Bariatric surgery in transplant recipients: A narrative review
Mohammad Kermansaravi1, Amir Hossein Davarpanah Jazi2, Pedram Talebian3, Samaneh Rokhgireh4, Ali Kabir5, Abdolreza Pazouki1
1 Department of Surgery, Minimally Invasive Surgery Research Center, Division of Minimally Invasive and Bariatric Surgery, Rasool-e Akram Hospital, Iran University of Medical Sciences; Center of Excellence of European Branch of International Federation for Surgery of Obesity, Hazrat-e-Rasool Hospital, Tehran, Iran
2 Department of Surgery, Minimally Invasive Surgery Research Center, Al Zahra Hospital, Isfahan University of Medical Sciences; Department of General Surgery, Shariati Hospital, Isfahan, Iran
3 Department of Surgery, Minimally Invasive Surgery Research Center, Division of Minimally Invasive and Bariatric Surgery, Rasool-e Akram Hospital, Iran University of Medical Sciences, Tehran, Iran
4 Endometriosis Research Center, Iran University of Medical Sciences, Tehran, Iran
5 Minimally Invasive Surgery Research Center, Iran University of Medical Sciences, Tehran, Iran
|Date of Submission||31-Oct-2019|
|Date of Decision||20-Jan-2020|
|Date of Acceptance||09-Feb-2021|
|Date of Web Publication||31-Jul-2021|
Dr. Amir Hossein Davarpanah Jazi
Minimally Invasive Surgery Research Center, Isfahan University of Medical Sciences, Isfahan, Iran. Alzahra Hospital, Soffeh St, Isfahan
Source of Support: None, Conflict of Interest: None
Morbidity and mortality rates are increased due to obesity after organ transplantation; in this regards, bariatric surgery (BS) is believed to be an effective treatment for posttransplant obese patients. Nevertheless, some studies are doubtful in terms of the effectiveness of BS, the most suitable bariatric procedure, and management of immunosuppressant drugs in some kinds of organ transplants. We evaluated nonsurgical therapies, weight reduction, adjustment of immunosuppressants, comorbidities, and the recommended surgical procedures for posttransplant BS for different types of organ transplantations.
Keywords: Bariatric surgery, gastric bypass, immunosuppression, organ transplant
|How to cite this article:|
Kermansaravi M, Davarpanah Jazi AH, Talebian P, Rokhgireh S, Kabir A, Pazouki A. Bariatric surgery in transplant recipients: A narrative review. J Res Med Sci 2021;26:44
|How to cite this URL:|
Kermansaravi M, Davarpanah Jazi AH, Talebian P, Rokhgireh S, Kabir A, Pazouki A. Bariatric surgery in transplant recipients: A narrative review. J Res Med Sci [serial online] 2021 [cited 2022 May 18];26:44. Available from: https://www.jmsjournal.net/text.asp?2021/26/1/44/322872
| Introduction|| |
The global prevalence of obesity has nearly tripled since 1975. The World Health Organization has reported that more than 1.9 billion adults are overweight and over 650 million are obese. Moreover, weight gain after organ transplantation has been reported in several studies.,,, Factors such as improved appetite, a change in eating habits, a sedentary lifestyle, and immunosuppressant consumption can cause weight gain after transplantation.
Obesity increases morbidity and mortality after organ transplantation because it increases complications that relate to delay of graft function, allograft loss, and increased transplant costs.,, Comorbidities such as nonalcoholic steatohepatitis, diabetes Type 2, sleep apnea, and cardiomyopathy are increased because of obesity; they have adverse effects on posttransplant survival and outcomes.,,,
Meta-analyses have shown that bariatric surgery (BS) for obesity has provided superior results in comparison with nonsurgical treatments for control of comorbidities, weight loss, improved quality of life, and survival., BS has been shown to be a valid treatment for obesity in posttransplant patients. For different kinds of organ transplants, the efficiency of BS, the best technique, appropriate time for surgery, as well as management of immunosuppressant drugs must be addressed.,, We evaluated these factors for posttransplant BS for different types of organ transplantations.
| Methods|| |
An online search of PubMed and Google Scholar was performed for identifying all relevant clinical literature on BS after transplantations using the following keywords: (“BS” OR “jejunoileal bypass” OR “gastric bypass” OR “obesity surgery” OR “vertical banded gastroplasty” OR “biliopancreatic diversion” OR “gastric banding” OR “Scopinaro” OR “intestinal bypass”) AND (“transplant” OR “transplant recipient” OR “transplantation” OR “allograft” OR “immunosuppression”). The last search was done on April 1, 2018. We only used original articles with full texts in English covering case series, case reports, and clinical trials.
| Results|| |
Obesity after transplantation
A cohort study was performed on 502 patients to investigate weight gain in patients who had undergone liver, heart, and lung transplants. They had experienced a decrease in body mass index (BMI) at 2 months after surgery, which was probably caused by a decrease in fluid retention. Following this weight loss, the BMI began to increase in all groups. At 12 months after surgery, the heart and lung transplant groups had significantly higher BMIs compared to before surgery (P = 0.05 and 0.006, respectively).
A retrospective study on obese patients after renal transplants indicated that nine out of ten patients showed a 13% increase in body weight after transplantation. The median weight and BMI were 102 kg (84–142 kg) and 36 kg/m2 (30–48 kg/m2) at transplantation and 119 kg (96–152 kg) and 42 kg/m2 (37–49 kg/m2) before laparoscopic sleeve gastrectomy (LSG).
Weight gain after heart transplant also has been reported in a 55-year-old male with a BMI of 29 kg/m2 (weight 95 kg) at the time of transplant showed an increase in BMI of 46 kg/m2 (weight 138 kg) at 6 years posttransplantation which can lead to lung function disturbance and diabetes mellitus.
Nonsurgical approaches to obesity after transplantation
Physical activity, behavioral treatment, diet, and drugs such as orlistat, phentermine-topiramate, and lorcaserin have been used as acceptable treatments for postliver-transplant obesity. However, their effectiveness is reported to be limited and more research is required to investigate approaches that are more effective.
A study reported that 30% of obese candidates on a waiting list for transplants had a reduced BMI below 35 kg/m2 at transplantation. The patients who had lost weight to be on the waiting list had the highest risk of quickly regaining weight in the early posttransplantation period without significant benefit for survival or graft outcomes. In addition, Molnar et al. noted that obese patients who rapidly lost weight before a transplant regained the weight with insignificant long-term benefit.
One important risk of pharmacological treatment of obesity after organ transplant is unknown interactions of those drugs (such as orlistat or lorcaserin) and immunosuppressive drugs. In a comparative study of 22 morbidly obese patients who underwent BS and 44 obese patients on lifestyle management, all of whom underwent renal transplant surgery, Gheith et al. concluded that the number of patients with viral infections was significantly higher (viruria, viremia, and nephropathy: P = 0.008, 0.34, and 0.01, respectively) in the obese nonbariatric group because of the use of strong immunosuppressive agents. Moreover, they reported significantly delayed graft function in the control group (P = 0.006).
Schold et al. showed that weight loss for the individual listed for a transplant did not directly influence posttransplant mortality or graft loss, but it was rapid weight gain or loss that was significantly associated with graft loss in the nonobese. The authors found a significantly increased risk for death among underweight and normal weight patients (adjusted hazard ratio [AHR] = 1.47, 95% confidence interval [CI] 1.39–1.56 and AHR = 1.13, 95% CI 1.09–1.18, respectively).
Comparison with surgical approaches
Gheith et al. reported significant decreases in mean BMI in the BS group but not in the control group which was maintained on lifestyle management. The laboratory metabolic parameters revealed no significant differences between the groups.
Bariatric surgery before, during, and after transplantation
BS can be beneficial to patients awaiting liver transplantation (LT) and may improve obesity-associated problems before transplantation., Reported benefits are an increased survival rate and decreased risk of perioperative complications after weight loss from BS. On the other hand, transplant programs may exclude obese candidates for transplants because of the mentioned increased risks.
In a retrospective study conducted by Lin et al., twenty patients with end-stage liver disease and six patients with end-stage renal disease underwent LSG before transplantation. Twelve months after surgery, the mean percentage of excess body weight loss was calculated to be 50%. At 1 and 3 months postsurgery, these numbers were estimated to be 17% and 26%, respectively. About 23% of these patients had postoperative complications in comparison with the general population rate of 1%–5%. Bleeding, staple line leak, infections, and kidney injury were the observed postoperative complications. Preoperative mortality was zero. The mean time between BS and LT was 16.6 months. All patients achieved their BMI goal in 1 year.
In another study on seven patients with end-stage renal disease undergoing Roux-en-Y gastric bypass (RYGB), six patients with cirrhosis, and two patients with end-stage lung disease were candidates for pretransplant LSG. The mean percentages of excess body weight loss were 61%, 33%, and 61.5% in patients with end-stage renal disease, cirrhosis, and end-stage lung disease, respectively. About 93% of patients reached their BMI goal for transplantation. Comorbidities associated with obesity were ameliorated in all patients. Despite this, a review by Dziodio suggested that BS before LT is associated with high morbidity and mortality. Dziodzio's study results showed that BS appeared to be harmless in the reported patient series and provided good weight loss before kidney transplant. Gastric bypass was related to a somewhat higher mortality and noticeably higher morbidity (12% vs. 2%) in comparison with sleeve gastrectomy. However, data from the review suggest that BS before LT is associated with high morbidity and mortality.
Kumar et al. performed simultaneous living donor liver transplant and sleeve gastrectomy on an obese patient with non-alcoholic steatohepatitis related end-stage liver disease. The postoperative results showed a weight loss of 25%, controlled diabetes, improved mobility, and desirable graft function. Safwan et al. reported on a retrospective series of 11 patients with a history of BS and histologic features of NASH. This conﬁrms the feasibility of LT after BS, but if a RYGB has been performed, biliary reconstruction may be difﬁcult, and hepaticojejunostomy is needed because a second Roux-en-Y loop should be fashioned.
Simultaneous BS and transplantation decreases stress and pain, reduces costs, and decreases the hospitalization period. Heimbach et al. compared weight loss in the noninvasive pre-transplant approach and simultaneous LT and sleeve gastrectomy. Seven of 44 patients underwent LT with sleeve gastrectomy. No post-LT diabetes and steatosis were seen in those patients. They reached a mean BMI of 29 without death or graft loss. One patient had excessive weight loss down to a BMI of 20. A leak from the gastric staple line was observed in one patient.
Weight loss effects
The effect of BS on weight loss in transplant patients is summarized in [Table 1]. Studies have reported different effects of BS on weight loss. Lazzati et al. performed a systematic review on patients who underwent BS before, during, and after LT. They examined 11 studies with a total of 56 patients. The percentage excess weight loss (EWL) of 53.9% and a decrease in mean BMI from 46.8 to 33.5 kg/m2 after 1 year of follow-up was reported. They concluded that, despite the higher mortality and morbidity, BS appears to be feasible in patients along with LT. In a review by Tsamalaidze et al., the BMI for laparoscopic robotic-assisted RYGB decreased from 37.5 to 27.5 at 1-year postsurgery and in LSG patients decreased from 36.1 to 30 at 1-year postsurgery. Dziodzio's review showed that the EWL for BS after kidney transplantation ranged from 31% to 61%. Overall, the EWL in studies about BS after ranged from 30% to 87%, with sleeve gastrectomy revealing the best weight loss and adjustable gastric banding being the least effective. The EWL from BS after LT ranged from 21% to 75%. The largest weight loss was in patients after sleeve gastrectomy (EWL: 54.9% vs. 37.9% after gastric bypass).
|Table 1: Summary of the published studies of bariatric surgery in transplant patients|
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The effects of sleeve gastrectomy on weight loss were evaluated in some studies. Butte reported a weight reduction of 28 kg (weight 88 kg; BMI 29.8 kg/m2) after open sleeve gastrectomy. Results of a clinical trial showed that sleeve gastrectomy decreased EWL to 55.5% at 6 months after the procedure and 70% after 2 years. In a retrospectively observational descriptive study done by Osseis et al., surgical outcomes, kidney and liver tests, outcomes of obesity-related comorbidities, and EWL were put to analysis on six patients undergoing sleeve gastrectomy after LT. The median EWL was 76% after 2 years.
Follow-ups of seven obese renal transplant patients revealed that the median weight and BMI decreased from 119 kg (96–152) and 42 kg/m2 (37–49) to 93 kg and 33 kg/m2, 86 kg and 31 kg/m2, and 83 kg and 29 kg/m2 at 3, 6, and 12 months post-LSG. The median EWL was 54% at 3 months, 57% at 6 months, and 75% after 1 year. Another study of LSG showed that it produced a mean decrease in BMI of 12.9 kg/m2 in 12 patients after orthotopic liver transplant (OLT). This decrease in BMI was 9.17 kg/m2 in the non-OLT control group. However, the study revealed that the EBWL of non-OLT patients showed more weight loss than for the OLT group (P < 0.001). Szomstein et al. showed a series of five recipients, including four who underwent laparoscopic RYGB and one with LSG. All patients in this series achieved >50% EBWL after 2 years with a change in BMI of −13.6–−37 kg/m2.
Al-Nowaylati et al. assessed the outcomes of RYGB in a case series of seven patients undergoing RYGB after OLT. Therapeutic weight loss (mean BMI of 44.34 ± 6.08 kg/m2 before RYGB and 26.47 ± 5.53 kg/m2 after RYGB) was reported after RYGB.
In heart transplant patients, laparoscopic adjustable gastric banding in combination with laparoscopic cholecystectomy led to a decrease in patient BMI from 46 kg/m2 (138 kg) to 35.4 kg/m2 (106 kg) after 28 months. Rex reported that a heart transplant patient lost 56 kg (136 to 80 kg) and a kidney transplant patient lost 54 kg (133 to 82 kg) after vertical banded gastroplasty.
Greene achieved an average decrease in BMI of 19 (range: 16–22) per patient, to reach an average BMI of 30 (range 26–32). The group had an average 39% TWL (range 37%–41%) and an average 81% EWL (range 75%–92%). Arias et al. showed five recipients with laparoscopic gastric bypass with a mean weight loss of 33.4 kg. Interestingly, these patients had gained an average weight of 16.75 kg after kidney transplantation. Gazzetta et al. performed retrospective research on six patients undergoing BS after renal transplant. The mean EWL was 75.9% after 12 months. No main weight regain was observed.
Effects on transplanted organ
An improvement in graft function has been reported in a systematic review of bariatric patients following LT. Important factors influencing the long-term survival of a transplanted organ are dependent on cardiovascular factors and blood flow. BS successfully decreased these risk factors. Golomb et al. reported that 24-h proteinuria and serum creatinine decreased after LSG for ten obese renal transplant patients, and this is a positive prognostic marker. The protein concentration in the urine decreased from a median of 391 mg/24 h to 207 mg/24 h. Lin reported no incidents of graft rejection; also they showed that at 3 months after surgery, liver function tests continued to be stable. Tsamalaidze reported no effects on the transplanted organ.
Dziodzio's review reported that three out of four studies containing twenty patients observed improvement in graft function after kidney transplant. One kidney graft loss after gastric bypass was reported. Stable graft functions and unaltered immunosuppression regimens were observed in LT. Two case series have reported biopsy-proven regression of steatosis after gastric bypass.
Butte reported normal liver function tests and stable trough levels of cyclosporine. Tariciotti et al. reported on the first European combined LT and sleeve gastrectomy. The patient was a 53-year-old female with hepatocellular carcinoma, morbid obesity (BMI 40 kg/m2), and Type 2 diabetes. Five months after surgery, she had normal allograft function. Osseis et al. reported that liver graft function was retained or enhanced in all patients.
Dose adjustment of immunosuppressive drugs
[Table 2] lists studies and changes in doses of immunosuppressive drugs. Most of the studies reported no change in immunosuppressive drugs dose, which is considered necessary after BS. However, studies that checked serum level of the drugs reported the need to either increase or decrease the dose of the drugs.
|Table 2: Dose adjustment of immunosuppressants following bariatric surgery in transplant patients|
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[Table 3] lists reports complications of BS in transplant patients. There was no mortality report in reviewed studies; but there were complications including gastric leak, bile leak, reflux, and infectious complications due to BS. There were also concerns about the effects of BS on absorption of immunosuppressive drugs.
[Table 1] summarizes a wide spectrum of comorbidities of bariatric patients who underwent organ transplant. Obesity-related comorbidities including diabetes mellitus, hypertension, hyper/dyslipidemia, obstructive sleep apnea, and metabolic syndrome were considered resolved following BS. A study of 12 patients revealed that nine had metabolic syndrome and diabetes mellitus after OLT caused by obesity and immunosuppressant drugs. Of them, four had completely regressed after LSG. Tichansky et al. presented a case study on a 49-year-old woman who was referred for evaluation as a candidate for BS. The patient had complete resolution of her hypertension and diabetes.
Type of bariatric surgery
[Table 1] summarizes the types of BS used in various studies. In older studies, gastric banding was used most. Recently, its use has decreased due to foreign-body complications. Other methods used are RYGB, laparoscopic, and open sleeve gastrectomy. Few studies have compared outcome and complications of the different BS methods for organ transplant patients.[Table 4] outlined bariatric surgery among different organ recipients.
| Discussion|| |
Sleeve gastrectomy is a feasible option for liver recipients since it facilities endoscopic access to the bile duct and duodenum; this is a significant event because 12%–30% of LT patients will need future endoscopic technique associated with their transplanted liver. After effective LT, patients with obesity have a high risk of weight regain. Minor global experience with bariatric operations after LT shows good weight control after bariatric operation. However, several issues regarding gastric bypass after LT must be considered.
Gastric bypass excludes the possibility of simple retrograde access to the biliary tree in a patient cohort, which would be mandatory in near 30% of liver transplants patients. Further concerns have been voiced regarding the kinetics of enteral absorption and metabolism of immunosuppressive agents after a hypoabsorptive surgery. Unlike this assumptive theory, no significant effects on immunosuppression absorption were observed, and most reports disproved this challenge. The extent of dissection after LT required for gastric bypass results is higher operative difficulties for LT patients compared to a sleeve gastrectomy, but this does not seem to mean a higher complication rate in the reported patient series. Based on published papers, we propose that BS should be recommended only after exhaustion of all nonoperative therapies and recovery from LT. If performed in these patients, sleeve gastrectomy should be reserved as first option.
After LT, the sleeve gastrectomy was selected as a weight-decreasing technique for a patient by the bariatric team because of its restrictive and nonmalabsorptive nature. This is pertinent given the potential interference of a malabsorptive technique such as RYGB with the absorption of immunosuppressive drugs. Actually, the cyclosporine dosage did not have to be adjusted in one patient for stable blood serum levels of the drug; consequently, this operation seemingly is an interesting option for obese patients after LT.
For kidney transplants, the data suggest that BS is a logic, easy, and safe option for to treat morbidly obese end-stage renal disease patients and kidney transplant recipients, irrespective of the timing associated with the organ transplantation. In addition to the less effective adjustable gastric banding, all studies revealed weight loss similar to the nontransplant population. Regrettably, mid- and long-term follow-ups were only outlined by five surveys. Contrary to kidney transplant waiting list patients (sleeve gastrectomy), gastric bypass was the favored technique after kidney transplant (79%). This may be explained by the enhanced health of kidney transplant patients in comparison with the waiting list population and the inclination of surgeons to perform a more intricate technique in a stable patient setting. Patients undergoing gastric bypass revealed distinctly lower major complication rates after than before kidney transplant (1.1% vs. 12%). The postkidney transplant complication rates were similar to the nontransplant population. The general reported 30-day mortality rate was low (0.8%), though, the 1-year mortality of BS of 3.9% before kidney transplant and 2.5% after kidney transplant was above the rates of the nontransplant setting (<1%). In contrast, the average 1-year mortality on the waiting list is 7% reaching 3% after kidney transplant. After kidney transplant, the link between obesity and mortality is not clear and most authors did not report any apparent link. According to the case reports reviewed, switching from sleeve gastrectomy to BS for gaining weight loss in renal transplant patients is safe and achievable., The main limitation in our review was the sample size. The number of papers focusing on BS among transplant surgery is lacking. The diversity of presented data is wide. Therefore, more studies need in this topic.
| Conclusion|| |
Nonsurgical therapies for transplanted morbid obese patients showed poor results for weight loss. Weight loss after BS in posttransplant patients is significant and similar to the normal people. Contrary to sleeve gastrectomy, following gastric bypass, dose adjustment of immunosuppressant agents is essential. Improved comorbidities such as diabetes mellitus, sleep apnea, NASH, and cardiac problems after weight loss operations are satisfactory and similar with normal population. Operative-related complications such as liver injury, fistula, infection, and anastomosis leak seem a little higher than other patients. Sleeve gastrectomy is suggested as the procedure of choice for posttransplant patients, but gastric bypass has been considered a satisfactory option with good outcomes. Procedures such as LAGB lead to more complications and are not recommended.
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Conflicts of interest
There are no conflicts of interest.
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[Table 1], [Table 2], [Table 3], [Table 4]