In response to infection or immunization, antibodies are produced that provide protection against re-exposure with the same pathogen. These antibodies can persist at high titers for decades and are maintained by bone marrow-resident long-lived plasma cells (LLPC). However, the durability of antibody responses to immunization varies amongst vaccines. It is unknown what factors contribute to the differential longevity of serum antibody responses and whether heterogeneity in LLPC contributes to this phenomenon. While LLPC differentiation has been studied extensively in mice, little is known about this population in humans or non-human primates (NHP). Here, we use multi-omic single-cell profiling to identify and characterize the LLPC compartment in NHP. We identify LLPC biomarkers including the marker CD102 and show that CD102 in combination with CD31 identifies LLPC in NHP bone marrow. Additionally, we find that CD102 is expressed by LLPC in mouse and humans. These results further our understanding of the LLPC compartment in NHP, identify biomarkers of LLPC, and provide tissue-specific single cell references for future studies.
Results of using an implantable osmotic pump, a preset disposable infusion pump, or a reusable programmable infusion pump for postoperative administration of buprenorphine or morphine in dogs undergoing abdominal surgery are described. Ten dogs underwent abdominal surgery for implantation of vascular access ports. Dogs were given buprenorphine s.c. by use of an implantable osmotic pump (4 dogs), morphine s.c. by use of a preset infusion pump (4), or buprenorphine intra-arterially by use of a programmable infusion pump (2). Dogs were monitored, and serum buprenorphine or morphine concentration was measured for 72 hours after surgery; pumps were removed 48 hours after surgery. Severity of pain was determined by assigning a pain score. The preset infusion pump and the programmable infusion pump resulted in comparable pain relief and sustained serum analgesic concentrations throughout the recovery period. However, the cost of the pumps and other associated factors may limit their use to dogs undergoing invasive surgical procedures expected to result in substantial postoperative pain. The level of analgesia obtained with the implantable osmotic pumps was inconsistent.
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