Processes and Software Building 4: Super Users

Super-Users:  Engaging Laboratory Staff in Computer Operations

This is an update of a previous post.

It is critical to engage the technical, medical , and (blood bank) nursing staff in this process,  That is why it is so important to identify a core of computer-literate users to help with the building and testing/validation.

I don’t mean finding staff who can already program or code.  Rather, I mean staff that are astute with knowing their work processes and who had good skills with Microsoft Office and Windows or equivalent.  I did not expect them to understand database structure or use structured query language.  They were chosen for their ability to learn quickly and their meticulousness.

For our blood bank system, I chose computer-literate technical staff to be involved in the build from the very beginning.  They learned how to test each module and to some degree support it.  These became my Super-Users and to this day support the system for many tasks.  These staff served as the system administrators and worked directly with me as the Division Head for Laboratory Information Systems.  They were not full-time and still had their other clinical/technical duties.  They liaised with the software vendors engineers.

Our blood bank system was NOT a turnkey system.  It was custom designed according to our workflows.  There were NO default settings!!  We had to be remember, ‘Be careful what you ask for, you might get it!’  In some countries, approved systems are turnkey and may allow only few changes to the core structure and thus may not be this optimized for the needed workflow;  often only cosmetic changes are permitted.

When we built our first dedicated blood bank computer system, the company would take a module and completely map out the current processes collaboratively with me.  After this, I analyzed the critical control points and started to map out the improved computer processes that would take over.  After that we would build that those processes in the software and test it.  If it failed, we would correct it and test again…and again if necessary.  Fortunately, the blood bank vendor did not charge us when we made mistakes.

Sadly, another vendor (non-blood bank), only gave limited opportunities to make settings.  If wrong, there might be additional charges to make corrections.  This other vendor really pushed the client to accept the default settings regardless whether or not they actually fit.  End-users were selected to make and approve the settings, but they were only minimally trained on how to make the settings.  It was a journey of the end-users being led to the slaughter—and being blamed for their settings when they accepted the vendor’s recommendations—they usually selected the defaults.  There wasn’t enough time for trial and error and correction.

The blood bank system Super Users were an important part of our process.  They were an integral part of the implement team and could propose workflows, changes, etc.—subject to my approval.  They learned the system from the start and developed invaluable skills that allowed them to support the system after the build.  Also, they could serve to validate the system according to the protocols I prepared.  Moreover, I took responsibilities for their activities and they were not left out to hang.

Every hospital blood bank location and the blood donor center had Super-Users.  These included:

  1. Blood Donor Center:
    1. Administrative Clerk for donor registration, consent, ISBT specimen labels, creation of new donors and patients for validation purposes
    1. Apheresis/Donor Nurse for donor questionnaire, donor physical examination, and donor collection
    1. Medical technologist for donor marker testing
    1. Medical technologists for blood component production including Reveos, Mirasol, platelet additive solution, pooling, and leukodepletion
    1. Medical technologist for donor immunohematology testing
    1. Medical technologist for inter-depot transfer of blood components
  2. Hospital Blood Banks and Transfusion Centers:
    1. At least one technologist at each site for inter-depot transfer, component medication (washing, irradiating, aliquoting, reconstituted whole blood), immunohematology testing, component allocation and release

The cost of using these staff?  They were paid overtime and were relieved of other duties when working on Super User duties.  This was much cheaper than hiring outside consultants who may or may not know our system well enough to perform these tasks.

By having a Super User at each site, I in effect had an immediate local contact person for troubleshooting problems who could work with the technical/nursing staff.  We did not rely on the corporate IT department for support and worked directly with the software vendor.  Response time was excellent this way.

The following document is a sample document of the assigned Super User duties during a validation.

Daratumumab (Anti-CD38) Interference with Compatibility Testing

This is a revised version of a previous post.

Principle:

Daratumumab is a monoclonal antibody that binds to CD38 antigen, which is expressed weakly on the surface of all RBCs.  It may thus cause a positive direct antiglobulin test DAT and so interfere with compatibility testing if an antiglobulin phase is required.

This effect may persist up to 6 months after discontinuing the drug.  The monoclonal antibody does not interfere with routine ABO/D typing.

Special techniques (neutralization of CD38 antibodies by CD38 anti-idiotypic antibodies, or soluble CD38 antigen) may remove the panreactivity but may not be generally available.  DTT, a sulfhydryl reagent may denature the native CD38 antigen on RBCs but it should be used under a biologic hood.

Kell antigens will be denatured so Kell antibodies cannot be detected after treatment so Kell-negative RBCs should be used.  In the Gulf Area, this is about 72% of RBCs.

Policy:

  1. The clinical services must inform Transfusion Medicine of patients who will be receiving daratumumab therapy BEFORE treatment is started.
  2. Transfusion Medicine staff will enter a general comment (i.e. not associated with a particular result) in the patients Medinfo HIIG record:  PATIENT ON DARATUMUMAB.
  3. If not already done, Transfusion Medicine staff will perform an extended antigen typing:  at least C, c, E, e, K, k, Kpa, Jka, Jkb, Fya, Fyb ,M, N, S, s, Lea, Leb, P1—even if no antibodies are currently identified.
  4. Transfusion Medicine staff will send each such patient’s record to a Transfusion Medicine Physician to determine the blood type including extended antigens to match for future transfusions.
  5. When compatibility testing is requested, perform it as per our SOPs.
  6. If available, prepare DTT-treated cells for testing but realize that this will denature Kell antigens.  Use K-nell RBCs.
  7. Release least “incompatible” RBCs must be approved by the Transfusion Medicine Physician.
  8. When the DAT becomes negative (i.e. up to SIX months after cessation of Daratumumab therapy), routine compatibility testing and RBC selection will apply.

References:

Trick or Treatment, Anti-CD38 Reactivity and How to Treat It, AABB Satellite Symposium transcript, U. Cincinnati and RedMedEd, October, 2015 (attachment)

Service Level Agreement Example

At HMC Doha, I used service level agreements SLA to specifically define responsibilities in a contract for service between various entities including:

  • Transfusion Medicine and outside clients (blood components and transfusion testing)
  • Transfusion Medicine and HMC departments outside blood bank (e.g. operating theatres, liver transplant, trauma, etc.)
  • Blood Donor Center and HMC hospital blood banks

The following is a sample of a previous SLA between the Transfusion Medicine Division and one of HMC’s hospital’s operating theatres.

Summary of Accomplishments at Hamad Medical Corporation 2011-2020

2011

Established automated component production using Atreus technology, plasma and platelet pathogen inactivation (Mirasol)—made HMC component production Good Manufacturing System GMP compliant

2011

Qatar is the first to adopt non-PCR-based NAT technology (Grifols/Novartis Tigress) and becomes world reference site for this

2011

Based on the above, Qatar can now completely process all whole blood into blood components (red cells, platelets, and plasma) in as little as 5 hours from collection!

2011-2020:

I established policies and procedures for the hospital blood banks/transfusion services, blood donor center, therapeutic apheresis, and laboratory information systems to bring HMC in compliance with the Council of Europe, international AABB, and other standards.  I customized our own standards for our local needs based on them.

2012-2013

Implemented custom build of the multilingual blood bank computer system (Medinfo) for both patient and donor services, including development of interfaces to all production equipment including Atreus and Mirasol (world’s first) and a direct link to Ministry of the Interior to obtain patient demographics in English and Arabic—Qatar became the world’s first site to combine fully-interfaced, automated component production with pathogen inactivation:  Qatar becomes world reference site for this.

2013-2014

Built, validated, and implemented laboratory build of hospital information system, Cerner Millennium

2015

Replaced and updated Atreus with Reveos automated component production to allow faster throughput and capacity with a full bidirectional interface (world’s first), introduced platelet

additive solution PAS with pathogen inactivation (Mirasol)—Medinfo interfaces updated to Reveos for all equipment:  this doubles the capacity to process whole blood into components using the same physical space

2015-2019

Updated dedicated blood bank software Medinfo Hematos IIG by several versions using Division Head, LIS, and internally trained Super Users—at great cost savings to HMC by not using outside consultants (e.g. Dell Consulting)

2019

Established column absorption technology using Terumo Optia therapeutic apheresis machine for treatment of ABO-incompatible renal transplants:  I validated using the Ortho Vision MAX to perform ABO antibody titers for this system and correlated it with the reference method at Karolinska Institutet in Stockholm (manual gel) to bring rapid throughput and labor savings—Qatar being the first-site in the world to do this.  We saved money by using the same apheresis machine to use this column absorption technology (no need for second machine to use the columns)

2020

Expedited setup (two weeks total) of COVID-19 convalescent plasma production, initially manual and then fully integrated into the Medinfo computer system as a customized module with separate quarantine collection, production, and transfusion service functions

Other:

I was awarded two HMC Star of Excellence Awards:

2013—Liver Transplantation Transfusion Support

2019—ABO-Incompatible Renal Transplantation Support