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1.
Chinese Journal of Blood Transfusion ; (12): 731-734, 2023.
Article in Chinese | WPRIM | ID: wpr-1004777

ABSTRACT

【Objective】 To explore a RhD negative blood collection and supply mode suitable for Liaocheng area and improve the blood demand satisfaction rate of RhD negative patients. 【Methods】 Under different collection and supply modes (collection mode: in 2020, not advocate walk-in donation by RhD negative repeat blood donors, but in 2021 and 2022 were the opposite; supply mode: in 2020, type A, B, O and AB RBCs were frozen within 6 days of blood collection without inventory, but in 2021 and 2022, they were stored of 2-6 U and the remaining were frozen within 6 days of blood collection), RhD negative blood was divided into Type A, B, O and AB, appointment donation and walk-in donation, first donation and repeat donation, cold storage red blood cells(RBCs), frozen RBCs and frozen thawed deglycerolized RBCs, and the collection and supply data of each observation group from 2020 to 2022 were compared. Based on whether blood demand of RhD negative patients was met, the patients were divided into the group of going to other places for medical treatment, the group of RhD positive blood transfusion and the group of RhD negative blood transfusion to analyze the blood usage. 【Results】 From 2020 to 2022, the proportion of RhD negative blood donated by repeat appointment donors decreased year by year (P<0.05); the proportion of RhD negative blood donated by repeat walk-in donors increased year by year (P<0.05); the proportion of frozen thawed deglycerolized RBCs to RhD negative RBCs increased year by year (P<0.05); the proportion of cold storage RBCs distributed as RhD negative and RhD positive decreased year by year respectively (P<0.05); the proportion of the increase in frozen RBCs inventory to the current year's frozen RBCs inventory decreased year by year (P<0.05). The satisfaction rate of blood demand of RhD negative patients increased year by year (P<0.05), with the number of patients with RhD positive blood transfusion and going to other places for medical treatment decreased year by year respectively(P<0.05). 【Conclusion】 In Liaocheng area, it is appropriate to encourage RhD negative blood donors to donate blood randomly, and A, B, O and AB type cold storage RBCs kept in 2-6 U inventory respectively. When exceeding the inventory, frozen RBCs are prepared within 6 days, which can improve the blood demand satisfaction rate of RhD negative patients and avoid sending excessive RhD negative RBCs to clinical use as RhD positive RBCs.

2.
Journal of Modern Laboratory Medicine ; (4): 105-107, 2018.
Article in Chinese | WPRIM | ID: wpr-696220

ABSTRACT

Objective To establish a method to rapidly remove glycerol in frozen red blood cells(RBC).Methods The glycerol in frozen RBC was removed by using three-step method as following:the frozen RBC were diluted by adding salt solution with high concentration.The salt solution was removed through centrifugation.The RBC were resuspended in normal saline of corresponding volume.Three-step method could acbieve the quick removal of glycerol by controlling tbe concentration salt water and action time.The indexes of hemoglobin,free hemoglobin,glycerol residue,residual white blood cell(WBC) and hematocrit of frozen-deglycerolized RBC were compared between conventional and improved methods.Results The traditional method to remove glycerol needed 1h approximately,while the three step method only needed 15 mins approximately,greatly shortening the time and improving the efficiency.The related tests for removing glycerol RBC,except hemoglobin content was slightly lower than the "The quality requirements for whole blood and blood components (2012 edition)",the rest of them all meeted the requirements.Conclusion The three-step method has the advantages of short time and high cfficiency.However,it still needs to be further improved and optimized to make the quality of product meet the national standard.

3.
Korean Journal of Blood Transfusion ; : 3-17, 2018.
Article in Korean | WPRIM | ID: wpr-713989

ABSTRACT

The blood supply can become disrupted in situations of increased demand during unexpected national catastrophes and when a patient needs a rare blood transfusion, which depends on the blood inventory in peacetime. Cryopreservation of blood, which can be stored up to 10 years, represents a possible solution to this problem by avoiding storage lesions. This review describes frozen red cell technologies, quality control issues related to post-thaw red blood cells, and preconditions and practical considerations for implementation of a frozen blood banking system in Korea.


Subject(s)
Humans , Blood Banks , Blood Transfusion , Cryopreservation , Erythrocytes , Korea , Quality Control , Strategic Stockpile
4.
Military Medical Sciences ; (12): 136-139, 2015.
Article in Chinese | WPRIM | ID: wpr-460243

ABSTRACT

Objective To improve the processing protocol of the frozen erythrocyte ( RBC) washing machine of the dialysis type to enhance its efficiency of treating the 2 U frozen RBCs .Methods The frozen RBC washing machine for dialysis was used to deglycerolize the 2 U frozen RBCs after thawing .Measures including adjustment of the Pump speed , washing buffer adding and solution osmolarity were taken to decrease the processing time .Hemoglobin(Hb) content, Hb recovery, residual glycerol, free Hb content, deforming ability, and apoptosis of the deglycerolized RBCs were assessed to evaluate the efficiency of the improved protocol .Results As for the cells processed respectively by the previous and improved protocols, contents of Hb were (35.03 ±4.20) g and (53.82 ±2.08) g, respectively; Hb recoveries were (61.10 ±8.46)% and (80.22 ±3.73)%,respectively.Osmolarities representing residual glycerol were (307.00 ± 14.50)mOsm and (322.00 ±29.00)mOsm.Free Hb values were (0.74 ±0.04) and (0.80 ±0.08)g/L.The processing time was (1.64 ±0.31) and (1.04 ±0.16) h,respectively.There were significant differences in Hb content , Hb recovery, and deforming ability between the cells processed by the two protocols respectively .However , there were no significant changes in glycerol contents , free Hb, and apoptosis extent between the cells processed by the two protocols .Conclusion The innovated protocol can improve the quality of washed frozen RBCs , decrease the processing time and enhance the efficiency of the machine.

5.
Military Medical Sciences ; (12): 298-300, 2014.
Article in Chinese | WPRIM | ID: wpr-447506

ABSTRACT

Objective To improve the protocols of red blood cells ( RBCs) processing devices ( automatic medical RBC centrifuge, type:BBS926).Methods RBCs separated from 400 ml of whole blood collected from healthy donors were frozen at -80℃.After thawing , the cells were processed by the washing device .Based on the original protocol ( protocol 1), a modified protocol (protocol 2) was established and used to evaluate the quality of the frozen RBCs .In the test group (protocol 2), the amount of washing buffers and the washing steps were revised to form the optimized protocol .RBCs processed with the two protocols were evaluated by different assays .Results The indexes from the standards for frozen-thawed RBCs: the amount of hemoglobin ( Hb) of RBCs from protocol 1 and protocol 2 was 37.55 ±3.58 and 42.18 ±3.35 g(P0.05);the residual amount of white blood cells (WBCs) was (1.90 ±0.99) ×107 and (1.92 ±1.04) ×107(P>0.05);The osmolarities were 334 ±8.03 mOsm and 327 ±9.06 mOsm(P>0.05);both the bacteria and fungi tests were negative for the RBCs processed with the two protocols .Among other indexes ,the hemolysis rate for RBCs from protocol 1 and protocol 2 was (12.44 ±8.24)%and (12.02 ±5.78)%(P>0.05), the deformation index was 21.40 ±1.41 and 21.42 ±1.45 (P>0.05), the RBC recovery was(72.02 ±3.70)%and (77.18 ±5.58)%(P0.05),and the processing time was (79.00 ±0.71)min and (79.60 ±0.55)min (P>0.05).Conclusion The RBCs processed by the two protocols meet the national standards for frozen-thaw RBCs.Hb amounts and cell recoveries of the RBCs are enhanced by treatment with protocol 2.Protocol 2 proves to be better than protocol 1.

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