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Biomedical subjects

M H Maguire

Publications and source records attributed to M H Maguire.

At least 19 recordsLinked to original sources

Simultaneous measurement of adenosine and hypoxanthine in human umbilical cord plasma using reversed-phase high-performance liquid chromatography with photodiode-array detection and on-line validation of peak purity.

A new, robust and sensitive reversed-phase high-performance liquid chromatographic method was developed for concomitant measurement of plasma concentrations of the ATP catabolites adenosine and hypoxanthine in human umbilical cord blood. Deproteinized cord plasma was chromatographed on Hypersil C18 columns, using UV photodiode-array detection, spectral analysis of peaks and on-line confirmation of peak purity. Elution with a gradient of acetonitrile-tetrahydrofuran in ammonium dihydrogen phosphate buffer pH 4.7, yielded sharp, well-resolved peaks of adenosine and hypoxanthine within 16 min. Peak areas were quantified from external calibration curves and converted to plasma concentrations via cord blood hematocrits. In seven deliveries, gestational ages 32-40 weeks, adenosine (range, 0.1-2.1 microM) was less than hypoxanthine (range, 1.6-18.5 microM) in the same cord plasma sample. Arteriovenous levels of each purine were similar, except in an abruptio placenta delivery.

Abruptio Placentae↗

Evidence for a novel P2X purinoceptor in human placental chorionic surface arteries.

To characterize the P2x purinoceptor of arteries of human term placenta, a non-innervated organ, actions of ATP, alpha, beta-methylene-ATP and UTP on de-endothelialized chorionic surface artery segments were compared. ATP and alpha,beta-methylene-ATP caused reversible concentration-dependent contractions, but UTP elicited little or no contraction up to 517 microM. Concentration-effect curves to ATP and alpha,beta-methylene-ATP were parallel, and alpha,beta-methylene-ATP, EC50 4.2 +/- 1.2 microM, was 28-times as potent as ATP. At a saturating concentration, 103 microM, alpha,beta-methylene-ATP did not desensitize the ATP receptor. Contractions to ATP and alpha,beta-methylene-ATP were antagonized by 300 microM suramin. These findings indicate that P2X purinoceptors are present in placental chorionic surface arteries and that they differ from P2X purinoceptors in arteries of other tissues.

Adenosine Triphosphate↗

On-line recognition and quantitation of coeluting hypoxanthine and guanine in reversed-phase high-performance liquid chromatography of placental tissue extracts: photodiode-array detection and spectral analysis of coeluting peaks.

In a reversed-phase HPLC method, optimized for resolution and quantitation of nucleosides and nucleobases in human term placental extracts, guanine coeluted with hypoxanthine. Three numerical techniques that treat spectral data generated by photodiode-array detection to yield indices of peak purity were compared for sensitivity of on-line recognition of overlapped guanine and hypoxanthine peaks in chromatograms of 7.0 microM hypoxanthine containing 0.075-0.54 microM guanine. These techniques were purity parameter, the average wavelength of a peak spectrum (lambda w), peak area ratio, and peak absorbance ratio. Purity parameter of a 7.0 microM hypoxanthine peak containing 1% guanine was significantly different from that of pure hypoxanthine (P < 0.01); peak area and peak absorption ratios were four and seven times, respectively, less sensitive than purity parameter. In chromatograms of human term placental extracts, purity parameter values generated on-line signalled the presence of guanine in hypoxanthine peaks. Quantitation of coeluting hypoxanthine and guanine was performed on-line from dual-wavelength detection at 249 and 278 nm via calibration curves for both analytes at these wavelengths. Hypoxanthine and guanine concentrations in seven samples from five human term placentas were 41-161 and 3-76 nmol/g, respectively. These findings demonstrate that on-line signalling of hypoxanthine and guanine coelution is achieved by purity parameter, area ratio, and absorbance ratio, that purity parameter is the most sensitive index of coelution, and that quantitation of the coeluting analytes can be performed on-line. These approaches should be applicable to recognition and quantitation of coeluting analytes in chromatograms of mixtures of nucleosides and nucleobases such as occur in extracts of other tissues.

Chromatography, High Pressure Liquid↗

Determination of concentrations of adenosine and other purines in human term placenta by reversed-phase high-performance liquid chromatography with photodiode-array detection: evidence for pathways of purine metabolism in the placenta.

A robust analytical method, using reversed-phase high-performance liquid chromatography with gradient elution and photodiode-array detection, was used to measure six purines and beta-NAD+ in acid-soluble extracts of samples taken from six different regions of human term placenta. Resolution of the analyte peaks in chromatographic profiles of the extracts, and the use of optimized integration, allowed simultaneous quantitation of all seven analytes from a single chromatogram. Peak purity was confirmed via on-line analysis of peak spectra, utilizing the purity parameter treatment of spectral data. Major placental purines were adenosine, inosine, hypoxanthine and adenine. Except for adenine, concentrations of the purines varied by two-fold or more between different regions of each placenta, but concentration ratios, i.e., adenosine/inosine and inosine/hypoxanthine, were similar. The findings indicate that the pathway of ATP breakdown to hypoxanthine in ischemic human term placenta is via adenosine, and that regional differences in placental concentrations of adenosine and its metabolites may result from regional differences in degree of ischemia.

Adenosine↗

An evaluation of commercial water irrigation systems used for caloric testing.

The post-1982 Grant Caloric Test Apparatus, and the Atmos Variotherm were evaluated and compared to BS5724 Part 1 (1989). Quality of construction is satisfactory, but design features may result in failure of tests for which this type of equipment should conform; namely splash, liquid leakage and spillage. For the Variotherm the proximity of the water piping to the electrical parts could result in wetting of the electrical units in the event of a leakage. The large vents in the Grant tanks allow easy access of water to electrical parts in the event of splashing. Both sets of equipment fail BS5724 Part 1 (1989) with respect to labelling. The Grant irrigation nozzle is well designed, but the Variotherm nozzles are not so, as they can accidentally pass down the external auditory meatus causing meatal wall or tympanic membrane damage. Both sets of equipment passed on electrical safety test for Class I Type B equipment. Cut-outs are fitted to prevent heating in the absence of water or over-heating of the water. The 44 degrees C Grant tank cut out after 20 s in the absence of water and at 49 degrees C as the water temperature rose above the operating temperature. The Variotherm heater did not operate in the absence of a water supply. The Variotherm thermal cut-out was not assessed. The force of the water at recommended flow rates using the Variotherm 'standard' metal nozzle was considered to pose a potential hazard of tympanic membrane perforation, and has subsequently been withdrawn by the supplier. The plastic nozzle minimized any such risk. The Variotherm is easier to use due to the well-designed trigger handle for controlling water delivery. Both sets of equipment performed at the correct temperature to within +/- 0.5 degrees C and achieved a flow rate of 250 ml in 30 s.

Caloric Tests↗

Measurement of hypoxanthine and xanthine in late-gestation human amniotic fluid by reversed-phase high-performance liquid chromatography with photodiode-array detection.

A robust analytical method was developed for measurement of hypoxanthine and xanthine in late-gestation human amniotic fluid by reversed-phase high-performance liquid chromatography using diodearray detection. Purity of analyte peaks was confirmed via on-line analysis of peak spectra utilizing the purity parameter treatment of spectral data. Amniotic fluid obtained by amniocentesis was deproteinized by centrifugal ultrafiltration and chromatographed on an octadecylsilica column using isocratic elution with 1% (v/v) acetonitrile in 0.05 M ammonium dihydrogenphosphate pH 6.0; hypoxanthine and xanthine were resolved, but the hypoxanthine peak was not pure. Chromatography on a column of polar endcapped octadecylsilica, using similar mobile phase conditions, yielded spectrally pure peaks of hypoxanthine xanthine. Hypoxanthine and xanthine levels in amniotic fluid from fourteen patients, gestational age 34-39 weeks, ranged from 0.56 to 2.74 microM and 1.62 to 5.52 microM, respectively.

Amniocentesis↗

Darmstoff analogues. 3. Actions of choline esters of acetal phosphatidic acids on visceral smooth muscle.

A number of naturally occurring phospholipids, e.g. the acetal phosphatidic acid derivatives that comprise Darmstoff (1) and the phosphatidylcholine derivative platelet activating factor (PAF), cause contraction of certain visceral smooth muscles and cause platelet activation. Because the Darmstoff phosphatidic acids and PAF are structurally similar, it was of interest to compare the biological actions of choline esters of Darmstoff with those of PAF and of the parent Darmstoff phosphatidic acids. To this end, [(2-pentadecyl-1,3-dioxolan-4-yl)methyl]phosphocholine (3a), [[2-(cis-8-heptadecenyl)-1,3-dioxolan-4-yl]methyl]phosphocho line (3b), and [[2-(cis-8-pentadecenyl)-1,3-dioxolan-4-yl]methyl]phosphocho line (3c) were synthesized. Compounds 3a, 3b, 3c, and PAF caused dose-dependent relaxation of taenia coli strips. In contrast, the unesterified materials 1a and 1b, as well as lyso-PAF, caused contraction in taenia coli strips. Thus, the contractile effect of Darmstoff is reversed on esterification with choline. In preparations of whole trachea, both 1a and 3a had contractile effects similar to those of PAF.

Animals↗

Determination of adenosine in fetal perfusates of human placental cotyledons using fluorescence derivatization and reversed-phase high-performance liquid chromatography.

A simple, sensitive HPLC method using fluorescence detection was developed for determination of adenosine in fetal venous perfusates of dual-perfused cotyledons from human term placentas. Maternal and fetal circuits of in vitro placental cotyledons were perfused with physiological salt solution containing dextrose and dextran (Earle's medium). Conditions were established for optimal formation of fluorescent 1,N6-ethenoadenosine from adenosine and chloroacetaldehyde in Earle's medium and for optimal resolution of 1,N6-ethenoadenosine by reversed-phase HPLC of the reaction mixture. The yield of 1,N6-ethenoadenosine was enhanced by dilution and acidification of the sample matrix. Perfusate samples in autosampler vials were diluted 40% with water and reacted with chloroacetaldehyde for 40 min at 100 degrees C; replicate 100-microliters injections were made automatically from each reaction mixture for HPLC analysis with fluorescence detection on a column packed with 3 microns octadecylsilica (Hypersil). Calibration curves were prepared similarly from 4-100 nM adenosine in Earle's medium. Alternatively, perfusate samples were diluted twofold with dilute phosphoric acid to give a final pH of 5.4 before reaction with chloroacetaldehyde, and replicate 50-microliters injections were made automatically for HPLC; calibration curves were prepared from 2-400 nM adenosine in Earle's medium. 1,N6-Ethenoadenosine was well resolved from Earle's-derived artifactual peaks on chromatography with either a linear or a concave gradient of methanol in ammonium phosphate buffer. Total run times were 15 and 19 min, respectively. Sensitivity of measurement of adenosine was 2-4 nM. Derivatization of adenosine using the acidified reaction mixture gave a limit of detection of 100 fmol of adenosine per injection. Application of the method to analysis of adenosine in fetal venous perfusates of eight dual-perfused cotyledons, each from a different placenta, gave a range of 3.5-52 nM adenosine. Ischemia, imposed by cessation of maternal perfusion, caused a two- to sixfold increase in fetal venous perfusate adenosine concomitant with an increase in fetoplacental perfusion pressure; perfusion pressure and perfusate adenosine returned to baseline levels on reperfusion of the maternal circuit. This facile method of determination of perfusate adenosine should allow investigation of the role of placental adenosine release in regulation of fetoplacental vascular resistance and should be applicable to study of adenosine released by other isolated perfused organs.

Acetaldehyde↗

Vinca alkaloids inhibit conversion of arachidonic acid to thromboxane by human platelet microsomes: comparison with other microtubule-active drugs.

The Vinca alkaloid vinblastine causes dose-dependent inhibition of malondialdehyde formation and aggregation in activated human platelets as a result of inhibition of arachidonic acid metabolism via the thromboxane pathway (Brammer, J.P., Kerecsen, L. and Maguire, M.H. (1982) Eur. J. Pharmacol. 81, 577). The nature of the inhibition by vinblastine has been investigated with human platelet microsomes, measuring conversion of arachidonic acid to malondialdehyde and thromboxane B2 via spectrophotometric assay and RIA, respectively, determining arachidonate oxygenation by monitoring oxygen consumption, and identifying metabolites formed from [1-14C]arachidonic acid. Vinblastine was compared with other Vinca alkaloids and with structurally unrelated microtubule-active drugs. Vinca alkaloids were unique in causing dose-dependent inhibition of both malondialdehyde and thromboxane B2. Order of potency was vinblastine = vincristine = vindesine greater than leurosine greater than vinepidine. Inhibition of malondialdehyde and thromboxane B2 by 50 microM vinblastine was at least 60%. Microsomal cyclooxygenase was not inhibited by 200 microM vinblastine. Inhibition by vinblastine of [1-14C]arachidonic acid conversion to thromboxane B2 was associated with a 4-fold increase in prostaglandin E2 formation. Thromboxane B2, but not malondialdehyde, formation was inhibited by colchicine less than nocodazole much less than vinblastine. Results indicate that microsomal thromboxane synthetase is inhibited by Vinca alkaloids and other tubulin-binding drugs, and suggest that the action of vinblastine in inhibiting thromboxane synthesis, aggregation and release in intact platelets is not dependent upon its antimicrotubular actions.

Arachidonic Acid↗

Hypoxia-induced fetoplacental vasoconstriction in perfused human placental cotyledons.

Effects of maternal hypoxia on fetoplacental vascular resistance in the human placenta were investigated in an in vitro model in which single anatomic subunits (cotyledons) from term placentas were perfused at constant flow through both fetal and maternal circuits by means of a physiologic salt solution containing dextran. Acute reduction of oxygen tension in the maternal perfusate induced prompt fetoplacental vasoconstriction that recovered rapidly on restoration of oxygen to the perfusate. The response, hypoxic fetoplacental vasoconstriction, could be repeatedly demonstrated in the same cotyledon. The time course of hypoxic fetoplacental vasoconstriction was inversely related to oxygen tension of maternal arterial and maternal and fetal venous perfusates. Maternal and fetal venous perfusate pH and PCO2 did not change during the response. It is concluded that hypoxic fetoplacental vasoconstriction is triggered by decreased oxygen availability. It is suggested that hypoxic fetoplacental vasoconstriction may play a role in local regulation of human fetoplacental blood flow in vivo and may contribute to poor fetal prognosis in preeclampsia.

Female↗

Measurement of adenosine, inosine and hypoxanthine in human term placenta by reversed-phase high-performance liquid chromatography.

An analytical method was developed for measuring adenosine, inosine and hypoxanthine in freshly delivered human term placentas. Representative freeze-clamped samples were taken from the sub-maternal surface of each placenta. Acid-soluble extracts of the samples were analyzed by reversed-phase high-performance liquid chromatography on columns packed with 10-micron porous octadecylsilica, using gradient elution with a linear increase in methanol concentration in ammonium phosphate buffer. Resolution of hypoxanthine from xanthine and adenosine from adenine, and quantitation of hypoxanthine and adenosine were achieved using 0.05 M ammonium dihydrogen phosphate, pH 6.5, as the low-strength eluent. Resolution of inosine from a prominent peak of beta-NAD was optimized using 0.02 M ammonium dihydrogen phosphate, pH 5.6, as low-strength eluent. Recovery of standards was greater than 90%. Mean contents (+/- S.D.) of the analytes in placentas from seven normal deliveries were, adenosine 30.6 +/- 11.5 nmol/g, inosine 68.0 +/- 25.8 nmol/g and hypoxanthine 217 +/- 127.5 nmol/g.

Adenosine↗

Pressor and depressor actions of prostanoids in the intact human fetoplacental vascular bed.

Effects of the prostanoids PGE2, PGF2 alpha, PGI2, PGE1, 6-keto-PGE1 and the PGH2 analogue U46619, on fetoplacental perfusion pressure were measured in human term placental cotyledons in which both fetal and maternal circuits were perfused at constant flow. Fetal arterial injections of bolus doses of PGE2, PGF2 alpha and U46619 caused reversible increases in fetal perfusion pressure. Pressor responses to PGF2 alpha and U46619 were dose-related, with threshold doses of less than or equal to 2 nmoles and 14 pmoles, respectively. Reversible dose-related decreases in fetoplacental perfusion pressure were elicited by fetal arterial injection of PGI2, 6-keto-PGE1 and PGE1; threshold concentrations were: PGI2 less than or equal to 10 pmoles, PGE1 less than or equal to 141 pmoles and 6-keto-PGE1 less than or equal to 270 pmoles. The potent depressor effect of PGI2 and the potent pressor effect of U46619, a TxA2 mimetic, in the intact human fetoplacental vascular bed suggest that endogenous PGI2 and TxA2 could play a role in modulating fetoplacental blood flow in the term placenta.

Alprostadil↗

Conversion of angiotensin I to angiotensin II in the human foetoplacental vascular bed.

Pressor effects of angiotensin I (AI) and angiotensin II (AII) on the human foetoplacental vasculature were compared in dual-perfused term placental cotyledons in which foetoplacental perfusion pressure was monitored. Arterial injections of 1 nmol doses of AI and AII caused marked increases in perfusion pressure; the mean pressor response to AI was 92.9 +/- 5.8% (mean +/- s.e. mean) of the AII response. The angiotensin-converting enzyme inhibitor captopril at 2.2 microM reversibly reduced the AI response to 13.7 +/- 3.2% (mean +/- s.e. mean) of the AII response, which was unaffected. Saralasin, an AII receptor blocker, at 94 nM reversibly antagonized both AI-and AII-induced increases in foetoplacental perfusion pressure. It is concluded that foetoplacental vasoconstriction elicited by AI is due to its conversion to AII by angiotensin-converting enzyme present in the foetoplacental bed.

Angiotensin I↗

Arachidonate metabolism, 5-hydroxytryptamine release and aggregation in human platelets activated by palmitaldehyde acetal phosphatidic acid.

Palmitaldehyde acetal phosphatidic acid ( PGAP ) caused dose-dependent aggregation of human platelets resuspended in modified Tyrode medium, with a threshold concentration of 0.5-1 microM and an EC50 of 4 microM. Concentrations of PGAP which elicited biphasic irreversible aggregation concomitantly induced formation of 1.02 +/- 0.029 nmol (mean +/- s.e. mean) of malondialdehyde (MDA) per 10(9) platelets and caused release of 58 +/- 2.8% of platelet [14C]-5-hydroxytryptamine ([14C]-5-HT) from prelabelled platelets; no MDA formation or [14C]-5-HT release occurred at lower doses of PGAP which elicited only monophasic reversible aggregation. Adenosine 5'-pyrophosphate (ADP)-induced platelet activation resulted in formation of 0.344 +/- 0.004 nmol of MDA per 10(9) platelets in association with irreversible aggregation and 49.1 +/- 1% release of [14C]-5-HT. Mepacrine, a phospholipase A2 inhibitor, at 2.5 microM reduced PGAP -induced MDA formation and [14C]-5-HT release by the resuspended platelets without affecting irreversible aggregation; higher concentrations of mepacrine abolished all three responses. Chlorpromazine, a calmodulin antagonist, similarly inhibited PGAP -induced MDA formation and irreversible aggregation, and at 100 microM abolished monophasic aggregation. The cyclo-oxygenase inhibitor indomethacin caused a concentration-dependent reduction of PGAP -induced MDA formation by resuspended human platelets without significantly inhibiting [14C]-5-HT release or irreversible aggregation; concentrations (greater than or equal to 1.75 microM) which inhibited MDA formation by more than 94% abolished [14C]-5-HT release, and converted second phase irreversible aggregation to an extensive reversible response. 2-Methylthioadenosine 5'-phosphate (2 methylthio-AMP), an ADP antagonist, inhibited PGAP -induced MDA formation, [14C]-5-HT release and second phase aggregation in the human platelet suspensions in a parallel, concentration-dependent manner; at 9.4 microM 2-methylthio-AMP, both MDA formation and [14C]-5-HT release were abolished and monophasic, reversible aggregation remained. Albumin was required for aggregation of washed human platelets to PGAP . Irreversible PGAP -induced aggregation of washed [14C]-arachidonate-labelled platelets was accompanied by a low net loss of 14C from platelet phospholipids, an equivalent increase in 14C in free fatty acids, and the appearance of 14C in thromboxane (Tx)B2; mepacrine reduced the loss in 14C from phospholipids and inhibited aggregation and formation of [14C]-TxA2. Thrombin-induced aggregation was accompanied by substantial loss of 14C from phospholipids and equivalent gains of 14C in free fatty acids and TxB2; mepacrine pretreatment caused partial inhibition of thrombin-induced aggregation, halved the net 14C loss from phospholipids, but had little effect on the appearance of 14C in TxB2. 6 It is concluded that in human platelets PGAP-induced dense granule release and irreversible aggregation are dependent on the liberation of arachidonate and its metabolism via prostaglandin endoperoxides to thromboxane, that PGAP and thrombin elicit mobilization of arachidonate from different pools of membrane phospholipids, and that the mechanism of PGAP-activation of human platelets differs from those of thrombin- and ADP-activation.

Adenosine Diphosphate↗

Acetal phosphatidic acids: novel platelet aggregating agents.

1 Palmitaldehyde, olealdehyde and linolealdehyde acetal phosphatidic acids induced rapid shape change and dose-dependent biphasic aggregation of human platelets in platelet-rich plasma; aggregation was reversible at low doses and irreversible at high doses of the acetal phosphatidic acids. The palmitaldehyde congener elicited monophasic dose-dependent aggregation of sheep platelets in platelet-rich plasma.2 The threshold concentration for palmitaldehyde acetal phosphatidic acid (PGAP)-induced platelet aggregation was 2.5-5 muM for human platelets and 0.25-0.5 muM for sheep platelets. PGAP was 4-5 times as potent versus human platelets as the olealdehyde and linolealdehyde acetal phosphatidic acids, which were equipotent.3 PGAP-induced irreversible aggregation of [(14)C]-5-hydroxytryptamine ([(14)C]-5-HT)-labelled human platelets in platelet-rich plasma was accompanied by release of 44.0+/-2.4% (s.e.) of the platelet [(14)C]-5-HT; reversible aggregation was not associated with release. In contrast, PGAP-induced release of [(14)C]-5-HT-labelled sheep platelets was dose-dependent.4 The adenosine diphosphate (ADP) antagonist, 2-methylthio-AMP, and the cyclo-oxygenase inhibitor, aspirin, abolished PGAP-induced second phase aggregation and release in human platelets but did not affect the first, reversible, phase of aggregation. Both the first and second phases of PGAP-induced aggregation were abolished by chlorpromazine, by the phospholipase A(2) inhibitor, mepacrine, and by nmolar concentrations of prostaglandin E(1) (PGE(1)); these agents abolished the second, but not the first phase of ADP-induced aggregation.5 The related phospholipids, lecithin, lysolecithin and phosphatidic acid, at <100 muM, neither induced aggregation of human platelets in platelet-rich plasma, nor modified PGAP-induced aggregation; 1-palmityl lysophosphatidic acid elicited aggregation of human platelets at a threshold concentration of 100 muM.6 It is concluded that the acetal phosphatidic acids induce platelet aggregation per se by direct action at the platelet membrane, and that the acetal function is of primary importance in their potent platelet-stimulating activity. Moreover, as the acetal phosphatidic acids are the major components of the smooth muscle-contracting acidic phospholipid tissue extract ;Darmstoff' (Vogt, 1949), their potent platelet-aggregating properties may be of physiological or pathological significance.

Adenosine Diphosphate↗

Effects of vinblastine on malondialdehyde formation, serotonin release and aggregation in human platelets.

Effects of the microtubular agent vinblastine on human platelet malondialdehyde formation, [14C]serotonin release and aggregation were studied in suspensions of [14C]serotonin-labelled platelets. Vinblastine caused dose-dependent inhibition of malondialdehyde formation and aggregation in platelet suspensions stimulated with thrombin, ADP or palmitaldehyde acetal phosphatidic acid (PGAP). Malondialdehyde formation, aggregation and [14C]serotonin release caused by threshold doses of thrombin were reduced but not abolished by 100 muM vinblastine; 30-100 muM vinblastine abolished ADP- and PGAP-induced malondialdehyde formation and [14C]serotonin released and transformed ADP- and PGAP-induced irreversible aggregation to a diminished reversible response. Arachidonate conversion to malondialdehyde catalysed by human platelet microsomes was inhibited by vinblastine and the cyclooxygenase inhibitors indomethacin and aspirin, but not by salicylate. Vinblastine inhibited the microsome-catalysed formation of malondialdehyde from prostaglandin H2. It is concluded that vinblastine inhibits the thromboxane pathway of arachidonate metabolism in stimulated platelets, consequently inhibiting release and aggregation, and that this effect of vinblastine may be, at least in part, independent of its antimicrotubular actions.

Adenosine Diphosphate↗