RFP QuestBeta
ClosedStage · tender

THE UNIVERSITY OF BIRMINGHAM

TENDER FOR THE DEVELOPMENT AND SUPPLY OF A SALIVA-BASED LATERAL FLOW IMMUNOASSAY

Laboratory EquipmentCPV 38000000
Value£230,000
Deadline26 Apr 2024
Published27 Mar 2024
RegionNationwide

£230,000 — stated in the notice.

Timeline
Published 27 Mar 2024ClosedCloses 26 Apr 2024
Who to contact
Kseniya Samsonik
k.samsonik@bham.ac.uk

The procurement contact named on the official notice.

How to submit
Open the submissions portal

The submission route named on the official notice.

Contract value in context
£230ktotal contract value
median £70k
this tender£0£588k

This is a large award for Laboratory & Precision Equipment — above three-quarters of comparable contracts. Based on 9,869 valued Laboratory & Precision Equipment tenders in our corpus.

When this comes round again

THE UNIVERSITY OF BIRMINGHAM publishes Laboratory & Precision Equipment work continuously — 281 notices, roughly one every 1 day. This is a stream to watch, not a cycle to wait for.

55% of THE UNIVERSITY OF BIRMINGHAM’s awards go to a supplier it has used before.

Which is the argument for getting on the list rather than winning this one. The incumbent is rarely the last winner — it is the roster. See the retention odds by category →


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The brief

The University of Birmingham invites tenders for the development and supply of lateral flow immunoassay.

The lateral flow is intended to be used to detect antibodies in human saliva samples.

Specifically, the lateral flow assay needs to be able to detect IgG-class anti-tetanus antibodies.

The lateral flow immunoassay will need to be developed to meet the following key target specifications: High sensitivity detection that can differentiate protective antibody status.

To enable its use with saliva specimens, the test will need to have a low limit of detection.

The test positivity threshold needs to be equivalent to the WHO protective threshold of 0.1 IU/mL in serum.

Proof of concept studies at the University of Birmingham estimate that the protective cut-off in serum is equivalent to ~ 0.0024 IU/mL in saliva.

Minimal time to perform, able to be completed with a small number of simple steps and return a result within 15 minutes.

Reader-free and return a qualitative (positive or negative) result.

The method of saliva sample collection to accompany the test needs to be suitable for use in young children and infants.

The test should be able to be completed by a non-specialist and in a community or field setting.

The test should have no linked required cold chain, able to withstand hot/humid temperatures on land and able to withstand conditions associated with transport by both aeroplane and drone.

The test needs to be stable, with a long-term stability time equivalent to existing commercial lateral flow tests.

The design of the test needs to be as low-cost as possible.

This is to enable its use in low-middle income countries or low resource settings.

The test design also needs to strongly reflect environmental considerations.

Specifically, an unhoused test strip is desirable.

The sample collection and application, and any other test components, should be designed and utilised with the objective of using as little plastic as possible and minimal packaging.

The project will require developing the test to meet these desired specifications, evaluating the test performance (for example performance around the cut-off, reproducibility, stability and any other relevant domains, as informed by international guidelines on test evaluation e.g.

CLSI) and supplying UoB with devices.

Small batches of devices (~ 200) will need to be supplied to UoB at various points in the development to assess clinical accuracy.

On completion of the project, the CRO will need to be able to supply UoB with up to 1000 devices suitable for use at the point of care as part of an in-field evaluation study.

The development needs to be carried out within appropriate Quality Management Systems and in accordance with regulatory requirements for medical devices.

The supplier should be certified to ISO 13485 and able to develop test to be compliant with IVDR 2017/746 requirements.

The project should include the compiling and supply of relevant documentation and files to support future submission for regulatory approval.

Post-project, the CRO should be able to support any future manufacture, scale-up and distribution of the test.

Requirements

What the notice asks for

01

Specifically, the lateral flow assay needs

Specifically, the lateral flow assay needs to be able to detect IgG-class anti-tetanus antibodies.

02

The lateral flow immunoassay will need

The lateral flow immunoassay will need to be developed to meet the following key target specifications:.

03

To enable its use with saliva specimens

To enable its use with saliva specimens, the test will need to have a low limit of detection.

04

The test positivity threshold needs to

The test positivity threshold needs to be equivalent to the WHO protective threshold of 0.1 IU/mL in serum.

05

Minimal time to perform, able to

Minimal time to perform, able to be completed with a small number of simple steps and return a result within 15 minutes.

Sentences from the notice that state an obligation, surfaced automatically and shown in the order they appear. Not an exhaustive list — always confirm against the tender documents.

The gates

What this notice demands of you

1 named in obligation language, 0 mentioned. Each one is quoted from the notice.

ISO 13485 (medical devices)says mustStandards you certify to
The supplier should be certified to ISO 13485 and able to develop test to be compliant with IVDR 2017/746 requirements.

Matched against the notice text, so this is a floor — the tender pack will demand things the notice never mentions. “Says must” means the quoted sentence itself used obligation language; anything ambiguous is left as a mention.

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Source & provenance
OCID
ocds-h6vhtk-044da5
Stage
tender · Open
Source
Find a Tender
Buyer ref
010057-2024
View the original notice on Find a Tender

Contains public sector information licensed under the Open Government Licence v3.0. Source data © Crown copyright.

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