Orestis Ioannidis, Antonia Aikaterini Bourtzinakou, Elissavet Anestiadou, Evangelia Ioannidou, Konstantinos Siozos, Georgios Gemousakakis, Stefanos Bitsianis, Savvas Symeonidis, Efstathios Kotidis, Manousos Georgios Pramateftakis, Ioannis Mantzoros, Stamatios Angelopoulos
Background and Objectives: Vascular access in cancer patients with limited mobility remains a persistent clinical challenge, although both devices and insertion methods have improved considerably. We present our clinical experience with at-home PICC placement, supported by real-world data from routine practice, in oncology patients unable to attend hospital care, exploring its feasibility, safety, and practical applicability. Materials and Methods: All PICC insertions were performed at patients' bedside by a trained surgeon using sterile technique. A single- or double-lumen PICC catheter was inserted under ultrasound guidance, magnetic tracking, and intracavitary ECG confirmation to secure optimal venous entry and accurate tip positioning. Results: A total of 28 PICC lines were successfully inserted in 26 oncologic patients. Two patients required catheter re-insertion, one following accidental removal and one due to infection. In 26 of 28 cases (92.9%), insertions were completed on the first attempt, while two cases required a second attempt. Insertion in the Green Zone per the ZIM classification was achieved in 26 of 28 cases (92.9%), and only two required insertions in the Yellow Zone. The basilic vein was chosen in 75% of patients. A total of 23 single-lumen and five double-lumen catheters were inserted. In terms of complications, four cases of systemic infection occurred more than 15 days after insertion and were not considered insertion-related; two patients developed localized edema requiring anticoagulation, and four catheter occlusions were managed conservatively. Conclusions: At-home PICC placement appears to be a feasible and clinically applicable approach when performed by qualified and credentialed professionals. These observations, derived from real-world clinical experience, suggest a potential role for this model in selected patient populations. Using proper sterile technique and real-time tip confirmation tools, this intervention may contribute to improved continuity of care and reduced hospital visits in selected patients. These observations suggest a potential role for expanding outpatient vascular access programs in selected patient populations.