ESPEN guideline on home parenteral nutrition
Tài liệu tham khảo
Cederholm, 2017, ESPEN guidelines on definitions and terminology of clinical nutrition, Clin Nutr, 36, 49, 10.1016/j.clnu.2016.09.004
Pironi, 2015, Home artificial nutrition & chronic intestinal failure; acute intestinal failure special interest groups of ESPEN. ESPEN endorsed recommendations. Definition and classification of intestinal failure in adults, Clin Nutr, 34, 171, 10.1016/j.clnu.2014.08.017
Staun, 2009, ESPEN Guidelines on Parenteral Nutrition: home parenteral nutrition (HPN) in adult patients, Clin Nutr, 28, 467, 10.1016/j.clnu.2009.04.001
Pironi, 2016, Home artificial nutrition & chronic intestinal failure special interest group of ESPEN. ESPEN guidelines on chronic intestinal failure in adults, Clin Nutr, 35, 247, 10.1016/j.clnu.2016.01.020
2002, Guidelines for the use of parenteral and enteral nutrition in adult and pediatric patients, J Parenter Enter Nutr, 26, 1SA, 10.1177/0148607102026001011
Gillanders, 2008, AuSPEN clinical practice guideline for home parenteral nutrition patients in Australia and New Zealand, Nutrition, 24, 998, 10.1016/j.nut.2008.06.004
Kovacevich, 2005, Standards for specialized Nutrition support: home care patients, Nutr Clin Pract, 20, 579, 10.1177/0115426505020005579
Koletzko, 2009, Guidelines on parenteral nutrition from the German society for nutritional medicine (DGEM)-overview, Ger Med Sci, 7, 27
Pittiruti, 2009, ESPEN guidelines on parenteral nutrition: central venous catheters (access, care, diagnosis and therapy of complications), Clin Nutr, 28, 365, 10.1016/j.clnu.2009.03.015
Dreesen, 2012, Guidelines recommendations on care of adult patients receiving home parenteral nutrition: a systematic review of global practices, Clin Nutr, 31, 602, 10.1016/j.clnu.2012.02.013
Bischoff, 2013, S3-Leitlinie der Deutschen Gesellschaft für Ernährungsmedizin (DGEM) in Zusammenarbeit mit der GESKES und der AKE, Aktuelle Ernährungsmed, 38, e101, 10.1055/s-0033-1349549
2006
2018
Arends, 2017, ESPEN guidelines on nutrition in cancer patients, Clin Nutr, 36, 11, 10.1016/j.clnu.2016.07.015
Wengler, 2006, Monitoring of patients on home parenteral nutrition (HPN) in Europe: a questionnaire based study on monitoring practice in 42 centres, Clin Nutr, 25, 693, 10.1016/j.clnu.2006.01.026
Pironi, 2020, Home parenteral nutrition provision modalities for chronic intestinal failure in adult patients: an international survey, Clin Nutr, 39, 585, 10.1016/j.clnu.2019.03.010
Bischoff, 2015, Standard operation procedures for ESPEN guidelines and consensus papers, Clin Nutr, 34, 1043, 10.1016/j.clnu.2015.07.008
2014
2012
Pi roni, 2018, Clinical classification of adult patients with chronic intestinal failure due to benign disease: an international multicenter cross-sectional survey, Clin Nutr, 37, 728, 10.1016/j.clnu.2017.04.013
Pironi, 2012, Outcome on home parenteral nutrition for benign intestinal failure: a review of the literature and benchmarking with the European prospective survey of ESPEN, Clin Nutr, 31, 831, 10.1016/j.clnu.2012.05.004
Amiot, 2013, Determinants of home parenteral nutrition dependence and survival of 268 patients with non-malignant short bowel syndrome, Clin Nutr, 32, 368, 10.1016/j.clnu.2012.08.007
Higuera, 2014, Outcomes of a general hospital-based home parenteral nutrition (HPN) program; report of our experience from a 26-year period, Nutr Hosp, 30, 359
Dibb, 2017, Survival and nutritional dependence on home parenteral nutrition: three decades of experience from a single referral centre, Clin Nutr, 36, 570, 10.1016/j.clnu.2016.01.028
Brandt, 2017, Home parenteral nutrition in adult patients with chronic intestinal failure: the evolution over 4 decades in a tertiary referral center, J Parenter Enter Nutr, 41, 1178, 10.1177/0148607116655449
Wu, 2017, Prevalence and risk factors for complications in adult patients with short bowel syndrome receiving long-term home parenteral nutrition, Asia Pac J Clin Nutr, 26, 591
Joly, 2018, Five-year survival and causes of death in patients on home parenteral nutrition for severe chronic and benign intestinal failure, Clin Nutr, 37, 1415, 10.1016/j.clnu.2017.06.016
Pironi, 2006, Candidates for intestinal transplantation: a multicenter survey in Europe, Am J Gastroenterol, 101, 1633, 10.1111/j.1572-0241.2006.00710.x
Pironi, 2008, Survival of patients identified as candidates for intestinal transplantation: a 3-year prospective follow-up, Gastroenterology, 135, 61, 10.1053/j.gastro.2008.03.043
Pironi, 2011, Long-term follow-up of patients on home parenteral nutrition in Europe: implications for intestinal transplantation, Gut, 60, 17, 10.1136/gut.2010.223255
Mercadante, 2007, Medical treatment for inoperable malignant bowel obstruction: a qualitative systematic review, J Pain Symptom Manag, 33, 217, 10.1016/j.jpainsymman.2006.06.014
Bozzetti, 1996, Guidelines on artificial nutrition versus hydration in terminal cancer patients. European Association for Palliative Care, Nutrition, 12, 163, 10.1016/S0899-9007(96)91120-X
Bozzetti, 2009, Espen guidelines on parenteral nutrition: non-surgical oncology, Clin Nutr, 28, 445, 10.1016/j.clnu.2009.04.011
August, 2009, A.S.P.E.N. Clinical guidelines: nutrition support therapy during adult anticancer treatment and in hematopoietic cell transplantation, J Parenter Enter Nutr, 33, 472, 10.1177/0148607109341804
Naghibi, 2015, A systematic review with meta-analysis of survival, quality of life and cost-effectiveness of home parenteral nutrition in patients with inoperable malignant bowel obstruction, Clin Nutr, 34, 825, 10.1016/j.clnu.2014.09.010
Bozzetti, 2014, The prognosis of incurable cachectic cancer patients on home parenteral nutrition: a multicentre observational study with prospective follow-up of 414 patients, Ann Oncol, 25, 487, 10.1093/annonc/mdt549
Bozzetti, 2015, Development and validation of a nomogram to predict survival in incurable cachectic cancer patients on home parenteral nutrition, Ann Oncol, 26, 2335, 10.1093/annonc/mdv365
Sowerbutts, 2018, Home parenteral nutrition for people with inoperable malignant bowel obstruction, Cochrane Database Syst Rev, 8, CD012812
Bozzetti, 2009, The ESPEN clinical practice Guidelines on Parenteral Nutrition: present status and perspectives for future research, Clin Nutr, 28, 359, 10.1016/j.clnu.2009.05.010
Finocchiaro, 2002, Multicentric study on home parenteral nutrition in advanced cancer patients, Riv Ital Nutr Parenter Enterale, 20, 98
Seys, 2014, Home parenteral nutrition in elderly patients with cancer: an observational prospective study, Bull Cancer, 101, 243, 10.1684/bdc.2014.1903
Culine, 2014, Home parenteral nutrition improves quality of life and nutritional status in patients with cancer: a French observational multicentre study, Support Care Canc, 22, 1867, 10.1007/s00520-014-2164-9
Vashi, 2014, A longitudinal study investigating quality of life and nutritional outcomes in advanced cancer patients receiving home parenteral nutrition, BMC Canc, 14, 593, 10.1186/1471-2407-14-593
Girke, 2016, Quality of life and nutrition condition of patients improve under home parenteral nutrition: an exploratory study, Nutr Clin Pract, 31, 659, 10.1177/0884533616637949
Cotogni, 2017, Longitudinal study of quality of life in advanced cancer patients on home parenteral nutrition, Cancer Med, 6, 1799, 10.1002/cam4.1111
Hyltander, 1991, The effect on body composition and exercise performance of home parenteral nutrition when given as adjunct to chemotherapy of testicular carcinoma, Eur J Clin Invest, 21, 413, 10.1111/j.1365-2362.1991.tb01389.x
Lundholm, 2004, Palliative nutritional intervention in addition to cyclooxygenase and erythropoietin treatment for patients with malignant disease: effects on survival, metabolism and function, Cancer, 100, 1967, 10.1002/cncr.20160
Lundholm, 2007, Insulin treatment in cancer cachexia: effects on survival, metabolism, and physical functioning, Clin Canc Res, 13, 2699, 10.1158/1078-0432.CCR-06-2720
Obling, 2019, Home parenteral nutrition increases fat free mass in patients with incurable gastrointestinal cancer. Results of a randomized controlled trial, Clin Nutr, 38, 182, 10.1016/j.clnu.2017.12.011
Dreesen, 2013, Quality of care for cancer patients on home parenteral nutrition: development of key interventions and outcome indicators using a two-round Delphi approach, Support Care Canc, 21, 1373, 10.1007/s00520-012-1679-1
Wanden-Berghe Lozano, 2017, Home and ambulatory artificial nutrition (NADYA) group report -home parenteral nutrition in Spain, 2016, Nutr Hosp, 34, 1497
Winkler, 2016, Characteristics of a cohort of home parenteral nutrition patients at the time of enrollment in the sustain registry, J Parenter Enter Nutr, 40, 1140, 10.1177/0148607115586575
Smith, 2016
Pironi, 2007, Prevalence of home artificial nutrition in Italy in 2005: a survey by the Italian society for parenteral and enteral nutrition (SINPE), Clin Nutr, 26, 123, 10.1016/j.clnu.2006.07.004
Pironi, 2017, Development of home artificial nutrition in Italy over a seven year period: 2005–2012, BMC Nutrition, 3, 6, 10.1186/s40795-016-0118-y
Hortencio, 2017, Changes in home parenteral nutrition practice based on the Canadian home parenteral nutrition patient registry, J Parenter Enter Nutr, 41, 830, 10.1177/0148607115609289
Bischoff, 2020, ESPEN guideline on home enteral nutrition, Clin Nutr, 39, 5, 10.1016/j.clnu.2019.04.022
Burgos, 2018, ESPEN guideline clinical nutrition in neurology, Clin Nutr, 37, 354, 10.1016/j.clnu.2017.09.003
Kirby, 2017, Overview of home parenteral nutrition: an update, Nutr Clin Pract, 32, 739, 10.1177/0884533617734528
Hotta, 2014, Home parenteral nutrition therapy in seven patients with anorexia nervosa: the role and indications, Intern Med, 53, 2695, 10.2169/internalmedicine.53.3023
Kumpf, 2012, Home parenteral nutrition: safe transition from hospital to home, Nutr Clin Pract, 27, 749, 10.1177/0884533612464888
Durfee, 2014, A.S.P.E.N. Standards for nutrition support: home and alternate site care, Nutr Clin Pract, 29, 542, 10.1177/0884533614539017
Vashi, 2017, Incidence of and factors associated with catheter-related bloodstream infection in patients with advanced solid tumors on home parenteral nutrition managed using a standardized catheter care protocol, BMC Infect Dis, 17, 372, 10.1186/s12879-017-2469-7
Pichitchaipitak, 2018, Predictive factors of catheter-related bloodstream infection in patients receiving home parenteral nutrition, Nutrition, 46, 1, 10.1016/j.nut.2017.08.002
Winkler, 2014, Long-term home parenteral nutrition: it takes an interdisciplinary approach, J Infusion Nurs, 37, 389, 10.1097/NAN.0000000000000068
Dibb, 2013, Review article: the management of long-term parenteral nutrition, Aliment Pharmacol Ther, 37, 587, 10.1111/apt.12209
Dibb, 2017, Home parenteral nutrition: vascular access and related complications, Nutr Clin Pract, 32, 769, 10.1177/0884533617734788
Boeykens, 2018, Advanced practice nursing: nutrition Nurse Specialist role and function, Clin Nutr ESPEN, 26, 72, 10.1016/j.clnesp.2018.04.011
Dreesen, 2014, Identifying patient-centered quality indicators for the care of adult home parenteral nutrition (HPN) patients, J Parenter Enter Nutr, 38, 840, 10.1177/0148607113495891
Dreesen, 2013, Development of quality of care interventions for adult patients on home parenteral nutrition (HPN) with a benign underlying disease using a two-round Delphi approach, Clin Nutr, 32, 59, 10.1016/j.clnu.2012.05.006
Storr, 2017, Core components for effective infection prevention and control programmes: new WHO evidence-based recommendations, Antimicrob Resist Infect Contr, 6, 6, 10.1186/s13756-016-0149-9
O'Grady, 2011, Guidelines for the prevention of intravascular catheter-related infections, Clin Infect Dis, 52, e162, 10.1093/cid/cir257
Boeykens, 2015, Monitoring patients on home parenteral nutrition, vols. 318–324
Bond, 2018, Assessing the impact of quality improvement measures on catheter related blood stream infections and catheter salvage: experience from a national intestinal failure unit, Clin Nutr, 37, 2097, 10.1016/j.clnu.2017.10.002
Schneider, 2006, Nutrition support teams: an evidence-based practice, Nutr Clin Pract, 21, 62, 10.1177/011542650602100162
Carreira Villamor, 1997, Percutaneous implant of Hickman catheters and reservoirs. Long-term experience, Rev Clin Esp, 740
Steiger, 2002, Obtaining and maintaining vascular access in the home parenteral nutrition patient, J Parenter Enter Nutr, 26, S17, 10.1177/014860710202600507
Kuizon, 2001, Single-lumen subcutaneous ports inserted by interventional radiologists in patients undergoing chemotherapy: incidence of infection and outcome of attempted catheter salvage, Arch Intern Med, 161, 406, 10.1001/archinte.161.3.406
Raman, 2007, Canadian home total parenteral nutrition registry: preliminary data on the patient population, Can J Gastroenterol, 21, 643, 10.1155/2007/217897
Verso, 2008, Risk factors for upper limb deep vein thrombosis associated with the use of central vein catheter in cancer patients, Intern Emerg Med, 3, 117, 10.1007/s11739-008-0125-3
Petersen, 1999, Silicone venous access devices positioned with their tips high in the superior vena cava are more likely to malfunction, Am J Surg, 178, 38, 10.1016/S0002-9610(99)00124-5
Cadman, 2004, To clot or not to clot? that is the question in central venous catheters, Clin Radiol, 59, 349, 10.1016/j.crad.2003.11.015
Kovacevich, 2019, American society for parenteral and enteral nutrition guidelines for the selection and care of central venous access devices for adult home parenteral nutrition administration, J Parenter Enter Nutr, 43, 15, 10.1002/jpen.1455
Santacruz, 2019, Infectious complications in home parenteral nutrition: a long-term study with peripherally inserted central catheters, tunneled catheters, and ports, Nutrition, 58, 89, 10.1016/j.nut.2018.06.016
Santacruz-Cerdán, 2016, Effectiveness of long-term home parenteral nutrition with peripherally inserted central catheter: a case report, Nutr Hosp, 33, 185
Christensen, 2016, Comparison of complications associated with peripherally inserted central catheters and Hickman™ catheters in patients with intestinal failure receiving home parenteral nutrition. Six-year follow up study, Clin Nutr, 35, 912, 10.1016/j.clnu.2015.06.009
Cotogni, 2015, Peripherally inserted central catheters in non-hospitalized cancer patients: 5-year results of a prospective study, Support Care Canc, 23, 403, 10.1007/s00520-014-2387-9
Touré, 2015, Comparative study of peripherally-inserted and Broviac catheter complications in home parenteral nutrition patients, Clin Nutr, 34, 49, 10.1016/j.clnu.2013.12.017
Bech, 2016, Environmental risk factors for developing catheter-related bloodstream infection in home parenteral nutrition patients: a 6-year follow-up study, J Parenter Enter Nutr, 40, 989, 10.1177/0148607115579939
Ross, 2016, Central venous catheter infections in home parenteral nutrition patients: outcomes from sustain: American society for parenteral and enteral nutrition's national patient registry for nutrition care, Am J Infect Contr, 44, 1462, 10.1016/j.ajic.2016.06.028
Opilla, 2017, Peripherally inserted central catheter experience in long-term home parenteral nutrition patients, Java, 22, 42, 10.1016/j.java.2016.12.001
Hon, 2019, Rate of catheter-related bloodstream infections between tunneled central venous catheters versus peripherally inserted central catheters in adult home parenteral nutrition: a meta-analysis, J Parenter Enter Nutr, 43, 41, 10.1002/jpen.1421
Hurt, 2018, Early history of home parenteral nutrition: from hospital to home, Nutr Clin Pract, 33, 598, 10.1002/ncp.10180
Ayers, 2014, A.S.P.E.N. parenteral nutrition safety consensus recommendations: translation into practice, Nutr Clin Pract, 29, 277, 10.1177/0884533614531294
Mirtallo, 2004, Safe practices for parenteral nutrition, J Parenter Enter Nutr, 28, S39, 10.1177/01486071040280S601
Auty, 1986, The DHSS evaluation programme for infusion control instruments, Eng Med, 15, 175, 10.1243/EMED_JOUR_1986_015_049_02
Saqui, 2014, Quality of life analysis during transition from stationary to portable infusion pump in home parenteral nutrition patients: a Canadian experience, Nutr Clin Pract, 29, 131, 10.1177/0884533613516129
Boutin, 1992, Patients' preference regarding portable pumps, J Intraven Nurs, 15, 230
Ullman, 2016, Dressing and securement for central venous access devices (CVADs): a Cochrane systematic review, Int J Nurs Stud, 59, 177, 10.1016/j.ijnurstu.2016.04.003
Gillies, 2003, Central venous catheter dressings: a systematic review, J Adv Nurs, 44, 623, 10.1046/j.0309-2402.2003.02852.x
Hoffmann, 1992, Transparent polyurethane film as an intravenous catheter dressing. A meta-analysis of the infection risks, J Am Med Assoc, 267, 2072, 10.1001/jama.1992.03480150078041
Laura, 2000, Comparison of two different time interval protocols for central venous catheter dressing in bone marrow transplant patients: results of a randomized, multicenter study, Haematol, 85, 275
Gavin, 2016, Frequency of dressing changes for central venous access devices on catheter-related infections, Cochrane Database Syst Rev, 2, CD009213
Kolaček, 2018, ESPGHAN/ESPEN/ESPR/CSPEN guidelines on pediatric parenteral nutrition: venous access, Clin Nutr, 37, 2379, 10.1016/j.clnu.2018.06.952
Olson, 2004, Evaluation of a no-dressing intervention for tunneled central venous catheter exit sites, J Infusion Nurs, 27, 37, 10.1097/00129804-200401000-00006
Austin, 2016, Systematic review and meta-analyses of the effect of lipid emulsion on microbial growth in parenteral nutrition, J Hosp Infect, 94, 307, 10.1016/j.jhin.2016.08.026
Raad, 2001, Optimal frequency of changing intravenous administration sets: is it safe to prolong use beyond 72 hours?, Infect Control Hosp Epidemiol, 22, 136, 10.1086/501879
Sitges-Serra, 1985, A randomized trial on the effect of tubing changes on hub contamination and catheter sepsis during parenteral nutrition, J Parenter Enter Nutr, 9, 322, 10.1177/0148607185009003322
Ullman, 2013, Optimal timing for intravascular administration set replacement, Cochrane Database Syst Rev, CD003588
Gillies, 2004, Timing of intravenous administration set changes: a systematic review, Infect Control Hosp Epidemiol, 25, 240, 10.1086/502385
Gavin, 2017, Does parenteral nutrition increase the risk of catheter-related bloodstream infection? A systematic literature review, J Parenter Enter Nutr, 41, 918, 10.1177/0148607117714218
Santarpia, 2016, Central venous catheter related bloodstream infections in adult patients on home parenteral nutrition: prevalence, predictive factors, therapeutic outcome, Clin Nutr, 35, 1394, 10.1016/j.clnu.2016.03.009
Edakkanambeth Varayil, 2017, Catheter salvage after catheter-related bloodstream infection during home parenteral nutrition, J Parenter Enter Nutr, 41, 481, 10.1177/0148607115587018
Cotogni, 2013, Catheter-related complications in cancer patients on home parenteral nutrition: a prospective study of over 51,000 catheter days, J Parenter Enter Nutr, 37, 375, 10.1177/0148607112460552
Dreesen, 2013, Epidemiology of catheter-related infections in adult patients receiving home parenteral nutrition: a systematic review, Clin Nutr, 32, 16, 10.1016/j.clnu.2012.08.004
Brewer, 2016, Comparison of sterile vs nonsterile gloves in cutaneous surgery and common outpatient dental procedures: a systematic review and meta-analysis, JAMA Dermatol, 152, 1008, 10.1001/jamadermatol.2016.1965
Heal, 2015, Comparing non-sterile to sterile gloves for minor surgery: a prospective randomised controlled non-inferiority trial, Med J Aust, 202, 27, 10.5694/mja14.00314
Chaiyakunapruk, 2002, Chlorhexidine compared with povidone-iodine solution for vascular catheter-site care: a meta-analysis, Ann Intern Med, 136, 792, 10.7326/0003-4819-136-11-200206040-00007
Mimoz, 2015, Skin antisepsis with chlorhexidine-alcohol versus povidone iodine-alcohol, with and without skin scrubbing, for prevention of intravascular-catheter-related infection (CLEAN): an open-label, multicentre, randomised, controlled, two-by-two factorial trial, Lancet, 386, 2069, 10.1016/S0140-6736(15)00244-5
Lai, 2016, Skin antisepsis for reducing central venous catheter-related infections, Cochrane Database Syst Rev, CD010140
Darouiche, 2010, Chlorhexidine-alcohol versus povidone-iodine for surgical-site antisepsis, N Engl J Med, 362, 18, 10.1056/NEJMoa0810988
Yasuda, 2017, Comparison of the efficacy of three topical antiseptic solutions for the prevention of catheter colonization: a multicenter randomized controlled study, Crit Care, 21, 32, 10.1186/s13054-017-1890-z
Blot, 2014, Prevention of central line-associated bloodstream infections through quality improvement interventions: a systematic review and meta-analysis, Clin Infect Dis, 59, 96, 10.1093/cid/ciu239
2012
Picheansathian, 2004, A systematic review on the effectiveness of alcohol-based solutions for hand hygiene, Int J Nurs Pract, 10, 3, 10.1111/j.1440-172X.2003.00457.x
Girou, 2002, Efficacy of hand rubbing with alcohol based solution versus standard handwashing with antiseptic soap: randomised clinical trial, BMJ, 325, 362, 10.1136/bmj.325.7360.362
Kac, 2006, Microbiological evaluation of two hand hygiene procedures achieved by healthcare workers during routine patient care: a randomized study, J Hosp Infect, 60, 32, 10.1016/j.jhin.2004.10.014
Casey, 2007, A prospective clinical trial to evaluate the microbial barrier of a needleless connector, J Hosp Infect, 65, 212, 10.1016/j.jhin.2006.09.029
Yébenes, 2004, Prevention of catheter-related bloodstream infection in critically ill patients using a disinfectable, needle-free connector: a randomized controlled trial, Am J Infect Contr, 32, 291, 10.1016/j.ajic.2003.12.004
Casey, 2003, A randomized, prospective clinical trial to assess the potential infection risk associated with the PosiFlow needleless connector, J Hosp Infect, 54, 288, 10.1016/S0195-6701(03)00130-0
Btaiche, 2011, The effects of needleless connectors on catheter-related bloodstream infections, Am J Infect Contr, 39, 277, 10.1016/j.ajic.2010.07.011
Williams, 2018, Catheter occlusion in home infusion: the influence of needleless connector design on central catheter occlusion, J Infusion Nurs, 41, 52, 10.1097/NAN.0000000000000259
Ling, 2016, APSIC guide for prevention of central line associated bloodstream infections (CLABSI), Antimicrob Resist Infect Contr, 5, 16, 10.1186/s13756-016-0116-5
Moureau, 2015, Disinfection of needleless connector hubs: clinical evidence systematic review, Nurs Res Pract, 2015, 796762
Breimer, 2018, Disinfection of injection ports - a systematic overview of optimal scrub-time, Lakartidningen, 115
Menyhay, 2006, Disinfection of needleless catheter connectors and access ports with alcohol may not prevent microbial entry: the promise of a novel antiseptic-barrier cap, Infect Control Hosp Epidemiol, 27, 23, 10.1086/500280
Voor In 't Holt, 2017, Antiseptic barrier cap effective in reducing central line-associated bloodstream infections: a systematic review and meta-analysis, Int J Nurs Stud, 69, 34, 10.1016/j.ijnurstu.2017.01.007
Chang, 2003, Evaluation of infectious complications of the implantable venous access system in a general oncologic population, Am J Infect Contr, 31, 34, 10.1067/mic.2003.29
Karamanoglu, 2003, Port needles: do they need to be removed as frequently in infusional chemotherapy?, J Infusion Nurs, 26, 239, 10.1097/00129804-200307000-00009
Robbins, 1999, Swimming and central venous catheter-related infections in the child with cancer, J Pediatr Oncol Nurs, 16, 51, 10.1177/104345429901600107
Miller, 2014, Going with the flow or swimming against the tide: should children with central venous catheters swim?, Nutr Clin Pract, 29, 97, 10.1177/0884533613515931
Ivy, 2009, Closed-hub systems with protected connections and the reduction of risk of catheter-related bloodstream infection in pediatric patients receiving intravenous prostanoid therapy for pulmonary hypertension, Infect Control Hosp Epidemiol, 30, 823, 10.1086/605320
Brito, 2018, Comparison between saline solution containing heparin versus saline solution in the lock of totally implantable catheters, Ann Vasc Surg, 47, 85, 10.1016/j.avsg.2017.09.015
Dal Molin, 2015, Normal saline versus heparin solution to lock totally implanted venous access devices: results from a multicenter randomized trial, Eur J Oncol Nurs, 19, 638, 10.1016/j.ejon.2015.04.001
Dal Molin, 2014, Flushing the central venous catheter: is heparin necessary?, J Vasc Access, 15, 241, 10.5301/jva.5000225
Pittiruti, 2016, Evidence-based criteria for the choice and the clinical use of the most appropriate lock solutions for central venous catheters (excluding dialysis catheters): a GAVeCeLT consensus, J Vasc Access, 17, 453, 10.5301/jva.5000576
Shanks, 2005, Heparin stimulates Staphylococcus aureus biofilm formation, Infect Immun, 73, 4596, 10.1128/IAI.73.8.4596-4606.2005
Allon, 2008, Prophylaxis against dialysis catheter-related bacteremia: a glimmer of hope, Am J Kidney Dis, 51, 165, 10.1053/j.ajkd.2007.12.003
Tribler, 2017, Taurolidine-citrate-heparin lock reduces catheter-related bloodstream infections in intestinal failure patients dependent on home parenteral support: a randomized, placebo-controlled trial, Am J Clin Nutr, 106, 839, 10.3945/ajcn.117.158964
Wouters, 2018, Randomised clinical trial: 2% taurolidine versus 0.9% saline locking in patients on home parenteral nutrition, Aliment Pharmacol Ther, 48, 410, 10.1111/apt.14904
Wouters, 2019, Clinical outcomes of home parenteral nutrition patients using taurolidine as catheter lock: a long-term cohort study, Clin Nutr, 38, 2210, 10.1016/j.clnu.2018.09.020
Zerla, 2017, Evaluating safety, efficacy, and cost-effectiveness of PICC securement by subcutaneously anchored stabilization device, J Vasc Access, 18, 238, 10.5301/jva.5000655
Macmillan, 2018, SecurAcath for securing peripherally inserted central catheters: a NICE medical technology guidance, Appl Health Econ Health Pol, 16, 779, 10.1007/s40258-018-0427-1
Goossens, 2018, SecurAstaP trial: securement with SecurAcath versus StatLock for peripherally inserted central catheters, a randomised open trial, BMJ Open, 8, 10.1136/bmjopen-2017-016058
Elen Hughes, 2014, Reducing PICC migrations and improving patient outcomes, Br J Nurs, 23, 14
Gavin, 2018, Does a dedicated lumen for parenteral nutrition administration reduce the risk of catheter-related bloodstream infections? A systematic literature review, J Infusion Nurs, 41, 122, 10.1097/NAN.0000000000000270
Buchman, 2014, Risk factors for the development of catheter-related bloodstream infections in patients receiving home parenteral nutrition, J Parenter Enter Nutr, 38, 744, 10.1177/0148607113491783
Munck, 2004, Follow-up of 452 totally implantable vascular devices in cystic fibrosis patients, Eur Respir J, 23, 430, 10.1183/09031936.04.00052504
Boullata, 2014, ASPEN clinical guidelines: parenteral nutrition ordering, order review, compounding, labeling and dispensing, J Parenter Enter Nutr, 38, 334, 10.1177/0148607114521833
Muhlebach, 2009, Practical handling of AIO admixtures - guidelines on parenteral nutrition, chapter 10, Ger Med Sci, 7, Doc18
Pietka, 2013, Ready-to-use (RTU) bags versus compounded parenteral nutrition: battle for microbiological safety, Clin Nutr, 32, 199, 10.1016/S0261-5614(13)60519-1
Yu, 2017, Efficacy, safety, and preparation of standardized parenteral nutrition regimens: three-chamber bags vs compounded monobags - a prospective, multicenter, randomized, single-blind clinical trial, Nutr Clin Pract, 32, 545, 10.1177/0884533617701883
Hall, 2015, Safety, cost, and clinical considerations for the use of premixed parenteral nutrition, Nutr Clin Pract, 30, 325, 10.1177/0884533615578459
Berlana, 2013, Cost analysis of adult parenteral nutrition systems: three-compartment bag versus customized, Nutr Hosp, 28, 2135
Turpin, 2011, Nutrition therapy cost analysis in the US: pre-mixed multi-chamber bag vs compounded parenteral nutrition, Appl Health Econ Health Pol, 9, 281, 10.2165/11594980-000000000-00000
Pichard, 2000, Economic investigation of the use of three-compartment total parenteral nutrition bag: prospective randomized unblinded controlled study, Clin Nutr, 19, 245, 10.1054/clnu.2000.0106
Turpin, 2014, The impact of parenteral nutrition preparation on bloodstream infection risk and costs, Eur J Clin Nutr, 68, 953, 10.1038/ejcn.2014.34
Liu, 2010, Methods to identify and compare bloodstream infection rates among patients administered parenteral nutrition via hospital compounded vs. premixed multi-chamber bags, Value Health, 13, 10.1016/S1098-3015(10)72956-9
Beattie, 2016, Comparison between premixed and compounded parenteral nutrition solutions in hospitalized patients requiring parenteral nutrition, Nutr Clin Pract, 31, 229, 10.1177/0884533615621046
Milicevic, 2012, Standardized two-compartment parenteral nutrition utilization at a tertiary referral hospital, Clin Nutr Suppl, 7, 127, 10.1016/S1744-1161(12)70311-3
Alfonso, 2017, Clinical, ergonomic, and economic outcomes with multichamber bags compared with (hospital) pharmacy compounded bags and multibottle systems: a systematic literature review, J Parenter Enter Nutr, 41, 1162, 10.1177/0148607116657541
Aeberhard, 2017, Physicochemical stability and compatibility testing of Leviracetam in all-in-one parenteral admixture in daily practice, Eur J Pharmaceut Sci, 96, 449, 10.1016/j.ejps.2016.10.015
Mühlebach, 2018, Pharmaceutical aspects of parenteral nutrition support, chap. 6.2.3.2. (How to prepare PN admixtures, role and function of the pharmacist; chap. 6.2.3.3. Stability and compatibility on PN admixtures, Chap 6.2.3.4 Drugs and nutritional admixtures
Aeberhard, 2017, Parenterale Ernährung – grundlagen und Durchführung (CME). Parenteral nutrition – basics and Good Practice, Aktuelle Ernährungsmed, 42, 53, 10.1055/s-0042-121786
White, 2011, The Pennington Lecture Quality parenteral nutrition: an ideal mixed bag, Proc Nutr Soc, 70, 285, 10.1017/S0029665111000541
Kochevar, 2007, ASPEN statement on parenteral nutrition standardization, J Parenter Enter Nutr, 31, 441, 10.1177/0148607107031005441
Mühlebach, 2019, Parenteral nutrition, vol. 2, 131
Ayers, 2014, A.S.P.E.N. parenteral nutrition safety consensus recommendations, J Parenter Enter Nutr, 38, 296, 10.1177/0148607113511992
Pietka, 2015, Nutrition Support Teams : the cooperation among physicians and pharmacists helps improve cost-effectiveness on HPN, Nutr Hosp, 31, 251
Lauverjat, 2006, Chronic dehydration may impair renal function in patients with chronic intestinal failure on long-term parenteral nutrition, Clin Nutr, 25, 75, 10.1016/j.clnu.2005.09.010
Konrad, 2017, Treating dehydration at home avoids healthcare costs associated with emergency department visits and hospital readmissions for adult patients receiving home parenteral support, Nutr Clin Pract, 32, 385, 10.1177/0884533616673347
Dreesen, 2015, Outcome indicators for home parenteral nutrition care: point of view from adult patients with benign disease, J Parenter Enter Nutr, 39, 828, 10.1177/0148607114536926
Messing, 1995, Prognosis of patients with nonmalignant chronic intestinal failure receiving long-term home parenteral nutrition, Gastroenterology, 108, 1005, 10.1016/0016-5085(95)90196-5
Bischoff, 2009, Organisation, regulations, preparation and logistics of parenteral nutrition in hospitals and homes; the role of the nutrition support team - guidelines on Parenteral Nutrition Chapter 8, Ger Med Sci, 7, Doc20
Huisman-de Waal, 2011, Psychosocial complaints are associated with venous access-device related complications in patients on home parenteral nutrition, J Parenter Enter Nutr, 35, 588, 10.1177/0148607110385818
Huisman-de Waal, 2011, High-tech home care: overview of professional care in patients on home parenteral nutrition and implications for nursing care, J Clin Nurs, 20, 2125, 10.1111/j.1365-2702.2010.03682.x
Park, 2016, Implementing a central venous catheter self-management education program for patients with cancer, Eur J Oncol Nurs, 25, 1, 10.1016/j.ejon.2016.08.010
Hudgins, 2017, Reducing time to antibiotics in children with intestinal failure, central venous line and fever, Pediatrics, 140
Chaftari, 2017, Improvement in the diagnosis of catheter-related bloodstream infections in a tertiary cancer center, Am J Infect Contr, 45, e34, 10.1016/j.ajic.2016.12.009
Pironi, 2012, Assessment of quality of life on home parenteral nutrition and after intestinal transplantation using treatment-specific questionnaires, Am J Transplant, 12, 60, 10.1111/j.1600-6143.2012.04244.x
Baxter, 2019, An international study of the quality of life of adult patients treated with home parenteral nutrition, Clin Nutr, 38, 1788, 10.1016/j.clnu.2018.07.024
Mantegazza, 2016, Travelling with children on home parenteral nutrition, J Pediatr Gastroenterol Nutr, 62, 145, 10.1097/MPG.0000000000000896
Donabedian, 2005, Evaluating the quality of medical care, Milbank Q, 83, 691, 10.1111/j.1468-0009.2005.00397.x