1.Therapeutic Effect Observation on Combined Acupuncture and Chinese Medicine for Reflux Esophagitis
Journal of Acupuncture and Tuina Science 2011;09(1):26-30
Objective:To observe the clinical effect of combined acupuncture and Chinese medicine for reflux esophagitis.Methods:120 cases with reflux esophagitis were randomly allocated into 4 groups,30 in each group,a group of combined acupuncture and Chinese medicine,a group of Chinese medicine,a group of acupuncture and agroup of Westem medication(Omeprazole Enteric-coated Capsules).Cases in the four groups were treated 60 d as one course of treatment.The plasma gastrin and motilin levels in all groups were measured before and one course after treatment for effect evaluafion.Results:There were no inter-group statistical differences of plasma gastrin and motilin levels before treatment.The plasma gastrin and motilin levels in all groups were significantly elevated after treatment(P<0.01).The group of combined acupuncture and Chinese medicine showed a significantly higher level than the Western medication and Chinese medicine group (P<0.05).Conclusion:Combined acupuncture and Chinese medicine can remarkably elevate the plasma gastrin and motilin levels in those with reflux esophagitis,regulate the gaslro-esophagus motility,increase the lower esophageal sphincter pressure and thus prevent regurgitation of food.
2. Application progress of transcriptome sequencing in hematological malignancies
Hongxing LIU ; Xue CHEN ; Fang WANG ; Xiaoli MA ; Lili YUAN ; Panxiang CAO ; Daijing NIE
Journal of Leukemia & Lymphoma 2019;28(12):705-708
Transcriptome sequencing (RNA-seq) has unique advantages in analyzing gene fusion, splicing mutations, and gene expression profiles. Single-cell RNA-seq provides powerful tools to reveal cellular heterogeneity in normal and tumor tissues. With the widespread application of high-throughput gene sequencing technology and the rapid reduction in cost, RNA-seq is increasingly used in hematological malignancies research. This article introduces the related research progress in conjunction with reports at the 61st American Society of Hematology Annual Meeting.
3.Fanconi anemia gene-associated germline predisposition in aplastic anemia and hematologic malignancies.
Daijing NIE ; Jing ZHANG ; Fang WANG ; Xvxin LI ; Lili LIU ; Wei ZHANG ; Panxiang CAO ; Xue CHEN ; Yang ZHANG ; Jiaqi CHEN ; Xiaoli MA ; Xiaosu ZHOU ; Qisheng WU ; Ming LIU ; Mingyue LIU ; Wenjun TIAN ; Hongxing LIU
Frontiers of Medicine 2022;16(3):459-466
Whether Fanconi anemia (FA) heterozygotes are predisposed to bone marrow failure and hematologic neoplasm is a crucial but unsettled issue in cancer prevention and family consulting. We retrospectively analyzed rare possibly significant variations (PSVs) in the five most obligated FA genes, BRCA2, FANCA, FANCC, FANCD2, and FANCG, in 788 patients with aplastic anemia (AA) and hematologic malignancy. Sixty-eight variants were identified in 66 patients (8.38%). FANCA was the most frequently mutated gene (n = 29), followed by BRCA2 (n = 20). Compared with that of the ExAC East Asian dataset, the overall frequency of rare PSVs was higher in our cohort (P = 0.016). BRCA2 PSVs showed higher frequency in acute lymphocytic leukemia (P = 0.038), and FANCA PSVs were significantly enriched in AA and AML subgroups (P = 0.020; P = 0.008). FA-PSV-positive MDS/AML patients had a higher tumor mutation burden, higher rate of cytogenetic abnormalities, less epigenetic regulation, and fewer spliceosome gene mutations than those of FA-PSV-negative MDS/AML patients (P = 0.024, P = 0.029, P = 0.024, and P = 0.013). The overall PSV enrichment in our cohort suggests that heterozygous mutations of FA genes contribute to hematopoietic failure and leukemogenesis.
Anemia, Aplastic/genetics*
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Epigenesis, Genetic
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Fanconi Anemia/genetics*
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Germ Cells
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Hematologic Neoplasms/genetics*
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Humans
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Leukemia, Myeloid, Acute/genetics*
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Retrospective Studies
4. Application of metagenomics next-generation sequencing in monitoring Legionella pneumophila infection after allogeneic hematopoietic stem cell transplantation
Lili YUAN ; Huizheng ZHAO ; Jianping ZHANG ; Fang WANG ; Nannan LI ; Xingzhen ZHAO ; Xue CHEN ; Yang ZHANG ; Daijing NIE ; Panxiang CAO ; Mangju WANG ; Ming LIU ; Mingyue LIU ; Hongxing LIU
Journal of Leukemia & Lymphoma 2019;28(12):734-738
Objective:
To investigate the application of metagenomic next-generation sequencing (mNGS) in detection of the rare or difficult-to-cultivate pathogens.
Methods:
One patient with acute lymphoblastic leukemia who went through allogeneic hematopoietic stem cell transplantation (allo-HSCT) developed symptoms of infection after transplantation. Conventional microbial culture, polymerase chain reaction (PCR), and mNGS combined with biological information analysis were performed with plasma and cerebrospinal fluid samples, the anti-infective treatment was adjusted according to the test results, and the efficacy was assessed.
Results:
No suspected pathogens were detected by microbial culture and PCR in the cerebrospinal fluid and plasma samples since the patient developed infection symptoms. However, Legionella pneumophila was analyzed by mNGS in the cerebrospinal fluid specimen on day 23 after allo-HSCT (reads count: 19 655), and it was considered as the principal pathogen after comprehensively evaluating the patient's clinical manifestations and the test results. Then the antimicrobial treatments were adjusted according to the patient's clinical manifestations and laboratory test results, and the number of gene sequences of Legionella pneumophila was monitored by mNGS method. Azithromycin, tigecycline, and other antibiotics effective for Legionella pneumophila were used after detecting this pathogen. A total of 15 mNGS analysis were performed during the 5-month period, and the highest number of Legionella pneumophila sequences monitored in the cerebrospinal fluid was 2 226, the lowest was 253 and eventually turned negative. The clinical symptoms and treatment outcomes were consistent with the mNGS monitoring results.
Conclusions
The mNGS technology has significant value in detection of the rare and difficult-to-cultivate pathogens. The mNGS technology provides a valuable supplement to microbial culture and PCR methods.