Page 824 - Williams Hematology ( PDFDrive )
P. 824

798  Part VI:  The Erythrocyte           Chapter 50:  Methemoglobinemia and Other Dyshemoglobinemias                  799




                    93.  Lemberg R, Legge, JW: Hematin Compounds and Bile Pigments. Inter-science Publish-    131. Buckley NA, Juurlink DN, Isbister G, et al: Hyperbaric oxygen for carbon monoxide
                     ers, New York, 1949.                                  poisoning. Cochrane Database Syst Rev (4):CD002041, 2011.
                    94.  Harrop GJ, Waterfield RL: Sulphemoglobinemia. JAMA 95:647, 1930.    132. Elkharrat D, Raphael JC, Korach JM, et al: Acute carbon monoxide intoxication and
                    95.  Nichol A, Hendry I, Movell DB, et al: Mechanism of formation of sulfhemoglobin. Bio-  hyperbaric oxygen in pregnancy. Intensive Care Med 17:289, 1991.
                     chim Biophys Acta 156:97, 1968.                      133. Koren G, Shara, T, Pastuszak A, et al: A multicenter, prospective study of fetal outcome
                    96.  Berzofsky JA, Peisach J, Horecker BL: Sulfheme proteins. IV. The stoichiometry of sul-  following accidental carbon monoxide poisoning in pregnancy. Reprod Toxicol 5:397,
                     fur incorporation and the isolation of sulfhemin, the prosthetic group of sulfmyoglo-  1991.
                     bin. J Biol Chem 247(12):3783, 1972.                 134. Ignarro LJ: Nitric oxide. A novel signal transduction mechanism for transcellular com-
                    97.  Berzofsky JA, Peisach J, Blumberg WE: Sulfheme proteins. II. The reversible oxygena-  munication. Hypertension 16(5):477, 1990.
                     tion of ferrous sulfmyoglobin. J Biol Chem 246: 7366–7372, 1971.    135. Liu X, Miller MJ, Joshi MS, et al: Diffusion-limited reaction of free nitric oxide with
                    98.  Park CM, Nagel RL: Sulfhemoglobinemia. Clinical and molecular aspects. N Engl J Med   erythrocytes. J. Biol Chem 273:18709, 1998.
                     310(24):1579, 1984.                                  136. Azarov I, Huang KT, Basu S, Gladwin MT, et al: Nitric oxide scavenging by red blood
                    99.  Discombe G: Sulphaemoglobinaemia and glutathione. Lancet 2:371, 1960.  cells as a function of hematocrit and oxygenation. J Biol Chem 280:39024, 2005.
                    100. McCutcheon A: Sulphaemoglobinaemia and glutathione. Lancet 2:290, 1960.    137. Kim-Shapiro DB, Schechter AN, Gladwin MT: Unraveling the reactions of nitric oxide,
                    101. Paniker NV, Beutler E: The effect of methylene blue and diaminodiphenysulfone on red   nitrite, and hemoglobin in physiology and therapeutics. Arterioscler Thromb Vasc Biol
                     cell reduced glutathione synthesis. J Lab Clin Med 80(4):481, 1972.  26:697, 2006.
                    102. Smith JE, Mahaffey E, Lee M: Effect of methylene blue on glutamate and reduced gluta-    138. Stamler JS, Jia L, Eu JP, et al: Blood flow regulation by S-nitrosohemoglobin in the phys-
                     thione of rabbit erythrocytes. Biochem J 168(3):587, 1977.  iological oxygen gradient. Science 276:2034, 1997.
                    103. Pandey J, Chellani H, Garg M, et al: Congenital sulfhemoglobin and transient methe-    139. Stamler JS, Singel DJ, Piantadosi CA: SNO-hemoglobin and hypoxic vasodilation. Nat
                     moglobinemia secondary to diarrhoea. Indian J Pathol Microbiol 39(3):217, 1996.  Med 14(10):1009, 2008.
                    104. Stamatoyannopoulos G, Parer JT, Finch CA: Physiologic implications of a hemoglo-    140. Vitturi DA, Teng X, Toledo JC, et al: Regulation of nitrite transport in red blood cells by
                     bin with decreased oxygen affinity (hemoglobin Seattle). N Engl J Med 281(17):916,   hemoglobin oxygen fractional saturation. Am J Physiol Heart Circ Physiol 296(5):H1398,
                     1969.                                                 2009.
                    105. Lichtman MA, Murphy MS, Adamson JW: Detection of mutant hemoglobins with     141. Gladwin MT, Kim-Shapiro DB. The functional nitrite reductase activity of the heme-
                     altered affinity for oxygen. A simplified technique. Ann Intern Med 84(5):517, 1976.  globins. Blood 112(7):2636, 2008.
                    106. Agarwal N, Mojica-Henshaw MP, Simmons ED, et al: Familial polycythemia caused by     142. Gladwin MT, Schechter AN, Kim-Shapiro DB, et al: The emerging biology of the nitrite
                     a novel mutation in the beta globin gene: Essential role of P50 in evaluation of familial   anion. Nat Chem Biol 1(6):308, 2005.
                     polycythemia. Int J Med Sci 4(4):232, 2007.          143. Basu S, Grubina R, Huang J, et al: Catalytic generation of N O  by the concerted nitrite
                                                                                                              3
                                                                                                            2
                    107. Vreman HJ, Mahoney JJ, Stevenson, DK. Carbon monoxide and carboxyhemoglobin.   reductase and anhydrase activity of hemoglobin. Nat Chem Biol 3(12):785, 2007.
                     Adv Pediatr 42:303–325, 1995.                        144. Lauer T, Preik M, Rassaf T, et al: Plasma nitrite rather than nitrate reflects regional
                    108. Hampson NB, Weaver LK: Carbon monoxide poisoning: A new incidence for an old   endothelial nitric oxide synthase activity but lacks intrinsic vasodilator action. Proc
                     disease. Undersea Hyperb Med 34(3):163, 2007.         Natl Acad Sci U S A 98(22):12814, 2001.
                    109. Weaver LK: Carbon monoxide poisoning. Crit Care Clin 15:297, 1999.    145. Shiva S, Wang X, Ringwood LA, et al: Ceruloplasmin is a NO oxidase and nitrite syn-
                    110. Centers for Disease Control and Prevention: Epidemiologic assessment of the impact of   thase that determines endocrine NO homeostasis. Nat Chem Biol 2(9):486, 2006.
                     four hurricanes—Florida, 2004. MMWR Morb Mortal Wkly Rep 54(28):693, 2005.    146. Liu C, Zhao W, Christ GJ, et al: Nitric oxide scavenging by red cell microparticles. Free
                    111. Ernst A, Zibrak JD: Carbon monoxide poisoning. N Engl J Med 339:1603, 1998.  Radic Biol Med 65:1164, 2013.
                    112. Chen BC, Shawn LK, Connors NJ, et al: Carbon monoxide exposures in New York City     147. Reynolds JD, Bennett KM, Cina AJ, et al: S-nitrosylation therapy to improve oxygen
                     following hurricane Sandy in 2012. Clin Toxicol (Phila) 51(9):879, 2013.  delivery of banked blood. Proc Natl Acad Sci U S A 110(28):11529, 2013.
                    113. Centers for Disease Control and Prevention: Carbon monoxide exposures after hurri-    148. Kanias T, Gladwin MT: Nitric oxide, hemolysis, and the red blood cell storage lesion:
                     cane Ike—Texas, September 2008. MMWR Morb Mortal Wkly Rep 58(31):845, 2009.  Interactions between transfusion, donor, and recipient.  Transfusion 52(7):1388,
                    114. Centers for Disease Control and Prevention: Unintentional non–fire-related carbon   2012.
                     monoxide exposures—United States, 2001–2003.  MMWR Morb Mortal Wkly Rep     149. Kahn MJ, Maley JH, Lasker GF, et al: Updated role of nitric oxide in disorders of ery-
                     54(2):36, 2005.                                       throcyte function. Cardiovasc Hematol Disord Drug Targets 13(1):83, 2013.
                    115. Mott JA, Wolfe MI, Alverson CJ, et al: National vehicle emissions policies and practices     150. Badesch DB, Abman SH, Ahearn GS, et al: Medical therapy for pulmonary arterial
                     and declining US carbon monoxide-related mortality. JAMA 288:988, 2002.  hypertension: ACCP evidence-based clinical practice guidelines.  Chest 126(1 Sup-
                    116. Harper A, Croft-Baker J: Carbon monoxide poisoning: Undetected by both patients   pl):35S, 2004.
                     and their doctors. Age Ageing 33(2):105, 2004.       151. Martinez-Ruiz R, Montero-Huerta P, Hromi J, et al: Inhaled nitric oxide improves sur-
                    117. U.S. Environmental Protection Agency: Emission facts: Idling vehicle Emissions. Publi-  vival rates during hypoxia in a sickle cell (SAD) mouse model. Anesthesiology 94:1113,
                     cation EPA420-F-98-014. USEPA, Washington, DC, 1998. Available online at: http://  2001.
                     www.epa.gov/oms/consumer/f98014.pdf                  152. Weiner DL, Hibberd PL, Betit P, et al: Preliminary assessment of inhaled nitric oxide for
                    118. Stewart RD, Fisher TN, Hosko MJ, et al: Carboxyhemoglobin elevation after exposure   acute vaso-occlusive crisis in pediatric patients with sickle cell disease. JAMA 289:1136,
                     to dichloromethane. Science 176:295, 1972.            2003.
                    119. Antonini E, Brunori M:  Hemoglobin and myoglobin in their reactions with ligands.      153. Sullivan KJ, Goodwin SR, Evangelist J, et al: Nitric oxide successfully used to treat acute
                     Amsterdam: North-Holland, 1971.                       chest syndrome of sickle cell disease in a young adolescent. Crit Care Med 27:2563,
                    120. Sjostrand T: Endogenous formation of carbon monoxide in man. Nature 164(4170):580,   1999.
                     1949.                                                154. McMahon TJ, Doctor A: Extrapulmonary effects of inhaled nitric oxide: Role of revers-
                    121. Giacometti GM, Brunori M, Antonini E, et al: The reaction of hemoglobin Zurich with   ible S-nitrosylation of erythrocytic hemoglobin. Proc Am Thorac Soc 3(2):153, 2006.
                     oxygen and carbon monoxide. J Biol Chem 255(13):6160, 1980.    155. Young JD, Dyar O, Xiong L, et al: Methaemoglobin production in normal adults inhal-
                    122. Balster RL, Ekelund LG, Grover RF: Evaluation of subpopulations potentially at risk   ing low concentrations of nitric oxide. Intensive Care Med 20:581, 1994.
                     to carbon monoxide exposure, in  Air Quality Criteria for Carbon Monoxide edited     156. Loh E, Stamler JS, Hare JM, et al: Cardiovascular effects of inhaled nitric oxide in
                     by the U.S. EPA, p 12-1. EPA No. 600/8-90/045F. U.S. Environmental Protection   patients with left ventricular dysfunction. Circulation 90:2780, 1994.
                     Agency, Environmental Criteria and Assessment Office, Research Triangle Park, NC,      157. Lundin S, Mang H, Smithies M, et al: Inhalation of nitric oxide in acute lung injury:
                     1991.                                                 Results of a European multicentre study. The European Study Group of Inhaled Nitric
                    123. Hampson NB, Dunford RG, Kramer CC, et al: Selection criteria utilized for hyperbaric   Oxide. Intensive Care Med 25:911, 1999.
                     oxygen treatment of carbon monoxide poisoning. J Emerg Med 13:227, 1995.    158. Christenson J, Lavoie A, O’Connor M, et al: The incidence and pathogenesis of cardio-
                    124. Benesch RE, Maeda N, Benesch R: 2,3-Diphosphoglycerate and the relative affinity   pulmonary deterioration after abrupt withdrawal of inhaled nitric oxide. Am J Respir
                     of adult and fetal hemoglobin for oxygen and carbon dioxide. Biochim Biophys Acta   Crit Care Med 161:1443, 2000.
                     257:178, 1972.                                       159. Moya MP, Gow AJ, McMahon TJ, et al: S-nitrosothiol repletion by an inhaled gas regu-
                    125. Engel RR, Rodkey FL, O’Neal JD, et al: Relative affinity of human fetal hemoglobin for   lates pulmonary function. Proc Natl Acad Sci U S A 98:5792, 2001.
                     CO and O . Blood 33:37, 1969.                        160. Moya MP, Gow AJ, Califf RM, et al: Inhaled ethyl nitrite gas for persistent pulmonary
                          2
                    126. Suner S, Partridge R, Sucov A, et al: Non-invasive screening for carbon monoxide tox-  hypertension of the newborn. Lancet 360:141, 2002.
                     icity in the emergency department is valuable. Ann Emerg Med 49(5):719, 2007.    161. Gulati A, Sen AP, Sharma AC, et al: Role of ET and NO in resuscitative effect of diaspi-
                    127. Weaver LK: Clinical practice. Carbon monoxide poisoning. N Engl J Med 360(12):1217,   rin cross-linked hemoglobin after hemorrhage in rat. Am J Physiol 273:H827, 1997.
                     2009.                                                162. Gibson JB, Maxwell RA, Schweitzer JB, et al: Resuscitation from severe hemorrhagic
                    128. Jasper BW, Hopkins RO, Duker HV, et al: Affective outcome following carbon monox-  shock after traumatic brain injury using saline, shed blood, or a blood substitute. Shock
                     ide poisoning: A prospective longitudinal study. Cogn Behav Neurol 18(2):127, 2005.  17:234, 2002.
                    129. Gemelli F, Cattani R: Carbon monoxide poisoning in childhood. Br Med J 291:1197,     163. Paris PM, Kaplan RM, Stewart RD, et al: Methemoglobin levels following sublingual
                     1985.                                                 nitroglycerin in human volunteers. Ann Emerg Med 15(2):171, 1986.
                    130. Lacey DJ: Neurologic sequelae of acute carbon monoxide intoxication. Am J Dis Child     164. Gavish D, Knobler H, Gottehrer N, et al: Methemoglobinemia, muscle damage and
                     135(2):145, 1981.                                     renal failure complicating phenazopyridine overdose. Isr J Med Sci 22(1):45, 1986.






          Kaushansky_chapter 50_p0789-0800.indd   799                                                                   9/17/15   2:39 PM
   819   820   821   822   823   824   825   826   827   828   829