Janu et al., Archives of Surgery, vol. 132, No. 1, 1997, pp. 89-93.* |
Baraniuk et al., “Bombesin Stimulates Human Nasal Mucous and Serous Cell Secretion In Vivo,” American Journal Of Physiology, vol. 262, pp. L48-L52 (1992). |
Baraniuk et al., “Gastrin Releasing Peptide (GRP) Binding Sites in Human Bronchi,” Neuropeptides, vol. 21, pp. 81-84 (1992). |
Chu et al., “Bombesin Improves Survival from Methotrexate-Induced Enterocolitis,” Annals of Surgery, vol. 220, No. 4, pp. 570-577 (1994). |
Debas et al., “Neuroendocrine Design of the Gut,” The American Journal Of Surgery, vol. 161, pp. 243-249 (1991). |
Rio et al., “Bombesin, Gastrin-Releasing Peptide, and Neuromedin C Modulate Murine Lymphocyte Proliferation Through Adherent Accessory Cells and Activate Protein Kinase C,” Peptides, vol. 15, No. 1, pp. 15-22 (1994). |
Evers et al., “Characterization of Functional Neurotensin Receptors on Human Lymphocytes,” Surgery, vol. 116, pp. 134-140 (1994). |
Geoghegan et al., “Clinical Uses of Gut Peptides,” Annals Of Surgery, vol. 225, No. 2, pp. 145-154 (1997). |
Haskel et al., “Elemental Diet-Induced Bacterial Translocation Can Be Hormonally Modulated,” Annals of Surgery, vol. 217, No. 6, pp. 634-643 (1993). |
Haskel et al., “The Modulatory Role Of Gut Hormones In Elemental Diet and Intravenous Total Parenteral Nutrition-Induced Bacterial Translocation In Rats,” Journal of Parenteral And Enteral Nutrition, vol. 18, No. 2, pp. 159-166 (1994). |
Haskel et al., “Bombesin Protects Against Bacterial Translocation Induced by Three Commercially Available Liquid Enteral Diets: A Prospective, Randomized, Multigroup Trial,” Critical Care Medicine, vol. 22, No. 1, pp. 108-113 (1994). |
Hauser-Kronberger et al., “Autonomic and Peptidergic Innervation of Human Nasal Mucosa,” Acta otolaryngol (Stockh), vol. 113, pp. 387-393 (1993). |
Jin et al., “Bombesin: An Activator Of Specific Aeromonas Antibody Secretion In Rat Intestine,” Digestive Diseases And Sciences, vol. 34, No. 11, pp. 1708-1712 (1989). |
Lieverse et al., “Significant Satiety Effect Of Bombesin In Lean But Not In Obese Subjects,” International Journal Of Obesity, vol. 18, pp. 579-583 (1994). |
Sean J. Mulvihill, “Gut Hormones,” Annals Of Surgery, vol. 225, No. 2, pp. 143-144 (1997). |
Muurahainen et al., “Intravenous Infusion of Bombesin Reduces Food Intake In Humans,” The American Journal Of Physiology, vol. 264, pp. R350-R354 (1993). |
C. A. Ottaway, “Neuroimmunomodulation in the Intestinal Mucosa,” Gastroenterology Clinics Of North America, vol. 20, No. 3, pp. 511-529 (1991). |
Pascual et al., “Functional Aspects of the Peptidergic Circuit in Mucosal Immunity,” Handbook Of Mucosal Immunology, pp. 203-216 (1994). |
Spindel et al., “Bombesin-Like Peptides: Of Ligands and Receptors,” Recent Progress In Hormone Research, vol. 48, pp. 365-391 (1993). |
Van Tol et al., “Intravenous Administration of Bombesin in Man Stimulates Natural Killer Cell Activity Against Tumor Cells,” Neuropeptides, vol. 18, pp. 15-21 (1991). |
Abraham et al., “Intranasal Immunization with Bacterial Polysaccharide Containing Liposomes Enhances Antigen-Specific Pulmonary Secretory Antibody Response,” Vaccine, vol. 10, pp. 461-468 (1992). |
Brandtzaeg, Handbook of Mucosal Immunology, ed. Ogra et al., Academic Press, San Diego, Chap. 21, pp. 251-262, (1994). |
Cebra et al., Handbook of Mucosal Immunology, ed. Ogra et al., Academic Press, San Diego, Chap. 13, pp. 151-158 (1994). |
Cerra, Perspect. Crit. Care, ed. Cerra, Quality Medical Publishing, Inc., St. Louis, vol. 1, pp. 1-30 (1988). |
Kilian et al., Handbook of Mucosal Immunology, ed. Ogra et al., Academic Press, San Diego, Chap. 11, pp. 127-137 (1994). |
Kiyono et al., Handbook of Mucosal Immunology, ed. Ogra et al., Academic Press, San Diego, Chap. 22, pp. 263-274 (1994). |
Lebman et al., Handbook of Mucosal Immunology, ed. Ogra et al., Academic Press, San Diego, Chap. 20, pp. 243-50 (1994). |
McGhee et al., “The Mucosal Immune System: from Fundamental Concepts to Vaccine Development,” Vaccine, vol. 10, pp. 75-88 (1992). |
Mestecky et al., Handbook of Mucosal Immunology, ed. Ogra et al., Academic Press, San Diego, Chap. 31, pp. 357-372 (1994). |
Phillips-Quagliata et al., Handbook of Mucosal Immunology, ed. Ogra et al., Academic Press, San Diego, Chap. 19, pp. 225-239 (1994). |
Svanborg, Handbook of Mucosal Immunology, ed. Ogra et al., Academic Press, San Diego, Chap. 6, pp. 71-78 (1994). |
Tomasi, Handbook of Mucosal Immunology, ed. Ogra et al., Academic Press, San Diego, Chap. 1, pp. 3-8 (1994). |
Alverdy et al., “The Effect of Glutamine-Enriched TPN on Gut Immune Cellularity,” J. Surg. Res., vol. 52, pp. 34-38 (1992). |
Alverdy et al., “Total Parenteral Nutrition Promotes Bacterial Translocation from the Gut,” Surgery, vol. 104, pp. 185-190 (1988). |
Baker et al., “Epidemiology of Trauma Deaths,” Am. J. Surg., vol. 140, pp. 144-150 (1980). |
Bone et al., “Sepsis Syndrome: a Valid Clinical Entity,” Crit. Care Med. vol. 17, pp. 389-393 (1989). |
Bone et al., “A Controlled Clinical Trial of High-Dose Methylprednisolone in the Treatment of Severe Sepsis and Septic Shock,” N. Eng. J. Med. 317:653-658 (1987). |
Brennan et al., “A Prospective Randomized Trial of Total Parenteral Nutrition after Major Pancreatic Resection for Malignancy,” Ann. Surg., vol. 220 pp. 436-444 (1994). |
Buchman et al., “Parenteral Nutrition Leads to a Decrease in Intestinal Mucosal Thickness and an Increase in Intestinal Permeability in Man,” Gastroenterology, vol. 104, p. A612 (1993). |
Deitch et al., “The Gut as a Portal of Entry for Bacteremia,” Ann. Surg., vol. 205, p. 681 (1987). |
Deitch et al., “Elemental Diet-Induced Immune Suppression Is Caused by Both Bacterial and Dietary Factors,” JPEN, vol. 17(4), pp. 332-336 (1993). |
Deitch, “Bacterial Translocation of the Gut Flora,” J. Trauma, vol. 30(12), pp. S184-S189 (1990). |
Deitch, “Intestinal Permeability Is Increased in Burn Patients Shortly after Injury,” Surgery, vol. 107, pp. 411-416 (1990). |
Flynn, “Bombesin-Like Peptides in the Regulation of Ingestive Behavior,” Ann. N.Y. Acad. Sci., vol. 739, pp. 120-134 (1994). |
Gawin et al., “Effects of Gastrin-Releasing Peptide and Analogues on Guinea Pig Nasal Mucosal Secretion,” Am. J. Physiol., vol. 264, pp. L345-L350 (1993). |
Gibbs et al., “The Actions of Bombesin-Like Peptides on Food Intake,” Ann. N.Y. Acad. Sci., vol. 547, pp. 210-216 (1998). |
Hilderbrand et al., “Human Gastrin-Releasing Peptide: Biological Potency in Humans,” Regulatory Neuropeptides, vol. 36, pp. 423-433 (1991). |
Hinshaw et al., “Effect of High-Dose Glucocorticoid Therapy on Mortality in Patients with Clinical Signs of Systemic Sepsis,” N. Eng. J. Med., vol. 317, pp. 659-665 (1987). |
Kreger et al., “Gram-Negative Bacteremia IV. Re-evaluation of Clinical Features and Treatment in 612 Patients,” Am. J. Med., vol. 68, p. 344 (1980). |
Kudsk et al., “Enteral Versus Parenteral Feeding,” Ann. Surg., vol. 215(5), pp. 503-513 (1992). |
Langkamp-Henken et al., “Increased Intestinal Permeability Following Blunt and Penetrating Trauma,” Crit. Care Med., vol. 23(4), pp. 660-664 (1995). |
Lee et al., “Role of Neuropeptides in the Regulation of Feeding Behavior: a Review of Cholecystokinin, Bombesin, Neuropeptide Y, and Galanin,” Neurosci. Biobehav. Rev., vol. 18, pp. 313-323 (1994). |
Li et al., “Effects of Parenteral and Enteral Nutrition on Gut-Associated Lymphoid Tissue,” J. Trauma, vol. 39(1), pp. 44-52 (1995). |
Mahaffey et al., “Parenteral Nutrition in the Swiss Mouse,” Fed. Proceed. Abs., vol. 43, p. 848 (1984). |
Mestecky, “The Common Mucosal Immune System and Current Strategies for Induction of Immune Responses in External Secretions,” J. Clin. Immunol., vol. 7, pp. 265-276 (1987). |
Moore et al., “Early Enteral Feeding, Compared with Parenteral, Reduces Postoperative Septic Complications,” Ann. Surg., vol. 216, pp. 172-183 (1992). |
Moore et al., “Benefits of Immediate Jejunostomy Feeding after Major Abdominal Trauma-a Prospective, Randomized Study,” J. Trauma, vol. 26, pp. 874-881 (1986). |
Moore et al., “TEN Versus TPN following Major Abdominal Trauma-Reduced Septic Morbidity,” J. Trauma, vol. 29, pp. 916-923 (1989). |
Reed et al., “A Simple Method of Estimating Fifty Per Cent Endpoints,” Am. J. Hyg., vol. 27, pp. 493-497 (1936). |
Renegar et al., “Passive Transfer of Local Immunity to Influenza Virus Infection by IgA Antibody,” J. Immunol., vol. 146, pp. 1972-1978 (1991). |
Renegar et al., “Immunoglobulin A Mediation of Murine Nasal Anti-Influenza Virus Immunity,” J. Virol., vol. 65, pp. 2146-2148 (1991). |
Robinson et al., “Effects of Hemorrhage and Resuscitation on Bacterial Antigen-Specific Pulmonary Plasma Cell Function,” Crit. Care Med., vol. 19(10), pp. 1285-1293 (1991). |
Salmi et al., “Regulation of Lymphocyte Traffic to Mucosa-Associated Lymphatic Tissues,” Gastro. Clin. North Am., vol. 20, pp. 495-505 (1991). |
Sitren, “Total Parenteral Nutrition in the Mouse: Development of a Technique,” JPEN, vol. 7, pp. 582-586 (1983). |
Spindel, “Mammalian Bombesin-Like Peptides,” Trends Neurosci., vol. 9, pp. 130-133 (1986). |
Tanaka et al., “Morphological Alteration of Gut-Associated Lymphoid Tissue after Long-Term Total Parenteral Nutrition in Rats,” Cell Tissue Res., vol. 266, pp. 29-36 (1991). |
Tomasi, “Mechanisms of Immune Regulation at Mucosal Surfaces,” Rev. Infect. Dives., vol. 5, pp. S784-S792 (1993). |
Van Tol et al., “Neuroenteric Peptides Affect Natural Killer Activity by Intestinal Lamina Propria Mononuclear Cells,” J. Neuroimmunol., vol. 42, pp. 139-145 (1993). |
Ziegler et al., “Increased Intestinal Permeability Associated with Infection in Burn Patients,” Arch. Surg., vol. 123, pp. 1313-1319 (1988). |
Ziegler et al., “Treatment of Gram-Negative Bacteremia and Septic Shock with HA-1A Human Monoclonal Antibody against Endotoxin,” N. Eng. J. Med., vol. 324, pp. 429-436 (1991). |