1.Application and Prospect of Nanopore Sequencing Technology in Etiological Diagnosis of Blood Stream Infection.
Wei GUO ; Shuai-Hua FAN ; Peng-Cheng DU ; Jun GUO
Acta Academiae Medicinae Sinicae 2023;45(2):317-321
Blood stream infection (BSI),a blood-borne disease caused by microorganisms such as bacteria,fungi,and viruses,can lead to bacteremia,sepsis,and infectious shock,posing a serious threat to human life and health.Identifying the pathogen is central to the precise treatment of BSI.Traditional blood culture is the gold standard for pathogen identification,while it has limitations in clinical practice due to the long time consumption,production of false negative results,etc.Nanopore sequencing,as a new generation of sequencing technology,can rapidly detect pathogens,drug resistance genes,and virulence genes for the optimization of clinical treatment.This paper reviews the current status of nanopore sequencing technology in the diagnosis of BSI.
Humans
;
Nanopore Sequencing
;
Sepsis/diagnosis*
;
Bacteremia/microbiology*
;
Bacteria
;
Blood Culture/methods*
2.Epidemiologic characteristics and drug resistance of isolated from blood culture escherichia coli in a hospital in Qinghai Province from 2016 to 2022.
Bo Jie YANG ; Xiang Ren A ; Xiao Ming MU ; Peng CHENG ; Jian Wu ZHOU ; Ji Deng MA ; Yan Ke LYU
Chinese Journal of Preventive Medicine 2023;57(12):2102-2109
Objective: To explore the drug resistance of Isolated From Blood Culture Escherichia coli (E. coli) in a hospital in Qinghai over the past seven years, to evaluate the ability of matrix-assisted laser desorption/ionization time-of-flight mass spectrometry (MALDI-TOF MS) to analyze the homologous origin of E. coli, and to establish a protein fingerprint library to match with it, adjuvant clinical experience medication so as to provide the basis for the prevention and control of hospital-acquired infections. Methods: Retrospective analysis of blood cultures sent to hospitals from January 2016 to December 2022. Drug resistance and resistance changes in E. coli.A total of 1 841 E. coli strains were isolated from Qinghai Provincial People's Hospital from January 2016 to December 2022; all strains were identified by MALDI-TOF MS, and the VITEK2.0 drug sensitivity analyzer was applied for drug sensitivity analysis of the strains, and the mass spectrometry homology analysis and self-constructed protein fingerprint library were carried out by MALDI-Biotyper software; the protein fingerprint library was built by using WHONET5.6 software was used to statistically analyze the drug sensitivity results, SPSS23.0 software was used to analyze the relationship between fingerprint typing and drug sensitivity, and the χ2 test was used for intergroup comparisons. Results: A total of 1 841 strains of E. coli were detected in 4 582 positive blood culture specimens from January 2016 to December 2022, with a detection rate of 40.17%; the resistance rate of E. coli from blood sources to piperacillin/tazobactam and ceftriaxone was on the rise, and it was slightly decreased to cefepime, amikacin, levofloxacin, and sulfamethoxazole, and there was not much change to the rest of the drugs; After MALDI-Biotyper clustering analysis, the 1841 E. coli strains from Isolated From Blood Culture were classified into two major clusters and five subtypes, of which type Ⅰa1 accounted for about 40%, type Ⅰa2 accounted for about 2.7%, type Ⅰb accounted for about 3.8, type Ⅱa accounted for about 46%, and type Ⅱb accounted for about 7.5%. The detection rate of type Ⅰa1 E. coli was higher in general surgery (50.45%) and emergency surgery (50.92%), and the detection rate of type Ⅰb E. coli was higher in emergency medicine(10.05%)than in other departments. The drug sensitivity results of different subtypes were compared with each other, the resistance rate of type Ⅰa1 E. coli to cefepime was 21.3% higher than that of the remaining four types, and the difference was statistically significant (χ2=37.74,P=0.000); the resistance rate of type Ⅱ E. coli(>60%) to sulfamethoxazole was higher than that of type Ⅰ (<60%) as a whole, and the difference was statistically significant (χ2=15.248,P=0.004); and a preliminary database of homologous protein fingerprints of E. coli has been established E. coli homologous protein fingerprint library and validated. The drug susceptibility results of 1 288 E. coli strains in the validation set were statistically analyzed and compared with those in the training set. There was no significant difference(P>0.05). Conclusion: In recent years, the resistance rate of E. coli isolated from a hospital in Qinghai province to piperacillin/Tazobactam, cefepime, amicacin and other antibiotics has changed greatly. A fingerprint database of E. coli homologous protein was established, and it was found that the drug sensitivity data of E. coli were different among different fingerprint types. According to drug sensitivity, drug use could assist clinical experience and provide evidence for prevention and control of hospital illness.
Humans
;
Blood Culture
;
Escherichia coli
;
Cefepime
;
Retrospective Studies
;
Drug Resistance
;
Sulfamethoxazole
;
Piperacillin
;
Tazobactam
3.Epidemiologic characteristics and drug resistance of isolated from blood culture escherichia coli in a hospital in Qinghai Province from 2016 to 2022.
Bo Jie YANG ; Xiang Ren A ; Xiao Ming MU ; Peng CHENG ; Jian Wu ZHOU ; Ji Deng MA ; Yan Ke LYU
Chinese Journal of Preventive Medicine 2023;57(12):2102-2109
Objective: To explore the drug resistance of Isolated From Blood Culture Escherichia coli (E. coli) in a hospital in Qinghai over the past seven years, to evaluate the ability of matrix-assisted laser desorption/ionization time-of-flight mass spectrometry (MALDI-TOF MS) to analyze the homologous origin of E. coli, and to establish a protein fingerprint library to match with it, adjuvant clinical experience medication so as to provide the basis for the prevention and control of hospital-acquired infections. Methods: Retrospective analysis of blood cultures sent to hospitals from January 2016 to December 2022. Drug resistance and resistance changes in E. coli.A total of 1 841 E. coli strains were isolated from Qinghai Provincial People's Hospital from January 2016 to December 2022; all strains were identified by MALDI-TOF MS, and the VITEK2.0 drug sensitivity analyzer was applied for drug sensitivity analysis of the strains, and the mass spectrometry homology analysis and self-constructed protein fingerprint library were carried out by MALDI-Biotyper software; the protein fingerprint library was built by using WHONET5.6 software was used to statistically analyze the drug sensitivity results, SPSS23.0 software was used to analyze the relationship between fingerprint typing and drug sensitivity, and the χ2 test was used for intergroup comparisons. Results: A total of 1 841 strains of E. coli were detected in 4 582 positive blood culture specimens from January 2016 to December 2022, with a detection rate of 40.17%; the resistance rate of E. coli from blood sources to piperacillin/tazobactam and ceftriaxone was on the rise, and it was slightly decreased to cefepime, amikacin, levofloxacin, and sulfamethoxazole, and there was not much change to the rest of the drugs; After MALDI-Biotyper clustering analysis, the 1841 E. coli strains from Isolated From Blood Culture were classified into two major clusters and five subtypes, of which type Ⅰa1 accounted for about 40%, type Ⅰa2 accounted for about 2.7%, type Ⅰb accounted for about 3.8, type Ⅱa accounted for about 46%, and type Ⅱb accounted for about 7.5%. The detection rate of type Ⅰa1 E. coli was higher in general surgery (50.45%) and emergency surgery (50.92%), and the detection rate of type Ⅰb E. coli was higher in emergency medicine(10.05%)than in other departments. The drug sensitivity results of different subtypes were compared with each other, the resistance rate of type Ⅰa1 E. coli to cefepime was 21.3% higher than that of the remaining four types, and the difference was statistically significant (χ2=37.74,P=0.000); the resistance rate of type Ⅱ E. coli(>60%) to sulfamethoxazole was higher than that of type Ⅰ (<60%) as a whole, and the difference was statistically significant (χ2=15.248,P=0.004); and a preliminary database of homologous protein fingerprints of E. coli has been established E. coli homologous protein fingerprint library and validated. The drug susceptibility results of 1 288 E. coli strains in the validation set were statistically analyzed and compared with those in the training set. There was no significant difference(P>0.05). Conclusion: In recent years, the resistance rate of E. coli isolated from a hospital in Qinghai province to piperacillin/Tazobactam, cefepime, amicacin and other antibiotics has changed greatly. A fingerprint database of E. coli homologous protein was established, and it was found that the drug sensitivity data of E. coli were different among different fingerprint types. According to drug sensitivity, drug use could assist clinical experience and provide evidence for prevention and control of hospital illness.
Humans
;
Blood Culture
;
Escherichia coli
;
Cefepime
;
Retrospective Studies
;
Drug Resistance
;
Sulfamethoxazole
;
Piperacillin
;
Tazobactam
4.Effect of Vitamin D3 to Platelet Activation Mediated by Tumor Cell Culture Medium.
Xu-Ying WANG ; Jin YU ; Rong FU ; Ru YANG ; Ming-Zhen JING
Journal of Experimental Hematology 2021;29(4):1289-1294
OBJECTIVE:
To investigate the effect of vitamin D3 to platelet activation by tumor cell culture medium.
METHODS:
The peripheral blood platelets of BALB/c mice were isolated. The platelets were activated in 4T1 culture fluid for 24 h. The platelets were divided into 7 groups: control group, activation group, 1 nmol/L vitamin D3 group, 10 nmol/L vitamin D3 group, 50 nmol/L vitamin D3 group, 100 nmol/L vitamin D3 group, and positive drug (0.1 μmol/L eptifibatide) group. CCK-8 assay was used to detect the platelet proliferation at 24, 48 and 72 h. Flow cytometry was used to detect the expression of CD61 and CD62p and receptor for advanced glycation end products (RAGE) at 24, 48 and 72 h. ELISA was used to detect the level of platelet-endothelial cell adhesion molecule-1 (PECAM-1) at 24, 48 and 72 h.
RESULTS:
The CD41
CONCLUSION
Vitamin D3 shows antiplatelet effect and can inhibit platelet proliferation and activation.
Animals
;
Blood Platelets
;
Cell Culture Techniques
;
Cholecalciferol/pharmacology*
;
Flow Cytometry
;
Mice
;
Mice, Inbred BALB C
;
P-Selectin
;
Platelet Activation
5.The comparison between management recommendations of the Neonatal Early Onset Sepsis Calculator and CDC/AAP guidelines among culture-proven early onset sepsis admitted at University of East Ramon Magsaysay Memorial Medical Center from January 2013 to December 2017.
Angelia Septiane BEANDDA ; Katherine Mae A. DOCTOR ; Jaqueline Doctor BERNABE
Health Sciences Journal 2019;8(1):20-28
INTRODUCTION Early onset sepsis is difficult to diagnose due to nonspecific symptoms and a lack of
reliable tests. It can progress quickly, and lead to neurodevelopmental consequences or be fatal if not
treated. However, approximately 10-fold more newborns are treated with antibiotics empirically and often
unnecessarily. This study aimed to compare the management recommendations of the Neonatal Early
Onset Sepsis Calculator with those of the Centers for Disease Control/American Academy of Pediatrics
guidelines.
METHODS Neonatal Early Onset Sepsis Calculator was applied to the data set to examine how an alternative
model would perform compared to current guidelines published by the CDC and compared to current
practice within the institution. Chi square and kappa value agreement was used to determine the difference
between treatment recommendations of NEOS calculator and AAP guideline.
RESULTS Of the 330 patients who received therapy, only 14.2% were recommended empiric antibiotics by
the EOS calculator, compared to the 39% recommended by the CDC guidelines (p < 0.001, ? = 0.372).
Eleven patients were identified to have culture-positive sepsis.
CONCLUSION The number of infants suspected with EOS and subsequently require antibiotic use at birth
may be dramatically reduced with the use of the neonatal EOS calculator.
Human ; Sepsis ; Blood Culture
6.Comparison of Effect of Serum-Free Culture Systems on Directional Erythroid Differentiation of Human Umbilical Cord Blood CD34 Cells.
Yong-Juan DUAN ; Wen-Tian WANG ; Xiao-Jing WEI ; Yang YANG ; Hui-Juan ZHAO ; Xiao HU
Journal of Experimental Hematology 2019;27(3):935-941
OBJECTIVE:
To compare the efficacy of directional erythroid differentiation in different serum free culture systems and to screen the optimal culture systems for inducing the differentiation of umbilical cord blood hematopoietic stem and progenior cells (HSPC) to erythroid cells.
METHODS:
The CD34 cells from umbilical blood munonuclear cells were sorted by using the magnetic beads, and were inoculated into 3 different of culture systems (system 1, 2 and 3 respectively), to induce erythrold differentiation by 3 stage culture. The living cells were counted in different differentiation stages and were observed by Wright-Giemsa staining; the expression of CD71 and CD235a on cell surface was detected by flow cytometry, the erythroid differentiation pteency was detected via colony-forming test.
RESULTS:
The ability of system 2 to promote the HSPC proliferation was the strongest, the efficacy of system 3 to promote the erythroid differentiation of HSPC was the most optimal; the proliferation ability of cells cultured in system 2 for 2-15 days all was higher than that of cells cutured in system 1 and 3 (P<0.05). The flow cytometry detection showed that the expression of CD71 and CD235a on surface of cells cultured in system 3 was the highest, the CD235a percentage on day 15 of differentiation in system 3 was (92.33±3.89)%, that in system 2 was (84.67±3.12)%, while that in system 1 was (72.17±6.83)% (P<0.05). Cell morplologic detection showed that throid differentiation was accelerated on day 12, the percentage of orthochromatic erythrocytes in system 3 was (67.67±2.08)% which was 10.69 and 25.34 times higher than that in system 2 and 1 respectively (P<0.05). The colony-forming test showed the ratio of BFU-E in system 3 increased gradually on day 3-9 (r=0.99, P<0.05), which was significanlly higher than that in system 2 and 1 on day 9 (90.35±5.52% vs 77.06±2.26% and 74.50±3.95%).
CONCLUSION
Culture system 3 is the most effective serum-free erythroid differentiation system, and the culture system 2 is the most powerful HSPC proliferation system. This study results provide a technical basis for further efficiently increasing and inducing the erythroid proliferation and differentiation of HSPC, and also provide culture system in vitro for the clinical application and basic research.
Antigens, CD34
;
Cell Differentiation
;
Cells, Cultured
;
Culture Media, Serum-Free
;
Erythroid Precursor Cells
;
Fetal Blood
;
Humans
7.Efficacy of a Hair Tonic Containing Human Umbilical Cord Blood Mesenchymal Stem Cell-derived Conditioned Media in Patients with Androgenetic Alopecia
Hye Sung HAN ; Kui Young PARK ; Eun Jung KO ; Beom Joon KIM
Korean Journal of Dermatology 2019;57(5):251-257
BACKGROUND: The development of a safe and convenient agent that can promote hair growth in patients with androgenetic alopecia remains challenging. OBJECTIVE: This study was designed to investigate the efficacy of a newly developed hair tonic containing a human umbilical cord blood mesenchymal stem cell (hUCB-MSC)-derived conditioned medium in promoting hair growth. METHODS: This double-blind, placebo-controlled clinical study investigated the efficacy of a hair tonic containing an hUCB-MSC-derived conditioned medium in 30 patients with patterned hair loss. Treatment efficacy was determined using phototrichograms to evaluate the density, diameter, and hair growth rate at baseline levels and after 4, 8, and 16 weeks of treatment. RESULTS: The hair density in the group treated with the hair tonic significantly increased from 125.2 to 134.6 hairs/cm2 (p<0.05). In this same group, the thickness of hair also increased from 0.083 to 0.110 mm (p<0.05). Additionally, the hair growth rate increased from 0.285 to 0.338 mm/day (p<0.05). No severe adverse reactions were reported. CONCLUSION: A hair tonic containing an hUCB-MSC-derived conditioned medium could be a new effective alternative to treat patients with androgenetic alopecia.
Alopecia
;
Clinical Study
;
Culture Media, Conditioned
;
Fetal Blood
;
Hair Preparations
;
Hair
;
Humans
;
Mesenchymal Stromal Cells
;
Treatment Outcome
;
Umbilical Cord
8.Fabrication of Microchannels and Evaluation of Guided Vascularization in Biomimetic Hydrogels.
Jaeyeon LEE ; Se Hwan LEE ; Bu Kyu LEE ; Sang Hyug PARK ; Young Sam CHO ; Yongdoo PARK
Tissue Engineering and Regenerative Medicine 2018;15(4):403-413
BACKGROUND: The fabrication of microchannels in hydrogel can facilitate the perfusion of nutrients and oxygen, which leads to guidance cues for vasculogenesis. Microchannel patterning in biomimetic hydrogels is a challenging issue for tissue regeneration because of the inherent low formability of hydrogels in a complex configuration. We fabricated microchannels using wire network molding and immobilized the angiogenic factors in the hydrogel and evaluated the vasculogenesis in vitro and in vivo. METHODS: Microchannels were fabricated in a hyaluronic acid-based biomimetic hydrogel by using “wire network molding” technology. Substance P was immobilized in acrylated hyaluronic acid for angiogenic cues using Michael type addition reaction. In vitro and in vivo angiogenic activities of hydrogel with microchannels were evaluated. RESULTS: In vitro cell culture experiment shows that cell viability in two experimental biomimetic hydrogels (with microchannels and microchannels + SP) was higher than that of a biomimetic hydrogel without microchannels (bulk group). Evaluation on differentiation of human mesenchymal stem cells (hMSCs) in biomimetic hydrogels with fabricated microchannels shows that the differentiation of hMSC into endothelial cells was significantly increased compared with that of the bulk group. In vivo angiogenesis analysis shows that thin blood vessels of approximately 25–30 µm in diameter were observed in the microchannel group and microchannel + SP group, whereas not seen in the bulk group. CONCLUSION: The strategy of fabricating microchannels in a biomimetic hydrogel and simultaneously providing a chemical cue for angiogenesis is a promising formula for large-scale tissue regeneration.
Angiogenesis Inducing Agents
;
Biomimetics*
;
Blood Vessels
;
Cell Culture Techniques
;
Cell Survival
;
Cues
;
Endothelial Cells
;
Fungi
;
Humans
;
Hyaluronic Acid
;
Hydrogel*
;
Hydrogels*
;
In Vitro Techniques
;
Mesenchymal Stromal Cells
;
Oxygen
;
Perfusion
;
Regeneration
;
Substance P
9.Angiogenesis in newly regenerated bone by secretomes of human mesenchymal stem cells.
Wataru KATAGIRI ; Takamasa KAWAI ; Masashi OSUGI ; Yukiko SUGIMURA-WAKAYAMA ; Kohei SAKAGUCHI ; Taku KOJIMA ; Tadaharu KOBAYASHI
Maxillofacial Plastic and Reconstructive Surgery 2017;39(3):8-
BACKGROUND: For an effective bone graft for reconstruction of the maxillofacial region, an adequate vascular network will be required to supply blood, osteoprogenitor cells, and growth factors. We previously reported that the secretomes of bone marrow-derived mesenchymal stem cells (MSC-CM) contain numerous growth factors such as insulin-like growth factor (IGF)-1, transforming growth factor (TGF)-β1, and vascular endothelial growth factor (VEGF), which can affect the cellular characteristics and behavior of regenerating bone cells. We hypothesized that angiogenesis is an important step for bone regeneration, and VEGF is one of the crucial factors in MSC-CM that would enhance its osteogenic potential. In the present study, we focused on VEGF in MSC-CM and evaluated the angiogenic and osteogenic potentials of MSC-CM for bone regeneration. METHODS: Cytokines in MSC-CM were measured by enzyme-linked immunosorbent assay (ELISA). Human umbilical vein endothelial cells (HUVECs) were cultured with MSC-CM or MSC-CM with anti-VEGF antibody (MSC-CM + anti-VEGF) for neutralization, and tube formation was evaluated. For the evaluation of bone and blood vessel formation with micro-computed tomography (micro-CT) and for the histological and immunohistochemical analyses, a rat calvarial bone defect model was used. RESULTS: The concentrations of IGF-1, VEGF, and TGF-β1 in MSC-CM were 1515.6 ± 211.8 pg/mL, 465.8 ± 108.8 pg/mL, and 339.8 ± 14.4 pg/mL, respectively. Tube formation of HUVECs, bone formation, and blood vessel formation were increased in the MSC-CM group but decreased in the MSC-CM + anti-VEGF group. Histological findings suggested that new bone formation in the entire defect was observed in the MSC-CM group although it was decreased in the MSC-CM + anti-VEGF group. Immunohistochemistry indicated that angiogenesis and migration of endogenous stem cells were much more abundant in the MSC-CM group than in the MSC-CM + anti-VEGF group. CONCLUSIONS: VEGF is considered a crucial factor in MSC-CM, and MSC-CM is proposed to be an adequate therapeutic agent for bone regeneration with angiogenesis.
Animals
;
Blood Vessels
;
Bone Regeneration
;
Culture Media, Conditioned
;
Cytokines
;
Enzyme-Linked Immunosorbent Assay
;
Human Umbilical Vein Endothelial Cells
;
Humans*
;
Immunohistochemistry
;
Insulin-Like Growth Factor I
;
Intercellular Signaling Peptides and Proteins
;
Mesenchymal Stromal Cells*
;
Osteogenesis
;
Rats
;
Stem Cells
;
Transforming Growth Factors
;
Transplants
;
Vascular Endothelial Growth Factor A
10.Immune Tolerance of Human Dental Pulp-Derived Mesenchymal Stem Cells Mediated by CD4⁺CD25⁺FoxP3⁺ Regulatory T-Cells and Induced by TGF-β1 and IL-10.
Jong Won HONG ; Jung Hyun LIM ; Chooryung J CHUNG ; Tae Jo KANG ; Tae Yeon KIM ; Young Seok KIM ; Tae Suk ROH ; Dae Hyun LEW
Yonsei Medical Journal 2017;58(5):1031-1039
PURPOSE: Most studies on immune tolerance of mesenchymal stem cells (MSCs) have been performed using MSCs derived from bone marrow, cord blood, or adipose tissue. MSCs also exist in the craniofacial area, specifically in teeth. The purpose of this study was to evaluate the mechanisms of immune tolerance of dental pulp-derived MSC (DP-MSC) in vitro and in vivo. MATERIALS AND METHODS: We isolated DP-MSCs from human dental pulp and co-cultured them with CD4⁺ T-cells. To evaluate the role of cytokines, we blocked TGF-β and IL-10, separately and together, in co-cultured DP-MSCs and CD4⁺ T-cells. We analyzed CD25 and FoxP3 to identify regulatory T-cells (Tregs) by fluorescence-activated cell sorting (FACS) and real-time PCR. We performed alloskin grafts with and without DP-MSC injection in mice. We performed mixed lymphocyte reactions (MLRs) to check immune tolerance. RESULTS: Co-culture of CD4⁺ T-cells with DP-MSCs increased the number of CD4⁺CD25⁺FoxP3⁺ Tregs (p<0.01). TGF-β or/and IL-10 blocking suppressed Treg induction in co-cultured cells (p<0.05). TGF-β1 mRNA levels were higher in co-cultured DP-MSCs and in co-cultured CD4⁺ T-cells than in the respective monocultured cells. However, IL-10 mRNA levels were not different. There was no difference in alloskin graft survival rate and area between the DP-MSC injection group and the non-injection group. Nonetheless, MLR was reduced in the DP-MSC injected group (p<0.05). CONCLUSION: DP-MSCs can modulate immune tolerance by increasing CD4⁺CD25⁺FoxP3⁺ Tregs. TGF-β1 and IL-10 are factors in the immune-tolerance mechanism. Pure DP-MSC therapy may not be an effective treatment for rejection, although it may module immune tolerance in vivo.
Adipose Tissue
;
Animals
;
Bone Marrow
;
Coculture Techniques
;
Cytokines
;
Dental Pulp
;
Fetal Blood
;
Flow Cytometry
;
Graft Survival
;
Humans*
;
Immune Tolerance*
;
In Vitro Techniques
;
Interleukin-10*
;
Lymphocyte Culture Test, Mixed
;
Mesenchymal Stromal Cells*
;
Mice
;
Real-Time Polymerase Chain Reaction
;
RNA, Messenger
;
T-Lymphocytes
;
T-Lymphocytes, Regulatory*
;
Tooth
;
Transplants

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