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Contents

   



(Top)
 


1 Medicine  



1.1  Types  





1.2  Exudates vs. transudates  







2 Plant exudates  





3 See also  





4 References  





5 External links  














Exudate






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From Wikipedia, the free encyclopedia
 


Exudate from a wound on a human finger
Tree resin is a type of plant exudate.

Anexudate is a fluid released by an organism through pores or a wound, a process known as exudingorexudation.[1] Exudate is derived from exude 'to ooze'[2] from Latin exsūdāre 'to (ooze out) sweat' (ex- 'out' and sūdāre 'to sweat').[3]

Medicine[edit]

An exudate is any fluid that filters from the circulatory system into lesions or areas of inflammation. It can be a pus-like or clear fluid. When an injury occurs, leaving skin exposed, it leaks out of the blood vessels and into nearby tissues. The fluid is composed of serum, fibrin, and leukocytes. Exudate may ooze from cuts or from areas of infection or inflammation.[4]

Types[edit]

Transudate vs. exudate
  • talk
  • edit
  • Transudate Exudate
    Main causes hydrostatic
    pressure
    ,
    colloid
    osmotic pressure
    Inflammation-Increased
    vascular permeability
    Appearance Clear[5] Cloudy[5]
    Specific gravity < 1.012 > 1.020
    Protein content < 2.5 g/dL > 2.9 g/dL[6]
    fluid protein/
    serum protein
    < 0.5 > 0.5[7]
    SAAG =
    Serum [albumin] - Effusion [albumin]
    > 1.2 g/dL < 1.2 g/dL[8]
    fluid LDH
    upper limit for serum
    < 0.6 or < 23 > 0.6[6] or > 23[7]
    Cholesterol content < 45 mg/dL >45
    RadiodensityonCT scan 2 to 15 HU[9] 4 to 33 HU[9]

    Types of exudates: serous, serosanguineous, sanguineous, hemorrhaging and purulent drainage.

    Exudates vs. transudates[edit]

    There is an important distinction between transudates and exudates. Transudates are caused by disturbances of hydrostaticorcolloid osmotic pressure, not by inflammation. They have a low protein content in comparison to exudates. Medical distinction between transudates and exudates is through the measurement of the specific gravity of extracted fluid. Specific gravity is used to measure the protein content of the fluid. The higher the specific gravity, the greater the likelihood of capillary permeability changes in relation to body cavities. For example, the specific gravity of the transudate is usually less than 1.012 and a protein content of less than 2 g/100 mL (2 g%). Rivalta test may be used to differentiate an exudate from a transudate. It is not clear if there is a distinction in the difference of transudates and exudates in plants.

    Plant exudates[edit]

    Plant exudates include saps, gums, latex, and resin. Sometimes nectar is considered an exudate.[12] Plant seeds exudate a variety of molecules into the spermosphere,[13] and roots exudate into the rhizosphere; these exudates include acids, sugars, polysaccharides and ectoenzymes, and collectively account for 40% of root carbon.[14] Exudation of these compounds has various benefits to the plant and to the microorganisms of the rhizosphere.[15][16]

    See also[edit]

    References[edit]

    1. ^ "exudate". The Free Dictionary - Medical. Retrieved 5 August 2014.
  • ^ ""Exude" Merriam-Webster Online Dictionary". Merriam Webster. 2008. Retrieved 2008-07-04.
  • ^ Robert K. Barnhart, ed. (1988). Chambers Dictionary of Etymology. New York: Chambers Harrap Publishers. p. 363. ISBN 0-550-14230-4.
  • ^ "Exudate". MedlinePlus.
  • ^ a b The University of Utah • Spencer S. Eccles Health Sciences Library > WebPath images > "Inflammation".
  • ^ a b Heffner J, Brown L, Barbieri C (1997). "Diagnostic value of tests that discriminate between exudative and transudative pleural effusions. Primary Study Investigators". Chest. 111 (4): 970–80. doi:10.1378/chest.111.4.970. PMID 9106577.
  • ^ a b Light R, Macgregor M, Luchsinger P, Ball W (1972). "Pleural effusions: the diagnostic separation of transudates and exudates". Ann Intern Med. 77 (4): 507–13. doi:10.7326/0003-4819-77-4-507. PMID 4642731.
  • ^ Roth BJ, O'Meara TF, Gragun WH (1990). "The serum-effusion albumin gradient in the evaluation of pleural effusions". Chest. 98 (3): 546–9. doi:10.1378/chest.98.3.546. PMID 2152757.
  • ^ a b Cullu, Nesat; Kalemci, Serdar; Karakas, Omer; Eser, Irfan; Yalcin, Funda; Boyaci, Fatma Nurefsan; Karakas, Ekrem (2013). "Efficacy of CT in diagnosis of transudates and exudates in patients with pleural effusion". Diagnostic and Interventional Radiology. 20: 116–20. doi:10.5152/dir.2013.13066. ISSN 1305-3825. PMC 4463296. PMID 24100060.
  • ^ Robbins Basic Pathology 7th ed
  • ^ About.com > Malignant Pleural Effusion Archived 2012-02-26 at the Wayback Machine By Lynne Eldridge MD. Updated March 27, 2010
  • ^ Power, Michael L. (2010). Anne M. Burrows; Leanne T. Nash (eds.). The Evolution of Exudativory in Primates / Nutritional and Digestive Challenges to Being a Gum-feeding Primate. Springer. p. 28. ISBN 9781441966612. Retrieved 2 October 2012.
  • ^ Schiltz, S; Gaillard, I; Pawlicki-Jullian, N; Thiombiano, B; Mesnard, F; Gontier, E (December 2015). "A review: what is the spermosphere and how can it be studied?". Journal of Applied Microbiology. 119 (6): 1467–81. doi:10.1111/jam.12946. PMID 26332271. S2CID 42515027.
  • ^ Marschner, Horst (1995). Mineral Nutrition of Higher Plants. ISBN 0124735436.
  • ^ Walker, T. S.; Bais, H. P.; Grotewold, E.; Vivanco, J. M. (2003). "Root Exudation and Rhizosphere Biology". Plant Physiology. 132 (1): 44–51. doi:10.1104/pp.102.019661. PMC 1540314. PMID 12746510.
  • ^ Martins, S. J.; Medeiros, F. H. V.; Lakshmanan, V.; Bais, H. P. (2018). "Impact of Seed Exudates on Growth and Biofilm Formation of Bacillus amyloliquefaciens ALB629 in Common Bean". Frontiers in Microbiology. 8: 2631. doi:10.3389/fmicb.2017.02631. PMC 5767182. PMID 29375501.
  • External links[edit]


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