Toolkit/near-infrared rhodamine dye prepared by photoirradiation

near-infrared rhodamine dye prepared by photoirradiation

Construct Pattern·Research·Since 2016

Taxonomy: Mechanism Branch / Architecture. Workflows sit above the mechanism and technique branches rather than replacing them.

Summary

a near-infrared rhodamine dye, prepared by photoirradiation and used as a fluorescent probe in cell imaging

Usefulness & Problems

Why this is useful

This near-infrared rhodamine dye is described as being prepared by photoirradiation and used as a fluorescent probe in cell imaging.; fluorescent probing in cell imaging

Source:

This near-infrared rhodamine dye is described as being prepared by photoirradiation and used as a fluorescent probe in cell imaging.

Source:

fluorescent probing in cell imaging

Problem solved

It provides a photo-generated near-infrared probe for cellular fluorescence imaging.; provides a near-infrared fluorescent probe for cell imaging

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It provides a photo-generated near-infrared probe for cellular fluorescence imaging.

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provides a near-infrared fluorescent probe for cell imaging

Problem links

provides a near-infrared fluorescent probe for cell imaging

Literature

It provides a photo-generated near-infrared probe for cellular fluorescence imaging.

Source:

It provides a photo-generated near-infrared probe for cellular fluorescence imaging.

Taxonomy & Function

Primary hierarchy

Mechanism Branch

Architecture: A reusable architecture pattern for arranging parts into an engineered system.

Techniques

No technique tags yet.

Target processes

No target processes tagged yet.

Input: Light

Implementation Constraints

cofactor dependency: cofactor requirement unknownencoding mode: genetically encodedimplementation constraint: context specific validationimplementation constraint: spectral hardware requirementoperating role: actuator

The abstract supports that photoirradiation is part of preparation and that imaging use is in cells.; prepared by photoirradiation

Needs compatible illumination hardware and optical access. Independent follow-up evidence is still limited. Validation breadth across biological contexts is still narrow. Independent reuse still looks limited, so the evidence base may be fragile. No canonical validation observations are stored yet, so context-specific performance remains under-specified.

Validation

Cell-freeBacteriaMammalianMouseHumanTherapeuticIndep. Replication

Supporting Sources

Ranked Claims

Claim 1application demosupports2016Source 1needs review

A near-infrared rhodamine dye prepared by photoirradiation is used as a fluorescent probe in cell imaging.

a near-infrared rhodamine dye, prepared by photoirradiation and used as a fluorescent probe in cell imaging
Claim 2application demosupports2016Source 1needs review

Fast photochromic imidazole dimers are used as the basis of a real-time dynamic hologram of a realistic 3D object.

a real-time dynamic hologram of a realistic 3D object based on fast photochromic imidazole dimers
Claim 3mechanism applicationsupports2016Source 1needs review

Azobenzene-containing crosslinkers with reactive maleimide groups are used to photocontrol protein conformation and thereby protein activity.

Azobenzene-containing crosslinkers carrying reactive maleimide groups are used to photocontrol the conformation and, hence, activity of proteins.

Approval Evidence

1 source1 linked approval claimfirst-pass slug near-infrared-rhodamine-dye-prepared-by-photoirradiation
a near-infrared rhodamine dye, prepared by photoirradiation and used as a fluorescent probe in cell imaging

Source:

application demosupports

A near-infrared rhodamine dye prepared by photoirradiation is used as a fluorescent probe in cell imaging.

a near-infrared rhodamine dye, prepared by photoirradiation and used as a fluorescent probe in cell imaging

Source:

Comparisons

Source-backed strengths

near-infrared; used in cell imaging

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near-infrared

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used in cell imaging

Compared with mMORp

near-infrared rhodamine dye prepared by photoirradiation and mMORp address a similar problem space.

Shared frame: same top-level item type; same primary input modality: light

Compared with optogenetic probes

near-infrared rhodamine dye prepared by photoirradiation and optogenetic probes address a similar problem space.

Shared frame: same top-level item type; same primary input modality: light

Compared with organoid fusion

near-infrared rhodamine dye prepared by photoirradiation and organoid fusion address a similar problem space.

Shared frame: same top-level item type; same primary input modality: light

Ranked Citations

  1. 1.
    StructuralSource 1Advanced Optical Materials2016Claim 1Claim 2Claim 3

    Extracted from this source document.