1.Advances in treatment of lymphedema with supraclavicular vascularized lymph node transfer.
Chinese Journal of Reparative and Reconstructive Surgery 2023;37(6):736-741
OBJECTIVE:
To review the research progress of supraclavicular vascularized lymph node transfer (VLNT).
METHODS:
The research literature related to supraclavicular VLNT at home and abroad in recent years was extensively reviewed, and the anatomy of supraclavicular lymph nodes, clinical applications, and complications of supraclavicular VLNT were summarized.
RESULTS:
The supraclavicular lymph nodes are anatomically constant, located in the posterior cervical triangle zone, and the blood supply comes mainly from the transverse cervical artery. There are individual differences in the number of supraclavicular lymph nodes, and preoperative ultrasonography is helpful to clarify the number of lymph nodes. Clinical studies have shown that supraclavicular VLNT can relieve limb swelling, reduce the incidence of infection, and improve quality of life in patients with lymphedema. And the effectiveness of supraclavicular VLNT can be improved by combined with lymphovenous anastomosis, resection procedures, and liposuction.
CONCLUSION
There are a large number of supraclavicular lymph nodes, with abundant blood supply. It has been proven to be effective for any period of lymphedema, and the combined treatment is more effective. The more clinical studies are needed to clarify the effectiveness of supraclavicular VLNT alone or in combination, as well as the surgical approach and timing of the combined treatment.
Humans
;
Quality of Life
;
Lymphedema/surgery*
;
Lymph Nodes/blood supply*
;
Lymphatic Vessels/surgery*
;
Extremities
2.Identification and preservation of arm lymphatics in axillary lymph node dissection to prevent arm lymphedema: a single center randomized controlled trial.
Qian Qian YUAN ; Gao Song WU ; Jin Xuan HOU ; Le Wei ZHENG ; Yi Qin LIAO ; Yu Kun HE
Chinese Journal of Oncology 2022;44(5):430-435
Objective: To evaluate the feasibility of identification and preservation of arm lymphatics (DEPART) in axillary lymph node dissection (ALND) for breast cancer to prevent arm lymphedema. Methods: A randomized controlled study method was used. Two hundred and sixty-five patients who underwent breast cancer surgery at the Department of Thyroid and Breast Surgery, Zhongnan Hospital of Wuhan University from November 2017 to June 2018 were included, and the patients were randomly divided into ALND+ DEPART group (132 patients) and standard ALND group (133 patients) by random number table method. In the ALND+ DEPART group, indocyanine green and methylene blue were injected as tracers before surgery, and the arm sentinel nodes was visualized by staged tracing during intraoperative dissection of axillary lymph nodes. Partial frozen sections were made of arm lymph nodes >1 cm in length and hard and suspicious of metastasis, and arm lymph nodes and lymphatic vessels were selectively preserved. Patients in the standard ALND group underwent standard ALND. Objective and subjective indexes of arm lymphedema were evaluated by 5-point circumference measurement and Norman questionnaire. Results: Among 132 breast cancer patients in the ALND+ DEPART group, 121 (91.7%) completed DEPART. There were no statistically significant differences in age, body mass index, pathological type, dissection number of axillary lymph node, N stage, TNM stage, molecular typing, and regional radiotherapy between the ALND+ DEPART and standard ALND groups (P>0.05). At a median follow-up of 24 months, assessment by the 5-point circumference measurement showed that the incidence rates of lymphedema in the ALND+ DEPART and standard ALND groups were 5.0% (6/121) and 15.8% (21/133), respectively, with statistically significant differences (P=0.005). Assessment by the Norman questionnaire showed that the incidence rates of lymphedema in the ALND+ DEPART and standard ALND groups were 5.8% (7/121) and 21.8% (29/133), respectively, with a statistically significant difference (P<0.001). No local regional recurrence was observed in either group during the follow-up period. Conclusion: For breast cancer patients with positive axillary lymph nodes, the administration of DEPART during ALND can reduce or avoid the occurrence of arm lymphedema without compromising oncology safety.
Arm/pathology*
;
Axilla/pathology*
;
Breast Neoplasms/pathology*
;
Female
;
Humans
;
Lymph Node Excision/methods*
;
Lymph Nodes/surgery*
;
Lymphatic Vessels/pathology*
;
Lymphedema/surgery*
;
Sentinel Lymph Node Biopsy/adverse effects*
4.High expression of CCBE1 in adjacent tissues of tongue squamous cell carcinoma is correlated with pericancerous lymphatic vessel proliferation and poor 5-year survival outcomes.
Jiang Long ZHONG ; Jie Qi WANG ; Xiu Hua YE ; Song FAN ; You Yuan WANG ; Wei Liang CHEN
Journal of Southern Medical University 2022;42(10):1545-1551
OBJECTIVE:
To examine the correlation of CCBE1 expression in adjacent tissues of tongue squamous cell carcinoma (TSCC) with pericancerous lymphatic vessel proliferation, cervical lymph node metastasis and survival outcomes of the patients.
METHODS:
Lymphatic vessel density was quantified in pericancerous tissue sections of 44 cases of cT1-2N0 TSCC using D2-40 as the lymphatic vessel endothelial marker for calibration and counting of the lymphatic vessels. Of these 44 cases, 22 showed a relatively low lymphatic vessel density (group A) and the other 22 had a high lymphatic vessel density (group B), and the expression levels of CCBE1 in the adjacent tissues determined using immunohistochemistry, immunofluorescence assay and Western blotting were compared between the two groups. The expression level of CCBE1 was also measured in another 90 patients with TSCC using immunohistochemistry, and all the patients were followed up for their survival outcomes.
RESULTS:
Immunohistochemistry and Western blotting showed a significantly lower rate of high CCBE1 expression in group A than in group B (P < 0.05). Immunofluorescence assay showed co-localization of CCBE1 and D2-40 in the adjacent tissues of TSCC. In the 90 TSCC patients with complete follow-up data, a high expression of CCBE1 was found to correlate with lymph node metastasis and a poor 5-year survival outcomes of the patients (P < 0.05).
CONCLUSION
A high expression of CCBE1 in the adjacent tissues of TSCC is closely related with pericancerous lymphatic vessel proliferation, cervical lymph node metastasis and a poor 5-year survival of the patients, suggesting the value of CCBE1 as a potential prognostic predictor for TSCC.
Humans
;
Tongue Neoplasms/pathology*
;
Carcinoma, Squamous Cell/metabolism*
;
Lymphatic Metastasis
;
Prognosis
;
Lymphatic Vessels/pathology*
;
Cell Proliferation
;
Tongue/pathology*
;
Calcium-Binding Proteins/metabolism*
;
Tumor Suppressor Proteins/metabolism*
6.Progress in the Mechanism of Lymphangiogenesis and Lymphatic Metastasis of Non-small Cell Lung Cancer.
Xiayao DIAO ; Chao GUO ; Shanqing LI
Chinese Journal of Lung Cancer 2021;24(12):874-880
Lung cancer ranks the first cancer-related morbidity and mortality in China. Tumor metastasis always predicts the poor prognosis for patients. Moreover, lymphatic metastasis is one of the most significant predictors of poor prognosis in patients with non-small cell lung cancer (NSCLC) and lymphangiogenesis represents the bridge that functionally facilitates tumor lymphatic metastasis. In this review, we first discussed the molecular mechanisms of tumor-associated lymphangiogenesis and the interaction between tumor microenvironment and lymphatic endothelial cells, then, summarized the role of non-coding RNA in regulating tumor-associated lymphangiogenesis in recent frontier studies, with the aim to provide some novel insights on NSCLC-related lymphangiogenesis research, diagnosis and treatment.
.
Carcinoma, Non-Small-Cell Lung/genetics*
;
Disease Progression
;
Endothelial Cells
;
Humans
;
Lung Neoplasms/genetics*
;
Lymphangiogenesis
;
Lymphatic Metastasis
;
Lymphatic Vessels
;
Tumor Microenvironment
;
Vascular Endothelial Growth Factor C
7.A Canine Model for Lymphangiography and Thoracic Duct Access
Kun Yung KIM ; Jung Hoon PARK ; Jiaywei TSAUO ; Ji Hoon SHIN
Korean Journal of Radiology 2020;21(3):298-305
OBJECTIVE: To evaluate the technical feasibility of intranodal lymphangiography and thoracic duct (TD) access in a canine model.MATERIALS AND METHODS: Five male mongrel dogs were studied. The dog was placed in the supine position, and the most prominent lymph node in the groin was accessed using a 26-gauge spinal needle under ultrasonography (US) guidance. If the cisterna chyli (CC) was not opacified by bilateral lymphangiography, the medial iliac lymph nodes were directly punctured and Lipiodol was injected. After opacification, the CC was directly punctured with a 22-gauge needle. A 0.018-in microguidewire was advanced through the CC and TD. A 4-Fr introducer and dilator were then advanced over the wire. The microguidewire was changed to a 0.035-in guidewire, and this was advanced into the left subclavian vein through the terminal valve of the TD. Retrograde TD access was performed using a snare kit.RESULTS: US-guided lymphangiography (including intranodal injection of Lipiodol [Guerbet]) was successful in all five dogs. However, in three of the five dogs (60%), the medial iliac lymph nodes were not fully opacified due to overt Lipiodol extravasation at the initial injection site. In these dogs, contralateral superficial inguinal intranodal injection was performed. However, two of these three dogs subsequently underwent direct medial iliac lymph node puncture under fluoroscopy guidance to deliver additional Lipiodol into the lymphatic system. Transabdominal CC puncture and cannulation with a 4-Fr introducer was successful in all five dogs. Transvenous retrograde catheterization of the TD (performed using a snare kit) was also successful in all five dogs.CONCLUSION: A canine model may be appropriate for intranodal lymphangiography and TD access. Most lymphatic intervention techniques can be performed in a canine using the same instruments that are employed in a clinical setting.
Animals
;
Catheterization
;
Catheters
;
Dogs
;
Ethiodized Oil
;
Fluoroscopy
;
Groin
;
Humans
;
Lymph Nodes
;
Lymphatic System
;
Lymphography
;
Male
;
Needles
;
Punctures
;
SNARE Proteins
;
Subclavian Vein
;
Supine Position
;
Thoracic Duct
;
Ultrasonography
8.Lymphatic vessels, miRNAs, and CAR T cells in tumor immunology.
Journal of Zhejiang University. Science. B 2020;21(1):1-2
This special feature contains three review articles that summarize recent advances pertaining to tumor immunobiology. Normalization of antitumor immunity through checkpoint inhibitors has achieved significant clinical success and benefited many cancer patients. However, not all cancer patients respond to these treatments, and among the responders, some may develop resistance and others may suffer autoimmunity that requires intervention. Tumor immunotherapy holds promise for further improving the survival of cancer patients, but deeper understanding of immunological networks that regulate anti- and pro-tumor immunity is needed. The review papers collected in this issue cover a few topics that may stimulate future interest in the relevant research field.
Humans
;
Immunotherapy, Adoptive/methods*
;
Lymphatic Vessels/physiology*
;
MicroRNAs/physiology*
;
Neoplasms/therapy*
;
Receptors, Chimeric Antigen/immunology*
;
T-Lymphocytes/immunology*
9.Chylous Manifestations and Management of Gorham-Stout Syndrome
Sungbin CHO ; Seung Ri KANG ; Beom Hee LEE ; Sehoon CHOI
The Korean Journal of Thoracic and Cardiovascular Surgery 2019;52(1):44-46
Gorham-Stout disease (GSD) was first described by Gorham and colleagues in 1954, but its precise mechanism and cause remain to be elucidated. In this condition, voluminous and potentially fatal chylous effusions into the thorax can occur. Herein, we describe a case of GSD in which the patient presented with massive pleural effusions and mottled osteolytic bone lesions. We performed multiple operations, including thoracic duct ligation using video-assisted thoracoscopic surgery and thoracotomic decortication, but these procedures did not succeed in preventing recurrent pleural effusion and chest wall lymphedema. After administering sirolimus (0.8 mg/m2, twice a day) and propranolol (40 mg, twice a day), the process of GSD in this patient has been controlled for more than 2 years.
Chylothorax
;
Humans
;
Ligation
;
Lymphedema
;
Osteolysis, Essential
;
Pleural Effusion
;
Propranolol
;
Sirolimus
;
Thoracic Duct
;
Thoracic Surgery, Video-Assisted
;
Thoracic Wall
;
Thorax
10.Erythema Nodosum Masking Kawasaki Disease with an Initial Manifestation of Skin Lesions
Seigo OKADA ; Yuichi ISHIKAWA ; Maiko SHIMOMURA ; Shinpei SUNAGAWA ; Reiji HIRANO ; Shinnosuke FUKUNAGA ; Akiko MIYAKE ; Yusuke OKADA ; Takashi MAKI
Yonsei Medical Journal 2019;60(3):312-314
We report the first case demonstrating an association between Kawasaki disease (KD) and erythema nodosum (EN). A 3-year-old girl presented with EN as an initial manifestation of KD. At the initial visit, she showed high fever of 40℃, injection of the oropharynx, cervical lymphadenopathy, and red-purple cutaneous nodules, particularly on the lower limbs. She complained of severe pain in the neck and cutaneous lesions. Initially, the development of EN was attributed to Salmonella spp infection, which was detected in stool culture. However, the patient did not respond to high-dose ampicillin/sulbactam to which the Salmonella spp is sensitive. Echocardiography performed as screening for fever of unknown origin revealed medium-sized aneurysms of the left anterior descending artery. EN masked the diagnosis of KD, and the patient developed a coronary artery lesion. KD should be considered in the differential diagnosis of refractory EN in pediatric patients.
Aneurysm
;
Arteries
;
Bacterial Infections
;
Child, Preschool
;
Coronary Vessels
;
Diagnosis
;
Diagnosis, Differential
;
Echocardiography
;
Erythema Nodosum
;
Erythema
;
Exanthema
;
Female
;
Fever
;
Fever of Unknown Origin
;
Humans
;
Lower Extremity
;
Lymphatic Diseases
;
Masks
;
Mass Screening
;
Mucocutaneous Lymph Node Syndrome
;
Neck
;
Oropharynx
;
Salmonella
;
Skin
;
Subcutaneous Tissue

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