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1.
Zentralbl Chir ; 149(3): 315-327, 2024 Jun.
Artículo en Alemán | MEDLINE | ID: mdl-38838699

RESUMEN

Malignant pleural effusion is a common diagnosis in metastasized cancers. It is always of palliative character. Main symptoms are dyspnoea and reduced quality of life. Diagnosis is made by ultrasound-guided puncture of the pleural effusion (cytology) and often video-assisted thoracic surgery with biopsy of the pleural surface (histology). The goal of treatment is a fast, sustainable, minimally invasive, patient-centred therapy that increases quality of life. Besides systemic therapy and best supportive care the patient can be treated with local therapy including either pleurodesis (via drainage or VATS) or an indwelling-pleural catheter (IPC). Decision for one of these procedures is made upon performance index (ECOG), expandability of the lung, prognosis and the patient's wish. For the first technique, the lung must be expandable. The latter one (IPC) can be implanted both with expandable and trapped lung. Both are similarly effective in symptom control.


Asunto(s)
Cuidados Paliativos , Derrame Pleural Maligno , Pleurodesia , Cirugía Torácica Asistida por Video , Derrame Pleural Maligno/terapia , Derrame Pleural Maligno/etiología , Derrame Pleural Maligno/diagnóstico , Humanos , Drenaje , Catéteres de Permanencia , Calidad de Vida , Pronóstico , Ultrasonografía Intervencional
2.
Cancers (Basel) ; 15(19)2023 Oct 06.
Artículo en Inglés | MEDLINE | ID: mdl-37835566

RESUMEN

Hyperthermic intrathoracic chemotherapy (HITOC) is an additional intraoperative treatment option within the multimodality therapy of pleural malignancies. A chemotherapy perfusion with high-dose cisplatin is performed over a period of 60 min after surgical cytoreduction to improve local tumour control through the eradication of residual tumour cells. Although HITOC is increasingly used, there is only little scientific evidence about the necessary safety measures after HITOC. Therefore, the objective of this study was an analysis of cisplatin excretion via various body fluids after HITOC, with the aim of providing recommendations on occupational health and safety. Five patients undergoing HITOC were included. Before and after the HITOC, as well as during the following days, serum, urine, and bronchial secretion, as well as pleural effusion, were sampled. The platinum levels in the samples were measured using ICP-MS (inductively coupled plasma-mass spectrometry). Immediately after the HITOC, the mean levels of cisplatin increased dramatically in the serum (from 0.79 to 1349 µg/L), urine (from 3.48 to 10,528 µg/g creatinine), and bronchial secretion (from 0.11 to 156 µg/L). Thereafter, the cisplatin levels dropped to 133 µg/L in the serum and 994 µg/g creatinine in the urine within nine days after the HITOC. The AUC ratio shows 59% of the cisplatin being excreted via the urine after 48 h. The sampling of pleural effusion started 24 h after the HITOC, and the cisplatin levels decreased from 618 to 93 µg/L within nine days. Although the cisplatin levels in the body fluids of HITOC patients are much lower compared to patients receiving intravenous chemotherapy, a significant amount of cisplatin is excreted via these body fluids. Consequently, safety precautions must be implemented in the post-HITOC care of patients to avoid occupational exposure to cisplatin.

3.
Cancers (Basel) ; 15(15)2023 Jul 29.
Artículo en Inglés | MEDLINE | ID: mdl-37568670

RESUMEN

BACKGROUND: The intraoperative detection of solitary pulmonary nodules (SPNs) continues to be a major challenge, especially in minimally invasive video-assisted thoracic surgery (VATS). The location, size, and intraoperative frozen section result of SPNs are decisive regarding the extent of lung resection. This feasibility study investigates the technical applicability of intraoperative contrast-enhanced ultrasonography (Io-CEUS) in minimally invasive thoracic surgery. METHODS: In this prospective, monocentric clinical feasibility study, n = 30 patients who underwent Io-CEUS during elective minimally invasive lung resection for SPNs between October 2021 and February 2023. The primary endpoint was the technical feasibility of Io-CEUS during VATS. Secondary endpoints were defined as the detection and characterization of SPNs. RESULTS: In all patients (female, n = 13; mean age, 63 ± 8.6 years) Io-CEUS could be performed without problems during VATS. All SPNs were detected by Io-CEUS (100%). SPNs had a mean size of 2.2 cm (0.5-4.5 cm) and a mean distance to the lung surface of 2.0 cm (0-6.4 cm). B-mode, colour-coded Doppler sonography, and contrast-enhanced ultrasound were used to characterize all tumours intraoperatively. Significant differences were found, especially in vascularization as well as in contrast agent behaviour, depending on the tumour entity. After successful lung resection, a pathologic examination confirmed the presence of lung carcinomas (n = 17), lung metastases (n = 10), and benign lung tumours (n = 3). CONCLUSIONS: The technical feasibility of Io-CEUS was confirmed in VATS before resection regarding the detection of suspicious SPNs. In particular, the use of Doppler sonography and contrast agent kinetics revealed intraoperative specific aspects depending on the tumour entity. Further studies on Io-CEUS and the application of an endoscopic probe for VATS will follow.

4.
Int Arch Occup Environ Health ; 95(2): 399-407, 2022 Mar.
Artículo en Inglés | MEDLINE | ID: mdl-34191089

RESUMEN

PURPOSE: Hyperthermic intrathoracic chemotherapy (HITOC) is an additive, intraoperative treatment for selected malignant pleural tumors. To improve local tumor control, the thoracic cavity is perfused with a cisplatin-containing solution after surgical cytoreduction. Since cisplatin is probably carcinogenic to humans, potential contamination of surfaces and pathways of exposure should be systematically investigated to enable risk assessments for medical staff and thus derive specific recommendations for occupational safety. METHODS: Wipe sampling was performed at pre-selected locations during and after ten HITOC procedures, including on the surgeon's gloves, for the quantitation of surface contaminations with cisplatin. After extraction of the samples with hydrochloric acid, platinum was determined as a marker for cisplatin by voltammetry. RESULTS: High median concentrations of cytostatic drugs were detected on the surgeons' (1.73 pg Cis-Pt/cm2, IQR: 9.36 pg Cis-Pt/cm2) and perfusionists' (0.69 pg Cis-Pt/cm2, IQR: 1.73 pg Cis-Pt/cm2) gloves. The display of the perfusion device showed partially elevated levels of cisplatin up to 4.92 pg Cis-Pt/cm2 and thus could represent an origin of cross-contamination. In contrast, cisplatin levels on the floor surfaces in the area of the surgeon and the perfusion device or in the endobronchial tube were relatively low. CONCLUSION: With a correct use of personal protective equipment and careful handling, intraoperative HITOC appears to be safe to perform with a low risk of occupational exposure to cisplatin.


Asunto(s)
Antineoplásicos , Hipertermia Inducida , Exposición Profesional , Neoplasias Pleurales , Cisplatino , Humanos , Exposición Profesional/prevención & control , Quirófanos
5.
Ann Transl Med ; 9(11): 953, 2021 Jun.
Artículo en Inglés | MEDLINE | ID: mdl-34350268

RESUMEN

BACKGROUND: Hyperthermic perfusion of the pleural cavity with cisplatin after pleurectomy/decortication is an additional therapeutic option to reduce local relapse of malignant pleural tumours. Although there are data on the clinical effect, only little is known about the local impact on human lung tissue by cisplatin. The objective of this experimental study is to evaluate both the concentration and the penetration depth of cisplatin in human lung tissue after normothermic and hyperthermic exposure under ex-vivo-in-vitro conditions. METHODS: This study was approved by the local ethics committee. In total, 46 patients underwent elective lobectomy and wedge resections were taken from the resected lobes. A decortication of the visceral pleura was performed under ex-vivo conditions, and the tissue samples were incubated with cisplatin (c =0.05 mg/mL) at 37, 42 or 45 °C for 60 minutes. Then the mass concentration of platinum was measured with flameless atomic absorption spectroscopy and then converted into cisplatin concentration. In addition, the current data were compared with previous data of our working group (42 °C, without decortication). RESULTS: The overall maximum penetration depth was 7.5 mm due to limitations of our methods. The functional maximum penetration depth did not vary with temperature (P=0.243) but by decortication (P<0.001). The cisplatin concentration decreased with increasing penetration depth (P<0.001). An increase of temperature showed no effect on the cisplatin concentration in decorticated tissue samples (P=0.985). However, decortication at 42 °C significantly increased the cisplatin concentration in comparison to not decorticated tissue samples (P=0.005). CONCLUSIONS: Decortication of the visceral pleura increases the cisplatin concentration in the lung tissue. Therefore, it possibly reduces the likelihood of a local relapse. An increase of temperature did not show any effect.

6.
Ann Transl Med ; 9(11): 955, 2021 Jun.
Artículo en Inglés | MEDLINE | ID: mdl-34350270

RESUMEN

Although the method of hyperthermic intrathoracic chemotherapy (HITHOC) after cytoreductive surgery is known for more than 20 years now, the interest of the scientific community has been growing especially in recent years with annually increasing numbers of publications. The feasibility and safety of HITHOC has already been demonstrated. The primary objective now is to reach a consent about the optimal implementation and standardization of the procedure. In the international clinical practice of HITHOC the parameters of temperature, duration, type and number of chemotherapeutic agents vary, making a comparison of the short- and long-term results difficult. For about ten years, the combination of surgical cytoreduction and HITHOC has been performed more routinely in several departments of thoracic surgery in Germany, especially in university hospitals. Recently, a group of experts for thoracic surgery of five departments of thoracic surgery elaborated recommendations for the HITHOC procedure in Germany. These recommendations represent a standardized and consistent implementation of HITHOC. Through this, postoperative complications associated to HITHOC should be reduced and a better comparison of the results should be enabled. This article is intended to give a brief overview of the literature, current recommendations in the implementation of HITHOC and also aims to show future perspectives of this procedure.

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