{"id":3207,"date":"2024-10-23T14:54:24","date_gmt":"2024-10-23T06:54:24","guid":{"rendered":"https:\/\/www.transplantation.com.cn\/?p=3207"},"modified":"2025-04-01T11:45:33","modified_gmt":"2025-04-01T03:45:33","slug":"%e6%bc%ab%e8%b0%88%e5%99%a8%e5%ae%98%e7%a7%bb%e6%a4%8d%e3%80%81%e7%bb%86%e8%8f%8c%e6%84%9f%e6%9f%93%e4%b8%8e%e5%99%ac%e8%8f%8c%e4%bd%93%e6%b2%bb%e7%96%97","status":"publish","type":"post","link":"https:\/\/www.transplantation.com.cn\/zh_CN\/2024\/10\/23\/%e6%bc%ab%e8%b0%88%e5%99%a8%e5%ae%98%e7%a7%bb%e6%a4%8d%e3%80%81%e7%bb%86%e8%8f%8c%e6%84%9f%e6%9f%93%e4%b8%8e%e5%99%ac%e8%8f%8c%e4%bd%93%e6%b2%bb%e7%96%97\/","title":{"rendered":"Organ Transplantation, Bacterial Infection, and Bacteriophage Therapy Introduction"},"content":{"rendered":"\n<figure class=\"wp-block-image aligncenter size-full\"><img loading=\"lazy\" decoding=\"async\" width=\"698\" height=\"155\" src=\"https:\/\/www.transplantation.com.cn\/wp-content\/uploads\/2024\/10\/image-53.png\" alt=\"\" class=\"wp-image-3208\" srcset=\"https:\/\/www.transplantation.com.cn\/wp-content\/uploads\/2024\/10\/image-53.png 698w, https:\/\/www.transplantation.com.cn\/wp-content\/uploads\/2024\/10\/image-53-300x67.png 300w\" sizes=\"auto, (max-width: 698px) 100vw, 698px\" \/><\/figure>\n\n\n\n<p class=\"has-text-align-left wp-block-paragraph\"><strong>Introduction<\/strong><br \/>Bacterial infections have consistently posed a significant threat to humanity. For recipients of solid organ transplants, there are risks of donor-derived infections, intraoperative infections, and postoperative infections. For patients awaiting organ transplantation, if a bacterial infection is present at the intended transplant site, transplant centers often decline to perform the procedure, fearing that the transplanted organ may become infected. Antibiotic use has been effective in most instances, but as bacterial resistance has risen, cases of \u201csuperbug\u201d infections, which can lead to graft failure and even threaten the recipient\u2019s life, have become increasingly common. Bacteriophage therapy, a natural treatment unaffected by antibiotic resistance, has regained the attention of transplant physicians. Currently, clinical trials of bacteriophage therapy are underway in China, the United States, Europe, Israel, Georgia, and other countries; nearly 20 cases of bacteriophage therapy for transplant-related infections have been documented in published literature, and a clinical trial in Shanghai has treated 12 patients with organ transplant-related infections, 11 of which remain unpublished. Continue reading to learn more.<\/p>\n\n\n\n<p class=\"has-text-align-left wp-block-paragraph\"><\/p>\n\n\n\n<p class=\"has-text-align-center wp-block-paragraph\"><strong><\/strong><strong>1. Bacteriophage Therapy<\/strong><\/p>\n\n\n\n<p class=\"has-text-align-left wp-block-paragraph\">Bacteriophages are a class of microorganisms that specifically \u201cconsume\u201d bacteria. They are widely distributed and abundant within the human body and the surrounding environment, playing a crucial role in maintaining bacterial balance. Lytic bacteriophages multiply and lyse bacteria after infection, possessing a natural ability for precise bacterial killing. Since the French-Canadian microbiologist F\u00e9lix d\u2019H\u00e9relle pioneered bacteriophage therapy in 1919, it has spanned a century of history. During the early post-liberation period, China developed and produced bacteriophages, achieving notable success in preventing dysentery. In 1958, Professor Yu Yi from the Shanghai Institute of Immunology successfully treated burn patients infected with <em>Pseudomonas aeruginosa<\/em> using bacteriophages, marking a significant milestone in China\u2019s microbiological field. However, since the industrial production and widespread use of antibiotics in the 1950s, bacteriophage therapy, with its specific bactericidal properties, has been gradually supplanted by broad-spectrum antibiotics. By the early 21st century, as bacterial resistance became an increasingly severe issue, bacteriophage therapy regained recognition and is now considered a highly promising next-generation antibacterial therapy.<\/p>\n\n\n\n<p class=\"has-text-align-center wp-block-paragraph\"><strong><\/strong><strong>2. Bacterial Resistance<\/strong><\/p>\n\n\n\n<p class=\"has-text-align-left wp-block-paragraph\">The illustrious history of antibiotic use is paralleled by the history of bacterial resistance, which has become an increasingly severe problem. In 2009, the Infectious Diseases Society of America (IDSA) identified <em>Enterococcus faecium<\/em>, <em>Staphylococcus aureus<\/em>, <em>Klebsiella pneumoniae<\/em>, <em>Acinetobacter baumannii<\/em>, <em>Pseudomonas aeruginosa<\/em>, and <em>Escherichia coli<\/em> (collectively known as ESKAPE) as the six \u201csuperbugs\u201d posing the greatest clinical threat. In 2017, the World Health Organization (WHO) identified 12 \u201csuperbugs\u201d in urgent need of new antimicrobial therapies, in addition to the six mentioned above. These bacteria exhibit significant drug resistance and a lack of effective antibiotics, making them primary targets for bacteriophage therapy.<\/p>\n\n\n\n<p class=\"has-text-align-center wp-block-paragraph\"><strong><\/strong><strong>3. Solid Organ Transplantation and Bacterial Infection<\/strong><\/p>\n\n\n\n<p class=\"has-text-align-left wp-block-paragraph\">With advancements in clinical medicine, hygiene, and immunosuppressive drugs, organ transplantation and postoperative anti-rejection management have become increasingly sophisticated. Nevertheless, organ transplant recipients continue to face significant challenges from drug-resistant bacterial infections. Preoperative infections, perioperative nosocomial infections, and postoperative opportunistic infections due to immunosuppression are critical risk factors for graft failure and potentially life-threatening complications. The prevalence of multidrug-resistant bacteria among kidney, liver, heart, and lung transplant recipients reaches 14%, 15%, 25%, and 37%-51%, respectively. Additionally, refractory <em>Pseudomonas aeruginosa<\/em> and <em>Mycobacterium abscessus<\/em> infections frequently occur in patients with chronic lung disease awaiting lung transplantation.<\/p>\n\n\n\n<p class=\"has-text-align-left wp-block-paragraph\">In solid organ transplantation, there is a significant risk of infection with drug-resistant bacteria during organ harvesting, preservation, transportation, implantation, and wound healing. However, due to insufficient environmental bactericidal intensity, frequency, and efficacy, along with delays in bacterial identification and inadequate isolation measures, the spread of superbugs among hospitalized patients cannot be overlooked. Moreover, because transplant recipients require immunosuppressants to prevent organ rejection, opportunistic infections further elevate the risk of infection, often with greater severity.<\/p>\n\n\n\n<p class=\"has-text-align-center wp-block-paragraph\"><strong><\/strong><strong>4. Transplant Infection and Bacteriophage Therapy<\/strong><\/p>\n\n\n\n<p class=\"has-text-align-left wp-block-paragraph\">To date, numerous published reports have documented bacteriophage therapy for transplant-related infections and its use in controlling bacterial infections in organ transplantation, involving a total of 19 patients (Table 1). The key details are as follows:<\/p>\n\n\n\n<p class=\"has-text-align-left wp-block-paragraph\"><strong>Patient categories:<\/strong> Include lung, kidney, liver, and heart transplants, as well as individuals awaiting lung transplantation, with the youngest being a 1-year-old child following a liver transplant.<\/p>\n\n\n\n<p class=\"wp-block-paragraph\"><strong>Target pathogens:<\/strong> Include <em>Pseudomonas aeruginosa<\/em>, <em>Klebsiella pneumoniae<\/em>, <em>Escherichia coli<\/em>, <em>Enterococcus faecium<\/em>, <em>Mycobacterium abscessus<\/em>, <em>Achromobacter<\/em>, and <em>Burkholderia cepacia<\/em>.<\/p>\n\n\n\n<p class=\"wp-block-paragraph\"><strong>Administration methods:<\/strong> Include intravenous injection, nebulized or bronchoscopic lavage (for lungs), local irrigation, gel or wet compress (for skin), nasogastric tube, and rectal suppository.<\/p>\n\n\n\n<p class=\"wp-block-paragraph\"><strong>Combined antibiotic therapy:<\/strong> In most cases, bacteriophages were used alongside antibiotics (without altering the antibiotic regimen) for a duration ranging from a minimum of 5 days to a maximum of 3.5 years.<\/p>\n\n\n\n<p class=\"wp-block-paragraph\"><strong>Treatment outcomes:<\/strong> Bacterial infections and clinical symptoms improved in 13 cases; target bacterial infections were controlled in 3 cases, enabling organ transplantation; target bacteria were eradicated in 2 cases, but clinical symptoms did not improve; neither target bacteria nor clinical symptoms improved in 1 patient.<\/p>\n\n\n\n<p class=\"has-text-align-left wp-block-paragraph\"><strong>Adverse reactions:<\/strong> Only one patient with a pulmonary infection developed a fever following bacteriophage therapy, potentially related to RNA phages.<\/p>\n\n\n\n<figure class=\"wp-block-image aligncenter size-full\"><img loading=\"lazy\" decoding=\"async\" width=\"517\" height=\"883\" src=\"https:\/\/www.transplantation.com.cn\/wp-content\/uploads\/2024\/10\/640-13-1.webp\" alt=\"\" class=\"wp-image-3209\" srcset=\"https:\/\/www.transplantation.com.cn\/wp-content\/uploads\/2024\/10\/640-13-1.webp 517w, https:\/\/www.transplantation.com.cn\/wp-content\/uploads\/2024\/10\/640-13-1-176x300.webp 176w\" sizes=\"auto, (max-width: 517px) 100vw, 517px\" \/><\/figure>\n\n\n\n<p class=\"has-text-align-center wp-block-paragraph\" style=\"font-size:12px\"><strong>Table 1. Summary of Published Cases of Solid Organ Transplant-Related Infections (as of February 28, 2023)<\/strong><\/p>\n\n\n\n<p class=\"has-text-align-center wp-block-paragraph\"><strong><\/strong><strong>5. Application Potential of Bacteriophages in Solid Organ Transplantation<\/strong><\/p>\n\n\n\n<p class=\"has-text-align-left wp-block-paragraph\">Bacteriophages have been utilized to treat bacterial infections both before and after organ transplantation. Bacteriophage therapy has been implemented in China, including at Zhongshan Hospital Affiliated with Fudan University, Shanghai Public Health Clinical Center, Shanghai Jiahui International Hospital, Shenzhen Third People\u2019s Hospital, and Shenzhen People\u2019s Hospital. The Shanghai Bacteriophage and Drug Resistance Research Institute team has conducted bacteriophage therapy for more than 10 cases of transplant-related infections at Zhongshan Hospital and the Public Health Center, including 10 cases of infection following kidney transplantation, one case of infection after liver-kidney transplantation, and one case of interstitial pneumonia (leading to lung transplantation after bacteriophage therapy). These infections were caused by <em>Klebsiella pneumoniae<\/em>, <em>Acinetobacter baumannii<\/em>, and <em>Pseudomonas aeruginosa<\/em>. Administration methods included bladder irrigation (for urinary tract infections), aerosol inhalation (for pulmonary infections), catheter-based washing (for abdominal infections), and wet dressings (for wound infections). Treatment duration ranged from 1 to 5 rounds, with each round lasting 1\u20133 days and involving two daily bacteriophage administrations. Compared to conventional antibiotic therapy, personalized bacteriophage screening for drug-resistant bacteria in patients often yields better therapeutic outcomes and fewer side effects.<\/p>\n\n\n\n<p class=\"wp-block-paragraph\">Drug-resistant pathogens may also be present in hospitals, operating rooms, and home environments, contributing to transplant-related infections. Conventional chemical (e.g., chlorine-based disinfectants) or physical (e.g., ultraviolet) disinfection methods are often unsuitable for environments containing people, valuables, or equipment due to their potential harm to humans and corrosive effects on objects. As a natural bactericide that specifically targets bacteria (without affecting human cells), bacteriophages can effectively eliminate drug-resistant bacteria in these settings. The Shanghai Bacteriophage and Drug Resistance Research Institute team has achieved promising results in preventing and controlling nosocomial infections using bacteriophage environmental sprays in Taiwan and Shanghai.<\/p>\n\n\n\n<p class=\"has-text-align-left wp-block-paragraph\">Additionally, during organ preservation and transportation, perfusion fluids may become contaminated with drug-resistant bacteria, leading to donor-derived infections. Although no clinical trials have been reported, there is potential to prevent superbug infections in organs during preservation and transportation by incorporating a broad-spectrum bacteriophage cocktail targeting common clinical pathogens into the organ perfusion fluid. Bacteriophages can also be employed to sterilize donor organs infected with identified pathogens, preventing the wastage of donor organs.<\/p>\n\n\n\n<p class=\"has-text-align-center wp-block-paragraph\"><strong><\/strong><strong>Summary<\/strong><\/p>\n\n\n\n<p class=\"has-text-align-left wp-block-paragraph\">Organ transplantation is the preferred treatment for end-stage organ failure. Multidrug-resistant bacterial infections significantly impact the success rate of organ transplantation and the post-transplantation health of recipients. For many years, the mechanisms of action and potential risks of bacteriophage therapy have remained inadequately understood within the academic community, making its development a focal point of interest. Additionally, bacteriophages\u2019 high host specificity (narrow bactericidal spectrum), the propensity for bacteria to develop phage-resistant mutations, and other limiting factors have hindered the efficacy of bacteriophage therapy, preventing its widespread clinical adoption amid the dominance of broad-spectrum antibiotics. Bacteriophage therapy remains challenging to implement, with a lack of standardized, large-scale, controlled clinical trials. No bacteriophage drugs have been approved in China, the United States, or the European Union; both the cases cited above and ongoing bacteriophage therapies are part of clinical trials. With rapid advancements in molecular biology, synthetic biology, and sequencing technologies, multicenter bacteriophage therapy applications\u2014such as those at Shanghai Zhongshan Hospital, Shanghai Public Health Clinical Center, Shanghai Jiahui International Hospital, Shenzhen Third People\u2019s Hospital, Shenzhen People\u2019s Hospital, and the First Affiliated Hospital of Xi\u2019an Jiaotong University\u2014along with the emergence of companies specializing in innovative bacteriophage drugs and personalized medicine technologies (e.g., ChemTime, Target Antibiotics, and SEATO BIO), bacteriophages are poised for expansive growth in preventing, controlling, and treating transplant-related drug-resistant bacterial infections.<\/p>\n\n\n\n<p class=\"has-text-align-left wp-block-paragraph\"><strong>References\uff1a<\/strong><\/p>\n\n\n\n<p class=\"has-text-align-left wp-block-paragraph\">[1] Wu Nannan, Zhu Tongyu. Application of Bacteriophages in Solid Organ Transplantation. <em>Organ Transplantation<\/em>, 2019, 10(4): 410-415.<\/p>\n\n\n\n<p class=\"has-text-align-left wp-block-paragraph\">[2] Nicholls and Aslam. Role of Bacteriophage Therapy for Resistant Infections in Transplant Recipients. <em>Curr Opin Organ Transplant<\/em>. 2022 Dec 1;27(6):546-553.<\/p>\n\n\n\n<p class=\"has-text-align-left wp-block-paragraph\">[3] Uyttebroek et al. Safety and Efficacy of Phage Therapy in Difficult-to-Treat Infections: A Systematic Review. <em>Lancet Infect Dis<\/em>. 2022 Aug;22(8):e208-e220.<\/p>\n\n\n\n<div class=\"gspb_button_wrapper gspb_button-id-gsbp-9b0f7c0\" id=\"gspb_button-id-gsbp-9b0f7c0\"><a class=\"wp-block-greenshift-blocks-buttonbox gspb-buttonbox wp-element-button\" href=\"https:\/\/mp.weixin.qq.com\/s\/MlQj1WUQRKVx_T8sJQMe9w\" title=\"\u5168\u56fd\u9996\u4f8b\u5c3f\u8def\u611f\u67d3\u6cbb\u7597\u6848\u4f8b\" target=\"_blank\" rel=\"noopener\"><span class=\"gspb-buttonbox-textwrap\"><span class=\"gspb-buttonbox-text\"><span class=\"gspb-buttonbox-title\">Read the original article<\/span><\/span><span class=\"gspb-buttonbox-icon\"><svg class=\"\" style=\"display:inline-block;vertical-align:middle\" width=\"15\" height=\"15\" viewBox=\"0 0 896 1024\" xmlns=\"http:\/\/www.w3.org\/2000\/svg\"><path style=\"fill:#565D66\" d=\"M436.202 76.202l-39.598 39.598c-9.372 9.372-9.372 24.568 0 33.942l310.26 310.258h-682.864c-13.254 0-24 10.746-24 24v56c0 13.254 10.746 24 24 24h682.864l-310.26 310.26c-9.372 9.372-9.372 24.568 0 33.942l39.598 39.598c9.372 9.372 24.568 9.372 33.942 0l418.828-418.828c9.372-9.372 9.372-24.568 0-33.942l-418.83-418.828c-9.372-9.374-24.568-9.374-33.94 0z\"><\/path><\/svg><\/span><\/span><\/a><\/div>\n\n\n\n<p class=\"wp-block-paragraph\"><\/p>\n","protected":false},"excerpt":{"rendered":"<p><!-- wp:image {\"id\":3208,\"sizeSlug\":\"full\",\"linkDestination\":\"none\",\"align\":\"center\"} --><\/p>\n<figure class=\"wp-block-image aligncenter size-full\"><img decoding=\"async\" src=\"https:\/\/www.transplantation.com.cn\/wp-content\/uploads\/2024\/10\/image-53.png\" alt=\"\" class=\"wp-imag...\n<\/p>\n","protected":false},"author":1,"featured_media":3215,"comment_status":"open","ping_status":"open","sticky":false,"template":"","format":"standard","meta":{"_gspb_post_css":"#gspb_button-id-gsbp-9b0f7c0{display:flex;justify-content:center}#gspb_button-id-gsbp-9b0f7c0 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