Board of Regents of the University of Texas v. Boston Scientific Corp.
CourtCourt of Appeals for the Federal Circuit
Date FiledJuly 27, 2026
Docket24-2062
StatusPublished
📰 News Coverage: Read the LAWS.com news report on this case
Full Opinion
Case: 24-2062 Document: 64 Page: 1 Filed: 07/27/2026
United States Court of Appeals
for the Federal Circuit
______________________
BOARD OF REGENTS OF THE UNIVERSITY OF
TEXAS SYSTEM, TISSUEGEN, INC.,
Plaintiffs-Cross-Appellants
v.
BOSTON SCIENTIFIC CORP.,
Defendant-Appellant
______________________
2024-2062, 2024-2063
______________________
Appeals from the United States District Court for the
District of Delaware in No. 1:18-cv-00392-GBW, Judge
Gregory Brian Williams.
______________________
Decided: July 27, 2026
______________________
JOHN PIERRE LAHAD, Susman Godfrey LLP, Houston,
TX, argued for plaintiffs-cross-appellants. Also repre-
sented by COREY MARTIN LIPSCHUTZ, BRIAN MELTON;
MICHAEL W. SHORE, The Shore Firm LLP, Dallas, TX.
PRATIK A. SHAH, Akin Gump Strauss Hauer & Feld
LLP, Washington, DC, argued for defendant-appellant.
Also represented by Z.W. JULIUS CHEN, RACHEL J. ELSBY,
KRISTEN LOVELAND; MICHAEL P. KAHN, New York, NY.
______________________
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2 BOARD OF REGENTS OF THE UNIVERSITY OF TEXAS v.
BOSTON SCIENTIFIC CORP.
Before TARANTO, BRYSON, and CUNNINGHAM, Circuit
Judges.
TARANTO, Circuit Judge.
The Board of Regents of the University of Texas (UT)
owns United States Patent No. 6,596,296. The patent de-
scribes and claims a composition (for use, e.g., in an im-
plant) containing a drug-releasing biodegradable polymer
fiber—a fiber in which a therapeutic agent is dispersed. In
2017, UT sued Boston Scientific Corporation (BSC), accus-
ing BSC of infringing certain claims of the ’296 patent by
making, using, selling, offering to sell, and importing BSC’s
drug-eluting coronary stent systems.
The district court construed several terms within the
asserted claims of UT’s patent. See Board of Regents v.
Boston Scientific Corp., No. 18-392-GBW, 2022 WL
17039729, at *1 (D. Del. Nov. 17, 2022) (Claim Construc-
tion). A jury trial was then held on the asserted claims.
The jury found that BSC infringed the asserted claims and
did so willfully; rejected BSC’s contention that the claims
were invalid for anticipation by a prior-art reference; and
awarded damages. The district court subsequently set
aside the willfulness finding as legally unsupported but
otherwise upheld the verdict and entered judgment accord-
ingly. See Board of Regents v. Boston Scientific Corp., No.
18-392-GBW, 2024 WL 2848471 (D. Del. June 5, 2024) (De-
cision).
BSC appeals from the liability verdict and UT cross-
appeals from the district court’s rejection of the jury’s will-
fulness verdict. We conclude that BSC was entitled to judg-
ment as a matter of law of invalidity for anticipation. We
also conclude that BSC was entitled to judgment as a mat-
ter of law of non-infringement. We therefore reverse the
judgment for UT and do not reach UT’s cross-appeal.
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BOARD OF REGENTS OF THE UNIVERSITY OF TEXAS v. 3
BOSTON SCIENTIFIC CORP.
I
A
UT’s ’296 patent, whose title is “Drug Releasing Biode-
gradable Fiber Implant,” describes and claims composi-
tions containing at least one biodegradable polymer fiber
that itself contains one or more therapeutic agents. ’296
patent, title (capitalization removed); col. 27, lines 54–58
(claim 1). The polymer fibers are “capable of the controlled
delivery of therapeutic agents.” Id., col. 2, lines 44–45. The
patent contemplates various types of “therapeutic agents,”
including drugs promoting or inhibiting angiogenesis, anti-
inflammatory compounds, and long-term cardiovascular
drugs. Id., col. 4, lines 1–27.
Delivery of a therapeutic agent from the implant to the
patient depends on the internal makeup of the fibers. See
id., col. 2, lines 45–65. The patent describes the spatial
orientation of agent-concentration gradients within a fiber
and the use of “coaxial layers” as ways to control the ther-
apeutic delivery of agent. Id. The patent further describes
making a matrix (or scaffold), which “may be woven, non-
woven, braided, knitted, or a combination of two or more
such preparations,” using the fibers. Id., col. 3, lines 34–
36; see id., col. 2, lines 41–65.
To prepare certain embodiments of the patented inven-
tion, a biodegradable polymer is dissolved in a solvent and
combined with an aqueous solution containing the drug of
interest (the therapeutic agent). See id., col. 17, lines 36–
54. The resulting “emulsion” is then extruded into a coag-
ulation bath containing a solvent that causes the polymer
to “precipitate upon itself, forming the outer sheath of a fi-
ber and trapping virtually all of the dispersed aqueous
phase of the emulsion within the forming fiber.” Id., col.
18, lines 12–28. The drug of interest is thereby trapped in
the forming fiber. See id., col. 18, lines 26–30. In other
embodiments, the drug of interest can coat the outside of
an already-created polymer fiber. See id., col. 9, lines 10–
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4 BOARD OF REGENTS OF THE UNIVERSITY OF TEXAS v.
BOSTON SCIENTIFIC CORP.
14. The patented invention can be used “in conjunction
with commercially available stents to deliver drugs at the
placement site.” Id., col. 22, lines 48–49.
Claims 1, 11, 17, and 26 were the claims asserted at
trial and are at issue here. Claim 1, on which the others
directly or indirectly depend, reads as follows:
A composition comprising at least one biodegrada-
ble polymer fiber wherein said fiber is composed
of a first phase and a second phase, the first
and second phases being immiscible, and wherein
the second phase comprises one or more therapeu-
tic agents.
Id., col. 27, lines 54–58 (emphases added to highlight dis-
puted limitations).
B
In 2017, UT sued BSC in the Western District of Texas,
but the case was transferred to the District of Delaware.
See Board of Regents of the University of Texas System v.
Boston Scientific Corp., 936 F.3d 1365, 1369, 1374 (Fed.
Cir. 2019). UT accused BSC of infringing its patent
through BSC’s making, using, selling, offering to sell, and
importing of a drug-eluting stent. BSC’s stent consists of a
metal frame containing linked, serpentine (zigzag-shaped)
rings. See J.A. 352; J.A. 2693; J.A. 17945–46. The frame
is dipped and rolled in a liquid drug-containing biodegrada-
ble coating, which “dries like paint,” J.A. 17687, and ad-
heres to the outer surface of the frame, i.e., on the
“abluminal surface of the metal stent,” J.A. 2693. See J.A.
2694; J.A. 2754–55; J.A. 3147; J.A. 3231; J.A. 9882; J.A.
17672–74; J.A. 17946; J.A. 18117; J.A. 18786; J.A. 18852;
J.A. 18863; see also J.A. 18030 (UT’s expert agreeing that
the accused polymer is a liquid in which the metal frame is
rolled). In the accused stent, the drug of interest is re-
leased over time as the stent’s coating biodegrades. See
J.A. 3231.
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BOARD OF REGENTS OF THE UNIVERSITY OF TEXAS v. 5
BOSTON SCIENTIFIC CORP.
After preliminary claim constructions by one judge, see
J.A. 1928–33, the case was reassigned to a different judge,
who adopted the initial constructions with some modifica-
tions, see Claim Construction, at *1, *4. Relevantly, the
court construed (1) “first phase” to mean “the polymer por-
tion of the fiber”; (2) “second phase” to mean “the discrete
drug-containing regions dispersed throughout the fiber”;
(3) “immiscible” to mean “incapable of dissolving into one
another”; and (4) “fiber” to have its “plain and ordinary
meaning,” which the court understood to mean “a thread-
like structure of any length or shape.” Claim Construction,
at *1, *4. The court later denied BSC’s motion for summary
judgment of noninfringement, and the case proceeded to a
two-phase trial, in which the jury first received evidence on
and decided validity and infringement and immediately
thereafter received evidence on and decided damages is-
sues, J.A. 11323.
As now relevant, BSC presented evidence (including
testimony of its expert, Dr. Mooney) that prior-art U.S. Pa-
tent No. 5,364,627 (Song) anticipated the asserted claims
of the ’296 patent. Song discloses a delivery system and
process for enabling the gradual release of an active agent
(e.g., a drug or a chewing-gum flavorant) from a fiber. See
J.A. 25635; J.A. 25644, col. 4, lines 32–36. Song discloses
that the agent is dispersed throughout the fiber. See J.A.
25643, col. 1, lines 52–65. The agent is exposed to a solvent
and released from the fiber. See id.
UT put on a case of infringement, which included tes-
timony of its expert, Dr. Pitt, who created and used a
demonstrative model of the accused BSC stents. See J.A.
17991. BSC challenged UT’s infringement case on several
grounds. One was that the coating of BSC’s accused stent
is not “thread-like,” so is not a fiber under the district
court’s claim construction (which UT embraces). See J.A.
18104.
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6 BOARD OF REGENTS OF THE UNIVERSITY OF TEXAS v.
BOSTON SCIENTIFIC CORP.
The jury found that BSC infringed asserted claims 1,
11, 17, and 26 of the ’296 patent and that BSC had not
proven invalidity of any of those claims. See J.A. 13888–
90. After the second phase of the trial, the jury found that
BSC’s infringement was willful and awarded reasonable-
royalty damages to UT. See J.A. 13895–97.
Both parties filed post-trial motions. BSC sought judg-
ment as a matter of law (JMOL) of invalidity for anticipa-
tion, of noninfringement, and of no willfulness, and it also
sought a new trial on the ground that UT engaged in prej-
udicial conduct during trial. See J.A. 14047; J.A. 14051.
UT moved to enhance the damages award. See J.A. 13941.
In a June 2024 memorandum opinion on the post-trial mo-
tions, the district court (1) denied BSC’s motion for JMOL
on invalidity and noninfringement; (2) granted BSC’s mo-
tion for JMOL of no willfulness; and (3) denied UT’s motion
for enhanced damages. See Decision, at *1.
The district court entered an amended final judgment
on June 28, 2024. J.A. 3–4. The parties timely appealed.
See J.A. 17313–16. We have jurisdiction under 28 U.S.C.
§ 1295(a)(1).
II
Following Third Circuit law, we review the district
court’s denial of JMOL on an issue de novo, asking whether
“a reasonable jury would not have had a legally sufficient
evidentiary basis to find for [the verdict winner] on that
issue.” Bayer Healthcare LLC v. Baxalta Inc., 989 F.3d
964, 979 (Fed. Cir. 2021) (internal quotation marks and ci-
tation omitted). BSC argues that it was entitled to JMOL
of anticipation and of noninfringement.
A
BSC contends that there was an insufficient eviden-
tiary basis for a reasonable jury to find that Song does not
anticipate asserted claims 1, 11, 17, and 26 of the ’296 pa-
tent. Whether a prior-art reference anticipates a patent
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BOARD OF REGENTS OF THE UNIVERSITY OF TEXAS v. 7
BOSTON SCIENTIFIC CORP.
claim is a question of fact. See TVIIM, LLC v. McAfee, Inc.,
851 F.3d 1356, 1362 (Fed. Cir. 2017). “A patent claim is
anticipated if a single prior art reference expressly or in-
herently discloses every limitation of the claim.” DDR
Holdings, LLC v. Hotels.com, L.P., 773 F.3d 1245, 1252
(Fed. Cir. 2014). Anticipation turns on what the prior-art
reference substantively discloses to a relevant artisan. See
Sage Products, LLC v. Stewart, 133 F.4th 1376, 1384 n.5,
1385 (Fed. Cir. 2025); Acoustic Technology, Inc. v. Itron
Networked Solutions, Inc., 949 F.3d 1366, 1373 (Fed. Cir.
2020). BSC had to prove anticipation by clear and convinc-
ing evidence. See ATEN International Co. v. Uniclass
Technology Co., 932 F.3d 1364, 1368 (Fed. Cir. 2015).
We address independent claim 1 first. Then we ad-
dress dependent claims 11 and 17 together. Finally, we
address dependent claim 26. We conclude that a reasona-
ble jury, on the evidence, had to find that Song anticipated
the claims at issue.
1
Three limitations of claim 1 are key to the anticipation
analysis: (a) a “biodegradable polymer fiber”; (b) composed
of two “phases,” of which (under constructions UT accepts)
one is “the polymer portion of the fiber” and the other is
“the discrete drug-containing regions dispersed throughout
the fiber”; with (c) those phases “being immiscible.” See
Claim Construction, at *1.
a
Multiple disclosures in Song compel a finding that the
reference teaches a “biodegradable polymer fiber.” Song
teaches a “fiber having a support matrix.” See J.A. 25643,
col. 2, lines 36–37. That “support matrix” includes a “wall
material,” J.A. 25643, col. 2, lines 37–38, and “the wall ma-
terial can be [made of] any . . . natural polymer,” J.A.
25645, col. 5, lines 1–3. Song then lists several examples
of “biodegradable polymers useful” as the foundation for
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8 BOARD OF REGENTS OF THE UNIVERSITY OF TEXAS v.
BOSTON SCIENTIFIC CORP.
the wall material in the invention. J.A. 25645, col. 5, lines
10–18. Those disclosures clearly teach a “biodegradable
polymer fiber.”
In reaching the conclusion that a reasonable jury was
not required to find that Song anticipates claim 1, the dis-
trict court credited testimony by UT’s expert, Dr. Pitt, that
the manner of biodegradation in Song is relevantly differ-
ent from the manner of biodegradation in the ’296 patent.
See Decision, at *5–6 (citing J.A. 18292). Dr. Pitt, referring
to Song as the “chewing gum” patent (though its teachings
are plainly broader), testified that the polymer fibers in
Song release the agent upon being deformed by a user
chewing on them, whereas the ’296 patent addresses use-
fulness in applications involving tissue engineering or
stents. See J.A. 18289–94. For multiple reasons, this tes-
timony cannot reasonably support a finding that Song does
not teach the biodegradable polymer fiber element of the
claims at issue here.
Song expressly discloses a biodegradable polymer fiber,
as set forth above. Moreover, Song itself is undisputedly
not limited to chewing gum (which it mentions in one sen-
tence and several embodiments), J.A. 25644, col. 3, lines
26–30; J.A. 25646–47, col. 8, line 56, through col. 9, line 68
(embodiments describing “a gradual release of the active
agent when chewed”), or to saliva (a word not used in Song)
as a solvent. Its teachings broadly cover fibers and drugs
(not just flavorants). See J.A. 25644, col. 4, lines 32–34
(“The active agent can be any material such as artificial
sweeteners, powdered flavor oil, or drugs, which the grad-
ual release of may be desired.”). And Song clearly teaches
degradation from exposure to a solvent, such as at the open
ends or sides of a fiber, even apart from fiber deformation
(which can help expose more agent to the solvent). J.A.
25643–44, col. 1, lines 61–65; col. 2, lines 42–45, 62–64; col.
3, line 1, through col. 4, line 19. The “biodegradable poly-
mer fiber” requirement of claim 1 of the ’296 patent con-
tains no restriction not clearly met by Song. Reading both
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BOSTON SCIENTIFIC CORP.
the ’296 patent and Song for what they actually say, “no
reasonable fact-finder could reach a conclusion other than”
that Song teaches the biodegradable polymer fiber required
by claim 1 of the ’296 patent. See Orion IP, LLC v. Hyundai
Motor America, 605 F.3d 967, 977–78 (Fed. Cir. 2010) (con-
cluding that a claim for selling equipment that did not
specify the type of price information conveyed to a customer
was not limited to teaching one type of price information
and accordingly determining that the claim was antici-
pated). On the record of this case, there was no legally suf-
ficient evidentiary basis to find that Song does not teach
the claimed biodegradable polymer fiber.
b
We turn to the other disputed limitations of claim 1 and
ask if a reasonable jury was required to find that they, too,
were disclosed in Song. As to the two “phases” limitations
of claim 1, the parties agreed on constructions of the
“phases,” one being the polymer portion of the fiber and the
other being the active-agent (drug) regions dispersed
throughout the fiber. See Claim Construction, at *1. On
the record here, we conclude that no reasonable jury could
have found that Song does not disclose both “phases.”
Song teaches a “polymer portion of the fiber” (the “first
phase”). See, e.g., J.A. 25643, col. 2, lines 37–38; J.A.
25645, col. 5, lines 1–3, 10–18 (Song disclosing fibrous wall
material made of polymers). Song describes the polymer
wall material and therapeutic agent as two separate, “im-
miscible” components of the invention. See J.A. 25645, col.
5, lines 5–7. Song also teaches various “active agents,” in-
cluding “drugs,” that can be released from the fiber. See
J.A. 25644, col. 4, lines 32–66. The agent can be “in contact
with itself forming a contiguous phase”—i.e., the active-
agent regions can touch each other—but Song also ex-
pressly states that “the active agent . . . does not neces-
sarily have to be in a contiguous phase.” J.A. 25643, col. 2,
lines 38–42.
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10 BOARD OF REGENTS OF THE UNIVERSITY OF TEXAS v.
BOSTON SCIENTIFIC CORP.
On appeal, the parties do not appear to dispute that
Song teaches the “first phase” limitation of claim 1 (“the
polymer portion of the fiber”). But the parties dispute
whether Song teaches the “second phase” limitation. The
district court’s construction of the “second phase” limita-
tion requires “discrete drug-containing regions dispersed
throughout the fiber.” See Claim Construction, at *1 (em-
phasis added). Citing that construction, UT has argued
that the jury could properly find that Song does not teach
the “second phase” limitation, based on certain testimony
by its expert that the ’296 patent’s “discrete” drug-contain-
ing regions are relevantly different from what Song dis-
closes, which the expert indicated was limited to
“contiguous” phases of the active agent. See J.A. 18293–
94. We conclude that this argument and evidence are in-
sufficient to sustain a finding of no anticipation.
First, Song’s express disclosure of an active agent in a
noncontiguous phase clearly teaches the claimed “discrete
drug-containing regions.” Song states: “The active agent,
however, does not necessarily have to be in a contiguous
phase.” J.A. 25643, col. 2, lines 38–42; see J.A. 18299 (UT’s
expert acknowledging that the active agent in Song does
not necessarily have to be in a contiguous phase). A “non-
contiguous” region is “discrete” from other such regions un-
der plain English—“discrete” as ordinarily used means
“individually distinct,” and “[non]contiguous” means not
“touching along a boundary or at a point.” See BSC Reply
Br. at 12 (citing Merriam-Webster’s Collegiate Dictionary
270, 357 (11th ed. 2020)). We see no basis on which it could
reasonably be found that Song’s teaching of non-touching
regions is not a teaching of discrete regions. BSC’s expert
testified to this plain-language point, see J.A. 18171 (BSC’s
expert testifying “if [the phases] are noncontiguous, then
they are separated or can be discrete”), and UT has offered
nothing of substance to the contrary. To the extent that
UT has suggested that “discrete” may cover more than
“noncontiguous,” we need not disagree, because the point
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BOSTON SCIENTIFIC CORP.
is immaterial. As long as “discrete” includes “noncontigu-
ous,” as it plainly does, that is enough for anticipation of
the ’296 patent’s “discrete” requirement by Song’s
“[non]contiguous” teaching, because Song thereby teaches
something covered by the “discrete” claim requirement.
See, e.g., Bristol-Myers Squibb Co. v. Ben Venue Laborato-
ries, Inc., 246 F.3d 1368, 1374–77 (Fed. Cir. 2001). No rea-
sonable jury could find that the noncontiguous phases of
the drug disclosed in Song do not disclose the claimed “dis-
crete drug-containing” regions.
Second, UT’s expert testimony regarding the “second
phase,” rather than addressing the claimed location of the
drug within the fiber, addresses a particular aspect of how
the drug is released from the fiber—an aspect not claimed.
UT’s expert testified that in Song, upon a user’s chewing of
the fiber, the fiber is “chopped,” exposing “channels” from
which the drug dissolves. See J.A. 18293–94. The expert
distinguished Song’s manner of release of the drug from the
manner of release in the ’296 patent, testifying that, for the
’296 patent, the drug elutes “out [of] the radial direction
instead of going out [of] the ends” of channels. J.A. 18294.
But, as indicated above, Song is not limited to chewing-pro-
duced release or release from the sides of fibers; and in any
event, and decisively, the district court’s construction of
“second phase” does not require radial elution. Instead,
what is required for Song to teach the claimed second phase
is that the drug-containing regions of Song are “discrete.”
Because UT’s expert testimony about the mechanism of re-
lease of the drug does not address a claim requirement, it
does not provide sufficient evidence for a reasonable jury to
find that Song’s noncontiguous phases of active agent do
not anticipate the ’296 patent’s “discrete drug-containing
regions.”
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12 BOARD OF REGENTS OF THE UNIVERSITY OF TEXAS v.
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c
The foregoing discussion rejects all of the arguments
UT makes on appeal to support the verdict of no anticipa-
tion. UT does not separately argue that the jury could rea-
sonably find that Song fails to disclose claim 1’s limitation
requiring “immiscible” phases. That is not surprising. No
reasonable jury could find that Song does not teach that
limitation. Song expressly discloses that the “active agent”
and fibrous “wall material . . . must be immiscible with each
other.” J.A. 25645, col. 5, lines 5–7 (emphasis added).
We therefore conclude that BSC was entitled to judg-
ment as a matter of law that claim 1 is invalid for anticipa-
tion by Song.
2
Claims 11 and 17 of the ’296 patent depend on claim 1.
Each claim differs from claim 1 only in the addition of an
element written in Markush form—stating that a claim 1
element is one or more of the items on a written-out list.
Such an element “is disclosed by the prior art if one alter-
native in the Markush group is in the prior art.” Fresenius
USA, Inc. v. Baxter International, Inc., 582 F.3d 1288, 1298
(Fed. Cir. 2009). We conclude that the evidence of record
required a finding that Song discloses at least one element
of the Markush group in each claim and, therefore, that
claims 11 and 17 are also anticipated by Song.
Claim 11 requires that the composition of claim 1 in-
clude “one or more therapeutic agents” from a list set forth
in claim 11. ’296 patent, col. 28, lines 21–29. One of claim
11’s listed “therapeutic agents” is “drugs.” Id., col. 28, line
23. Song expressly discloses “drugs” as one type of “agent”
that can be used in an embodiment of the invention. J.A.
25644, col. 4, line 33.
Claim 17, which depends on claim 16, is similar. Claim
16 requires that the biodegradable polymer of claim 1 be a
polymer, co-polymer, or a mixture of polymers selected
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from a group defined in claim 16, which includes “aliphatic
polyesters.” ’296 patent, col. 28, lines 49–54. Claim 17 fur-
ther enumerates examples of aliphatic polyesters, includ-
ing “poly(glycolic acid).” Id., col. 28, lines 50–51. Song
expressly discloses “polyglycolic acid” as an “example of [a]
biodegradable polymer[ ].” J.A. 25645, col. 5, lines 12–18.
Given Song’s express disclosures, we conclude that a
reasonable jury, on the record here, must find that claims
11 and 17 are anticipated by Song.
3
The final asserted claim is claim 26, which recites:
26. The composition of claim 1, wherein said one
or more therapeutic agents are released at vary-
ing rates over time from said fiber.
’296 patent, col. 29, lines 12–14 (emphasis added). The par-
ties dispute whether Song would be understood by a rele-
vant artisan to disclose release of the Song-taught agent
(which includes a therapeutic agent) from the fiber at “var-
ying rates.” See BSC Opening Br. at 23; UT Principal Br.
and Br. in Response at 42. There was no claim construction
of the phrase “varying rates,” which has a plain meaning of
rates that change, with no minimum degree of change im-
plicit in the broad term.
Taking full account of BSC’s burden of persuasion on
this issue, we conclude that a reasonable jury had to find
that Song taught this “varying rates” release requirement.
BSC’s uncontradicted expert testimony was that a relevant
artisan would understand Song to disclose a composition
that has varying rates of drug release. UT undisputedly
offered no evidence to the contrary and has, even by law-
yer’s argument, provided no reason to doubt the testimony
of BSC’s expert. And Song itself, far from undermining
that testimony, depicts openings of various sizes for release
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14 BOARD OF REGENTS OF THE UNIVERSITY OF TEXAS v.
BOSTON SCIENTIFIC CORP.
of the drug from the fiber in Song Figures 1 and 1A, affirm-
atively bolstering the testimony. On this record, no reason-
able jury could find that Song does not anticipate claim 26.
a
We begin with the expert testimony presented to the
jury about what Song discloses regarding claim 26. See
Sage Products, 133 F.4th at 1385 (affirming relevance of
such testimony for deciding anticipation); Acoustic Tech-
nology, 949 F.3d at 1373 (same). This testimony was en-
tirely one-sided (UT presented none), and it was very brief
(unlike with the elements of claim 1), indicating the sim-
plicity of the sole remaining point for claim 26. BSC’s ex-
pert testified that “all drug delivery systems will have a
varying release rate with time,” J.A. 18176, explaining that
it would be “very, very difficult” to manufacture a drug de-
livery system “where the release rate doesn’t change with
time,” J.A. 18177. On that basis, he concluded that a rele-
vant artisan “would just know,” reading Song’s disclosure
of release of an agent, that the agent is released “at varying
rates over time.” Id. And given the reason for that rele-
vant-artisan understanding, it was irrelevant that Song
does not use the word “variable.” J.A. 18246–47.
UT presented no expert testimony to the contrary. On
appeal, UT’s counsel agreed that it presented no affirma-
tive evidence to support a contrary determination. See
Oral Arg. at 41:12–51, cafc.uscourts.gov/oral-arguments/
24-2062_06092026.mp3. Nor has UT proffered, even
through argument by counsel, a persuasive reason to doubt
the testimony of BSC’s expert that changing rates of re-
lease are so unavoidable that a relevant artisan would un-
derstand Song’s release rate to change over time (given the
absence of something in Song indicating otherwise).
Moreover, UT’s own submission at trial itself indicates
that Song discloses varying release rates. To distinguish
Song from the ’296 patent generally, UT’s expert testified
that the patents are not useful in the same field of art. See
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J.A. 18289–90. He focused on one aspect of Song’s teach-
ing, namely, “polymer fibers that release agents in . . .
chewing gum” through the user’s “chewing and deforming
[of] the fiber.” J.A. 18289. UT’s counsel, during closing ar-
gument, expressly drew out the natural import of that tes-
timony—the varying nature of chewing that causes varying
deformations of the fiber to create varying openings where
solvent touches the active agent for release: “You chew it
. . . you can chew slow; you can chew fast . . . it’s open here
. . . [and] here . . . [but] [t]hese are not open.” J.A. 18346.
That submission supported BSC’s evidence that the thera-
peutic agent would be released through Song’s channels at
different rates, a function of differing sizes and locations of
the pores. See J.A. 18291; J.A. 25644, col. 3, lines 1–12, 35–
39.
b
That Song anticipates claim 26’s “varying rates” of
drug release is further shown by Song’s Figures 1 and 1A,
offered as evidence by BSC’s expert to demonstrate release
of a drug even from a contiguous-phase active agent. See
J.A. 15806–07; J.A. 18171–77; J.A. 25637.
Figures 1 and 1A illustrate an embodiment of Song’s “grad-
ual release structure,” with labeled “ends 14 and 15” hav-
ing “openings, exposing the active agent.” J.A. 25644, col.
3, lines 44–53. The active agent may also be exposed to the
dissolving solvent through openings along the side of the
fiber as depicted in Figure 2.
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16 BOARD OF REGENTS OF THE UNIVERSITY OF TEXAS v.
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J.A. 25638; see J.A. 25644, col. 3, lines 53–55; J.A. 18298.
Although those figures describe a “gradual” release embod-
iment, Song’s disclosure provides little guidance as to what
“gradual” means, merely describing “gradual release” as
the result of “the fiber [being] brought in contact with a sol-
vent, or dispersing media, for the active agent.” J.A. 25644,
col. 3, lines 57–59. But the figures clearly depict openings
and pockets of drugs with varying shapes and sizes. We
have been offered no basis on which a reasonable jury in-
terpreting Figures 1, 1A, and 2 could find that differently-
sized pockets of drug would degrade from differently-sized
openings in the fiber at a uniform rate.
At oral argument, UT directed the court to two portions
of Song’s disclosure and argued that the disclosures teach
a mechanism of biodegradability in which the release of the
agent is controlled and “limited” by the fiber. See Oral Arg.
at 37:17–40:45 (citing J.A. 25644, col. 3, lines 15–20; id.,
col. 4, lines 6–14); see also J.A. 15806 n.5 (UT preserving
this argument in post-trial briefing). In those disclosures,
Song describes how “the support matrix serves to limit the
rate of dissolution [of the agent] by restricting the area of
active agent in direct contact with the solvent.” J.A. 25644,
col. 3, lines 15–20. At argument, UT urged the court to
interpret Song’s disclosure of “limit[ing]” the dissolution of
the agent as synonymous with “fixing” the rate of dissolu-
tion. See Oral Arg. at 38:25–40:45.
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That contention is simply incorrect. Even if Song’s
statement that the matrix “limits” the rate of dissolution
meant that it sets a cap on the rate—itself not really what
Song says—a cap sets a maximum but in no way implies or
suggests uniformity under the maximum. The fiber may
limit the amount of agent to be released but still release
that limited amount of agent at varying rates. Or it may
place an upper (or lower) bound on the rate (or both), but
still release the agent at varying rates within the set
limit(s). In pointing to Song’s “limit” language, UT thus
has not offered any basis for a finding that Song discloses
only uniform (non-variable) rates of release. For this rea-
son, and the others given, we therefore conclude that, on
the wholly one-sided record on the issue in this case, a rea-
sonable jury had to find that Song teaches varying rates of
release of the agent.
In light of our conclusions as to all four asserted claims
of the ’296 patent, we reverse the district court’s denial of
JMOL of no anticipation.
B
While our conclusion as to invalidity for anticipation
suffices to resolve this appeal and the case in BSC’s favor,
we think it worthwhile to address another contention made
by BSC on appeal—namely, that BSC is also entitled to
JMOL of non-infringement. In particular, the district court
construed “fiber” to mean “a thread-like structure of any
length or shape,” and, on that construction, the jury found
that BSC’s accused stent infringed the patent. Claim Con-
struction, at *4; J.A. 13888. BSC later unsuccessfully
moved for JMOL of no infringement, arguing that the ac-
cused stent does not contain a fiber. See Decision, at *9.
We conclude that no reasonable jury could find that the
portion of BSC’s stent accused of being the claimed “fiber”
meets the district court’s construction.
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18 BOARD OF REGENTS OF THE UNIVERSITY OF TEXAS v.
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UT’s theory of infringement is that a part of the stent’s
coating, and not the stent itself, meets the “fiber” limita-
tion. See J.A. 17944; Decision, at *9. The district court
concluded that “nothing in the Court’s claim construction
prevented the jury from finding that the coating—‘the pol-
ymer around the outside surface of [BSC’s accused stent]’—
was a fiber.” Decision, at *9. UT’s evidence thus limited
its “fiber” assertion to what the accused stent’s coating
might look like if it were removed from the metal frame of
the stent. See id.; Oral Arg. at 58:13–58:43 (UT stating
that the court should “look at the overall . . . structure” of
the coating to determine if it is a fiber).
UT’s evidence was narrowed, in fact, to a mere part of
the stent’s coating removed from the metal frame. UT’s
expert, Dr. Pitt, after his full direct testimony, testified
that he had not “at any point in this case . . . opined that
the polymer coating on Boston Scientific’s accused . . .
stents is thread-like.” J.A. 18008. That statement appears
to refer to the coating as a whole. In his direct testimony,
Dr. Pitt, including by using a demonstrative to help the
jury visualize the “dimensions and aspect ratios” of the
coating portion he was relying on, identified as the claim-
covered “‘thread-like’ fiber” the portion of the coating one
would get by “cut[ting] across a connector to access the fi-
ber covering one serpentine [zigzag] loop around the stent.”
Decision, at *9; see J.A. 17944–50; J.A. 17990–91.
We conclude, on the record before us, that no reasona-
ble jury could find that cut-out section of coating removed
from the frame to be “thread-like.” Notably, UT has posi-
tively insisted, as it emphasized at argument, that it is the
(or a) macroscopic structure of the accused stent’s coating
that constitutes the claimed “fiber.” See Oral Arg. at
58:14–49. UT had successfully opposed a construction of
“fiber” that is tied to the molecular orientation of the poly-
mer at a microscopic level. See id. at 58:46–59:09; Claim
Construction, at *6–9. Identifying what macroscopic struc-
tures constituted a “thread-like” fiber in the accused stent,
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UT relied entirely on the portions of coating on the outside
of zigzag struts making up a single ring around the stent—
a zigzag-shaped section of coating stripped from the frame.
See Decision, at *9; UT Principal Br. and Br. in Response
at 54; J.A. 17944–50; J.A. 17990–91; Oral Arg. at 1:01:24–
46.
It is not reasonable to characterize that artificially sep-
arated section of the stent coating as a “thread-like” struc-
ture. It is not a structure that ever had or would have
independent existence. It is just the result of adhering a
liquid (which UT does not assert to be a fiber in that form)
to the frame, and then letting it dry. The resulting coating
“needs a substrate,” J.A. 18261; it is not meant to be
stripped from its frame or to retain its form on its own. The
portion relied on by UT is tubular in overall shape—the
outer coating of a ring—and has walls consisting of a zig-
zagging shape to match its metal frame. And UT has not
shown that the detached coating would be essentially one-
dimensional, like a thread, rather than visibly two-dimen-
sional like a ribbon. In at least these respects, UT’s ac-
cused “fiber” is not reasonably characterized as like a
thread, at least not in a way that would fit its role as a
construction of the term “fiber” in the ’296 patent, which
contemplates a fiber having a “diameter.” ’296 patent, col.
3, lines 12–21. And those problems would not be solved
even if UT had sought to go beyond its expert’s testimony
and proposed a further cutting out of the theoretically de-
tached coating section a truly thread-like shape: One can-
not reasonably say that a uniform sheet of paper contains
a narrow strip simply because one can cut such a strip from
it.
We conclude that no reasonable jury on this record
could find that UT’s proof established the presence in the
accused stents of the “thread-like” structure required by
the claim construction not challenged by UT on appeal. For
this reason, BSC is entitled to JMOL of no infringement as
well as of invalidity.
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20 BOARD OF REGENTS OF THE UNIVERSITY OF TEXAS v.
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III
We reverse the district court’s denial of JMOL to BSC
on both anticipation and noninfringement. Having so held,
we need not address BSC’s other challenges, which include
serious challenges to the way UT was permitted to try its
case, and we need not address UT’s cross-appeal on willful
infringement.
Costs awarded to appellant.
REVERSED