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עמוד בית
Fri, 07.08.26

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March 2023
Dorit Shitenberg MD, Barak Pertzov MD, Moshe Heching MD, Yael Shostak MD, Osnat Shtraichman MD, Dror Rosengarten MD, Moshe Yeshurun MD, Yury Peysakhovich MD, Yaron Barac MD, Mordechai R. Kramer MD

Background: Late-onset pulmonary complications can occur following hematological stem cell transplantation (HSCT). In allogeneic HSCT these complications are often associated with chronic graft-versus-host disease (GVHD). Lung transplantation (LTx) often remains the only viable therapeutic option in these patients.

Objectives: To describe our experience with LTx due to GVHD after HSCT and to compare the long-term survival of this group of patients to the overall survival of our cohort of LTx recipients for other indications.

Methods: We retrospectively retrieved all data on patients who had undergone LTx for end-stage lung disease as a sequela of allogeneic HSCT, between 1997 and 2021, at Rabin Medical Center in Israel.

Results: A total of 15 of 850 patients (1.7%) from our cohort of LTx recipients fulfilled the criteria of LTx as a sequela of late pulmonary complication after allogeneic HSCT. The median age at the time of HSCT was 33 years (median 15–53, range 3–60). The median time between HSCT and first signs of chronic pulmonary GVHD was 24 months (interquartile range [IQR] 12–80). The median time from HSCT to LTx was 96 months (IQR 63–120). Multivariate analysis showed that patients transplanted due to GVHD had similar survival compared to patients who were transplanted for other indications.

Conclusions: LTx for GVHD after allogeneic HSCT constitutes an important treatment strategy. The overall survival appears to be comparable to patients after LTx for other indications.

February 2023
Milton Saute MD, Ehud Raanani MD, Amir On MD, Ran Kramer MD, Liran Levy MD

Twenty years after being closed due to unfavorable results, a new lung transplant program was started at the Sheba Medical Center. The new team included an experienced lung transplant surgeon, an anesthesiologist, an intensive care specialist, and a pulmonologist with extensive experience in the field.

December 2022
Tamir Weiss

Background: The exposure to ambient particulate matter (PM) is associated with increased morbidity and mortality from respiratory, cardiovascular, and other causes. A major contribution to this adverse effect is attributed to particles at the nanoscale range (ultrafine particles [UFP] particles < 100 nm). Most of the information about human exposure to PM has been collected by environmental monitoring of inhaled particles.

Objectives: To evaluate the use of direct measuring of UFP in the sputum as a biomarker for lung inflammation and functional impairment.


Methods: The study population included 121 patients who underwent an induced sputum (IS) test as a part of a clinical evaluation for respiratory symptoms. Cell differential count was performed, and the UFP content was measured in each IS sample. The UFP content in the sputum was compared among patients with different inflammatory phenotypes based on IS granulocytes levels: eosinophilic inflammation (EI) IS eosinophils > 2.7%, neutrophilic inflammation (NI) IS neutrophils > 65%, and mixed granulocytic inflammation (MGI) including both IS eosinophils > 2.7% and IS neutrophils > 65%. The association between the IS-UFP content and pulmonary function test (PFT) parameters was also tested.


Results: Patients with MGI had a distinct profile of particles in IS, which was characterized by the highest percentage of UFP (relative to larger particles) compared to patients with EI, NI, or normal IS cell count. Furthermore, EI and NI were found to have an interaction effect regarding the IS–UFP profile, as demonstrated by the significantly different IS–UFP profile of patients with MGI compared to the profile associated with EI and NI independently. Last, the profile of UFP in the IS samples was also correlated with patient PFT. Reduced forced mid-expiratory flow (FEF) 25–75 or FEV1 were correlated with a higher IS–UFP mean size. Reduced FEF25–75 was correlated with a lower IS–UFP concentration and percentage relative to larger particles.

Conclusions: To the best of my knowledge, this study is the first to report a distinct IS–UFP profile in patients with MGI, which suggest an interaction effect of EI and NI on the IS–UFP content. This finding may further support the consideration of MGI as a distinct inflammatory phenotype, beyond the simple combination of EI and NI independently. In addition, reduced PFT parameters were associated with a specific change in the IS–UFP profile. The results of this study may shed light on the use of IS–UFP content as a biomarker for lungs inflammation and functional impairment. Further prospective studies are needed to establish a cause and effect relationship between lungs inflammation and functional impairment to the IS–UFP content.

November 2022
Hanan Massalha MD, Milena Tocut MD, Miguel Stein MD, Gisele Zandman-Goddard MD

Hypereosinophilia is defined as the absolute eosinophilic count of above 1500 cells/µL in the peripheral blood on two separate tests taken during one month and/or the pathological confirmation of hypereosinophilia. There are many conditions that are associated with increased eosinophil counts including: parasitic infections, drug reactions, eosinophilic granulomatosis with polyangiitis, allergic reactions, drug reaction with eosinophilia and systemic symptoms (DRESS), primary immunodeficiencies (PID), eosinophilic gastrointestinal diseases (EGID), familial hypereosinophilia, and neoplasms [1]. Molecular classification may be an adjuvant in the classification of hypereosinophilia [2]. Our patient presented with hypereosinophilia as part of a paraneoplastic syndrome.

October 2022
Walid Shalata MD, Motaz Abo Abod MD, Sergei Tsaregorodtsev MD, Reem Abu Hamid-Salama MD, Liora Boehm Cohen MD, Michael Kassirer MD, Dana Potashner MD, Yael Raviv MD
Walid Shalata MD, Motaz Abo Abod MD, Liora Boehm Cohen MD, Michael Kassirer MD, Dana Potashner MD, Yael Raviv MD
March 2022
Inbar Nardi-Agmon MD MPH, Alona Zer MD, Yuri Peysakhovich MD, Ili Margalit MD, Ran Kornowski MD, Nir Peled MD PhD, and Zaza Iakobishvili MD PhD

Background: No specific clinical or histological factors are recognized to be associated with the development of pericardial effusion in non-small cell lung cancer (NSCLC) other than a metastatic disease.

Objectives: To assess whether specific clinical and histological features are associated with development of pericardial effusion in patients with NSCLC.

Methods: A consecutive cohort of patients with NSCLC who presented with symptomatic pericardial effusion 2014–2017 was compared to a control group of patients with advanced NSCLC without pericardial effusion.

Results: The 27 patients in the effusion group were generally younger, more often female, and with a higher percentage of never-smokers, compared to the 54 patients of the control group. Epidermal growth factor receptor/anaplastic lymphoma kinase (EGFR/ALK) mutation tumors were found in 48% of patients in the effusion group vs. 25% in the control group. In the multivariate analysis, the unadjusted odds ratio (OR) for the development of pericardial effusion in patients with somatic mutations was significantly higher compared to wild type tumors (OR 2.65, 95% confidence interval 1.00–7.00). However, a suspected association between pericardial effusion and mutation status was found to be confounded by age. While a high rate of recurrence was observed when pericardiocentesis was initially performed (9/17, 53%), no recurrence was documented when pericardial window procedure was performed (total of 17 patients).

Conclusions: Patients with EGFR/ALK mutations may be at higher risk for the development of pericardial effusion; therefore, attending physicians need to be aware and have a high index of clinical suspicion

September 2021
Ariel Kerpel MD, Edith Michelle Marom MD, Michael Green PhD, Michal Eifer MD, Eli Konen MD, Arnaldo Mayer PhD, and Sonia L. Betancourt Cuellar MD

Background: Medical imaging and the resultant ionizing radiation exposure is a public concern due to the possible risk of cancer induction.

Objectives: To assess the accuracy of ultra-low-dose (ULD) chest computed tomography (CT) with denoising versus normal dose (ND) chest CT using the Lung CT Screening Reporting and Data System (Lung-RADS).

Methods: This prospective single-arm study comprised 52 patients who underwent both ND and ULD scans. Subsequently AI-based denoising methods were applied to produce a denoised ULD scan. Two chest radiologists independently and blindly assessed all scans. Each scan was assigned a Lung-RADS score and grouped as 1 + 2 and 3 + 4.

Results: The study included 30 men (58%) and 22 women (42%); mean age 69.9 ± 9 years (range 54–88). ULD scan radiation exposure was comparable on average to 3.6–4.8% of the radiation depending on patient BMI. Denoising increased signal-to-noise ratio by 27.7%. We found substantial inter-observer agreement in all scans for Lung-RADS grouping. Denoised scans performed better than ULD scans when negative likelihood ratio (LR-) was calculated (0.04–-0.08 vs. 0.08–0.12). Other than radiation changes, diameter measurement differences and part-solid nodules misclassification as a ground-glass nodule caused most Lung-RADS miscategorization.

Conclusions: When assessing asymptomatic patients for pulmonary nodules, finding a negative screen using ULD CT with denoising makes it highly unlikely for a patient to have a pulmonary nodule that requires aggressive investigation. Future studies of this technique should include larger cohorts and be considered for lung cancer screening as radiation exposure is radically reduced.

June 2021
Katerina Shulman MD, Olga Kazarin MD, Elias Tannous MSc, and Orit Sofer MD
January 2021
Erez Sarel MD, David R. Hoppenstein MD MB BCh, Mirit Lahav MD, Nisim Ifrach MD, Fida Fanadka MD, and Brian D. Fredman MB BCh
December 2020
Tiberiu R. Shulimzon MD, Shir Giladi BSc, and Meital Zilberman PhD

Background: Chronic lung diseases, especially emphysema and pulmonary fibrosis, are the third leading cause of mortality worldwide. Their treatment includes symptom alleviation, slowing of the disease progression, and ultimately organ transplant. Regenerative medicine represents an attractive alternative.

Objectives: To develop a dual approach to lung therapy by engineering a platform dedicated to both remodeling pulmonary architecture (bronchoscopic lung volume reduction) and regeneration of lost respiratory tissue (scaffold).

Methods: The authors developed a hydrogel scaffold based on the natural polymers gelatin and alginate. The unique physical properties allow its injection through long catheters that pass through the working channel of a bronchoscope. The scaffold might reach the diseased area; thus, serving a dual purpose: remodeling the lung architecture as a lung volume reduction material and developing a platform for tissue regeneration to allow for cell or organoid implant.

Results: The authors’ novel hydrogel scaffold can be injected through long catheters, exhibiting the physical and mechanical properties necessary for the dual treatment objectives. Its biocompatibility was analyzed on human fibroblasts and mouse mesenchymal cells. Cells injected with the scaffold through long narrow catheters exhibited at least 70% viability up to 7 days.

Conclusions: The catheter-injectable gelatin-alginate hydrogel represents a new concept, which combines tissue engineering with minimal invasive procedure. It is an inexpensive and convenient to use alternative to other types of suggested scaffolds for lung tissue engineering. This novel concept may be used for additional clinical applications in regenerative medicine.

Moshe Shai Amor, Dror Rosengarten, Dorit Shitenberg, Barak Pertzov, Yael Shostak, and Mordechai Reuven Kramer

Background: Idiopathic pulmonary fibrosis (IPF) has poor prognosis. Anti-fibrotic treatment has been shown to slow disease progression. Lung transplantation (LTx) offers a survival benefit. The 5-year survival after LTx in IPF is between 40 and 50%

Objectives: To evaluate which IPF patients have better prognosis following LTx.

Methods: A retrospective study was conducted with all IPF patients who had undergone LTx in the Rabin Medical Center between 2010 and 2018. We collected data on pre-evaluation of pulmonary function tests, echocardiographic and right heart catherization, and anti-fibrotic treatments. The Kaplan-Meier method was used for survival analysis.

Results: Among148 patients who underwent LTx, 58 were double LTx (DLT) and 90 single LTx (SLT). Mean age was 58.07 ± 9.78 years; 104 males and 44 females. DLT patients had significantly lower survival rates than SLT in the short and medium term after LTx. Patients with saturation above 80% after the 6-minute walk test (6MWT) had higher survival rates. Patients over 65 years of age had a lower survival rates. Those with pulmonary hypertension (PHT) above 30 mmHg had a poorer prognosis with lower survival rates.

Conclusions: IPF patients with higher mean PHT, older age (> 65 years), and desaturation following 6MWT had lower survival rates following LTx. DLT may decrease survival rate compared to SLT just for the short and medium period of time after LTx. These results may lead to better selection of IPF patient candidates for LTx. Additional studies are warranted for choosing which patients will have better prognosis after LTx.

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