Plasma exudation and asthma
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Abe K, Watanabe N, Kumagai N, Mouri T, Seki T, Yoshinaga K (1967) Circulating plasma kinin in patients with bronchial asthma. Experientia 23:626–627
Aitken ML, Verdugo P (1986) Donnan mechanism of mucus hydration: effect of soluble proteins. Am Rev Respir Dis 133:A294
Akcasu A (1959) The physiological and pharmacological characteristics of the tracheal muscle. Arch Int Pharmacodyn 122:201–207
Anderson WH (1985) Biochemical mediators: release, chemistry, and function. In: Weiss EB, Segal MS, Stein M (eds) Bronchial Asthma. 2nd ed. Little, Brown, Boston, pp 57–87
Andersson TO, Riff LJM, Jackson GG (1962) Immunoelectrophoresis of nasal secretions collected during a common cold: observations which suggest a mechanism of seroimmunity in viral respiratory infections. J Immunol 89:691–697
Aschheim E, Zweifach BW (1962) Quantitative studies of protein and water shifts during inflammation. Am J Physiol 202:554–558
Baile EM, Dahlby RW, Wiggs BR, Paré PD (1985) Role of tracheal and bronchial circulation in respiratory heat exchange. J Appl Physiol 58:217–222
Baumgarten A, Melrose GJH, Vagg WJ (1970) Interactions between histamine and bradykinin assessed by continuous recording of increased vascular permeability. J Physiol 208:669–675
Baumgarten CR, Togias AG, Naclerio RM, Lichtenstein LM, Norman PS, Proud D (1985) Influx of kininogens into nasal secretions after antigen challenge of allergic individuals. J Clin Invest 76:191–197
Becker CG, Nachman RL (1973) Contractile proteins of endothelial cells, platelets and smooth muscle. Am J Pathol 71:1–22
Björk J, Hugli TE, Smedegård G (1985) Microvascular effects of anaphylatoxins C3a and C5a. J Immunol 134:1115–1119
Bonomo L, D’Addabbo A (1964)131I Albumin turnover and loss of protein into the sputum in chronic bronchitis. Clin Chim Acta 10:214–222
Bortkiewicz J (1983) Arginine esterase activity of the plasma in different types of bronchial asthma. Arch Immunol Ther Exp 31:71–73
Boucher RC, Bromberg PA, Gatzy JT (1980) Airway mucosal permeability. In: Hargreave F (ed) Airway Reactivity. Astra Canada, Mississauga, pp 40–48
Brogan TD, Ryley HC, Neale L, Yassa J (1975) Soluble proteins of bronchopulmonary secretions from patients with cystic fibrosis, asthma, and bronchitis. Thorax 30:72–79
Bult H, Herman AG (1985) Vascular responses and their suppression: the role of endothelium. In: Bonta IL, Bray MA, Parnham MJ (eds) The Pharmacology of Inflammation. Handbook of Inflammation 5. Elsevier, Amsterdam, pp 83–105
Burke JF, Miles AA (1958) The sequence of vascular events in early infective inflammation. J Pathol Bacteriol 76:1–19
Burnett D, Stockley RA (1981) Serum and sputum α2 macroglobulin in patients with chronic obstructive airways disease. Thorax 36:512–516
Chambers R, Zweifach BW (1947) Intercellular cement and capillary permeability. Physiol Rev 27:436–463
Cohnheim J (1882) Vorlesungen uber Allgemeine Pathologie I. August Hirschwald, Berlin, pp 232–367
Cole P (1982) Modification of inspired air. In: Proctor DF, Andersen I (eds) The Nose. Elsevier, Amsterdam, pp 351–376
Coleridge HM, Coleridge JCG (1977) Afferent vagal C-fibres in the dog lung. Their discharge during spontaneous breathing and their stimulation by alloxan and pulmonary congestion. In: Paintal AS, Gill-Kumar P (eds) Krogh Centenary Symposium of Respiratory Adaptions, Capillary Exchange and Reflex Mechanisms. University of Delhi, Delhi, pp 369–406
Cotran RS (1967) Studies on inflammation. Ultrastructure of the prolonged vascular response induced byClostridium oedematiens toxin. Lab Invest 17:39–60
Cottrel TS, Levine OR, Senoir RM, Wiener J, Spiro D, Fishman AP (1967) Electron microscopic alterations at the alveolar level in pulmonary edema. Circ Res 21:783–798
Craig JP, Miles AA (1961) Some properties of the iota-toxin of clostridium welchii including its action on capillary permeability. J Pathol Bacteriol 81:481–493
Cutz E, Levison H, Cooper DM (1978) Ultrastructure of airways in children with asthma. Histopathology 2:407–421
Daly I de B, Hebb C (1966) Pulmonary and Bronchial Vascular Systems. Edward Arnold, London, pp 42–88
Dixon FJ, Warren S (1950) Antigen tracer studies and histologic observations in anaphylactic shock in the guinea-pig. II Am J Med Sci 219:414–421
Dolovich J, Back N, Arbesman CE (1970) Kinin-like activity in nasal secretions of allergic patients. Int Arch Allergy Appl Immunol 38:337–344
Don Barton A, Lourenço RV (1973) Bronchial secretions and mucociliary clearance. Arch Intern Med 131:140–144
Dulfano MJ, Ishikawa S (1985) Sputum in bronchial asthma. In: Weiss EB, Segal MS, Stein M (eds) Bronchial Asthma, 2nd ed. Little, Brown, Boston, pp 548–561
Dunnill MS (1960) The pathology of asthma with special reference to changes in the bronchial mucosa. J Clin Pathol 13:27–33
Dunnill MS (1978) The pathology of asthma. In: Middleton E, Reed CE, Ellis EF (eds) Allergy Principles and Practice II. CV Mosby, St. Louis, pp 678–686
Dunnill MS, Massarella GR, Andersson JA (1969) A comparison of the quantitative anatomy of the bronchi in normal subjects, in status asthmaticus, in chronic bronchitis, and in emphysema. Thorax 24:176–179
Elwood RK, Kennedy S, Belzberg A, Hogg JC, Paré PD (1983) Respiratory mucosal permeability in asthma. Am Rev Respir Dis 128:523–527
Erjefält I, Persson CGA (1982) Effects of adrenaline and terbutaline on mediator-increased vascular permeability in the cat trachea. Br J Pharmacol 77:399P
Erjefält I, Persson CGA (1986) Anti-asthma drugs attenuate inflammatory leakage of plasma into airway lumen. Acta Physiol Scand 128:653–654
Fabbi LM, Boschetto P, Zocca E, Milani G, Pivirotto F, Plebani M, Burlina A, Licata B, Mapp C (1987) Bronchoalveolar neutrophilia during TDI-induced late asthmatic reactions. Am Rev Respir Dis (in press)
Florey HW (1970) General Pathology, 4th ed. Lloyd-Luke, London
Florey H, Carleton HM, Wells AQ (1932) Mucus secretion in the trachea. Br J Exp Pathol 13:269–284
Gerberick GF, Jaffe HA, Willoughby JB, Willoughby WF (1986) Relationships between pulmonary inflammation, plasma transudation, and oxygen metabolic secretion by alveolar macrophages. J Immunol 137:114–121
Gerdin B, Saldeen T (1978) Effect of fibrin degradation products on microvascular permeability. Thrombos Res 13:995–1006
Gleich GG (1986) The role of the eosinophilic leukocyte in bronchial asthma. Clin Respir Physiol 22:(suppl 7)62–69
Grant L (1973) The sticking and emigration of white blood cells in inflammation. In: Zweifach BW, Grant L, McCluskey RT (eds) The Inflammatory Process, 2nd ed. Academic Press, New York, pp 205–250
Greaves M, Shuster S (1967) Responses of skin blood vessels to bradykinin, histamine and 5-hydroxytryptamine. J Physiol 193:255–267
Guirgis HA, Townley RG (1973) Biochemical study on sputum in asthma and emphysema. J Allergy Clin Immunol 51:86
Harkavy J (1930) Spasm-producing substance in the sputum of patients with bronchial asthma. Arch Intern Med 45:641–646
Heilpern S, Rebuck AS (1972) Effect of disodium cromoglycate (Intal) on sputum protein composition. Thorax 27:726–728
Herxheimer H, Stresemann E (1961) The effect of bradykinin aerosol in guinea-pigs and in man. J Physiol 158:38–39
Hilding AC (1943) The relation of ciliary insufficiency to death from asthma and other respiratory diseases. Ann Otol Rhinol Laryng 52:5–19
Holter JF, Weiland JE, Pacht ER, Gadek JE, Davis WB (1986) Protein permeability in the adult respiratory distress syndrome. Loss of size selectivity of the alveolar epithelium. J Clin Invest 78:1513–1522
Houston JC, De Navasquez S, Trounce JR (1953) A clinical and pathological study of fatal cases of status asthmaticus. Thorax 8:207–213
Hultström D, Svensjö E (1980) Intravital and electron microscopic study of bradykinininduced vascular permeability changes using FITC-dextran as a tracer. J Pathol 129:125–133
Hurley JV (1982) Types of pulmonary microvascular injury. In: Malik AB, Staub NC (eds) Lung microvascular injury. Ann NY Acad Sci 384:269-286
Hurley JV (1983) Acute Inflammation, 2nd ed. Churchill Livingstone, Edinburgh
Hutt G, Wick H (1956) Bronchial-lumen und Atemwiderstand. Z Aerosol Forsch Ther 5:131–140
Ishii M, Matsumoto N, Fuyuki T, Hida W, Ichinose M, Inoue H, Takishima T (1985) Effects of hemodynamic edema formation on peripheral vs. central airway mechanics. J Appl Physiol 59:1578–1584
Jarnum S (1963) Protein-Losing Gastroenteropathy. Blackwell, Oxford, pp 1–232
Kennedy SM, Elwood RK, Wiggs BJR, Paré PD, Hogg JC (1984) Increased airway mucosal permeability of smokers. Relationship to airway reactivity. Am Rev Respir Dis 129:143–148
Kröll F, Karlsson J-A, Persson CGA (1987) Bronchial circulation perfused via the pulmonary artery in guinea-pig isolated lungs. Acta Physiol Scand 129:437–440
Laitinen LA, Laitinen A (1987) Is asthma also a vascular disease? Am Rev Respir Dis 135:A474
Laitinen LA, Laitinen A, Widdicombe JG (1987) Effects of inflammatory and other mediators on airway vascular beds. Am Rev Respir Dis June Suppl
Laitinen LA, Robinson NP, Laitinen A, Widdicombe JG (1986) Relationship between tracheal mucosal thickness and vascular resistance in dogs. J Appl Physiol 61:2186–2193
Leme GJ, Wilhelm DL (1975) The effects of adrenalectomy and corticosterone on vascular permeability responses in the skin of the rat. Br J Exp Pathol 56:402–407
Lam S, Leriche JC, Kijek K, Phillips RT (1985) Effect of bronchial lavage volume on cellular and protein recovery. Chest 88:856–859
List SJ, Findlay BP, Forstner GG, Forstner JF (1978) Enhancement of the viscosity of mucin by serum albumin. Biochem J 175:565–571
Malik AB, Selig WM, Burhop KE (1985) Cellular and humoral mediators of pulmonary edema. Lung 163:193–219
McLaughlin RF (1983) Bronchial artery distribution in various mammals and in humans. Am Rev Respir Dis 128:S57–58
Mellander S (1968) Contribution of small vessel tone to the regulation of blood volume and formation of edema. Proc R Soc Med 61:55–61
Mendes E, Strauss A, Ferri RG, Cintra ABU (1963) Immunochemical studies of the asthmatic sputum. Acta Allergol 18:17–25
Menkin V (1940) Effect of adrenal cortex extract on capillary permeability. Am J Physiol 129:691–697
Messer JW, Peters GA, Bennet WA (1960) Causes of death and pathologic findings in 304 cases of bronchial asthma. Dis Chest 38:616–624
Michel O, Sergysels R, Duchateau J (1986) Complement activation in asthma evaluated by the C3d/C3 index. Ann Allergy 57:405–408
Miles AA (1964) Large molecular substances as mediators of the inflammatory reaction. Ann NY Acad Sci 116:855–890
Miles AA, Wilhelm DL (1955) Enzyme-like globulins from serum reproducing the vascular phenomena of inflammation. Br J Exp Pathol 36:71–81
Miles AA, Wilhelm DL (1960) The activation of endogenous substances inducing pathological increases of capillary permeability. In: Stoner HB, Threlfall CJ (eds) The Biochemical Response to Injury. Blackwell, Oxford, pp 51–83
Miller WS (1947) The Lung. Charles C Thomas, Springfield, pp 74–88
Moore WF (1925) Ciliary inhibition or destruction in tracheobronchial asthma. Am J Med Sci 169:799–806
Moretti M, Giannico G, Marchioni CF, Bisetti A (1984) Effects of methylprednisolone on sputum biochemical components in asthmatic bronchitis. Eur J Respir Dis 65:365–370
Morrison HM, Afford SC, Stockley RA (1984) Inhibitory capacity of alpha1 antitrypsin in lung secretions: variability and the effect of drugs. Thorax 39:510–516
Movat HZ (1979) Kinins and the kinin system as inflammatory mediators. In: Houck JC (ed) Chemical Messengers of the Inflammatory Process. Handbook of Inflammation, 1. Elsevier, Amsterdam, pp 47–112
Mygind N, Wihl JÅ (1976) Concentrations of immunoglobulins in nasal secretion from children with recurrent infections in the upper airways. Acta Otolaryngol 82:216–218
Naclerio RM, Bartenfelder D, Proud D, Togias AG, Meyers DA, Kagey-Sobotka A, Norman PS, Lichtenstein LM (1985) Theophylline reduces the response to nasal challenge with antigen. Am J Med 79 (suppl 6A):43–47
Nadel JA, Holtzmann MJ (1984) Regulation of airway responsiveness and secretion: role of inflammation. In: Kay AB, Austen KF, Lichtenstein LM (eds) Asthma. Academic Press, London, pp 129–153
Nagata S, Glovsky MM, Adams JS, Kebo D, Alfaro C, Sharma O (1986) Anaphylatoxins C3a, C4a and C5a are produced by human alveolar macrophages in culture and are found in sputum of asthmatics. J Allergy Clin Immunol 77(1:2):126
Nelson RM, McIntyre BR, Egan EA (1978) Solute permeability of the alveolar epithelium in alloxan edema in dogs. J Appl Physiol 44:353–357
Nordin U (1977) The trachea and cuff-induced tracheal injury. Acta Laryngol 83 (suppl 345):1–71
Northover AM (1975) Action of histamine on endothelial cells of guinea-pig isolated hepatic portal vein and its modification by indomethacin or removal of calcium. Br J Exp Pathol 56:52–61
Oyvin IA, Gaponynk PY, Volodin VM, Oyvin VI, Tokaryev OY (1972) Mechanisms of blood vessel permeability derangement under the influence of permeability factors (histamine, serotonin, kinins) and inflammatory agents. Biochem Pharmacol 21:89–95
Parsons GH, Kramer GC, Link DP, Lantz BMT, Gunther RA, Green JF, Cross CE (1985) Studies of reactivity and distribution of bronchial blood flow in sheep. Chest 87:180S-182S
Pennington JE, Reynolds HY (1973) Concentrations of gentamicin and carbenicilin in bronchial secretions. J Infect Dis 128:63–68
Persson CGA (1987) Xanthines as airway antiinflammatory drugs. J Allergy Clin Immunol (submitted)
Persson CGA (1987) Bronchial microcirculation. In: Barnes PJ, Rodger IW, Thomson NC (eds) Asthma: Basic Mechanisms and Clinical Management. London: Academic Press
Persson CGA, Karlsson J-A (1987) In vitro response to bronchodilator drugs. In: Jenne J, Murphy T (eds) Drug Therapy for Asthma. Lung Biology in Health and Disease, Lenfant C (ed). Marcel Dekker, New York, pp 129–176
Persson CGA, Erjefält I (1986) Inflammatory leakage of macromolecules from the vascular compartment into the tracheal lumen. Acta Physiol Scand 126:615–616
Persson CGA, Erjefält I (1987) Non-neural and neural regulation of airway microvascular leakage of macromolecules. In: Kaliner MA, Barnes P (eds) Neural Regulation of the Airways in Health and Disease. Lung Biology in Health and Disease, Lenfant C (ed). Marcel Dekker, New York
Persson CGA, Erjefält I, Andersson P (1986) Leakage of macromolecules from guinea pig tracheobronchial microcirculation. Effects of allergen, leukotrienes, tachykinins, and antiasthma drugs. Acta Physiol Scand 127:95–106
Persson CGA, Erjefält I, Grega GJ, Svensjö E (1982) The role ofβ-receptor agonists in the inhibition of pulmonary edema. In: Malik AB, Staub NC (eds) Lung microvascular injury. Ann NY Acad Sci 384:544–557
Persson CGA, Erjefält I, Sundler F (1987) Airway microvascular and epithelial leakage of plasma induced by PAF-acether and capsaicin. Am Rev Respir Dis 135:A401
Persson CGA, Svensjö E (1985) Vascular responses and their suppression: drugs interfering with venular permeability. In: Bonta IL, Bray MA, Parnham MJ (eds) Handbook of Inflammation, Volume 5: The Pharmacology of Inflammation. Elsevier, Amsterdam, pp 61–81
Pietra GG, Szidon JP, Carpenter HA, Fishman AP (1974) Bronchial venular leakage during endotoxin shock. Am J Pathol 77:387–402
Pipkorn U, Proud D, Schleimer RP, Peters SP, Adkinson NF Jr, Kagey-Sobotka A, Norman PS, Lichtenstein LM, Naclerio RN (1986) Effect of systemic glucocorticoid treatment on human nasal mediator release after antigen challenge. J Allergy Clin Immunol 77 (suppl):180
Pirotzky R, Page C, Roubin R, Pfister A, Paul W, Bonnet J, Benviste J (1984) Paf-acether induced plasma exudation in rat skin is independent of platelets and neutrophils. Microcirc Endothelium Lymphatics 1:107–112
Proud D, Togias A, Nacleiro RM, Crush SA, Norman PS, Lichtenstein LM (1983) Kinins are generated in vivo following nasal airway challenge of allergic individuals with allergen. J Clin Invest 72:1678–1685
Rossen RD, Butler WT, Cate TR, Szwed CF, Couch RB (1965) Protein composition of nasal secretion during respiratory virus infection. Proc Soc Exp Biol Med 119:1169–1179
Ryley HC, Brogan TD (1968) Variation in the composition of sputum in chronic chest diseases. Br J Exp Pathol 49:625–633
Salter HH (1968) On Asthma: Its Pathology and Treatment, 2nd Ed. Churchill, London
Schneeberger EE, Hamelin M (1984) Interaction of serum proteins with lung endothelial glycocalyx: its effect on endothelial permeability. Am J Physiol 247:H206–217
Sellick H, Widdicombe JG (1969) The activity of lung irritatant receptors during pneumothorax, hypertonea and pulmonary vascular congestion. J Physiol 203:359–381
de Shazo RD, Levinson AJ, Dvorak HF, Davis RW (1979) The late phase skin reaction: evidence for activation of the coagulation system in an IgE-dependent reaction in man. J Immunol 122:692–698
Simani AS, Inoue S, Hogg JC (1974) Penetration of the respiratory epithelium of guinea-pigs following exposure to cigarette smoke. Lab Invest 31:75–80
Simonsson B, Skoogh BE, Bergh NP, Andersson R, Svedmyr N (1973) In vivo and in vitro effect of bradykinin on bronchial motor tone in normal subjects and patients with airways obstruction. Respiration 30:378–388
Simpson DL, Goodman M, Spector LS, Petty L (1978) Long term follow-up and bronchial reactivity testing in survivors of the adult respiratory distress syndrome. Am Rev Respir Dis 117:449–454
Sobin SS, Frasher WG, Tremer HM, Hadley GG (1963) The microcirculation of the tracheal mucosa. Angiology 14:165–170
Stockley RA, Mistry M, Bradwell AR, Burnett D (1979) A study of plasma proteins in the sol phase of sputum from patients with chronic bronchitis. Thorax 34:777–782
Svensjö E (1978) Bradykinin and prostaglandin E1, E2 and F2-induced macromolecular leakage in the hamster cheek pouch. Prostaglandins Med 1:397–410
Svensjö E, Joyner WL (1984) The effects of intermittent and continuous stimulation of microvessels in the cheek pouch of hamsters with histamine and bradykinin on the development of venular leaky sites. Microcirc Endothelium Lymphatics 1:381–396
Thomas G (1982) Mechanism of ionophore A23187 induction of plasma protein leakage and of its inhibition by indomethacin. Eur J Pharmacol 81:35–39
Thurlbeck WM, Hendersson JA, Fraser RG, Bates DV (1970) Chronic obstructive lung disease. A comparison between clinical roentgenologic, functional and morphologic criteria in chronic bronchitis, emphysema, asthma and bronchiectasis. Medicine 49:81–145
Wanner A (1985) Mucociliary function in bronchial asthma. In: Weiss EB, Segal MS, Stein M (eds) Bronchial Asthma, 2nd ed. Little, Brown, Boston, pp 270–279
Ward PA, Hugli TE, Chenoweth DE (1979) Complement and chemotaxis. In: Houck JC (ed) Chemical Messengers of the Inflammatory Process. Handbook of Inflammation, 1. Elsevier, Amsterdam, pp 153–178
Wedmore CV, Williams TJ (1981) Control of vascular permeability by polymorphonuclear leukocytes in inflammation. Nature 289:646–650
Wiggins J, Elliot JA, Stevenson RD, Stockley RA (1982) Effect of corticosteroids on sputum sol-phase protease inhibitors in chronic obstructive pulmonary disease. Thorax 37:652–656
Wiggins RC, Cochrane CG (1979) Hageman factor and the contact activation system. In: Houck JC (ed) Chemical Messengers of the Inflammatory Process. Handbook of Inflammation, 1. Elsevier, Amsterdam, pp 179–196
Wilhelm DL (1973) Chemical mediators. In: Zweifach BW, Grant L, McCluskey RT (eds) The Inflammatory Process, 2nd ed. Academic Press, New York, pp 251–302
Williams TJ (1985) Vascular responses and their suppression: vasodilation and edema. In: Bonta IL, Bray MA, Parnham MJ (eds) The Pharmacology of Inflammation. Handbook of Inflammation, 5. Elsevier, Amsterdam, pp 49–60
Willoughby DA, Giroud JP (1969) The role of polymorphonuclear leucocytes in acute inflammation in agranulocytic rats. J Pathol 98:53–60
Wilson GB, Fudenberg HH (1977) Ciliary dyskinesia factors in cystic fibrosis and asthma. Nature 266:463–464
Woodward DF, Weichman BM, Gill CA, Wasserman MA (1983) The effect of synthetic leukotrienes on tracheal microvascular permeability. Prostaglandins 25:131–142