输血过滤器的临床应用(课件).ppt
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- 课件 输血 过滤器 临床 应用
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1、 输血过滤器的临床应用 陈育新 Military AircraftMilitary Aircraft Engine Engine Intake AirIntake AirRoyal Navy Sea King Helicopter filtered by PALL Filtration1-2-301-2-30Leo YangLeo YangPall TWN SciencesPall TWN SciencesWelcome to Pall CorporationPall is All Around YouEnsuring the purity and clarity of the wine,En
2、suring the purity and clarity of the wine,beer and water you drinkbeer and water you drinkPall is All Around YouHelping to make vaccines pure and safeHelping to make vaccines pure and safeA Culture of Innovation1946Dr Pall invents porous stainless steel and founds the company that will become Pall C
3、orporation.1958Palls Filters provide protection for hydraulic systems on Jupiter C booster.1959Rigimesh filter media is developed by Pall for the protection of Boeing 707 hydraulic systems.1969Pall develops a spacesuit heat exchanger and lunar module filtration for the Apollo 11 mission.1971Blood fi
4、lters based on the Pall Ultipor filter media are introduced to protect cardiac patients from microemboli,improving post operative outcomes.A Culture of Innovation1979PMM filter media is developed as a clean-up solution for Three Mile Island site.1988Pall introduces its leukoreduction filters to comb
5、at post-transfusion fever and allergic reactions.1989Palls Scientific and Laboratory Services develops filtration and maintenance standards for hydraulics systems on the Eurotunnel boring machines,ensuring reliable operation under challenging environmental conditions.1990Dr.Pall is awarded the Natio
6、nal Medal of Technology by President George Bush Sr.A Culture of Innovation1991The Pall CentriSep System provides innovative protection for the militarys intake systems in harsh conditions during operation“Desert Storm”.1993The BB25 breathing circuit filter,developed by Pall to prevent contamination
7、 of ventilating equipment.It becomes critically important in fighting the spread of SARS and Avian Flu.1995Pall Corporation introduces the DV50,the first validated virus-retention cartridge filter for the pharmaceutical industry.2006Palls Acrodose PL System is introduced to increase the safety and a
8、vailability of life-saving platelets.Tomorrow Pall products will continue to protect mission critical systems in even the harshest environments.Filters Used for Blood Components AdministrationType of Filter Removal Type of Filter Removal CharacteristicCharacteristicClot Screen Pore Clot Screen Pore
9、size of 170 umsize of 170 umMicroaggregateMicroaggregate Pore Pore size of 20 40 umsize of 20 40 umLeukocyte removal Rate on Leukocyte removal Rate on the efficiency of the efficiency of leukocyte remove leukocyte remove -not by pore size-not by pore size BLOOD FILTRATION TECHNOLOGYBLOOD FILTRATION
10、TECHNOLOGYMicroaggregateMicroaggregateLeucocyteLeucocyte reduction reductionred cellsred cellsplateletsplateletssalvaged bloodsalvaged bloodBlood bank filtersBlood bank filtersBedside(hospital)filtersBedside(hospital)filtersTransfusion-AssociatedLeukocyte-Mediated MorbidityWalker JH.Walker JH.AmerAm
11、er J J ClinClin Path 88:374-8,1987 Path 88:374-8,1987TRANSFUSIONSNearly 1 in 5 transfusionsare associated with an adverse reactionCMV seroconversion7%Alloimmunization10%NHFTR0.5%Remaining1.7%Frequency of OccurrenceDose-Response for Transfusion and InfectionDose-Response for Transfusion and Infection
12、Patients transfused with 1 to 4 units have infectious complications rates approaching 20%.Dose-Response Relationship Dose-Response Relationship AllogeneicAllogeneic Transfusion and InfectionTransfusion and InfectionA single transfused unit has been correlated with significantly increased infectious
13、complications approximating 15%.CLINICAL EFFECTS OF CLINICAL EFFECTS OF CONTAMINATING LEUCOCYTESCONTAMINATING LEUCOCYTESHLA HLA AlloimmunisationAlloimmunisationReactionsReactions PlateletPlateletGraftGraftRefractorinessRefractoriness RejectionRejection Viral Transmission Viral Transmission Cytomegal
14、ovirus(CMV)Cytomegalovirus(CMV)EBV,HTLV I&II,EBV,HTLV I&II,VaricellaVaricella zoster zosterImmune SuppressionImmune SuppressionPost Post Cancer Cancer LatentLatentOperativeOperative RecurrenceRecurrenceViralViralInfectionInfectionReactivationReactivationContaminating Contaminating LeucocytesLeucocyt
15、esBenefits of ULR to Patients and Hospitals Established Suspected Plausible but not well-studied Reduce alloimmunization and associated platelet refractorinessi,ii,iii Mortgaging the future of transfusion recipients who may go on to become candidates for transplants Attenuated CMV infection and dise
16、aseiv,v,vi High risk patients(e.g.,neonates)may receive seronegative products with false negative rates as high as 1.3%vii or even 4.5%viii Abrogate FNHTRix,x,xi,xii,xiii Seldom is a history of FNHTR available nor can such reactions be predicted and there are costs associated with pt managementxiv R
17、educe morbidityxv,xvi,xvii,xviii(length of stay,infections,fever,MOF)and mortalityxix,xx among cardiac surgery patients Colorectal surgery pts show reduced infectious complication ratesxxi,xxii and lower hospital chargesxxiii,xxiv with leukofiltered blood Although clinical manifestation of transfusi
18、on-related immunomodulation remains controversialxxv,there are explanations for discrepant findings centered about study failures to control for confounding variablesxxvi such as age of blood products.TRALI may be due,in part,to lipids derived from white cells and pre-storage leukoreduction may redu
19、ce the transfusion burdenxxvii Like CMV,other cell-associated viruses are removed by leukofiltration,such as HTLV-1xxviii Leukoreduction filters have been shown to remove bacteria including Yersinia sp.xxix,coag-negative Staphylococcusxxx as well as parasites like Trypanosomesxxxi,to some extent and
20、 perhaps Leishmaniaxxxii.Intangible Benefits Associated with ULR Endorsed by both BPACxxxiii advising the FDA and BSACxxxiv advising DHHS,15 countries have adopted ULRxxxv as well as being 80%implemented in the USxxxvi with growing implications regarding issues of standard of care Managing dual inve
21、ntories is labor intensive and presents the risk of patients receiving non-LR blood when they need it Costs of implementing ULR have been justified by some major institutions such as Yale University Hospital 1-34-6789-131415-1819-2021,2223,24252627282930313233343536Known effects of LeucocytesAlloimm
22、unization -leading on to RefractorinessInfection transmission-viruses and bacteriaImmuno-modulation-higher incidence of post op.InfectionImmuno-suppression-higher AND increased incidence of solid tumour reformationALLOIMMUNISATIONANDREFRACTORINESS Antigen Presenting CellB-LymphocytePlasma CellMemory
23、 CellT-Lymphocyte DonorDonorRecipientRecipientTransfusionTransfusionY Y Y YY Y YY Y Y Y Y Y Y Y Y Y Y Y Y Antibody ProductionAntibody Production*The production of HLA antibodies is a 2 signal The production of HLA antibodies is a 2 signal process requiring the presence of both Class I process requir
24、ing the presence of both Class I and Class II antigensand Class II antigensLocation of HLA Location of HLA*HLA Class I HLA Class IPresent on ALL nucleated cells(white cells)and plateletsPresent on ALL nucleated cells(white cells)and platelets*HLA Class II HLA Class II Present ONLY on Present ONLY on
25、 MonocytesMonocytes,Macrophages,B-Lymphocytes,Macrophages,B-Lymphocytes,activated T-Lymphocytes,activated T-Lymphocytes,dendriticdendritic cells cellsNB:red cells do not express HLANB:red cells do not express HLAALLOIMMUNISATION%ALLOIMMUNISATION%Control Groups Filter GroupsControl Groups Filter Grou
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