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Digital Home-Monitoring of Patients after Kidney Transplantation: The MACCS Platform
Published on: April 12, 2021
Blood pressure management in the kidney transplant recipient
1Division of Nephrology, University of Maryland School of Medicine, 22 South Greene Street, Suite N3W143, Baltimore, MD 21201, USA. mweir@medicine.umaryland.edu
Insights
Hypertension is common after kidney transplants, increasing graft failure risk. Effective blood pressure control is crucial for improving transplant patient survival and graft function.
Area of Science:
- Nephrology
- Cardiology
- Transplantation Medicine
Background:
- Hypertension affects 80-90% of kidney transplant recipients.
- Multifactorial causes include native kidneys, immunosuppressants, obesity, and lifestyle.
- Elevated blood pressure correlates with kidney allograft failure and rejection risk.
Purpose of the Study:
- To investigate the impact of blood pressure control on graft loss and survival in kidney transplant patients.
- To determine if improved arterial pressure management reduces complications.
- To explore optimal antihypertensive strategies in this population.
Main Methods:
- Observational analysis of patient data linking blood pressure levels to outcomes.
- Review of existing literature on hypertension management in transplant recipients.
- Discussion of potential benefits of renin-angiotensin system inhibitors.
Main Results:
- Systolic blood pressure >180 mmHg doubles the risk of graft function loss.
- Higher blood pressure levels are linked to increased acute graft rejection.
- Prospective outcome trials are lacking but benefits are inferred from non-transplant patients.
Conclusions:
- Effective blood pressure management is likely essential for kidney transplant success.
- Target blood pressure below 130/80 mmHg is recommended.
- Renin-angiotensin system blockers are preferred antihypertensives due to graft protection benefits.
Abstract:
Hypertension is extremely common after kidney transplantation. It has been observed in up to 80% to 90% of patients. The etiologies are multifactorial but, in large part, rest with the native kidneys, concomitant immunosuppressant drugs, and behavioral factors that promote the development of higher levels of blood pressure, including obesity, salt intake, smoking, and alcohol consumption. There is a direct relationship between kidney allograft failure and level of systolic blood pressure during follow-up. Patients with a systolic blood pressure greater than 180 mmHg have 2-fold greater risk of loss of graft function compared with patients with systolics of less than 140 mmHg. A similar pattern exists for diastolic blood pressure. Some investigators have also demonstrated that higher levels of blood pressure also correlate with an increased risk of acute graft rejection, particularly in African Americans. What is not known is whether more effective control of arterial pressure in the transplant patient will reduce the likelihood of graft loss and improve survival. No prospective outcome trials have ever been performed. However, it is likely, given the marked success of better control of blood pressure in nontransplant patients in reducing cardiovascular death and the rate of progression of kidney disease, that similar benefits will be appreciated in the transplant patient. Given the greater cardiovascular burden in the kidney transplant recipient because of the presence, in many cases, of diabetes and hypertension, perhaps even more risk reduction may be realized with incremental reductions in blood pressure. Preferred treatment strategies for lowering blood pressure depends on the mechanism of action and medical comorbidity. Drugs that block the renin-angiotensin system should be preferentially considered because they may have similar advantages in delaying progressive loss of allograft function, much in the same way they have proven benefits in protecting native kidney function. Treating blood pressure in the kidney transplant recipient is a complicated process because patients are already on multiple medications and many will need 3 to 5 antihypertensive drugs to achieve optimal control of blood pressure, which should preferably be below 130/80 mmHg.
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