation antidepressants, the therapeutic effect only becomes manifest after several weeks. Up to one-third of depressed patients are nonresponders. Ideally, an antidepressant would combine a more rapid onset of action with greater clinical efficacy and a higher responder rate, as well as even better tolerability. [Pg.233]

Respiratory, or oxidative, metaboHsm produces more energy than fermentation. Complete oxidation of one mol of glucose to carbon dioxide and water may produce up to 36 mol ATP in the tricarboxyHc acid (TCA) cycle or related oxidative pathways. More substrates can be respired than fermented, including pentoses (eg, by Candida species), ethanol (eg, by Saccharomjces), methanol (eg, by Hansenu/a species), and alkanes (eg, by Saccharomjces lipoljticd). [Pg.387]

One Anson unit is the amount of enzyme that, under standard conditions, digests hemoglobin at an initial rate, Hberating per minute an amount of TCA-soluble product which produces the same color with phenol reagent as one milliequivalent of tyrosine (91). [Pg.301]

As a result of the en2ymatic degradation of proteins, key indexes change, ie, protein solubiUty indexes (PSI), peptide chain length (PCL), and protein solubihty in 0.8 Af TCA (TCA-index) (Fig. 14). Unpleasant bitterness was once a problem for some protein hydroly2ates. This problem can now be overcome by proper selection of the reaction parameters and the en2ymes used. [Pg.302]

Since heat transfer with respec t to the surroundings and with respect to the system are equal but of opposite sign, = —Q. Moreover, the second law requires for a reversible process that the entropy changes of system and surroundings be equalbut of opposite sign AS = —AS Equation (4-356) can therefore be written Q = TcAS In terms of rates this becomes... [Pg.544]

The laboratory you work in has benzene, methyl ethyl ketone, trichloroethane (TCA), and acetone as general purpose solvents. Rank these in order of their risk for fire. State the reasons why one is more dangerous from another in terms of fire safety. [Pg.186]

Figure 5. Comparison of TCE and TCA concentration distribution by groundwater and soii gas sampies, southwestern U.S. study (Lappaia, 1984). Figure 5. Comparison of TCE and TCA concentration distribution by groundwater and soii gas sampies, southwestern U.S. study (Lappaia, 1984).
Possibly the most serious nutrition problem in the United States is excessive food consumption, and many people have experimented with fad diets in the hope of losing excess weight. One of the most popular of the fad diets has been the high-protein, high-fat (low-carbohydrate) diet. The premise for such diets is tantalizing because the tricarboxylic acid (TCA) cycle (see Chapter 20) is the primary site of fat metabolism, and because glucose is usually needed to replenish intermediates in the TCA cycle, if carbohydrates are restricted in the diet, dietary fat should merely be converted to ketone bodies and excreted. This so-called diet appears to work at first because a low-carbohydrate diet results in an initial water (and weight) loss. This occurs because... [Pg.585]

The TCA Cycle—A Brief Summary The Bridging Step Oxidadve Decarboxylation of Pyruvate Entry into the Cycle The Citrate Syntha.se Reaction The Lsomerizadon of Citrate by Aconita.se... [Pg.639]

FIGURE 20.1 Pyruvate produced hi glycolysis is oxidized in the tricarboxylic acid (TCA) cycle. Electrons liberated in this oxidation flow through the electron transport chain and drive the synthesis of ATP in oxidative phosphorylation. In eukaryotic cells, this overall process occurs in mitochondria. [Pg.640]


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See also in sourсe #XX -- [ Pg.91 ]

See also in sourсe #XX -- [ Pg.78 , Pg.681 ]




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A Bucket Brigade of Molecules Carries Electrons from the TCA Cycle to

ATP Stoichiometry of the TCA Cycle

Agitation from TCAs

Amphibolic aspects of the TCA cycle

Anticonvulsants TCAs)

Antidepressants MAOI SSRIs TCAs

Combination salicylic acid/TCA chemical peeling

Components of the TCA cycle reaction network

Confusion from TCAs

Determination of Trichloroacetic Acid (TCA)

Differential equations for TCA cycle reaction network

Easy TCA basic protocol and skin aging

Easy TCA®

Fluoxetine TCAs with

Flux expressions for TCA cycle reaction network

Insomnia from TCAs

Kinetic model of the TCA cycle

Krebs TCA cycle

Overview of the Tricarboxylic Acid (TCA) Cycle

Oxidation of Other Substrates by the TCA Cycle

Pharmacology TCAs)

Reductive TCA

Reductive TCA cycle

Regulation of the TCA cycle

Reverse TCA cycle

Role of the TCA Cycle in Metabolic Reactions

Simulation of TCA cycle kinetics

Steps in the TCA Cycle

Steps of the TCA Cycle

Suicidality from TCAs

TCA = Tricarboxylic acids

TCA Trichloroacetate

TCA cycle

TCA cycle function

TCA cycle pyruvate

TCA cycle regulation

TCA cycle, enzymes

TCA cycle—See Tricarboxylic acid

TCA cyde

TCA cyde intermediates

TCA derivatives

TCA peels

TCAs

TCAs

The TCA Cycle and Oxidative Phosphorylation

Thermal conductivity analysis (TCA)

Toxicity from TCAs

Tricarboxylic acid cycle (TCA

Tricyclic antidepressants TCAs)

Withdrawal from TCAs

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